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Simulating return signals of a spaceborne high-spectral resolution lidar channel at 532 nm

机译:在532nm处模拟星载高频分辨率LIDAR通道的返回信号

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摘要

High spectral resolution lidar (HSRL) system employs a narrow spectral filter to separate the particulate (cloud/aerosol) and molecular scattering components in lidar return signals, which improves the quality of the retrieved cloud/aerosol optical properties. To better develop a future spaceborne HSRL system, a novel simulation technique was developed to simulate spaceborne HSRL return signals at 532 nm using the Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observation (CALIPSO) cloud/aerosol extinction coefficients product and numerical weather prediction data. For validating simulated data, a mathematical particulate extinction coefficient retrieval method for spaceborne HSRL return signals is described here. We compare particulate extinction coefficient profiles from the CALIPSO operational product with simulated spaceborne HSRL data. Further uncertainty analysis shows that relative uncertainties are acceptable for retrieving the optical properties of cloud and aerosol. The final results demonstrate that they agree well with each other. It indicates that the return signals of the spaceborne HSRL molecular channel at 532 nm will be suitable for developing operational algorithms supporting a future spaceborne HSRL system.
机译:高光谱分辨率激光雷达(HSRL)系统采用窄的光谱过滤器的微粒(云/气溶胶)和分子散射部件在激光雷达返回信号,这改善了检索到的云/气溶胶的光学特性的质量分离。为了更好地开发未来星载HSRL系统,一种新颖的模拟技术被开发使用云层和烟雾雷达和在532纳米至模拟星载HSRL返回信号红外线引导卫星观测(CALIPSO)云/气溶胶消光系数产品和数值天气预报数据。用于验证模拟数据,在这里描述的用于航天HSRL返回信号的数学颗粒状消光系数检索方法。我们比较从模拟星载HSRL数据CALIPSO操作产物颗粒的消光系数曲线。进一步的不确定性分析表明,相对于不确定性是用于检索云和气溶胶的光学性质是可接受的。最终的结果表明,它们互相吻合。这表明,在532nm处的星载HSRL分子信道的返回信号将适合于显影操作算法支持未来星载HSRL系统。

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