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建立了中继镜系统模型,并进行了一定的近似,存某地区特定大气条件下,利用激光大气传输四维程序及相关程序模块,分别计算了固体激光中继镜系统和常规地基高能激光系统对1 km高度,1 km/s飞行速度目标的作用效果。根据中继镜系统对目标可作用时间长的特点,选取常规激光系统和中继镜系统的破坏阈值分别为3 cm桶中功率28.27 kW和5.655 kW,分析得出常规高能激光系统可作用目标的最大水平距离为4.6 km,中继镜系统可作用目标的最大水平距离为11.3 km。与常规高能激光系统相比,中继镜系统降低了大气对激光的影响,拓宽了激光系统的作用范围。
The relativistic mirror system model is established and some approximations are made. Under certain atmospheric conditions in a certain area, the four-dimensional laser transmission program and the related program modules are used to calculate the relationship between the solid-state laser relay mirror system and the conventional ground-based high-energy laser system 1 km altitude, 1 km / s speed effect of the target effect. According to the characteristics that the relay mirror system can work for a long time, the damage thresholds of the conventional laser system and the relay mirror system are respectively 28.27 kW and 5.655 kW in 3 cm barrel. The analysis shows that the target of the conventional high-energy laser system The maximum horizontal distance is 4.6 km and the maximum horizontal distance that the relay mirror system can function is 11.3 km. Compared with the conventional high-energy laser system, the relay lens system reduces the impact of the atmosphere on the laser and broaden the scope of the laser system.