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LIDAR system with electromagnetic two-axis scanning micromirror based on indirect time-of-flight method

机译:基于间接飞行时间方法的带电磁两轴扫描微镜的激光雷达系统

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This paper presents a light detection and ranging (LIDAR) system using electromagnetically actuated two-axis scanning micromirror. The distance measurement with the LIDAR is based on the indirect time-of-flight method using the relative ratio of the accumulated charges in capacitors connected to photodiode pixels, which is determined by the time difference between the transmitted and reflected light pulse. The micromirror has double gimbaled structure for two-axis actuation and circular reflection plate with the diameter of 3?mm. The horizontal scan angle of 49.13° was obtained by the resonant actuation at 28?kHz, and the vertical scan of 29.23° was achieved by the sinusoidal forced actuation at 60?Hz. The distance to multiple targets could be measured at once by laser scanning using the micromirror, and the distance profile LIDAR image was constructed by the measurement results.
机译:本文提出了一种使用电磁驱动的两轴扫描微镜的光检测和测距(LIDAR)系统。 LIDAR的距离测量基于间接飞行时间方法,该方法使用连接到光电二极管像素的电容器中累积电荷的相对比率,该比率由发射和反射光脉冲之间的时间差确定。微镜具有双万向节结构,用于两轴驱动和直径为3?mm的圆形反射板。通过在28?kHz的共振驱动获得49.13°的水平扫描角,通过在60?Hz的正弦强制驱动获得29.23°的垂直扫描角。可以使用微镜通过激光扫描一次测量到多个目标的距离,并根据测量结果构建距离轮廓激光雷达图像。

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