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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >A study of correction method to the pincushion distortion based on dual galvanometer LiDAR scanning system
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A study of correction method to the pincushion distortion based on dual galvanometer LiDAR scanning system

机译:基于双流动计LIDAR扫描系统的枕形畸变校正方法研究

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摘要

We demonstrate a pincushion distortion correction algorithm and analyzes the reason of the pincushion distortion caused by scanning system deeply via the geometric method and vector method respectively, in allusion to the dual galvanometer LiDAR scanning system. Furthermore, the scanning trajectory simulation results and experimental phenomenon are coincident. Aiming at the pincushion distortion, the simulation results of the intermediate process was given through deducing the relationships of the scanning track and galvanometer deflection Angle, and between the deflection angle and galvanometer control. Finally, the correction formula of double galvanometer control voltage was concluded. The scanning trace was rectified by controlling the correction model of voltage and the simulation result proves the validity of the pincushion distortion correction algorithm. By comparing the scanning trace before with after corrected, the simulation results of the correction quantity are given and the pincushion distortion is corrected completely.
机译:我们展示了一种枕形失真校正算法,并分别通过几何方法和载体方法扫描系统扫描系统引起的枕腔失真的原因,以暗示到双流计激光扫描系统。此外,扫描轨迹仿真结果和实验现象是一致的。瞄准枕腔失真,通过推导扫描轨道和电流计偏转角的关系,以及偏转角和电流计控制之间的关系,给出了中间过程的仿真结果。最后,结束了双电流计控制电压的校正公式。通过控制电压的校正模型来整流扫描迹线,并且仿真结果证明了枕腔失真校正算法的有效性。通过比较校正之后的扫描迹线,给出了校正量的仿真结果,并完全校正枕腔失真。

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