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Photopolarimetric lidar dual-beam switching device and Mueller matrix standoff detection method

机译:光偏振激光雷达双光束切换装置及穆勒矩阵对峙检测方法

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摘要

We present an optomechanical switching device (OSD) for a photopolarimetric lidar system with differential-absorption Mueller matrix spectroscopy standoff detection method. An output train of alternate continuous-wave CO_(2) laser beams [...L1:L2...] is directed onto suspect chemical-biological (CB) aerosol plume or the land mass it contaminates (S) vis-a-vis the OSD, where L1 [L2] is tuned on [detuned off] a resonant molecular absorption moiety of CB analyte. Moreover, both incident beams and their backscattered radiances, from S, are polarization-modulated synchronously so as to produce gated temporal voltage waveforms called scattergrams recorded on focus at the receiver end of polarization lidar sensor system. All 16 elements of the Mueller matrix (M_(ij)) of S are measured via digital or analog filtration of constituent frequency components in these running scattergram data streams (phase-sensitive detection). A collective set of normalized differential elements {(DELTA)M_(ij)} (ratioed to element M_(11)) that are susceptible to the analyte, probed on-then-off its molecular absorption band, form a unique detection domain that is scrutinized. Any mapping onto this domain in Mueller-space, from incoming sensor scattergram data sets preprocessed by algorithm and forwarded through a trained neural network pattern recognition system, cues a standoff detection event.
机译:我们提出了一种用于光偏振激光雷达系统的光机械开关设备(OSD),该系统采用差分吸收Mueller矩阵光谱对峙检测方法。交替的连续波CO_(2)激光束的输出列[... L1:L2 ...]对准可疑的化学生物(CB)气溶胶羽流或污染的陆地质量(S),相对于-相对于OSD,其中L1 [L2]被调谐到CB分析物的共振分子吸收部分上。此外,来自S的入射光束及其反向散射辐射均被同步调制,以产生称为散射图的选通时间电压波形,该波形记录在偏振激光雷达传感器系统接收器的焦点上。 S的穆勒矩阵(M_(ij))的所有16个元素都是通过对这些运行的散点图数据流中的组成频率分量进行数字或模拟滤波来测量的(相位敏感检测)。随即探测其分子吸收带而对被分析物敏感的一组归一化差分元素{ΔM_(ij)}(与元素M_(11)比率)形成一个唯一的检测域仔细检查。从传入的传感器散点图数据集到算法在Mueller空间中到该域的任何映射,这些数据集都经过算法预处理并通过训练有素的神经网络模式识别系统转发,提示了隔离检测事件。

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