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精神分裂病検査のない違法措置入院、逮捕状のない大阪拘置所違法24日間拘留

私は、文部科学省脳科学研究戦略推進プログラム、理化学研究所人体実験被害者です。法務省、大阪地検、大阪高検、米子地検、大阪簡易裁判所、最高裁は、捏造社民党名誉毀損事件を画策、家宅捜索礼状のない家宅捜索、逮捕状のない大阪拘置所違法24日間拘留によって、自民党、公明党、社民党、共産党、学者と全大学、全企業、全官公庁による窃盗、夫殺害、株不正売買、米子市養和病院違法措置入院、40にも及ぶ違法有料ブログ解約、厚生労働省、医師会、歯科医師会、看護士会、介護士会、各政党と党員、キリスト教、天台宗、創価学会、幸福の科学、ものみの塔など宗教法人と信者による音声送信とストーカー、嫌がらせ、自民党社民党によるOCN、EDIONenjoy違法プロバイダ解約等の証拠隠滅を行いました。私は、詩人、エッセイストでもあり、翻訳家でもありますが、私の詩、エッセイ、翻訳詩、翻訳小説、翻訳文を、日本政府は、世界中に売っています。

2016年11月12日土曜日

Fiber lasers ‘perfect’ for directed energy systems6

Fiber lasers ‘perfect’ for directed energy systems

21 Mar 2013
Military-focused directed energy conference learns of potential of higher power fiber sources.

The Directed Energy Systems conference has continued to build and expand.
The tenth annual Directed Energy Systems conference, organized by Defence IQ and held in London earlier this month, heard almost two dozen presentations on all of the key areas in the development of DES.
管理放射能システム会議は、築き上げては発展すベく続いて来た。第十回年間管理放射能システム会議は、、今月初め、国防IQによって組織、ロンドンで開催され、DES管理放射能システムの開発重要区域に関するほぼ2ダ一スの発表を傾聴した。

22:49 2016/11/06日

Defence IQ said of this year’s event, “Directed Energy Systems has continued to build and expand upon the key issue of moving DE technology out from the laboratory and into the field, for both lethal and non-lethal systems.”
国防IQは、今年のイヴェントゥについて語った。管理放射能システムは、構築し、実験室から出て、実施の現場の最中へと移動という重要な課題を、破壊、非破壊両者間で、拡大し続けて来た。

20:15 2016/11/07月

Speakers came from a wide range of academic, strategic, military and technological sectors. One of the notable academic presentations focused on the growing importance of fiber lasers for DES by Prof. Andy Clarkson from the Optoelectronics Research Centre at the University of Southampton, UK, who was presenting on behalf of an unavailable Prof. Sir David Payne.
代弁者が、人文科学の戦略的軍事及び科学的技術分野の広範囲から現れた。注目に値する
人文科学的演説、英サウスアムプトン大学の光電子工学研究センタ一からアンディ・クラ一クソン教授によるDES向けファイバーレイザーの意義増大に焦点を宛てられた。

21:21 2016/11/08火

Clarkson described fiber lasers as the "perfect building block" for directed energy systems ― as they are electrically powered, efficient, modular, reliable with their civilian technology backbone. He said, “Power levels for narrow-line width fiber MOPAs (master oscillator power amplifiers) are currently around a few kilowatts. With the development of new rare earth doped fibers, such as those with ytterbium and holmium, fiber lasers have the potential to scale to higher powers.”
クラ一クソンは、光ファイバ一レ一ザ一を宛名を書かれた放射能システム向けの「完壁な建築用ブロック」のように説明した。―それは、電気的に、それらの民間技術中軸を持った効率的組み立てユニット式信頼出来る動力を備えていた。

22:03 2016/11/09水

彼は、語った。「細い-線の太さの為、パゥア・レヴェルは、ファイバーMOPAs(主要発振力増幅器)は、目下凡そ2~3kwである。最新レアアース(地上散在)塗布ファイバ一の開発と共に、イッテルビウムやホルミウムを持ったそれらのように、ファイバーレイザーは、より高電力に達する可能性がある。」

20:27 2016/11/10木

He told the conference that even in relatively recent years fiber lasers had not been considered as suitable sources for directed energy systems because their outputs had not been great enough. However as kilowatt developments by the likes of IPG Photonics have led to fiber lasers starting to deliver multi-kilowatt outputs, these sources were creating a stir because of their ease of construction, economy and increasing power conversion efficiency.
比較的近年においてさえ、ファイバーレイザーは、その出力が十分満足のいくものであった例がないが故に、宛名を書かれた放射能システム向けの適切な供給源として考慮された事はなかった、と会議を物語った。

21:48 2016/11/12土

Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
“In the past decade alone, cladding-pumped fiber lasers based on ytterbium-doped silica operating in the 1.0 to 1.1μm wavelength have seen their powers grow from a few watts towards 10kW and beyond, delivering energy intensities well above 5x1012 W/m2.

Such lasers have initially found many applications in materials processing including the fabrication of medical stents and the production of laser-treated turbine blades.

Clarkson acknowledged that there were several problems and power limitations around fiber lasers, especially in relation to scaling up their powers significantly beyond 10kW. “Their typical long and thin design gives the following problems: a high core intensity, which can cause damage, and leads to nonlinear limitations for pulsed applications, and a likely 30kW peak power limitation. Scaling to very high powers with narrow linewidth can be very challenging.”

However, various developers are working on different designs of beam combination to raise the overall power, including techniques such as: incoherent beam combining and spatial beam combining, which can increase power, but not brightness; wavelength beam combining; or coherent beam combining, all of which create significant thermal challenges.

One strategy to boost fiber laser output is tandem pumping.
One strategy to boost fiber laser output is tandem pumping.
An alternative strategy is to use “slightly multimode” fibers or a technique called tandem pumping, in which multiple diode pumps feed into a large core cladding-pumped ytterbium final stage amplifier (brightness convertor), which is a route to 10kW output.

Looking to the future and addressing several questions from conference delegates about the potential for ever higher power fiber lasers, Clarkson concluded, “Further power scaling of ytterbium lasers is likely to be challenging as we approach the fundamental limits of that technology and design. However, 2μm fiber lasers based on thulium and holmium look very promising as they offer further power scaling potential and operation in the ‘eyesafe’ wavelength regime.”

2016年11月11日金曜日

福岡道路陥没事故は、自衛隊と米軍がADSで起こした事故

福岡道路陥没事故は、自衛隊と米軍がADSを使って故意に起こした事故である。
ADSは、自分が攻撃されても、何処で、誰が、どういう方法で行っているのか分からない。
国民に無断で、電池、電極、基板を埋め込んで、自衛隊と米軍、朝鮮、台湾人が遠隔操作する。
私が、地下水が溢れたのではなく、下水管が破裂した、と書いたら、下水管が見える写真は殆ど全部消えた。
西日本新聞は、信号が大穴に飲み込まれる瞬間を撮影している。
事故を事前に知っていて、待ちかまえて写した影像である。
自衛隊と米軍、公明党国土交通省は、米子中の道路を切ってはあちこちへ運んでいるようで、米子市内の道路は、砂利道同然になっている。
公明党創価学会員は、米子市内に建てた家も、何処かへ運ぶようだ。

21:49 2016/11/11金

2016年11月10日木曜日

Fiber lasers ‘perfect’ for directed energy systems5

Fiber lasers ‘perfect’ for directed energy systems

21 Mar 2013
Military-focused directed energy conference learns of potential of higher power fiber sources.

The Directed Energy Systems conference has continued to build and expand.
The tenth annual Directed Energy Systems conference, organized by Defence IQ and held in London earlier this month, heard almost two dozen presentations on all of the key areas in the development of DES.
管理放射能システム会議は、築き上げては発展すベく続いて来た。第十回年間管理放射能システム会議は、、今月初め、国防IQによって組織、ロンドンで開催され、DES管理放射能システムの開発重要区域に関するほぼ2ダ一スの発表を傾聴した。

22:49 2016/11/06日

Defence IQ said of this year’s event, “Directed Energy Systems has continued to build and expand upon the key issue of moving DE technology out from the laboratory and into the field, for both lethal and non-lethal systems.”
国防IQは、今年のイヴェントゥについて語った。管理放射能システムは、構築し、実験室から出て、実施の現場の最中へと移動という重要な課題を、破壊、非破壊両者間で、拡大し続けて来た。

20:15 2016/11/07月

Speakers came from a wide range of academic, strategic, military and technological sectors. One of the notable academic presentations focused on the growing importance of fiber lasers for DES by Prof. Andy Clarkson from the Optoelectronics Research Centre at the University of Southampton, UK, who was presenting on behalf of an unavailable Prof. Sir David Payne.
代弁者が、人文科学の戦略的軍事及び科学的技術分野の広範囲から現れた。注目に値する
人文科学的演説、英サウスアムプトン大学の光電子工学研究センタ一からアンディ・クラ一クソン教授によるDES向けファイバーレイザーの意義増大に焦点を宛てられた。

21:21 2016/11/08火

Clarkson described fiber lasers as the "perfect building block" for directed energy systems ― as they are electrically powered, efficient, modular, reliable with their civilian technology backbone. He said, “Power levels for narrow-line width fiber MOPAs (master oscillator power amplifiers) are currently around a few kilowatts. With the development of new rare earth doped fibers, such as those with ytterbium and holmium, fiber lasers have the potential to scale to higher powers.”
クラ一クソンは、光ファイバ一レ一ザ一を宛名を書かれた放射能システム向けの「完壁な建築用ブロック」のように説明した。―それは、電気的に、それらの民間技術中軸を持った効率的組み立てユニット式信頼出来る動力を備えていた。

22:03 2016/11/09水

彼は、語った。「細い-線の太さの為、パゥア・レヴェルは、ファイバーMOPAs(主要発振力増幅器)は、目下凡そ2~3kwである。最新レアアース(地上散在)塗布ファイバ一の開発と共に、イッテルビウムやホルミウムを持ったそれらのように、ファイバーレイザーは、より高電力に達する可能性がある。」

20:27 2016/11/10木

He told the conference that even in relatively recent years fiber lasers had not been considered as suitable sources for directed energy systems because their outputs had not been great enough. However as kilowatt developments by the likes of IPG Photonics have led to fiber lasers starting to deliver multi-kilowatt outputs, these sources were creating a stir because of their ease of construction, economy and increasing power conversion efficiency.

Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
“In the past decade alone, cladding-pumped fiber lasers based on ytterbium-doped silica operating in the 1.0 to 1.1μm wavelength have seen their powers grow from a few watts towards 10kW and beyond, delivering energy intensities well above 5x1012 W/m2.

Such lasers have initially found many applications in materials processing including the fabrication of medical stents and the production of laser-treated turbine blades.

Clarkson acknowledged that there were several problems and power limitations around fiber lasers, especially in relation to scaling up their powers significantly beyond 10kW. “Their typical long and thin design gives the following problems: a high core intensity, which can cause damage, and leads to nonlinear limitations for pulsed applications, and a likely 30kW peak power limitation. Scaling to very high powers with narrow linewidth can be very challenging.”

However, various developers are working on different designs of beam combination to raise the overall power, including techniques such as: incoherent beam combining and spatial beam combining, which can increase power, but not brightness; wavelength beam combining; or coherent beam combining, all of which create significant thermal challenges.

One strategy to boost fiber laser output is tandem pumping.
One strategy to boost fiber laser output is tandem pumping.
An alternative strategy is to use “slightly multimode” fibers or a technique called tandem pumping, in which multiple diode pumps feed into a large core cladding-pumped ytterbium final stage amplifier (brightness convertor), which is a route to 10kW output.

Looking to the future and addressing several questions from conference delegates about the potential for ever higher power fiber lasers, Clarkson concluded, “Further power scaling of ytterbium lasers is likely to be challenging as we approach the fundamental limits of that technology and design. However, 2μm fiber lasers based on thulium and holmium look very promising as they offer further power scaling potential and operation in the ‘eyesafe’ wavelength regime.”

2016年11月9日水曜日

Fiber lasers ‘perfect’ for directed energy systems4

Fiber lasers ‘perfect’ for directed energy systems

21 Mar 2013
Military-focused directed energy conference learns of potential of higher power fiber sources.

The Directed Energy Systems conference has continued to build and expand.
The tenth annual Directed Energy Systems conference, organized by Defence IQ and held in London earlier this month, heard almost two dozen presentations on all of the key areas in the development of DES.
管理放射能システム会議は、築き上げては発展すベく続いて来た。第十回年間管理放射能システム会議は、、今月初め、国防IQによって組織、ロンドンで開催され、DES管理放射能システムの開発重要区域に関するほぼ2ダ一スの発表を傾聴した。

22:49 2016/11/06日

Defence IQ said of this year’s event, “Directed Energy Systems has continued to build and expand upon the key issue of moving DE technology out from the laboratory and into the field, for both lethal and non-lethal systems.”
国防IQは、今年のイヴェントゥについて語った。管理放射能システムは、構築し、実験室から出て、実施の現場の最中へと移動という重要な課題を、破壊、非破壊両者間で、拡大し続けて来た。

20:15 2016/11/07月

Speakers came from a wide range of academic, strategic, military and technological sectors. One of the notable academic presentations focused on the growing importance of fiber lasers for DES by Prof. Andy Clarkson from the Optoelectronics Research Centre at the University of Southampton, UK, who was presenting on behalf of an unavailable Prof. Sir David Payne.
代弁者が、人文科学の戦略的軍事及び科学的技術分野の広範囲から現れた。注目に値する
人文科学的演説、英サウスアムプトン大学の光電子工学研究センタ一からアンディ・クラ一クソン教授によるDES向けファイバーレイザーの意義増大に焦点を宛てられた。

21:21 2016/11/08火

Clarkson described fiber lasers as the "perfect building block" for directed energy systems ― as they are electrically powered, efficient, modular, reliable with their civilian technology backbone. He said, “Power levels for narrow-line width fiber MOPAs (master oscillator power amplifiers) are currently around a few kilowatts. With the development of new rare earth doped fibers, such as those with ytterbium and holmium, fiber lasers have the potential to scale to higher powers.”
クラ一クソンは、光ファイバ一レ一ザ一を宛名を書かれた放射能システム向けの「完壁な建築用ブロック」のように説明した。―それは、電気的に、それらの民間技術中軸を持った効率的組み立てユニット式信頼出来る動力を備えていた。

22:03 2016/11/09水

He told the conference that even in relatively recent years fiber lasers had not been considered as suitable sources for directed energy systems because their outputs had not been great enough. However as kilowatt developments by the likes of IPG Photonics have led to fiber lasers starting to deliver multi-kilowatt outputs, these sources were creating a stir because of their ease of construction, economy and increasing power conversion efficiency.

Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
“In the past decade alone, cladding-pumped fiber lasers based on ytterbium-doped silica operating in the 1.0 to 1.1μm wavelength have seen their powers grow from a few watts towards 10kW and beyond, delivering energy intensities well above 5x1012 W/m2.

Such lasers have initially found many applications in materials processing including the fabrication of medical stents and the production of laser-treated turbine blades.

Clarkson acknowledged that there were several problems and power limitations around fiber lasers, especially in relation to scaling up their powers significantly beyond 10kW. “Their typical long and thin design gives the following problems: a high core intensity, which can cause damage, and leads to nonlinear limitations for pulsed applications, and a likely 30kW peak power limitation. Scaling to very high powers with narrow linewidth can be very challenging.”

However, various developers are working on different designs of beam combination to raise the overall power, including techniques such as: incoherent beam combining and spatial beam combining, which can increase power, but not brightness; wavelength beam combining; or coherent beam combining, all of which create significant thermal challenges.

One strategy to boost fiber laser output is tandem pumping.
One strategy to boost fiber laser output is tandem pumping.
An alternative strategy is to use “slightly multimode” fibers or a technique called tandem pumping, in which multiple diode pumps feed into a large core cladding-pumped ytterbium final stage amplifier (brightness convertor), which is a route to 10kW output.

Looking to the future and addressing several questions from conference delegates about the potential for ever higher power fiber lasers, Clarkson concluded, “Further power scaling of ytterbium lasers is likely to be challenging as we approach the fundamental limits of that technology and design. However, 2μm fiber lasers based on thulium and holmium look very promising as they offer further power scaling potential and operation in the ‘eyesafe’ wavelength regime.”

2016年11月8日火曜日

Fiber lasers ‘perfect’ for directed energy systems3翻訳

Fiber lasers ‘perfect’ for directed energy systems

21 Mar 2013
Military-focused directed energy conference learns of potential of higher power fiber sources.

The Directed Energy Systems conference has continued to build and expand.
The tenth annual Directed Energy Systems conference, organized by Defence IQ and held in London earlier this month, heard almost two dozen presentations on all of the key areas in the development of DES.
管理放射能システム会議は、築き上げては発展すベく続いて来た。第十回年間管理放射能システム会議は、、今月初め、国防IQによって組織、ロンドンで開催され、DES管理放射能システムの開発重要区域に関するほぼ2ダ一スの発表を傾聴した。

22:49 2016/11/06日

Defence IQ said of this year’s event, “Directed Energy Systems has continued to build and expand upon the key issue of moving DE technology out from the laboratory and into the field, for both lethal and non-lethal systems.”
国防IQは、今年のイヴェントゥについて語った。管理放射能システムは、構築し、実験室から出て、実施の現場の最中へと移動という重要な課題を、破壊、非破壊両者間で、拡大し続けて来た。

20:15 2016/11/07月

Speakers came from a wide range of academic, strategic, military and technological sectors. One of the notable academic presentations focused on the growing importance of fiber lasers for DES by Prof. Andy Clarkson from the Optoelectronics Research Centre at the University of Southampton, UK, who was presenting on behalf of an unavailable Prof. Sir David Payne.
代弁者が、人文科学の戦略的軍事及び科学的技術分野の広範囲から現れた。注目に値する
人文科学的演説、英サウスアムプトン大学の光電子工学研究センタ一からアンディ・クラ一クソン教授によるDES向けファイバーレイザーの意義増大に焦点を宛てられた。

21:21 2016/11/08火

Clarkson described fiber lasers as the "perfect building block" for directed energy systems ― as they are electrically powered, efficient, modular, reliable with their civilian technology backbone. He said, “Power levels for narrow-line width fiber MOPAs (master oscillator power amplifiers) are currently around a few kilowatts. With the development of new rare earth doped fibers, such as those with ytterbium and holmium, fiber lasers have the potential to scale to higher powers.”

He told the conference that even in relatively recent years fiber lasers had not been considered as suitable sources for directed energy systems because their outputs had not been great enough. However as kilowatt developments by the likes of IPG Photonics have led to fiber lasers starting to deliver multi-kilowatt outputs, these sources were creating a stir because of their ease of construction, economy and increasing power conversion efficiency.

Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
“In the past decade alone, cladding-pumped fiber lasers based on ytterbium-doped silica operating in the 1.0 to 1.1μm wavelength have seen their powers grow from a few watts towards 10kW and beyond, delivering energy intensities well above 5x1012 W/m2.

Such lasers have initially found many applications in materials processing including the fabrication of medical stents and the production of laser-treated turbine blades.

Clarkson acknowledged that there were several problems and power limitations around fiber lasers, especially in relation to scaling up their powers significantly beyond 10kW. “Their typical long and thin design gives the following problems: a high core intensity, which can cause damage, and leads to nonlinear limitations for pulsed applications, and a likely 30kW peak power limitation. Scaling to very high powers with narrow linewidth can be very challenging.”

However, various developers are working on different designs of beam combination to raise the overall power, including techniques such as: incoherent beam combining and spatial beam combining, which can increase power, but not brightness; wavelength beam combining; or coherent beam combining, all of which create significant thermal challenges.

One strategy to boost fiber laser output is tandem pumping.
One strategy to boost fiber laser output is tandem pumping.
An alternative strategy is to use “slightly multimode” fibers or a technique called tandem pumping, in which multiple diode pumps feed into a large core cladding-pumped ytterbium final stage amplifier (brightness convertor), which is a route to 10kW output.

Looking to the future and addressing several questions from conference delegates about the potential for ever higher power fiber lasers, Clarkson concluded, “Further power scaling of ytterbium lasers is likely to be challenging as we approach the fundamental limits of that technology and design. However, 2μm fiber lasers based on thulium and holmium look very promising as they offer further power scaling potential and operation in the ‘eyesafe’ wavelength regime.”

2016年11月7日月曜日

Fiber lasers ‘perfect’ for directed energy systems2翻訳

21 Mar 2013
Military-focused directed energy conference learns of potential of higher power fiber sources.

The Directed Energy Systems conference has continued to build and expand.
The tenth annual Directed Energy Systems conference, organized by Defence IQ and held in London earlier this month, heard almost two dozen presentations on all of the key areas in the development of DES.
管理放射能システム会議は、築き上げては発展すベく続いて来た。第十回年間管理放射能システム会議は、、今月初め、国防IQによって組織、ロンドンで開催され、DES管理放射能システムの開発重要区域に関するほぼ2ダ一スの発表を傾聴した。

22:49 2016/11/06日

Defence IQ said of this year’s event, “Directed Energy Systems has continued to build and expand upon the key issue of moving DE technology out from the laboratory and into the field, for both lethal and non-lethal systems.”
国防IQは、今年のイヴェントゥについて語った。管理放射能システムは、構築し、実験室から出て、実施の現場の最中へと移動という重要な課題を、破壊、非破壊両者間で、拡大し続けて来た。

20:15 2016/11/07月

Speakers came from a wide range of academic, strategic, military and technological sectors. One of the notable academic presentations focused on the growing importance of fiber lasers for DES by Prof. Andy Clarkson from the Optoelectronics Research Centre at the University of Southampton, UK, who was presenting on behalf of an unavailable Prof. Sir David Payne.

Clarkson described fiber lasers as the "perfect building block" for directed energy systems ? as they are electrically powered, efficient, modular, reliable with their civilian technology backbone. He said, “Power levels for narrow-line width fiber MOPAs (master oscillator power amplifiers) are currently around a few kilowatts. With the development of new rare earth doped fibers, such as those with ytterbium and holmium, fiber lasers have the potential to scale to higher powers.”

He told the conference that even in relatively recent years fiber lasers had not been considered as suitable sources for directed energy systems because their outputs had not been great enough. However as kilowatt developments by the likes of IPG Photonics have led to fiber lasers starting to deliver multi-kilowatt outputs, these sources were creating a stir because of their ease of construction, economy and increasing power conversion efficiency.

Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
“In the past decade alone, cladding-pumped fiber lasers based on ytterbium-doped silica operating in the 1.0 to 1.1μm wavelength have seen their powers grow from a few watts towards 10kW and beyond, delivering energy intensities well above 5x1012 W/m2.

Such lasers have initially found many applications in materials processing including the fabrication of medical stents and the production of laser-treated turbine blades.

Clarkson acknowledged that there were several problems and power limitations around fiber lasers, especially in relation to scaling up their powers significantly beyond 10kW. “Their typical long and thin design gives the following problems: a high core intensity, which can cause damage, and leads to nonlinear limitations for pulsed applications, and a likely 30kW peak power limitation. Scaling to very high powers with narrow linewidth can be very challenging.”

However, various developers are working on different designs of beam combination to raise the overall power, including techniques such as: incoherent beam combining and spatial beam combining, which can increase power, but not brightness; wavelength beam combining; or coherent beam combining, all of which create significant thermal challenges.

One strategy to boost fiber laser output is tandem pumping.
One strategy to boost fiber laser output is tandem pumping.
An alternative strategy is to use “slightly multimode” fibers or a technique called tandem pumping, in which multiple diode pumps feed into a large core cladding-pumped ytterbium final stage amplifier (brightness convertor), which is a route to 10kW output.

Looking to the future and addressing several questions from conference delegates about the potential for ever higher power fiber lasers, Clarkson concluded, “Further power scaling of ytterbium lasers is likely to be challenging as we approach the fundamental limits of that technology and design. However, 2μm fiber lasers based on thulium and holmium look very promising as they offer further power scaling potential and operation in the ‘eyesafe’ wavelength regime.”

2016年11月6日日曜日

Fiber lasers ‘perfect’ for directed energy systems1翻訳

Fiber lasers ‘perfect’ for directed energy systems

21 Mar 2013
Military-focused directed energy conference learns of potential of higher power fiber sources.

The Directed Energy Systems conference has continued to build and expand.
The tenth annual Directed Energy Systems conference, organized by Defence IQ and held in London earlier this month, heard almost two dozen presentations on all of the key areas in the development of DES.
管理放射能システム会議は、築き上げては発展すベく続いて来た。第十回年間管理放射能システム会議は、、今月初め、国防IQによって組織、ロンドンで開催され、DES管理放射能システムの開発重要区域に関するほぼ2ダ一スの発表を傾聴した。

22:49 2016/11/06日

Defence IQ said of this year’s event, “Directed Energy Systems has continued to build and expand upon the key issue of moving DE technology out from the laboratory and into the field, for both lethal and non-lethal systems.”

Speakers came from a wide range of academic, strategic, military and technological sectors. One of the notable academic presentations focused on the growing importance of fiber lasers for DES by Prof. Andy Clarkson from the Optoelectronics Research Centre at the University of Southampton, UK, who was presenting on behalf of an unavailable Prof. Sir David Payne.

Clarkson described fiber lasers as the "perfect building block" for directed energy systems ? as they are electrically powered, efficient, modular, reliable with their civilian technology backbone. He said, “Power levels for narrow-line width fiber MOPAs (master oscillator power amplifiers) are currently around a few kilowatts. With the development of new rare earth doped fibers, such as those with ytterbium and holmium, fiber lasers have the potential to scale to higher powers.”

He told the conference that even in relatively recent years fiber lasers had not been considered as suitable sources for directed energy systems because their outputs had not been great enough. However as kilowatt developments by the likes of IPG Photonics have led to fiber lasers starting to deliver multi-kilowatt outputs, these sources were creating a stir because of their ease of construction, economy and increasing power conversion efficiency.


Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
Fiber lasers based on Yb-doped silica based around 1μm have seen their powers rocket.
“In the past decade alone, cladding-pumped fiber lasers based on ytterbium-doped silica operating in the 1.0 to 1.1μm wavelength have seen their powers grow from a few watts towards 10kW and beyond, delivering energy intensities well above 5x1012 W/m2.

Such lasers have initially found many applications in materials processing including the fabrication of medical stents and the production of laser-treated turbine blades.

Clarkson acknowledged that there were several problems and power limitations around fiber lasers, especially in relation to scaling up their powers significantly beyond 10kW. “Their typical long and thin design gives the following problems: a high core intensity, which can cause damage, and leads to nonlinear limitations for pulsed applications, and a likely 30kW peak power limitation. Scaling to very high powers with narrow linewidth can be very challenging.”

However, various developers are working on different designs of beam combination to raise the overall power, including techniques such as: incoherent beam combining and spatial beam combining, which can increase power, but not brightness; wavelength beam combining; or coherent beam combining, all of which create significant thermal challenges.


One strategy to boost fiber laser output is tandem pumping.
One strategy to boost fiber laser output is tandem pumping.
An alternative strategy is to use “slightly multimode” fibers or a technique called tandem pumping, in which multiple diode pumps feed into a large core cladding-pumped ytterbium final stage amplifier (brightness convertor), which is a route to 10kW output.

Looking to the future and addressing several questions from conference delegates about the potential for ever higher power fiber lasers, Clarkson concluded, “Further power scaling of ytterbium lasers is likely to be challenging as we approach the fundamental limits of that technology and design. However, 2μm fiber lasers based on thulium and holmium look very promising as they offer further power scaling potential and operation in the ‘eyesafe’ wavelength regime.”

2016年11月5日土曜日

Candida aurisにオリ一ヴオイルを

CDC米疾病対策センター
Candida auris

•Candida auris: Interim Recommendations
•Press release: First cases of Candida auris reported in the United States
•MMWR Report: Investigation of the first seven reported U.S. cases of Candida auris, a globally-emerging invasive fungus

Candida auris is an emerging fungus that presents a serious global health threat. Healthcare facilities in several countries have reported that C. auris has caused severe illness in hospitalized patients. Some strains of Candida auris are resistant to all three major classes of antifungal drugs. This type of multidrug resistance has not been seen before in other species of Candida. Since 2009, C. auris has been found in patients in several countries, including the United States. CDC expects that as scientists continue to look for this fungus, more cases will be reported in the United States.

C. auris is difficult to identify with standard laboratory methods and can be misidentified in labs without specific technology. CDC encourages all U.S. laboratory staff who identify C. auris strains to notify their state or local public health authorities and CDC at candidaauris@cdc.gov. Find answers to frequently asked questions about C. auris on our questions and answers page and in the Candida auris: Interim Recommendations.

米国の患者は13人、4人死亡、死因未定。
日本では、2009年、患者の外耳道の分泌液から世界で初めて分離。
英国、コロンビア、インド、イスラエル、ケニア、クウェート、パキスタン、南アフリカ、韓国、ベネズエラで罹患。

カンジダ菌は、皮膚、口の中、消化管、腟の常在菌。
発症理由として、風邪、疲労、ストレス等、免疫力の低下、ホルモンの変化が挙げられ、腟カンジダは、腟でカンジダ菌が増殖、発症します。
女性の5分の1が経験する女性特有の病気。

カンジダ菌は、真菌の一種だというが、真菌がどういうカビなのか、調ベようとしても、資料が見当たらない。
カンジダ菌の形状を見ても、何処にでもある、極めて抽象的で、掴みどころがないが、餅に着くカビによく似ていると思う。
餅は、生命のない物で、カンジダ菌は、ヒトの死体の腟や口中で繁殖はしない。
免疫力の低下、ホルモンの変化が原因で、腟カンジダを発症すると言われている。
免疫力の低下、ホルモンの変化は、言うなれば、生と言うより、死に向かう生体反応である、が、死そのものではない。
人体が衰弱した時に、カンジダ菌は繁殖すると、考えられている。

人間の口中について考えてみましょう。
歯、舌、唾液が、常時、外界からの異物の侵入を阻止します。
私は、ヒトというものは、実によく出来た神の相似形のようなものだと考えます。
あらゆるものに冒され、あらゆるものを受け入れ、それでもヒトであると強く主張するものであると。
死が訪れるまで、皆揃って健康であると。

要するに、CDC、WHO・・どの機関をとっても、病気の詳しい説明が出来ません。
それは、病気の全てが、アメリカ製で、日本はそれに追随しているだけだからです。
世界の女性にアメリカが押し付けた腟カンジダの撲滅法を教えます。
オリ一ブオイルを腟内と外性器にー日に何度も塗ると、カビの類は、繁殖しません。
油が付着した場所に、力ビは生えません。

Candida auris などと騒ぐのではなく、警告を発して世界を震撼させるのではなく、その対処法を世界の女性に告知し、不安を解消するメッセ一ジを発する事が、CDC、WHO、厚生労働省の任務であってほしいと願っています。

23:32 2016/11/05土

2016年11月4日金曜日

Active Denial System (ADS)11翻訳終わり

Active Denial System (ADS)

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS放射性否認システムは、耐え難い、焦点を絞ったmm波放射性エネルギ一光線を発射する。敵の皮膚に、耐え難い発熱知覚を誘発する。無傷で跳ね返される程に、それを個別に引き起こす。ADS放射性否認システムは、破壊兵器の作動なしで、敵意のある集団を、制止し、思い止まらせ、撃退する。

21:34 2016/10/25火

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.
ADS放射性否認システムは、米空軍研究所(ARL)とDOD統合非破壊兵器局向けに開発された。その計画は、現在、先進的着想科学技術実験教授者の段階にある。それは、2005年の終わりまで継続する予定である。

21:42 2016/10/26水

ADS放射性否認システムは、HMMWVハンヴィー( Humvee:High Mobility Multipurpose Wheeled Vehicle=高機動多用途装輪車両)から操従され、十分な軍事力と共に装備される見込みだ。ADSのその他への適用は、AC-130武装航空機ガンシップの発射台から空挺応用の為に装備される。開発計画は、更に能力を上げこの計画は、2008年終わりまで継続する予定である。

23:09 2016/10/27木

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target. As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.
ADS放射性否認システムは、ひたすら、要求されたタ一ゲットゥだけに影響を及ぼすよう、現場や放射線の方向や適用範囲や目標を、詳細に点検する為に、運転手に権限を与えながら、簡単な制御入力操作装置から動かされる。2007年1月現在、そのシステムは、長期に亘るユ一ザ一評価段階に入り、

21:28 2016/10/28金

米ジョージアムーディ空軍基地で、空軍820番保安部隊(SFG)と共に、現在展開されている。820は、これらのテストを実施する為に選ばれた最初の部隊である。そのシステムは、本拠地防衛線を守って、軍隊を支援する事で、平和維持期間中、検問所や入りロ制御地点や博愛主義の支援や群集四散査定される。

21:28 2016/10/29土

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin.
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a death of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.
820番保安部隊(SFG)からの航空兵士は、現在、ムーディ空軍基地(猥褻、性的虐待目的の日本美保基地、その他各国の米軍基地、ガイナ(米子の事)、ADS放射性否認システムを査定しつつあり、ADSは、皮膚に耐え難い加熱感覚を齎す。放射線を投じる事によって、人間の的を誘い込み、撃退するよう作成された非破壊兵器である。

23:55 2016/10/31月

放射性否認システムは、95ギガへルツの周波数で、高電力マイク口ウ工イヴ放射能放送(伝送)を用いる。その放射は、指向性の平面的配列アンテナによって、タ一ゲットゥに焦点を絞られて向けられる。マイク口ウ工イヴ放射能は、0,5mmの深さまで(人間の皮膚のような)生きた組織を貫き、殆んど数秒以内に耐えられなくなり、被験者は、非難せざるを得ない。

23:39 2016/11/01火

その感覚は、直ぐに特定人物が放射線から外れて動く時か、域いは、放射線が切られる時、止む。放射線は、使われるこの波長や低レべル放射能での放射能の浅い浸透程度では、損傷を引き起こさない。損傷から保護させる警告として、苦痛を誘導するという事は、人間の自然な防御機能を開発する。

22:30 2016/11/02水

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.
人間への影響の専門家は、そこにはADS放射性否認システムと関係したどのような長期健康影響も見受けられないと断定し、600人のヴォランティアと1万人の被曝者より多数を巻き込む調査は、極めて軽い損傷でさえ1%の10分の1以下のチャンスしかないと証明した。

22:00 2016/11/03木

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker tested vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.
LRAD(Long Range Acoustic Device)長距離音響発生装置やADS放射性否認システムは、ジェネラル・ダイナミクス(社名)・ランド(防衛用陸上車両)・システムズに嵌め込まれていると、見られている。軍事行動防御ストライカー装甲車は、ADS放射性否認(RFリアエンジンフロントドライブ 高周波電気信号)システム、非破壊防御部分と一緒に備えてあるものと解釈される。しかし、トゥ口フィ一社製放射性防御システムは、車両向けRPGrocket-propelled grenade(ロケット推進グレネード)防御を備えようとしている。(終わり)

2016年11月3日木曜日

Active Denial System (ADS)10翻訳

Active Denial System (ADS)

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS放射性否認システムは、耐え難い、焦点を絞ったmm波放射性エネルギ一光線を発射する。敵の皮膚に、耐え難い発熱知覚を誘発する。無傷で跳ね返される程に、それを個別に引き起こす。ADS放射性否認システムは、破壊兵器の作動なしで、敵意のある集団を、制止し、思い止まらせ、撃退する。

21:34 2016/10/25火

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.
ADS放射性否認システムは、米空軍研究所(ARL)とDOD統合非破壊兵器局向けに開発された。その計画は、現在、先進的着想科学技術実験教授者の段階にある。それは、2005年の終わりまで継続する予定である。

21:42 2016/10/26水

ADS放射性否認システムは、HMMWVハンヴィー( Humvee:High Mobility Multipurpose Wheeled Vehicle=高機動多用途装輪車両)から操従され、十分な軍事力と共に装備される見込みだ。ADSのその他への適用は、AC-130武装航空機ガンシップの発射台から空挺応用の為に装備される。開発計画は、更に能力を上げこの計画は、2008年終わりまで継続する予定である。

23:09 2016/10/27木

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target. As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.
ADS放射性否認システムは、ひたすら、要求されたタ一ゲットゥだけに影響を及ぼすよう、現場や放射線の方向や適用範囲や目標を、詳細に点検する為に、運転手に権限を与えながら、簡単な制御入力操作装置から動かされる。2007年1月現在、そのシステムは、長期に亘るユ一ザ一評価段階に入り、

21:28 2016/10/28金

米ジョージアムーディ空軍基地で、空軍820番保安部隊(SFG)と共に、現在展開されている。820は、これらのテストを実施する為に選ばれた最初の部隊である。そのシステムは、本拠地防衛線を守って、軍隊を支援する事で、平和維持期間中、検問所や入りロ制御地点や博愛主義の支援や群集四散査定される。

21:28 2016/10/29土

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin.
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a death of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.
820番保安部隊(SFG)からの航空兵士は、現在、ムーディ空軍基地(猥褻、性的虐待目的の日本美保基地、その他各国の米軍基地、ガイナ(米子の事)、ADS放射性否認システムを査定しつつあり、ADSは、皮膚に耐え難い加熱感覚を齎す。放射線を投じる事によって、人間の的を誘い込み、撃退するよう作成された非破壊兵器である。

23:55 2016/10/31月

放射性否認システムは、95ギガへルツの周波数で、高電力マイク口ウ工イヴ放射能放送(伝送)を用いる。その放射は、指向性の平面的配列アンテナによって、タ一ゲットゥに焦点を絞られて向けられる。マイク口ウ工イヴ放射能は、0,5mmの深さまで(人間の皮膚のような)生きた組織を貫き、殆んど数秒以内に耐えられなくなり、被験者は、非難せざるを得ない。

23:39 2016/11/01火

その感覚は、直ぐに特定人物が放射線から外れて動く時か、域いは、放射線が切られる時、止む。放射線は、使われるこの波長や低レべル放射能での放射能の浅い浸透程度では、損傷を引き起こさない。損傷から保護させる警告として、苦痛を誘導するという事は、人間の自然な防御機能を開発する。

22:30 2016/11/02水

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.
人間への影響の専門家は、そこにはADS放射性否認システムと関係したどのような長期健康影響も見受けられないと断定し、600人のヴォランティアと1万人の被曝者より多数を巻き込む調査は、極めて軽い損傷でさえ1%の10分の1以下のチャンスしかないと証明した。

22:00 2016/11/03木

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker testbed vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.

2016年11月2日水曜日

Active Denial System (ADS)9翻訳

Active Denial System (ADS)

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS放射性否認システムは、耐え難い、焦点を絞ったmm波放射性エネルギ一光線を発射する。敵の皮膚に、耐え難い発熱知覚を誘発する。無傷で跳ね返される程に、それを個別に引き起こす。ADS放射性否認システムは、破壊兵器の作動なしで、敵意のある集団を、制止し、思い止まらせ、撃退する。

21:34 2016/10/25火

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.
ADS放射性否認システムは、米空軍研究所(ARL)とDOD統合非破壊兵器局向けに開発された。その計画は、現在、先進的着想科学技術実験教授者の段階にある。それは、2005年の終わりまで継続する予定である。

21:42 2016/10/26水

ADS放射性否認システムは、HMMWVハンヴィー( Humvee:High Mobility Multipurpose Wheeled Vehicle=高機動多用途装輪車両)から操従され、十分な軍事力と共に装備される見込みだ。ADSのその他への適用は、AC-130武装航空機ガンシップの発射台から空挺応用の為に装備される。開発計画は、更に能力を上げこの計画は、2008年終わりまで継続する予定である。

23:09 2016/10/27木

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target. As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.
ADS放射性否認システムは、ひたすら、要求されたタ一ゲットゥだけに影響を及ぼすよう、現場や放射線の方向や適用範囲や目標を、詳細に点検する為に、運転手に権限を与えながら、簡単な制御入力操作装置から動かされる。2007年1月現在、そのシステムは、長期に亘るユ一ザ一評価段階に入り、

21:28 2016/10/28金

米ジョージアムーディ空軍基地で、空軍820番保安部隊(SFG)と共に、現在展開されている。820は、これらのテストを実施する為に選ばれた最初の部隊である。そのシステムは、本拠地防衛線を守って、軍隊を支援する事で、平和維持期間中、検問所や入りロ制御地点や博愛主義の支援や群集四散査定される。

21:28 2016/10/29土

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin.
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a death of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.
820番保安部隊(SFG)からの航空兵士は、現在、ムーディ空軍基地(猥褻、性的虐待目的の日本美保基地、その他各国の米軍基地、ガイナ(米子の事)、ADS放射性否認システムを査定しつつあり、ADSは、皮膚に耐え難い加熱感覚を齎す。放射線を投じる事によって、人間の的を誘い込み、撃退するよう作成された非破壊兵器である。

23:55 2016/10/31月

放射性否認システムは、95ギガへルツの周波数で、高電力マイク口ウ工イヴ放射能放送(伝送)を用いる。その放射は、指向性の平面的配列アンテナによって、タ一ゲットゥに焦点を絞られて向けられる。マイク口ウ工イヴ放射能は、0,5mmの深さまで(人間の皮膚のような)生きた組織を貫き、殆んど数秒以内に耐えられなくなり、被験者は、非難せざるを得ない。

23:39 2016/11/01火

その感覚は、直ぐに特定人物が放射線から外れて動く時か、域いは、放射線が切られる時、止む。放射線は、使われるこの波長や低レべル放射能での放射能の浅い浸透程度では、損傷を引き起こさない。損傷から保護させる警告として、苦痛を誘導するという事は、人間の自然のな防御機能を開発する。

22:30 2016/11/02水

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker testbed vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.

2016年11月1日火曜日

Active Denial System (ADS)8翻訳

Active Denial System (ADS)

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS放射性否認システムは、耐え難い、焦点を絞ったmm波放射性エネルギ一光線を発射する。敵の皮膚に、耐え難い発熱知覚を誘発する。無傷で跳ね返される程に、それを個別に引き起こす。ADS放射性否認システムは、破壊兵器の作動なしで、敵意のある集団を、制止し、思い止まらせ、撃退する。

21:34 2016/10/25火

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.
ADS放射性否認システムは、米空軍研究所(ARL)とDOD統合非破壊兵器局向けに開発された。その計画は、現在、先進的着想科学技術実験教授者の段階にある。それは、2005年の終わりまで継続する予定である。

21:42 2016/10/26水

ADS放射性否認システムは、HMMWVハンヴィー( Humvee:High Mobility Multipurpose Wheeled Vehicle=高機動多用途装輪車両)から操従され、十分な軍事力と共に装備される見込みだ。ADSのその他への適用は、AC-130武装航空機ガンシップの発射台から空挺応用の為に装備される。開発計画は、更に能力を上げこの計画は、2008年終わりまで継続する予定である。

23:09 2016/10/27木

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target. As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.
ADS放射性否認システムは、ひたすら、要求されたタ一ゲットゥだけに影響を及ぼすよう、現場や放射線の方向や適用範囲や目標を、詳細に点検する為に、運転手に権限を与えながら、簡単な制御入力操作装置から動かされる。2007年1月現在、そのシステムは、長期に亘るユ一ザ一評価段階に入り、

21:28 2016/10/28金

米ジョージアムーディ空軍基地で、空軍820番保安部隊(SFG)と共に、現在展開されている。820は、これらのテストを実施する為に選ばれた最初の部隊である。そのシステムは、本拠地防衛線を守って、軍隊を支援する事で、平和維持期間中、検問所や入りロ制御地点や博愛主義の支援や群集四散査定される。

21:28 2016/10/29土

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin.
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a death of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.
820番保安部隊(SFG)からの航空兵士は、現在、ムーディ空軍基地(猥褻、性的虐待目的の日本美保基地、その他各国の米軍基地、ガイナ(米子の事)、ADS放射性否認システムを査定しつつあり、ADSは、皮膚に耐え難い加熱感覚を齎す。放射線を投じる事によって、人間の的を誘い込み、撃退するよう作成された非破壊兵器である。

23:55 2016/10/31月

放射性否認システムは、95ギガへルツの周波数で、高電力マイク口ウ工イヴ放射能放送(伝送)を用いる。その放射は、指向性の平面的配列アンテナによって、タ一ゲットゥに焦点を絞られて向けられる。マイク口ウ工イヴ放射能は、0,5mmの深さまで(人間の皮膚のような)生きた組織を貫き、殆んど数秒以内に耐えられなくなり、被験者は、非難せざるを得ない。

23:39 2016/11/01火

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker testbed vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.

2016年10月31日月曜日

Active Denial System (ADS)7翻訳

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS放射性否認システムは、耐え難い、焦点を絞ったmm波放射性エネルギ一光線を発射する。敵の皮膚に、耐え難い発熱知覚を誘発する。無傷で跳ね返される程に、それを個別に引き起こす。ADS放射性否認システムは、破壊兵器の作動なしで、敵意のある集団を、制止し、思い止まらせ、撃退する。

21:34 2016/10/25火

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.
ADSは、米空軍研究所(ARL)とDOD統合非破壊兵器局向けに開発された。その計画は、現在、先進的着想科学技術実験教授者の段階にある。それは、2005年の終わりまで継続する予定である。

21:42 2016/10/26水

ADSは、HMMWVハンヴィー( Humvee:High Mobility Multipurpose Wheeled Vehicle=高機動多用途装輪車両)から操従され、十分な軍事力と共に装備される見込みだ。ADSのその他への適用は、AC-130武装航空機ガンシップの発射台から空挺応用の為に装備される。開発計画は、更に能力を上げこの計画は、2008年終わりまで継続する予定である。

23:09 2016/10/27木

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target. As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.
ADSは、ひたすら、要求されたタ一ゲットゥだけに影響を及ぼすよう、現場や放射線の方向や適用範囲や目標を、詳細に点検する為に、運転手に権限を与えながら、簡単な制御入力操作装置から動かされる。2007年1月現在、そのシステムは、長期に亘るユ一ザ一評価段階に入り、

21:28 2016/10/28金
米ジョージアムーディ空軍基地で、空軍820番保安部隊(SFG)と共に、現在展開されている。820は、これらのテストを実施する為に選ばれた最初の部隊である。そのシステムは、本拠地防衛線を守って、軍隊を支援する事で、平和維持期間中、検問所や入りロ制御地点や博愛主義の支援や群集四散査定される

21:28 2016/10/29土

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin.
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a death of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.
820番保安部隊(SFG)からの航空兵士は、現在、ムーディ空軍基地(猥褻、性的虐待目的の日本美保基地、その他各国の米軍基地、ガイナ(米子の事)、ADS放射性否認システムを査定しつつあり、ADSは、皮膚に耐え難い加熱感覚を齎す。放射線を投じる事によって、人間の的を誘い込み、撃退するよう作成された非破壊兵器である。

23:55 2016/10/31月

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker testbed vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.

2016年10月30日日曜日

昭和天皇殺害

                     ーWikipediaー
1987年(昭和62年)4月29日、天皇誕生日の祝宴・昼食会中に嘔吐症状で中座する。その後8月下旬以降になると何度も嘔吐を繰り返し、体重が減少する等体調不良が顕著に。検査の結果、十二指腸から小腸の辺りに通過障害が見られ、「腸閉塞」と判明。食物を腸へ通過させるバイパス手術を受ける必要性がある為、9月22日に歴代天皇では初めての開腹手術を受けた。病名は「慢性膵臓炎」と発表された(後述)。同年12月には公務に復帰し、回復したかに見えた。

しかし1988年(昭和63年)に入ると、体重はさらに激減。同年8月15日、全国戦没者追悼式が最後の公式行事出席となった。同年9月8日、那須御用邸から皇居に戻る最中に車内に映し出されたのが最後の公の姿となった。

同年9月18日、大相撲9月場所を観戦予定だったが、高熱が続くため急遽中止に。その翌9月19日夜、突然大量吐血により救急車が出動、緊急輸血を行う。その後も吐血・下血を繰り返し、マスコミ陣はこぞって「昭和天皇重体」と大きく報道され、さらに日本各地では「自粛」の動きが広がった(後述)。

十二指腸乳頭周囲腫瘍(腺癌)のため長く療養していたが1989年(昭和64年)1月7日午前6時33分に崩御(宝算87)。神代を除く歴代の天皇で最も長寿。同日午前7時55分に宮内庁長官・藤森昭一と内閣官房長官・小渕恵三がそれぞれ会見を行い崩御を公表。同年(平成元年)1月31日、今上天皇が、在位中の元号から採り昭和天皇と追号した。2月24日、新宿御苑において大喪の礼が行われ、武蔵野陵に埋葬された。愛用の品100点余りが、副葬品として共に納められたとされる。以上。


十二指腸、膵臓は、後腹膜臓器。
後腹壁の壁側腹膜より後方に位置する臓器。
この部位の臓器に炎症が起こると、腰背部痛が起こり易い。
慢性膵臓炎
分泌器官である膵臓が炎症を起こすだろうか?
食物が胃から膵臓へ直接流入する事はない。
膵臓は分泌器官で、内部は、常に一定で安定している。
例えば、好き嫌いが多い人も何でも食べる人でも、膵臓の中身、即ち膵液は、人間で、生きてさえいれば皆同じで、膵臓は、人が人として在る為に欠かす事の出来ない臓器であり、炎症どころか癌化さえ不可能な臓器である。

23:33 2016/10/30日

2016年10月29日土曜日

Active Denial System (ADS)6翻訳

Active Denial System (ADS)

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS放射性否認システムは、耐え難い、焦点を絞ったmm波放射性エネルギ一光線を発射する。敵の皮膚に、耐え難い発熱知覚を誘発する。無傷で跳ね返される程に、それを個別に引き起こす。ADS放射性否認システムは、破壊兵器の作動なしで、敵意のある集団を、制止し、思い止まらせ、撃退する。

21:34 2016/10/25火

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.
ADSは、米空軍研究所(ARL)とDOD統合非破壊兵器局向けに開発された。その計画は、現在、先進的着想科学技術実験教授者の段階にある。それは、2005年の終わりまで継続する予定である。

21:42 2016/10/26水

ADSは、HMMWVハンヴィー( Humvee:High Mobility Multipurpose Wheeled Vehicle=高機動多用途装輪車両)から操従され、十分な軍事力と共に装備される見込みだ。ADSのその他への適用は、AC-130武装航空機ガンシップの発射台から空挺応用の為に装備される。開発計画は、更に能力を上げこの計画は、2008年終わりまで継続する予定である。

23:09 2016/10/27木

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target. As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.
ADSは、ひたすら、要求されたタ一ゲットゥだけに影響を及ぼすよう、現場や放射線の方向や適用範囲や目標を、詳細に点検する為に、運転手に権限を与えながら、簡単な制御入力操作装置から動かされる。2007年1月現在、そのシステムは、長期に亘るユ一ザ一評価段階に入り、

21:28 2016/10/28金

米ジョージアムーディ空軍基地で、空軍820番保安部隊(SFG)と共に、現在展開されている。820は、これらのテストを実施する為に選ばれた最初の部隊である。そのシステムは、本拠地防衛線を守って、軍隊を支援する事で、平和維持期間中、検問所や入りロ制御地点や博愛主義の支援や群集四散査定される

21:28 2016/10/29土

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin.
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a death of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker testbed vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.

2016年10月28日金曜日

Active Denial System (ADS)5翻訳

Active Denial System (ADS)

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS放射性否認システムは、耐え難い、焦点を絞ったmm波放射性エネルギ一光線を発射する。敵の皮膚に、耐え難い発熱知覚を誘発する。無傷で跳ね返される程に、それを個別に引き起こす。ADS放射性否認システムは、破壊兵器の作動なしで、敵意のある集団を、制止し、思い止まらせ、撃退する。

21:34 2016/10/25火

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.
ADSは、米空軍研究所(ARL)とDOD統合非破壊兵器局向けに開発された。その計画は、現在、先進的着想科学技術実験教授者の段階にある。それは、2005年の終わりまで継続する予定である。

21:42 2016/10/26水

ADSは、HMMWVハンヴィー( Humvee:High Mobility Multipurpose Wheeled Vehicle=高機動多用途装輪車両)から操従され、十分な軍事力と共に装備される見込みだ。ADSのその他への適用は、AC-130武装航空機ガンシップの発射台から空挺応用の為に装備される。開発計画は、更に能力を上げこの計画は、2008年終わりまで継続する予定である。

23:09 2016/10/27木

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target. As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.
ADSは、ひたすら、要求されたタ一ゲットゥだけに影響を及ぼすよう、現場や放射線の方向や適用範囲や目標を、詳細に点検する為に、運転手に権限を与えながら、簡単な制御入力操作装置から動かされる。2007年1月現在、そのシステムは、長期に亘るユ一ザ一を評価段階に入った。

21:28 2016/10/28金

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin. (U.S. Air Force photo/Airman 1st Class Gina Chiaverotti)
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a depth of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker testbed vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.

2016年10月27日木曜日

Active Denial System (ADS)4翻訳

Active Denial System (ADS)

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS放射性否認システムは、耐え難い、焦点を絞ったmm波放射性エネルギ一光線を発射する。敵の皮膚に、耐え難い発熱知覚を誘発する。無傷で跳ね返される程に、それを個別に引き起こす。ADS放射性否認システムは、破壊兵器の作動なしで、敵意のある集団を、制止し、思い止まらせ、撃退する。

21:34 2016/10/25火

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.
ADSは、米空軍研究所(ARL)とDOD統合非破壊兵器局向けに開発された。その計画は、現在、先進的着想科学技術実験教授者の段階にある。それは、2005年の終わりまで継続する予定である。

21:42 2016/10/26水

ADSは、HMMWVハンヴィー( Humvee:High Mobility Multipurpose Wheeled Vehicle=高機動多用途装輪車両)から操従され、十分な軍事力と共に装備される見込みだ。ADSのその他への適用は、AC-130武装航空機ガンシップの発射台から空挺応用の為に装備される。開発計画は、更に能力を上げこの計画は、2008年終わりまで継続する予定である。

23:09 2016/10/27木

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target. As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin. (U.S. Air Force photo/Airman 1st Class Gina Chiaverotti)
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a depth of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker testbed vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.

2016年10月26日水曜日

Active Denial System (ADS)3翻訳

Active Denial System (ADS)

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS放射性否認システムは、耐え難い、焦点を絞ったmm波放射性エネルギ一光線を発射する。敵の皮膚に、耐え難い発熱知覚を誘発する。無傷で跳ね返される程に、それを個別に引き起こす。ADS放射性否認システムは、破壊兵器の作動なしで、敵意のある集団を、制止し、思い止まらせ、撃退する。

21:34 2016/10/25火

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.
ADSは、米空軍研究所(ARL)とDOD統合非破壊兵器局向けに開発された。その計画は、現在、先進的着想科学技術実験教授者の段階にある。それは、2005年の終わりまで継続する予定である。

21:42 2016/10/26水

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target (Photo: Defense Update)As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin. (U.S. Air Force photo/Airman 1st Class Gina Chiaverotti)
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a depth of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker testbed vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.

2016年10月25日火曜日

Active Denial System (ADS)2翻訳

Active Denial System (ADS)

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS放射性否認システムは、耐え難い、焦点を絞ったmm波放射性エネルギ一光線を発射する。敵の皮膚に、耐え難い発熱知覚を誘発する。無傷で跳ね返される程に、それを個別に引き起こす。ADS放射性否認システムは、破壊兵器の作動なしで、敵意のある集団を、制止し、思い止まらせ、撃対する。

21:34 2016/10/25火

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target (Photo: Defense Update)As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin. (U.S. Air Force photo/Airman 1st Class Gina Chiaverotti)
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a depth of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker testbed vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.

2016年10月24日月曜日

Active Denial System (ADS)1翻訳

Active Denial System (ADS)

The ADS system was displayed by Raytheon at the AUSA Convention in October, 2006 (Photo: Defense Update)The Active Denial System (ADS) developed by Raytheon for the US Air Force Research Labs is a non lethal, counter-personnel directed energy non-lethal weapon which can be used against human targets at distances beyond the effective range of small arms. ADS projects a focused millimeter wave energy beam which induces intolerable heating sensation on an adversary's skin and cause that individual to be repelled without injury. ADS could be used to stop, deter and repel hostile elements without applying of lethal force.
ADSシステムは、2006年10月、AUSAでレイセオンによって展示され、米空軍研究所向けにレイセオンによって開発された放射性否認システム(ADS)は、非破壊的であり、小型兵器の実践用射程に及ばない距離で、人間タ一ゲットゥに対して使われ、控えの隊員は、非破壊兵器による活動を統率する。

22:29 2016/10/24月

ADS was developed by Raytheon company for the US Air Force Research Laboratory (ARL) and DOD Joint Non-Lethal Weapons Directorate. The program is currently in Advanced Concept Technology Demonstrator (ACTD) phase, which is scheduled to continue through the end of 2005. ADS will be operated from HMMWV, equipped with adequate power sources. Another application of ADS is considered for airborne applications, from platforms such as the AC-130 gunship. The development program will use more powerful and lightweight version of the land based system. This project is scheduled to continue through 2008.

ADS is operated from a simple control console, enabling the operator to view the scene and beam's direction and coverage and aim precisely to acffect only the required target (Photo: Defense Update)As of January 2007, the system has entered extended user evaluation phase, and is currently deployed with the Air Force's 820th Security Forces Group (SFG) at Moody air force base in Georgia, USA. 820 is the first unit selected to conduct these tests. The system will be evaluated in assisting troops in securing base perimeters, checkpoints and entry control points during peacekeeping and humanitarian assistance, and crowd dispersal.

Airmen from the 820th Security Forces Group are currently evaluating the Active Denial System at Moody Air Force Base, Ga. ADS is a nonlethal weapon designed to engage and repel human targets by projecting a beam of energy that creates an intolerable heating sensation on the skin. (U.S. Air Force photo/Airman 1st Class Gina Chiaverotti)
ADS uses high power microwave energy transmission, at a frequency of 95GHz. The emission is focused and directed at the target by a directional planar array antenna. The microwave energy penetrates a living tissue (such as human skin) to a depth of 0.5 millimeter and almost instantly produces a heating sensation that within seconds becomes intolerable and forces the subject to flee. The sensation immediately ceases when the individual moves out of the beam or when the beam is turned off. Despite the sensation, the beam does not cause injury because of the shallow penetration depth of energy at this wavelength and the low energy levels used. It exploits the human natural defense mechanism that induces pain as a warning to help protect from injury.

Human effects experts have determined there are no long-term health effects associated with ADS, and research involving more than 600 volunteers and 10,000 exposures has proven there is a less than a one tenth of 1 percent chance of even a very minor injury.

LRAD and ADS systems are seen mounted on a the General Dynamics Land Systems' force protection Stryker testbed vehicle called "SHERIFF". LRAD is considered to provide, together with the active denial (RF Microwave) system, a non lethal protection segment, while the Trophy active protection system will provide the RPG protection for the vehicle.