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Eye-safe diode laser Doppler lidar with a MEMS beam-scanner

机译:具有mEms光束扫描仪的人眼安全二极管激光多普勒激光雷达

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摘要

We present a novel Doppler lidar that employs a cw diode laser operating at 1.5 μm and a micro-electro-mechanical-system scanning mirror (MEMS-SM). In this work, two functionalities of the lidar system are demonstrated. Firstly, we describe the capability to effectively steer the lidar probe beam to multiple optical transceivers along separate lines-ofsight. The beam steering functionality is demonstrated using four lines-ofsight – each at an angle of 18° with respect to their symmetry axis. Secondly, we demonstrate the ability to spatially dither the beam focus to reduce the mean irradiance at the probing distance (R = 60 m) of each lineof-sight – relevant for meeting eye-safety requirements. The switching time of the MEMS-SM is measured to be in the order of a few milliseconds. Time-shared (0.25 s per line-of-sight) radial wind speed measurements at 50 Hz data rate are experimentally demonstrated. Spatial dithering of the beam focus is also implemented using a spiral scan trajectory resulting in a 16 dB reduction of beam focus mean irradiance.
机译:我们提出了一种新颖的多普勒激光雷达,该激光雷达采用工作在1.5μm的连续波二极管激光器和微机电系统扫描镜(MEMS-SM)。在这项工作中,演示了激光雷达系统的两个功能。首先,我们描述了将激光雷达探测光束有效地沿分开的视线引向多个光学收发器的能力。使用四条视线演示了光束转向功能,每条视线相对于其对称轴成18°角。其次,我们展示了在空间上抖动光束焦点以减少每条视线的探测距离(R = 60 m)处的平均辐照度的能力-与满足眼睛安全要求有关。测得的MEMS-SM的切换时间约为几毫秒。实验证明了以50 Hz数据速率分时(每条视线0.25 s)径向风速测量。束焦点的空间抖动也使用螺旋扫描轨迹来实现,从而使束焦点平均辐照度降低16 dB。

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