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On optimization of optical parameters of biaxial monostatic CW lidar for atmospheric sensing in the daytime

机译:用于白天大气传感的双轴单轴连续波激光雷达光学参数的优化

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In a wide range of actively developing lidar technologies, the class of biaxial continuous-wave lidars, sometimes called imaging lidars, is moving forward as one of the promising alternatives to traditional pulsed lidars. It combines the triangulation principle applied to CW lidars with spatially-resolved measurements and modern photonic technologies using diode lasers and image processing based on matrix or linear-array detectors. To ensure undistorted reception and further processing of echo-signals and images as well as reliable restoration of the range profiles of the atmospheric parameters under conditions of intense background radiation of the daytime sky, it is especially important to take into account the specific originality of imaging lidars, which distinguishes this class of instruments from traditional systems. These are the specific features of their spatial selectivity formation based on a reasonable choice of both lidar instrument and array detector parameters, the exposure conditions and physical properties of the background radiation with proper consideration of the propagation medium, etc. The performed analysis of the imaging lidar focuses attention on the distorting effect of the uneven power of external background coming to single micro-cells of the 1D- or 2D-arrays. In a number of atmospheric-optical situations and with wide variations of optical and design parameters of lidar, there may be noticeable limitations in the measurement accuracy of echo-signals caused by incorrect consideration of the inhomogeneous background load of detector cells and subsequent distortion of results of the atmospheric range profiles retrieval. The approach proposed is aimed at paying attention and overcoming some of these limitations.
机译:在一系列积极发展的激光雷达技术中,双轴连续波激光雷达(有时称为成像激光雷达)正在作为传统脉冲激光雷达的有希望的替代方法之一而向前发展。它结合了应用于连续波激光雷达的三角测量原理,空间分辨的测量结果以及使用二极管激光器和基于矩阵或线性阵列检测器的图像处理的现代光子技术。为了确保回声信号和图像的无失真接收和进一步处理,以及在白天天空强烈的背景辐射条件下可靠恢复大气参数的范围轮廓,特别重要的是要考虑到成像的独创性激光雷达,将此类仪器与传统系统区分开来。这些是根据对激光雷达仪器和阵列检测器参数的合理选择,在适当考虑传播介质的情况下背景辐射的曝光条件和物理特性等对它们进行空间选择性形成的特定特征。对成像进行的分析激光雷达将注意力集中在外部背景的不均匀功率对1D或2D阵列的单个微细胞的扭曲效应上。在许多大气光学条件下,并且激光雷达的光学和设计参数变化很大,由于错误地考虑了探测器单元的不均匀背景载荷以及随后的结果失真,回波信号的测量精度可能会受到明显限制大气层剖面图检索。提出的方法旨在引起人们的注意并克服其中的一些局限性。

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