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Calibration and Calculation of Polarization Lidar

机译:偏振激光雷达的校准和计算

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Although polarization lidar technology has been widely used to detect depolarized particles, many difficulties still exist in measuring accurate values for the depolarization ratio. This ratio is basically related to the difference between the optical and the electronic gain of the lidar's channels, the polarization purity of the laser pulse, and the error in the alignment between the laser's polarization plane and the polarizer. We propose here an algorithm for the calibration and calculation of polarization lidars. Numerical simulations showed that the depolarization ratio profile retrieved from the proposed algorithm agrees well with the simulated profile. The proposed algorithm no longer requires the laser source to be linearly polarized. Instead, the light polarization can be elliptical or random. During the installation process, the polarization of the detector is no longer required to be parallel or perpendicular to the polarization direction of the laser source and can be done in any direction.
机译:尽管偏振激光雷达技术已被广泛用于检测去极化的颗粒,但是在测量去极化比的准确值时仍然存在许多困难。该比率基本上与LIDAR通道的光学和电子增益之间的差异,激光脉冲的偏振纯度以及激光偏振平面与偏振器之间的对准中的误差之间的差异相关。我们在此提出了一种校准和计算偏振闪光灯的算法。数值模拟表明,从所提出的算法中检索的去极化比例与模拟轮廓很好地吻合。所提出的算法不再需要激光源是线性偏振的。相反,光极化可以是椭圆形或随机的。在安装过程中,检测器的偏振不再需要平行或垂直于激光源的偏振方向,并且可以在任何方向上完成。

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