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The Study of Laser-Beam Riding Guided System Based on 980 nm Diode Laser

机译:基于980nm二极管激光器的激光束骑行引导系统研究

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With the development of science and technology, precision-strike weapons has been considered to be important for winning victory in military field. Laser guidance is a major method to execute precision-strike in modern warfare. At present, the problems of primary stage of Laser guidance has been solved with endeavors of countries. Several technical aspects of laser-beam riding guided system have been mature, such as atmosphere penetration of laser beam, clutter inhibition on ground, laser irradiator, encoding and decoding of laser beam. Further, laser beam quality, equal output power and atmospheric transmission properties are qualified for warfare situation. Riding guidance instrument is a crucial element of Laser-beam riding guided system, and is also a vital element of airborne, vehicle-mounted and individual weapon. The optical system mainly consist of sighting module and laser-beam guided module. Photoelectric detector is the most important sensing device of seeker, and also the key to acquire the coordinate information of target space. Currently, in consideration of the 1.06 u m of wavelength applied in all the semi-active laser guided weapons systems, lithium drifting silicon photodiode which is sensitive to 1.06 u m of wavelength is used in photoelectric detector. Compared to Solid and gas laser, diode laser has many merits such as small volume, simple construction, light weight, long life, low lost and easy modulation. This article introduced the composition and operating principle of Laser-beam riding guided system based on 980 nm diode laser, and made a analysis of key technology; for instance, laser irradiator, modulating disk of component, laser zooming system. Through the use of laser diode, Laser-beam riding guided system is likely to have smaller shape and very light.
机译:随着科学技术的发展,精密罢工武器被认为是在军事领域赢得胜利的重要性。激光指导是在现代战争中执行精密罢工的主要方法。目前,随着国家的努力解决了激光指导的主要阶段问题。激光束骑行引导系统的若干技术方面已经成熟,例如激光束的大气渗透,在地面,激光辐射器,激光束的编码和解码上的杂波抑制。此外,激光束质量,等输出功率和大气传输属性有资格进行战争情况。骑行引导仪是激光束骑行引导系统的关键因素,也是空降,车载和个别武器的重要因素。光学系统主要由瞄准模块和激光束引导模块组成。光电探测器是寻求者最重要的传感装置,也是获取目标空间坐标信息的关键。目前,考虑到在所有半主动激光引导武器系统中施加的波长的1.06 U m,在光电检测器中使用敏感的波长敏感的硅光电二极管。与固体和气体激光相比,二极管激光器具有许多优点,如体积小,施工简单,重量轻,寿命长,损失低,调制方便。本文介绍了基于980nm二极管激光的激光束骑行引导系统的组成和运行原理,并进行了关键技术的分析;例如,激光辐照器,调制盘的组件,激光变焦系统。通过使用激光二极管,激光束骑行引导系统可能具有较小的形状和非常光线。

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