基于天线阵列的多径减缓框架,用于信号发射器的检测和定位

J. Maranhao, J. Costa, Rafael Timóteo de Sousa Júnior, A. Braga, G. D. Galdo
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引用次数: 5

摘要

阵列信号处理方案可以准确估计传感器阵列接收到的信号分量的数量及其到达方向(DoA)。本文提出了一种具有多径减缓的高分辨率框架,用于检测和定位随机定位在感兴趣区域内的信号发射器。首先,我们提出的框架检测感兴趣的信号,并通过应用模型顺序选择方案提供视距(LOS)和非视距(NLOS)组件的数量。接下来,我们的方法通过利用信号结构和估计每个分量的DoA来减轻多路径。最后,我们的框架对提供源位置的估计doa进行三角测量。仿真结果与已知的基于到达时间(ToA)和基于DoA的定位系统进行了比较,说明了所提框架的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antenna array based framework with multipath mitigation for signal emitter detection and localization
Array signal processing schemes can provide accurate estimates for the number of received signal components and their direction of arrival (DoA) at a sensor array. This paper proposes a high resolution framework with multipath mitigation for detecting and locating a signal emitter randomly positioned within a region of interest. First our proposed framework detects the signal of interest and provides the number of line-of-sight (LOS) plus non-line-of-sight (NLOS) components by applying model order selection schemes. Next our approach mitigates the multipaths by exploiting the signal structure and estimating the DoA of each component. Finally, our framework triangulates the estimated DoAs providing the source position. Simulation results are compared to the well known time of arrival (ToA) and DoA based positioning systems illustrating the effectiveness of the proposed framework.
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