Laser circular-viewing azimuth measurement based on detector spot position

Qingfeng Kong, Zhen Sun, Jie Ma, Zuntian Chen, Yanzheng Fan, Pengfei Hu
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Abstract

Laser fuze usually adopt an active detection method, which emits laser pulses to the target through the transmitting system. After scattering by the target, the receiving system obtains the return laser signal. By calculating the time delay between the transmitting pulse and the receiving pulse, the target distance can be calculated. Traditional circular-viewing laser fuze typically use four zones for 360 degree detection, with a detection field angle accuracy of only 90 degrees. In order to achieve accurate measurement of target azimuth angle by laser fuze, this paper proposes a method based on the position of laser spot on a photodetector to calculate the target azimuth angle. The effects of proposed method are analyzed by simulation experiment. The results demonstrate that this method can accurately detect the target azimuth angle.
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基于探测器光斑位置的激光环视方位角测量
激光引信通常采用主动探测方式,通过发射系统向目标发射激光脉冲。经过目标散射后,接收系统获得返回的激光信号。通过计算发射脉冲和接收脉冲之间的时间延迟,可以计算出目标距离。传统的圆视角激光引信通常使用四个区域进行 360 度探测,探测场角精度仅为 90 度。为了实现激光引信对目标方位角的精确测量,本文提出了一种基于激光光斑在光电探测器上的位置来计算目标方位角的方法。本文通过模拟实验分析了所提方法的效果。结果表明,这种方法可以准确探测目标方位角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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