A Ku-band rotating fan-beam scatterometer: Design and performance simulations

Xiaolong Dong, Di Zhu, Wenming Lin, Heguang Liu, Jingshan Jiang
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引用次数: 19

Abstract

This paper introduces the design and simulation results of a Ku-band rotating fan-beam radar scatterometer for ocean surface wind vector measurement. It will be flown on a small satellite dedicated to provide data for investigation of the ocean wave and ocean surface wind vector interactions, along with another payload for measurement of directional ocean wave spectra by a real-aperture radar with multiple scanned pencil beams. Key issues about the design of a Ku-band rotating fan-beam radar scatterometer, and results of performance simulations are provided as well. The performance of the system is simulated by the absolute and relative specifications. For the absolute specifications, retrieval performances for both wind speed and wind direction are evaluated, with the maximum likelihood method being employed. For the relative specifications, the figures of merit (FOM) is simulated, for comparison with other Ku-band scatterometers and optimization of system parameters. Simulation results of both the σ° precision and wind retrieval accuracies for different wind speed from 4m/s to 24m/s will be provided, which shows that SCAT can satisfy the performance requirements within most part of the swath.
ku波段旋转扇形波束散射计:设计与性能模拟
介绍了ku波段旋转扇形波束雷达海面风矢量散射计的设计和仿真结果。它将在一颗小型卫星上飞行,该卫星专门为调查海浪和海洋表面风矢量相互作用提供数据,同时还有另一颗有效载荷,用于测量具有多个扫描铅笔波束的实孔径雷达的定向海浪光谱。给出了ku波段旋转扇形波束雷达散射计设计的关键问题及性能仿真结果。采用绝对参数和相对参数对系统性能进行了仿真。对于绝对规格,采用最大似然法对风速和风向的检索性能进行了评价。为了与其他ku波段散射计进行比较和优化系统参数,对相关参数进行了仿真。给出了在4m/s ~ 24m/s不同风速下的σ°精度和风反演精度的仿真结果,结果表明SCAT在大部分区域内都能满足性能要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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