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A micropulse eye-safe all-fiber molecular backscatter coherent temperature lidar

机译:微型眼睛安全全纤维分子反向散射相干温度LIDAR

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In this paper, we analyze the performance of an all-fiber, micropulse, 1.5 μm coherent lidar for remote sensing of atmospheric temperature. The proposed system benefits from the recent advances in optics/electronics technology, especially an all-fiber image-reject homodyne receiver, where a high resolution spectrum in the baseband can be acquired. Due to the presence of a structured spectra resulting from the spontaneous Rayleigh-Brillouine scattering, associated with the relevant operating regimes, an accurate estimation of the temperature can be carried out. One of the main advantages of this system is the removal of the contaminating Mie backscatter signal by electronic filters at the baseband (before signal conditioning and amplification). The paper presents the basic concepts as well as a Monte-Carlo system simulation as the proof of concept.
机译:在本文中,我们分析了全纤维,微孔,1.5μm相干激光器的性能,用于遥感大气温度。所提出的系统来自光学/电子技术的最近进步,尤其是全光纤图像拒绝象痛者的兴趣,可以获取基带中的高分辨率频谱。由于存在由与相关操作制度相关的自发瑞利风帆散射产生的结构化光谱,可以进行精确估计温度。该系统的主要优点之一是通过基带(在信号调节和放大之前)的电子滤波器去除污染的MIE反向散射信号。本文提出了基本概念以及蒙特卡罗系统模拟作为概念证明。

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