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Topology Design for Distributed Radar Imaging Based on Wavenumber Domain Splicing Analysis

机译:基于波数域剪接分析的分布式雷达成像拓扑设计

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Distributed radar is more flexible because of transmitters and receivers are separately distributed in this system. It can form multiple bistatic SAR systems according to the detection requirements in a self-organized manner, and obtain more effective information in a shorter time. During the movement of the radar platform, a specific spatial spectrum will be generated in the wavenumber domain. By splicing the spatial spectrum of multiple bistatic SAR systems, the resolution in the range direction or cross range direction can be improved. In this paper, the rule of spatial spectrum distribution in the wavenumber domain is analyzed in detail, and a method is provided for the topology design of radar platforms in combination with the splicing spatial spectrum. Numerical simulation gives imaging results after topology design, which demonstrates the effectiveness of distributed radar topology design method for improving range or cross range resolution.
机译:分布式雷达由于变送器和接收器在该系统中分别分布式。它可以根据以自组织方式根据检测要求形成多个双孔SAR系统,并在较短的时间内获得更有效的信息。在雷达平台的运动期间,将在波数域中产生特定的空间谱。通过拼接多个双孔SAR系统的空间光谱,可以提高范围方向或横梁方向上的分辨率。本文详细分析了波数域中的空间谱分布规律,并为拼接空间谱结合的雷达平台的拓扑设计提供了一种方法。数值模拟在拓扑设计之后为成像结果提供了分布式雷达拓扑设计方法的有效性,用于改善范围或交叉范围分辨率。

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