Study on the fractional power spectrum of the scattered echoes from 1-D time-varying sea surface

Xiaolong Chen, Guoqing Wang, Yong Huang, J. Guan
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引用次数: 2

Abstract

The classical two-scale model based on linear hydrodynamics may account for the “slow signals” which include Bragg scattering from both free and bound capillary waves but it is insufficient to describe the non-Bragg scattering from “fast scatterers” associated with breaking wave crests. Here, a realistic model of the time-varying sea surface with a quadratic phase is proposed and the characteristic of fractional power spectrum (FPS) of scattered echoes is investigated. The FPS of the proposed scattered field is found to be distributed as sum of sinc functions, whose locations in the fractional Fourier domain are relative to the chirp rate and central frequency of the 1-D sea surface model. Numerical results using X-band real sea clutter data prove that the proposed model provides a good description of the time-varying sea surface especially for the analysis of non-Bragg scattering.
一维时变海面散射回波分数功率谱研究
基于线性流体力学的经典双尺度模型可以解释“慢信号”,其中包括来自自由和束缚毛细波的Bragg散射,但它不足以描述与破碎波峰相关的“快速散射体”的非Bragg散射。在此基础上,建立了时变海面的二次相位真实模型,研究了散射回波的分数功率谱特性。发现散射场的FPS分布为sinc函数的和,其在分数阶傅里叶域中的位置与一维海面模型的啁啾率和中心频率有关。x波段实际海杂波数据的数值结果表明,该模型能很好地描述时变海面,特别是对非布拉格散射的分析。
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