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Experimental Research for CMMB-Based Passive Radar Under a Multipath Environment

机译:多路径环境下基于CMMB的无源雷达的实验研究

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China mobile multimedia broadcasting (CMMB) is a digital television standard that works in a single-frequency network (SFN) at the ultrahigh frequency band and adopts orthogonal frequency division multiplex modulation with a cyclic prefix (CP-OFDM). This paper investigates the practical feasibility of a CMMB-based passive radar (CPR) in the multipath propagation environment. First, several aspects involving system considerations induced by propagation conditions and radar signal characteristics are analyzed, including power budget, dynamic range requirement, clutter rejection metrics, and ambiguity function analysis. Then targeting the problems caused by multipath signals in the complex propagation environment and corresponding processing techniques are discussed, covering reference signal extraction and clutter rejection, as well as, tracking and localization. The highlight is clutter rejection with subcarrier-based spatial adaptive processing (SSAP), which is matched with the features of CP-OFDM. The applicability of SSAP under severe channel response spread mainly contributed by SFN is specially considered. Last, a description of the experiments and the CPR systems developed by Wuhan University is given, together with results from previous field trials for low-altitude aircraft and ship detection.
机译:中国移动多媒体广播(CMMB)是一种数字电视标准,它在超高频段的单频网络(SFN)中工作,并采用带有循环前缀(CP-OFDM)的正交频分复用调制。本文研究了在多径传播环境中基于CMMB的无源雷达(CPR)的实际可行性。首先,分析了涉及由传播条件和雷达信号特性引起的系统考虑的几个方面,包括功率预算,动态范围要求,杂波抑制指标和模糊函数分析。然后针对复杂传播环境中多径信号引起的问题和相应的处理技术进行了讨论,涵盖了参考信号提取和杂波抑制以及跟踪和定位。重点是基于子载波的空间自适应处理(SSAP)的杂波抑制,这与CP-OFDM的功能相匹配。特别考虑了SSAP在主要由SFN引起的严重信道响应扩展下的适用性。最后,对武汉大学开发的实验和CPR系统进行了描述,并给出了先前针对低空飞机和舰船检测的现场试验结果。

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