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The vulnerability of laser warning systems against guided weapons based on low power lasers

机译:基于低功率激光器的激光预警系统对导弹武器的脆弱性

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摘要

Laser assisted weapons, such as laser guided bombs, laser guided missiles and laser beam-riding missiles pose a significant threat to military assets in the modern battlefield. Laser beam-riding missiles are particularly hard to detect because they use low power lasers. Most laser warning systems produced so far can not detect laser beam-riding missiles because of their weak emissions which have signals less than 1% of laser range finder power . They are even harder to defeat because current counter-measures are not designed to work against this threat. The aim of this project is to examine the vulnerability of laser warning systems against guided weapons, to build an evaluation tool for laser warning sensors (LWS) and seekers, and try to find suitable counter-measures for laser beam-riding missiles that use low power lasers in their guidance systems. The project comes about because of the unexpected results obtained from extensive field trials carried out on various LWRs in the United Arab Emirates desert, where severe weather conditions may be experienced. The objective was to help find a solution for these systems to do their job in protecting the tanks and armoured vehicles crews from such a threat. In order to approach the subject, a computer model has been developed to enable the assessment of all phases of a laser warning receiver and missile seeker. MATLAB & SIMULINK software have been used to build the model. During this process experimentation and field trials have been carried out to verify the reliability of the model. This project will enable both the evaluation and design of any generic laser warning receiver or missile seeker and specific systems if various parameters are known. Moreover, this model will be used as a guide to the development of reliable countermeasures for laser beam-riding missiles.
机译:激光辅助武器,例如激光制导炸弹,激光制导导弹和激光束骑乘导弹,对现代战场上的军事资产构成了重大威胁。激光束骑乘导弹由于使用低功率激光而特别难以检测。到目前为止,大多数生产的激光预警系统都无法探测到激光束骑乘导弹,因为它们的发射微弱,其信号不到激光测距仪功率的1%。他们甚至更难被击败,因为当前的反措施并非旨在抵抗这种威胁。该项目的目的是检查激光预警系统对制导武器的脆弱性,为激光预警传感器和搜寻器建立评估工具,并尝试为使用低射程激光束的导弹找到合适的对策。引导系统中的功率激光器。该项目之所以出现,是因为在阿拉伯联合酋长国沙漠的各种轻水堆上进行的广泛现场试验获得了出乎意料的结果,在阿拉伯联合酋长国的沙漠中可能遇到恶劣的天气条件。目的是帮助找到一种解决方案,以使这些系统在保护坦克和装甲车乘员免受此类威胁的情况下发挥作用。为了接近该主题,已经开发了一种计算机模型,以能够评估激光警告接收器和导弹搜寻器的所有阶段。 MATLAB&SIMULINK软件已用于构建模型。在此过程中,进行了实验和现场试验以验证模型的可靠性。如果已知各种参数,该项目将能够对任何通用激光警告接收器或导弹导引头以及特定系统进行评估和设计。此外,该模型将被用作指导发展激光对骑导弹的可靠对策的指南。

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