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基于ESPRIT算法的电磁矢量传感器均匀圆阵的波达方向和极化估计

DOA and Polarization Estimation Using an Electromagnetic Vector Sensor Uniform Circular Array Based on the ESPRIT Algorithm.

作者信息

Wu Na, Qu Zhiyu, Si Weijian, Jiao Shuhong

机构信息

Department of Information and Communication Engineering, Harbin Engineering University, Harbin 150001, China.

出版信息

Sensors (Basel). 2016 Dec 13;16(12):2109. doi: 10.3390/s16122109.

Abstract

In array signal processing systems, the direction of arrival (DOA) and polarization of signals based on uniform linear or rectangular sensor arrays are generally obtained by rotational invariance techniques (ESPRIT). However, since the ESPRIT algorithm relies on the rotational invariant structure of the received data, it cannot be applied to electromagnetic vector sensor arrays (EVSAs) featuring uniform circular patterns. To overcome this limitation, a fourth-order cumulant-based ESPRIT algorithm is proposed in this paper, for joint estimation of DOA and polarization based on a uniform circular EVSA. The proposed algorithm utilizes the fourth-order cumulant to obtain a virtual extended array of a uniform circular EVSA, from which the pairs of rotation invariant sub-arrays are obtained. The ESPRIT algorithm and parameter pair matching are then utilized to estimate the DOA and polarization of the incident signals. The closed-form parameter estimation algorithm can effectively reduce the computational complexity of the joint estimation, which has been demonstrated by numerical simulations.

摘要

在阵列信号处理系统中,基于均匀线性或矩形传感器阵列的信号到达方向(DOA)和极化通常通过旋转不变技术(ESPRIT)来获取。然而,由于ESPRIT算法依赖于接收数据的旋转不变结构,它不能应用于具有均匀圆形模式的电磁矢量传感器阵列(EVSA)。为克服这一限制,本文提出了一种基于四阶累积量的ESPRIT算法,用于基于均匀圆形EVSA的DOA和极化联合估计。所提算法利用四阶累积量获得均匀圆形EVSA的虚拟扩展阵列,从中得到旋转不变子阵列对。然后利用ESPRIT算法和参数对匹配来估计入射信号的DOA和极化。闭式参数估计算法能有效降低联合估计的计算复杂度,数值仿真已证明了这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bd3/5191089/576385ff4d3c/sensors-16-02109-g001.jpg

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