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作 者:李锦英[1,2] 陈科[1,2] 彭起[1,2] 王中科[1,2] 安涛[1,2] 马浩统[1,2] 向春生[1,2] LI Jin-ying;CHEN Ke;PENG Qi;WANG Zhong-ke;AN Tao;MA Hao-tong;XIANG Chun-sheng(Institute of Optics and Electronics Chinese Academy of Sciences,Chengdu 610209,China;Key Laboratory of Optical Engineering,Chinese Academy of Sciences,Chengdu 610209,China)
机构地区:[1]中国科学院光电技术研究所,成都610209 [2]中国科学院光束控制重点实验室,成都610209
出 处:《光电技术应用》2020年第2期44-48,共5页Electro-Optic Technology Application
基 金:中国科学院青年创新促进会(2019367);中科院“西部之光”人才培养计划支持。
摘 要:大范围、快速、高精度扫描是光电探测、激光雷达、红外对抗等领域的一项关键技术,目前传统的扫描方式很难兼顾这些指标。首先分析了旋转双棱镜用于大范围、快速、高精度扫描的优势;其次介绍了前向扫描和反向扫描的原理和方法,并重点对反向扫描的不同算法(一阶近似法和矢量光学法)进行了分析;最后建立了旋转双棱镜快速扫描仿真系统,对两种反向扫描方式的有效性和精度进行了验证,结果显示,在±1.5°扫描范围内,一阶近似方法精度约20″,而矢量光学方法约1″。文中为大范围快速高精度扫描领域提供了新的技术途径。Wide-range, fast, and high-precision scanning is a key technology in the fields of electro-optical detection, laser radar and infrared countermeasures. It is difficult to balance these indicators with traditional scanning methods. Firstly, the advantages of rotational double prisms for wide-range, fast and high-precision scanning are analyzed. Secondly, the principle and method of forward and reverse scanning are introduced, and different algorithms of reverse scanning such as first-order approximation method and vector optical method are analyzed. Finally, the rotational double prisms fast scanning simulation system is established. The validity and accuracy of the two reverse scanning methods are verified and tested. The results show that, in the scanning range of ±1.5°, the accuracy of the first order approximation is about 20 ", and the vector optical method is about 1". A new technical approach is provided for wide-range, fast and high precision scanning applications.
分 类 号:TN215[电子电信—物理电子学]
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