Intricate multiple scattering features of artificial facilities in X-Band SAR images

Sijie Ma, Tao Li, Yan Liu, Jie Liu
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Abstract

Abstract. Due to the intricate distortion and reflection geometry of the SAR signal, it is typically difficult to determine the multiple scattering of large artificial objects in SAR images. This work presents a scattering point path tracking model that utilizes the real three-dimensional dimensions of targets, based on the geometric optics method. Three different artificial structures, including light poles, cable stayed bridges, and power transmission lines, are carefully analysed in time-series SAR images with their simulated multiple scattering results. The results demonstrate that the routes determined by the model are consistent with the multiple scattering features on SAR images. Moreover, the time-series data demonstrate that ripples in the water's surface have a significant impact on the multi-scattering features of power lines and bridges. The double scattering features of the light pole provides a novel approach to the process of permanent scatterers (PS) in urban areas. The instances presented in this study demonstrate the effectiveness of the scattering point path tracking model in identifying the various artificial facility targets on different reflective surfaces. It will be a useful tool for deciphering the multiple scattering of large artificial structures when their 3D model is known.
X 波段合成孔径雷达图像中人工设施错综复杂的多重散射特征
摘要由于合成孔径雷达信号的畸变和反射几何形状错综复杂,通常很难确定合成孔径雷达图像中大型人工物体的多重散射。本研究基于几何光学方法,提出了一种利用目标真实三维尺寸的散射点路径跟踪模型。在时间序列合成孔径雷达图像中仔细分析了三种不同的人工结构,包括灯杆、斜拉桥和输电线,并模拟了它们的多重散射结果。结果表明,模型确定的路线与合成孔径雷达图像上的多重散射特征一致。此外,时间序列数据还表明,水面波纹对电线和桥梁的多重散射特征有很大影响。灯杆的双重散射特征为城市地区永久散射体(PS)的处理提供了一种新方法。本研究提出的实例证明了散射点路径跟踪模型在识别不同反射表面上的各种人工设施目标方面的有效性。当大型人工结构的三维模型已知时,它将成为破译其多重散射的有用工具。
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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