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Tomographic retrieval of cloud liquid water fields from a single scanning microwave radiometer aboard a moving platform – Part 2: Observation system simulation experiments

机译:从单次扫描微波辐射计的云液体水域的断层摄影检索,移动平台 - 第2部分:观察系统仿真实验

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Part 1 of this research concluded that many conditions of the 2003 Wakasa Bay experiment were not optimal for the purpose of tomographic retrieval. Part 2 (this paper) then aims to find possible improvements to the mobile cloud tomography method using observation system simulation experiments. We demonstrate that the incorporation of the L1 norm total variation regularization in the tomographic retrieval algorithm better reproduces discontinuous structures than the widely used L2 norm Tikhonov regularization. The simulation experiments reveal that a typical ground-based mobile setup substantially outperforms an airborne one because the ground-based setup usually moves slower and has greater contrast in microwave brightness between clouds and the background. It is shown that, as expected, the error in the cloud tomography retrievals increases monotonically with both the radiometer noise level and the uncertainty in the estimate of background brightness temperature. It is also revealed that a lower speed of platform motion or a faster scanning radiometer results in more scan cycles and more overlap between the swaths of successive scan cycles, both of which help to improve the retrieval accuracy. The last factor examined is aircraft height. It is found that the optimal aircraft height is 0.5 to 1.0 km above the cloud top. To summarize, this research demonstrates the feasibility of tomographically retrieving the spatial structure of cloud liquid water using current microwave radiometric technology and provides several general guidelines to improve future field-based studies of cloud tomography.
机译:本研究的第1部分得出结论,2003年Wakasa湾实验的许多条件对于断层切断检索而言并不是最佳。第2部分(本文)旨在使用观察系统仿真实验找到对移动云断层扫描方法的可能改进。我们证明,在断层检索算法中加入L1规范总变化正则化比广泛使用的L2规范Tikhonov正规更好地再现不连续的结构。仿真实验表明,典型的地面移动设置基本上大幅优于空气传播,因为基于地面的设置通常移动较慢并且在云之间的微波亮度和背景中具有更大的对比度。结果表明,如预期的那样,云断层扫描检索中的误差在辐射计噪声水平和背景亮度温度的估计中单调增加。还透露,平台运动的较低速度或更快的扫描辐射计导致较快的扫描循环导致连续扫描循环的速度之间的更多扫描周期和更多重叠,这两者都有助于提高检索精度。检查的最后一个因素是飞机高度。发现最佳飞机高度为云顶面0.5至1.0公里。总而言之,本研究表明,使用电流微波辐射技术拆开云液体水的空间结构的可行性,并提供了几种普遍指导,从而改善了对云断层扫描的未来场的研究。

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