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用于大气气溶胶遥感的激光雷达技术的当前研究

Current Research in Lidar Technology Used for the Remote Sensing of Atmospheric Aerosols.

作者信息

Comerón Adolfo, Muñoz-Porcar Constantino, Rocadenbosch Francesc, Rodríguez-Gómez Alejandro, Sicard Michaël

机构信息

Remote Sensing Laboratory, Universitat Politècnica de Catalunya, 08034 Barcelona, Spain.

Ciències i Tecnologies de l'Espai-Centre de Recerca de l'Aeronàutica i de l'Espai/Institut d'Estudis Espacials de Catalunya (CTE-CRAE/IEEC), Universitat Politècnica de Catalunya, 08034 Barcelona, Spain.

出版信息

Sensors (Basel). 2017 Jun 20;17(6):1450. doi: 10.3390/s17061450.

DOI:10.3390/s17061450
PMID:28632170
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5492494/
Abstract

Lidars are active optical remote sensing instruments with unique capabilities for atmospheric sounding. A manifold of atmospheric variables can be profiled using different types of lidar: concentration of species, wind speed, temperature, etc. Among them, measurement of the properties of aerosol particles, whose influence in many atmospheric processes is important but is still poorly stated, stands as one of the main fields of application of current lidar systems. This paper presents a review on fundamentals, technology, methodologies and state-of-the art of the lidar systems used to obtain aerosol information. Retrieval of structural (aerosol layers profiling), optical (backscatter and extinction coefficients) and microphysical (size, shape and type) properties requires however different levels of instrumental complexity; this general outlook is structured following a classification that attends these criteria. Thus, elastic systems (detection only of emitted frequencies), Raman systems (detection also of Raman frequency-shifted spectral lines), high spectral resolution lidars, systems with depolarization measurement capabilities and multi-wavelength instruments are described, and the fundamentals in which the retrieval of aerosol parameters is based is in each case detailed.

摘要

激光雷达是一种主动光学遥感仪器,在大气探测方面具有独特的能力。利用不同类型的激光雷达可以对多种大气变量进行剖面测量:物种浓度、风速、温度等。其中,气溶胶粒子特性的测量是当前激光雷达系统的主要应用领域之一,气溶胶粒子在许多大气过程中的影响很重要,但仍表述不足。本文对用于获取气溶胶信息的激光雷达系统的基本原理、技术、方法和最新进展进行了综述。然而,获取结构(气溶胶层剖面)、光学(后向散射和消光系数)和微物理(尺寸、形状和类型)特性需要不同程度的仪器复杂性;本综述按照符合这些标准的分类进行组织。因此,文中描述了弹性系统(仅检测发射频率)、拉曼系统(还检测拉曼频移光谱线)、高光谱分辨率激光雷达、具有去极化测量能力的系统和多波长仪器,并详细阐述了每种情况下气溶胶参数反演所基于的基本原理。

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本文引用的文献

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Use of a field lens for improving the overlap function of a lidar system employing an optical fiber in the receiver assembly.在接收器组件中使用场镜来改善采用光纤的激光雷达系统的重叠功能。
Appl Opt. 2011 Oct 1;50(28):5538-44. doi: 10.1364/AO.50.005538.
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Multiple-scattering lidar equation.多次散射激光雷达方程。
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Transmission as an input boundary value for an analytical solution of a single-scatter lidar equation.作为单散射激光雷达方程解析解的输入边界值的传输。
高重复率光子计数模式下激光雷达数据采集与控制系统的设计:为星载激光雷达提供测试
Sensors (Basel). 2022 May 12;22(10):3706. doi: 10.3390/s22103706.
4
Black carbon aerosol number and mass concentration measurements by picosecond short-range elastic backscatter lidar.利用皮秒短程弹性后向散射激光雷达测量黑碳气溶胶的数量和质量浓度。
Sci Rep. 2022 May 19;12(1):8443. doi: 10.1038/s41598-022-11954-7.
5
A Comparative Analysis of Aerosol Optical Coefficients and Their Associated Errors Retrieved from Pure-Rotational and Vibro-Rotational Raman Lidar Signals.从纯转动和振动转动拉曼激光雷达信号中反演得到的气溶胶光学系数及其相关误差的对比分析。
Sensors (Basel). 2021 Feb 11;21(4):1277. doi: 10.3390/s21041277.
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Accuracy-Power Controllable LiDAR Sensor System with 3D Object Recognition for Autonomous Vehicle.用于自动驾驶车辆的具有3D目标识别功能的精度-功率可控激光雷达传感器系统
Sensors (Basel). 2020 Oct 7;20(19):5706. doi: 10.3390/s20195706.
Appl Opt. 1996 Jun 20;35(18):3255-60. doi: 10.1364/AO.35.003255.
4
Independent measurement of extinction and backscatter profiles in cirrus clouds by using a combined Raman elastic-backscatter lidar.利用组合式拉曼弹性后向散射激光雷达对卷云中消光和后向散射廓线进行独立测量。
Appl Opt. 1992 Nov 20;31(33):7113. doi: 10.1364/AO.31.007113.
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Automated method for lidar determination of cloud-base height and vertical extent.用于激光雷达测定云底高度和垂直范围的自动化方法。
Appl Opt. 1992 Apr 1;31(10):1488-94. doi: 10.1364/AO.31.001488.
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Two-frequency lidar inversion technique.双频激光雷达反演技术。
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