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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Wind Speed Retrieval Algorithm for the Cyclone Global Navigation Satellite System (CYGNSS) Mission
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Wind Speed Retrieval Algorithm for the Cyclone Global Navigation Satellite System (CYGNSS) Mission

机译:旋风全球导航卫星系统(CYGNSS)任务的风速检索算法

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摘要

A retrieval algorithm is presented for the Level 2 ocean surface wind speed data product of the Cyclone Global Navigation Satellite System (CYGNSS) mission. The algorithm is based on the approach described by Clarizia et al ., 2014. The approach is applied to the specific orbital measurement geometry, antenna, and receiver hardware characteristics of the CYGNSS mission. Several additional processing steps have also been added to improve the performance. A best weighted estimator is used to optimally combine two different partially correlated estimates of the winds by taking their weighted average. The optimal weighting dynamically adjusts for variations in the signal-to-noise ratio of the observations that result from changes in the measurement geometry. Variations in the incidence angle of the measurements are accounted for by the use of a 2-D geophysical model function that depends on both wind speed and incidence angle. Variations in the propagation time and signal Doppler shift at different measurement geometries affect the instantaneous spatial resolution of the measurements, and these effects are compensated by a variable temporal integration of the data. In addition to a detailed description of the algorithm itself, the root-mean-square wind speed retrieval error is characterized as a function of the measurement geometry and the wind speed using a detailed mission end-to-end simulator.
机译:针对气旋全球导航卫星系统(CYGNSS)任务的2级海面风速数据产品,提出了一种检索算法。该算法基于Clarizia等人(2014年)描述的方法。该方法适用于CYGNSS任务的特定轨道测量几何形状,天线和接收机硬件特性。还添加了几个其他处理步骤以提高性能。最佳加权估计器用于通过获取风的加权平均值来最佳地组合两个不同的部分相关的风估计。最佳加权可动态调整因测量几何形状变化而导致的观测信噪比变化。通过使用取决于风速和入射角的二维地球物理模型函数来解释测量的入射角的变化。在不同的测量几何条件下,传播时间和信号多普勒频移的变化会影响测量的瞬时空间分辨率,这些影响通过数据的可变时间积分来补偿。除了对算法本身进行详细描述之外,使用详细的任务端到端模拟器,均方根风速检索误差还可以根据测量几何形状和风速进行表征。

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