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The Normalized Differential Spectral Sensitivity Approach Applied to the Retrieval of Tropospheric Water Vapor Fields Using a Constellation of Corotating LEO Satellites

机译:归一化差分光谱灵敏度方法应用于同向旋转LEO卫星星座对流层水汽场的反演

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摘要

The use of the normalized differential spectral attenuation (NDSA) approach in the microwaves and (later) in the millimeter waves has been recently introduced to retrieve information about integrated water vapor (IWV) content from attenuation measurements along microwave links between two low Earth orbit (LEO) satellites. NDSA was originally proposed for a configuration of two counter-rotating satellites, to achieve vertical profiles of water vapor (WV) from IWV measurements. In this paper, we analyze the exploitability of the NDSA approach in the case of a constellation of corotating LEO satellites in order to estimate the WV content in a 2-D field lying in the orbital plane of the satellites. The WV retrieval is formalized as the solution of an inverse problem. Simulation results are presented in order to demonstrate the feasibility of the proposed approach: a complete acquisition system composed of transmitting and receiving LEO satellites, including tropospheric scintillation effects, has been modeled, and the reconstruction of 2-D maps of the atmospheric WV from multiple IWV measurements is shown.
机译:最近引入了在微波中使用归一化差分频谱衰减(NDSA)方法以及在毫米波中使用(后来)归一化差分频谱衰减(NDSA)方法从沿两个低地球轨道之间的微波链路的衰减测量中获取有关积分水蒸气(IWV)含量的信息的方法LEO)卫星。最初提出将NDSA用于配置两个反向卫星的配置,以通过IWV测量获得水蒸气(WV)的垂直剖面。在本文中,我们分析了在同向旋转的LEO卫星群的情况下NDSA方法的可利用性,以便估算位于卫星轨道平面内的二维场中的WV含量。 WV检索被形式化为反问题的解决方案。为了证明该方法的可行性,提出了仿真结果:对包括对流层闪烁效应在内的由LEO发射和接收卫星组成的完整采集系统进行了建模,并从多个位置重建了大气WV的二维图显示IWV测量值。

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