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Extension of GPM dual-frequency iterative retrieval method with DSD-profile constraint

机译:具有DSD轮廓约束的GPM双频迭代检索方法的扩展

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A new Dual-Frequency Precipitation Radar (DPR) will be included on the Global Precipitation Measurement (GPM) core satellite which will succeed the highly successful Tropical Rainfall Measuring Mission satellite launched in 1997. New dual-frequency drop-size distribution (DSD) and rain-rate estimation algorithms are being developed to take advantage of the enhanced capabilities of the DPR. It has been shown previously that a backward-iteration algorithm can be embedded within a single-loop feedback model to retrieve the rain rate. However, the single-loop model is unable to correctly estimate DSD profiles for a significant portion of global median-volume-diameter, D/sub o/, and normalized DSD intercept parameter, N/sub w/, combinations in rain because of a multiple-value solution space. For the remaining D/sub o/,N/sub w/ pairs, another retrieval method is necessary. This paper proposes a dual-loop model, in which the intercept parameter, N/sub w/, of the DSD is constrained in its vertical profile, to guide the algorithm to correct convergence. This allows an additional constraint on the DSD values estimated by the iterative algorithm and helps to retrieve correct DSD values in the regions where the iterative approach alone fails. To demonstrate feasibility of the proposed method, three test cases representative of many DSD and profile combinations are discussed. The first case is a constant vertical profile of the DSD parameters. The second case examines linear variation of the DSD parameters, and the third case examines how measurement error affects the retrieval process. In each case, the proposed constraint on the intercept parameter is implemented, and the results are discussed. Using the constraint, the dual-loop algorithm is able to retrieve reasonable values for the DSDs and rain-rate profiles and extend the convergence region of the algorithm.
机译:一种新的双频降水雷达(DPR)将被包括在全球降水测量(GPM)核心卫星中,该卫星将接替1997年发射的非常成功的热带雨量测量任务卫星。正在开发降雨率估计算法,以利用DPR的增强功能。先前已经表明,可以将反向迭代算法嵌入单环反馈模型中以检索降雨率。但是,单循环模型无法正确估计全局中值体积直径D / sub o /和标准化DSD拦截参数N / sub w /在雨中的组合的很大一部分的DSD分布,这是因为多值解决方案空间。对于其余的D / sub o /,N / sub w /对,需要另一种检索方法。本文提出了一种双环模型,其中DSD的截距参数N / sub w /被限制在其垂直剖面中,以指导算法校正收敛。这允许对由迭代算法估计的DSD值施加额外的约束,并有助于在仅迭代方法失败的区域中检索正确的DSD值。为了证明所提出方法的可行性,讨论了代表许多DSD和配置文件组合的三个测试用例。第一种情况是DSD参数的恒定垂直分布。第二种情况检查DSD参数的线性变化,第三种情况检查测量误差如何影响检索过程。在每种情况下,都会实现对截距参数的建议约束,并讨论结果。使用约束,双循环算法能够检索DSD和降雨率剖面的合理值,并扩展算法的收敛范围。

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