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为了实现近场可见光波段、多路不同波长激光合束中位置误差监测,设计了一种光斑位置监测装置,该装置以缩束系统为基础对同指向激光束位置进行自动监测,在激光合束系统中与快速反射镜相配合,能有效提高合束系统的精度和合束效率。首先对监测装置光学系统进行了设计和仿真分析,使其实现缩束功能的同时减小色差对监测精度的影响。接着,根据设计要求选择了合适的光电探测器。然后,设计了镜筒并对装置的箱体进行有限元优化设计以减轻质量并防止产生共振,使其可以在复杂的环境中工作。最后,根据光斑的特性选择了合适的光斑中心定位算法。实验检测结果表明:缩束倍数达到了15.6倍,监测精度达到了0.1 mm。系统基本上可以使所有激光束成像在CCD上,且光斑能在CCD上成完全像,稳定性较好,精度高,满足使用要求。 相似文献
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To accurately launch laser, a fast-steering mirror (FSM) with flexure hinge is designed. First, actuators, angle sensors and flexure hinge were designed or selected respectively according to requirements of vehicle track-launch system. Then, the servo control system with two closed loops was projected after fine manufacturing and assembling. Finally, the pointing precisions of FSM on the static and vibrancy platforms were tested. The results show that the designed FSM with pointing error range on the static platform is less than 0.9″, and less than 44.5″ on the vibrancy shaker, which can meet the requirements of vehicle track-launch system application. 相似文献
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