Antenna Array based Framework for Detection and Localization of Correlated Signals

J. Maranhao, João Paulo C. L. da Costa
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引用次数: 1

Abstract

The number of signal components received at a sensor array as well as their angle of arrival can be estimated by array signal processing techniques. However, in multipath environments, several versions of a signal transmitted from the same source are highly correlated and consequently eigenvalue-based direction of arrival (DoA) estimation approaches are no more valid. This paper proposes to extend a previous framework with multipath mitigation for detecting and locating signal emitters in two aspects: (i) by considering the case of detection and localization of multiple emitters, and (ii) by including a decorrelation technique of the multipath components emitted from the same source. Simulation results show that the proposed framework is much more efficient than the previous one, presenting lower average localization errors and average angle of arrival errors when correlated signals are present.
基于天线阵列的相关信号检测与定位框架
通过阵列信号处理技术,可以估计传感器阵列接收到的信号分量的数量及其到达的角度。然而,在多路径环境中,来自同一源的多个版本的信号是高度相关的,因此基于特征值的到达方向(DoA)估计方法不再有效。本文提出在两个方面扩展先前的多径缓解框架,用于检测和定位信号发射器:(i)考虑多个发射器的检测和定位情况,以及(ii)通过包含从同一源发射的多径分量的去相关技术。仿真结果表明,在存在相关信号的情况下,该框架具有较低的平均定位误差和平均到达角误差。
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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