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电磁武器
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  electromagnetic weapon
     Analysis of technical performance and combat-effectiveness of high power electromagnetic weapon
     高能电磁武器的性能与威胁
短句来源
     The sort of high power electromagnetic weapon is introduced and the technical performance characters, the antipersonnel and the destructive principle are analyzed by mathematic software. The serious menace produced by high power electromagnetic weapon for C~4I is introduced.
     介绍了高能电磁武器的分类,对高能电磁武器的技术性能和特点进行了理论分析,运用数学软件对其杀伤原理和破坏原理进行了分析,介绍了高能电磁武器对C4I系统的严重威胁。
短句来源
     With the development of electromagnetic weapon, electromagnetism pulse and its protection technology become a focus problem interested by every big country.
     随着电磁武器的发展,电磁脉冲及其防护技术再次成为关注的焦点。
短句来源
  “电磁武器”译为未确定词的双语例句
     Electro-magnetic and Microwave Weapons Come of Age
     电磁武器与微波武器的发展
短句来源
     Super-capacitor has large capacitance and high energy density as a new-type of energy storage element, which has great potential for applications on electric vehicles, UPS and electromagnetism arms.
     超级电容器具有超大容量和高储能密度,作为一种新型储能元件,在电动车、电磁武器和不间断电源等方面的应用具有很大的潜力。
短句来源
     Abstract: This paper analyzes the electromagnetic environment produced from high power electromagneticweapons in modern war.
     摘 要:本文综述了与电磁武器有关的高功率微波(HPM)、超宽带(UWB)、核电磁脉冲(HEMP)等高功率电磁辐射的主要参数及其传播规律;
短句来源
     The effects of the UWBweapon on protective engineering is analyzed briefly.
     对超宽带短脉冲电磁学的形成作了初步探讨,最后概略分析了超宽带电磁武器对防护工程的影响。
短句来源
  相似匹配句对
     Electromagnetic weapons
     电磁动能武器简介
短句来源
     Analysis of technical performance and combat-effectiveness of high power electromagnetic weapon
     高能电磁武器的性能与威胁
短句来源
     Electro-Magnetic Metallurgy
     电磁冶金
短句来源
     Magnetic stirrer
     电磁搅拌器
短句来源
     Analysis of Future Weapon
     解读未来武器
短句来源
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Abstract: This paper analyzes the electromagnetic environment produced from high power electromagneticweapons in modern war. The main parameters and propagation for HPM, UWB, HEMP, FREMP are discussed andthe developing process of ultra-wideband short-pulse electromagnetics are mentioned here. The effects of the UWBweapon on protective engineering is analyzed briefly.

摘 要:本文综述了与电磁武器有关的高功率微波(HPM)、超宽带(UWB)、核电磁脉冲(HEMP)等高功率电磁辐射的主要参数及其传播规律;快上升沿电磁脉冲(FREMP)的主要参数及其传播规律与国外相关标准。对超宽带短脉冲电磁学的形成作了初步探讨,最后概略分析了超宽带电磁武器对防护工程的影响。

The sort of high power electromagnetic weapon is introduced and the technical performance characters, the antipersonnel and the destructive principle are analyzed by mathematic software. The serious menace produced by high power electromagnetic weapon for C~4I is introduced.

 介绍了高能电磁武器的分类,对高能电磁武器的技术性能和特点进行了理论分析,运用数学软件对其杀伤原理和破坏原理进行了分析,介绍了高能电磁武器对C4I系统的严重威胁。

With the development of electromagnetic weapon, electromagnetism pulse and its protection technology become a focus problem interested by every big country. This paper introduces the standard electric field wave of EMP simulator briefly, simply presents the composition of the pulse source and its basic principle, and discusses the designs including the adjustable high voltage DC source, the gas spark gap and its trigger circuit, as well as the pulse resistance divider. Simulation results show that response time...

With the development of electromagnetic weapon, electromagnetism pulse and its protection technology become a focus problem interested by every big country. This paper introduces the standard electric field wave of EMP simulator briefly, simply presents the composition of the pulse source and its basic principle, and discusses the designs including the adjustable high voltage DC source, the gas spark gap and its trigger circuit, as well as the pulse resistance divider. Simulation results show that response time and the rising time of the resistance divider are both reduced more than 3 ns. The experiment result indicates that this divider can meet the requirement of rising time more than 1 ns. The double exponent wave produced by this pulse source fulfils the design, with its peak voltage higher than 26 kV, rising time less than 2.8 ns, and dropping time about 55 ns.

随着电磁武器的发展,电磁脉冲及其防护技术再次成为关注的焦点。简要介绍了核电磁脉冲模拟器的标准电场波形和脉冲源的组成及其基本原理,论述了脉冲分压器的设计。分析显示,所研制的新型电阻分压器可以减少响应时间和上升时间3ns以上。实验结果表明,该分压器可以用于上升时间为1ns以上脉冲的测量。研制的脉冲源的输出脉冲满足设计要求,峰值电压高于26kV,上升时间小于2.8ns,下降时间约55ns。

 
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