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Study of Application and Key Technology of the High-energy Laser weapon in Optoelectronic Countermeasure

机译:高能激光武器在光电对抗中的应用及关键技术研究

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High-energy Laser weapon is a new-style which is developing rapidly nowadays. It is a one kind of direction energy weapon which can destroy the targets or make them invalid. High-energy Laser weapon has many merits such as concentrated energy, fast transmission, long operating range, satisfied precision, fast shift fire, anti-electromagnetic interference, reusability, cost-effectiveness. High-energy Laser weapon has huge potential for modern warfare since its laser beam launch attack to the target by the speed of light. High-energy Laser weapon can be deployed by multiple methods such as skyborne, carrier borne, vehicle-mounted, foundation, space platform. Besides the connection with command and control system, High-energy Laser weapon is consist of high-energy laser and beam steering. Beam steering is comprised of Large diameter launch system and Precision targeting systems. Meanwhile, beam steering includes the distance measurement of target location, detection system of television and infrared sensor, adaptive optical system of Laser atmospheric distortion correction. The development of laser technology is very fast in recent years. A variety of laser sources have been regarded as the key component in many optoelectronic devices. For directed energy weapon, the progress of laser technology has greatly improved the tactical effectiveness, such as increasing the range and strike precision. At the same time, the modern solid-state laser has become the ideal optical source for optical countermeasure, because it has high photoelectric conversion efficiency and small volume or weight. However, the total performance is limited by the mutual cooperation between different subsystems. The optical countermeasure is a complex technique after many years development. The key factor to evaluate the laser weapon can be formulated as laser energy density to target. This article elaborated the laser device technology of optoelectrionic countermeasure and Photoelectric tracking technology. Also the allocation of optoelectrionic countermeasure was discussed in this article. At last, this article prospected the future development of high-energy laser.
机译:高能激光武器是当今发展迅速的一种新型武器。它是一种方向能量武器,可以摧毁目标或使其失效。高能激光武器具有能量集中,传输速度快,工作范围长,精度高,射速快,抗电磁干扰,可重复使用,成本效益高等优点。高能激光武器由于其激光束以光速向目标发动攻击,因此具有进行现代战争的巨大潜力。高能量激光武器可以通过多种方法进行部署,例如空中,舰载,车载,地基,太空平台。除与指挥控制系统连接外,高能激光武器还包括高能激光和光束转向。光束转向由大直径发射系统和精确瞄准系统组成。同时,光束转向包括目标位置的距离测量,电视和红外传感器的检测系统,激光大气畸变校正的自适应光学系统。近年来,激光技术的发展非常迅速。多种激光源已被视为许多光电设备中的关键组件。对于定向能武器,激光技术的进步极大地提高了战术效力,例如增加了射程和打击精度。同时,由于具有高的光电转换效率和小的体积或重量,现代的固态激光器已经成为光学对策的理想光源。但是,总性能受到不同子系统之间相互协作的限制。经过多年的发展,光学对策是一项复杂的技术。评估激光武器的关键因素可以表述为目标的激光能量密度。本文阐述了光电对策和光电跟踪技术的激光器件技术。本文还讨论了光电对策的分配。最后,本文展望了高能激光器的未来发展。

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