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New Optical Receiving System Design for Portable Camera Lidar

机译:便携式相机激光雷达的新型光接收系统设计

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For its better spectral response characterization, higher quantum efficiency and signal-to-noise ratio, camera is more and more used in atmospheric parameters measurement lidar. Camera lidars retrieval atmospheric parameters by analyzing the light column images acquired by the cameras and objectives through gathering the backscatter light of the laser beam. Lidars of this kind usually have higher spatial resolution and better real time performance. However, because of its limited depth of field (DOF), the measurement accuracy of the area out of the DOF is influenced by optical defocus in different degree. In the meantime, it is also not suitable for portable equipments for using small relative aperture receiving objective. Based on improving the design of the receiving objective, a new design scheme is proposed in this paper about improving the optical receiving system of the camera lidar. This scheme can improve the measurement accuracy of the area out of the DOF in traditional structure by using large DOF, large relative aperture off-axis objective and the special using mode of the camera. The optical receiving system designed according to this scheme is more compact and is especially suitable for portable instrument. Furthermore, the relation among the focus length, the distance between laser and objective and the installation angle is also analyzed in this paper. The formula is given at the same time. This scheme is carried out in camera lidar system in laboratory and the results are satisfactory.
机译:由于其更好的光谱响应特性,更高的量子效率和信噪比,相机越来越多地用于大气参数测量激光雷达。相机激光雷达通过收集由相机和物镜采集的光柱图像并收集激光束的反向散射光来检索大气参数。这种激光雷达通常具有更高的空间分辨率和更好的实时性能。但是,由于其有限的景深(DOF),DOF之外的区域的测量精度会受到光学散焦的不同程度的影响。同时,它也不适合用于使用较小的相对孔径接收物镜的便携式设备。在改进接收物镜设计的基础上,提出了一种改进相机激光雷达光接收系统的新设计方案。该方案通过使用大自由度,大相对孔径偏轴物镜和相机的特殊使用方式,可以提高传统结构中自由度以外区域的测量精度。根据该方案设计的光接收系统更加紧凑,并且特别适合于便携式仪器。此外,还分析了焦距,激光与物镜之间的距离与安装角度之间的关系。该公式是同时给出的。该方案在实验室的激光雷达系统中进行,效果令人满意。

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