Direction-of-arrival estimation with single-RF ESPAR antennas via sparse signal reconstruction

Rongrong Qian, M. Sellathurai, J. Chambers
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引用次数: 5

Abstract

In this paper, a direction-of-arrival (DoA) estimation method based on compressive sensing is proposed for an electronically steerable parasitic array radiator (ESPAR) antenna, which uses only a single radio frequency (RF) chain, and is thereby suited for application in compact wireless terminals. Unlike a conventional multi-active antenna array, signals impinging on parasitic elements in an ESPAR array cannot be processed, and only the output of the sole active element can be processed. In this context, for an ESPAR array, a sparse representation of the DoA estimation problem is formulated by first using an overcomplete dictionary composed of samples from the array manifold and then projecting them onto a set of directional beampatterns. The projection matrix is designed to divide the angle space of the receive antenna array into sectors which are accessed via their corresponding sector beampatterns formed on a time division basis. The sparse signal spectrum is reconstructed by the l1-SVD (singular value decomposition) method [1], where the sparsity is enforced by the l1-norm penalty. Simulation results are presented to demonstrate the efficiency of the proposed method.
基于稀疏信号重构的单射频ESPAR天线到达方向估计
提出了一种基于压缩感知的电子可控寄生阵列辐射天线(ESPAR)到达方向估计方法,该天线仅使用一条射频链,适合于小型无线终端的应用。与传统的多有源天线阵列不同,ESPAR阵列无法处理冲击寄生元件的信号,只能处理唯一有源元件的输出。在这种情况下,对于ESPAR阵列,首先使用由阵列流形样本组成的过完备字典,然后将它们投射到一组定向波束模式上,从而制定了DoA估计问题的稀疏表示。所述投影矩阵设计用于将接收天线阵列的角度空间划分为扇区,这些扇区通过在时分基础上形成的相应扇区波束图访问。稀疏信号频谱通过l1-SVD(奇异值分解)方法重构[1],其中通过l1范数惩罚来增强稀疏性。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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