干扰(通信)
波束赋形
歧管(流体力学)
信息几何学
声纳
协方差矩阵
信号(编程语言)
声学
宽带
黎曼几何
水下
算法
自适应波束形成器
数学
计算机科学
几何学
物理
电信
工程类
光学
地质学
机械工程
标量曲率
曲率
程序设计语言
频道(广播)
海洋学
作者
Xueli Sheng,Hang Dong,Bingyu Shi,Siyuan Cang,Ke Sun,Yan Wang
摘要
Array signal processing such as direction of arrival estimation and target localization is significantly impacted by strong interference. In this work, we propose a wideband interference suppression method based on the Riemannian geometry of the manifold of Hermitian positive definite matrices, specifically designed for use in passive sonar systems. We demonstrate that incorporating the Riemannian mean of the sample covariance matrix into conventional beamforming techniques results in a spatial spectrum that effectively rejects interference directions. The proposed interference suppression technique enhances the signal-to-interference ratio without requiring prior information, outperforming other competing approaches. Furthermore, the effectiveness of the proposed method is validated through numerical simulations and comparison with experimental data.
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