啁啾声
汉克尔矩阵
干扰(通信)
雷达
算法
计算机科学
秩(图论)
矩阵分解
基质(化学分析)
数学
电信
物理
光学
组合数学
频道(广播)
数学分析
特征向量
复合材料
材料科学
激光器
量子力学
作者
Jianping Wang,Min Ding,Alexander Yarovoy
标识
DOI:10.1109/tsp.2022.3147863
摘要
In this paper, the interference mitigation for Frequency Modulated Continuous Wave (FMCW) radar system with a dechirping receiver is investigated. After dechirping operation, the scattered signals from targets result in beat signals, i.e., the sum of complex exponentials while the interferences lead to chirp-like short pulses. Taking advantage of these different time and frequency features between the useful signals and the interferences, the interference mitigation is formulated as an optimization problem: a sparse and low-rank decomposition of a Hankel matrix constructed by lifting the measurements. Then, an iterative optimization algorithm is proposed to tackle it by exploiting the Alternating Direction of Multipliers (ADMM) scheme. Compared to the existing methods, the proposed approach does not need to detect the interference and also improves the estimation accuracy of the separated useful signals. Both numerical simulations with point-like targets and experiment results with distributed targets (i.e., raindrops) are presented to demonstrate and verify its performance. The results show that the proposed approach is generally applicable for interference mitigation in both stationary and moving target scenarios.
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