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A Novel Rapid SAR Simulator Based on Equivalent Scatterers for Three-Dimensional Forest Canopies

机译:基于等效散射体的三维森林冠层新型快速SAR模拟器

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Synthetic aperture radar (SAR) simulation of 3-D forest canopies is a powerful tool for studying the interaction between radar and forest, for testing new applications, and for devising inversion algorithms of forest structures. SAR raw-signal generation is frequently used in point-target simulation but is rarely used in 3-D forest simulation. The existing simulators directly produce SAR images based on an impulse response function (IRF) without involving raw-signal generation and various nonideal factors. In this paper, a novel simulator to produce SAR images of 3-D forest canopies is proposed. It incorporates a SAR raw-signal generation process taking account of various nonideal factors such as trajectory deviation of radar platforms and complexity of natural environments, which is more faithful to realistic remote sensing systems. Furthermore, an approach to speed up the raw-signal generation is put forward based on the equivalent scattering model consisting of a few virtual scatterers with specially calculated positions and backscattering matrices. Thus, the raw signals received from the entire forest canopy can be equivalent to those from virtual scatterers in the case of tiny slant-range errors. The error sensitivity of equivalent conditions is analyzed, and the optimum selection of equivalent parameters is derived considering the compromise between precision and efficiency. The results of simulation and forest height inversion demonstrate the feasibility and potential utilities of the proposed simulator.
机译:3-D森林冠层的合成孔径雷达(SAR)模拟是研究雷达与森林之间的相互作用,测试新应用以及设计森林结构反演算法的强大工具。 SAR原始信号生成经常用于点目标仿真,但很少用于3D森林仿真。现有的模拟器直接基于脉冲响应函数(IRF)生成SAR图像,而不涉及原始信号生成和各种非理想因素。在本文中,提出了一种新颖的模拟器来生成3D森林冠层的SAR图像。它结合了SAR原始信号生成过程,该过程考虑了各种非理想因素,例如雷达平台的轨迹偏离和自然环境的复杂性,这对于真实的遥感系统而言更为真实。此外,基于等效散射模型,提出了一种加快原始信号生成速度的方法,该等效散射模型由一些具有特殊计算位置和反向散射矩阵的虚拟散射体组成。因此,在微小的倾斜范围误差的情况下,从整个森林冠层收到的原始信号可以等同于从虚拟散射体接收到的原始信号。分析了等效条件的误差敏感性,并考虑了精度和效率之间的折衷,得出了等效参数的最佳选择。仿真和林高反演的结果证明了该仿真器的可行性和潜在的实用性。

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