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Depolarization ratio, SNR estimation and polarization sensitivity analysis for a commercial Raman depolarization lidar system

机译:商业拉曼去极化激光雷达系统的去极化比,SNR估计和极化灵敏度分析

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In this paper we focus on the estimation of the Signal-to-Noise (SNR) ratio of a 3-channel commercial (Raymetics) volcanic ash detection system, (LR111-D300), already operating in UK, and also, we perform a basic lidar polarization sensitivity analysis. The results show that SNR values are higher than 10 for ranges up to 13 km for daytime conditions. This is a quite good result compared with other values presented in bibliography and prove that such system is able to detect volcanic ash detection over a range of 20 km. We also assess the lidar polarization sensitivity and then, we estimate the linear depolarization ratio. By careful choice of the optical components (emitting and receiving optics), it has been shown that uncertainties of polarization states at receiver (and thus too depolarization ratio estimation) can be much reduced.
机译:在本文中,我们专注于估计3通道商业(射频)火山灰检测系统(LR111-D300)的信号 - 噪声(SNR)比率,(LR111-D300),已经在英国操作,以及我们执行A.基本激光雷达极化敏感性分析。结果表明,对于白天条件,SNR值高达13公里的范围高于10。与参考书目中呈现的其他值相比,这是一个相当好的结果,并证明这种系统能够检测到20公里范围内的火山灰检测。我们还评估了激光雷达极化敏感性,然后,我们估计线性去极化比率。通过仔细选择光学元件(发射和接收光学器件),已经证明了在接收器(并且因此过多的去极化率估计)处的偏振态的不确定性可以减小。

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