利用波束转向毫米波通信系统增强物体定位功能

Ekaterina Sedunova, N. Maletic, D. Cvetkovski, E. Grass
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引用次数: 0

摘要

这项工作的重点是利用毫米波(mmWave)通信系统波束转向的信道脉冲响应(CIR)进行物体定位算法。在不限制一般性的前提下,发射器和接收器被认为位于椭圆的两个焦点,而物体则位于这些椭圆的周边。这一想法受到双稳态雷达系统的启发,在联合通信和传感(JCAS)场景中使用可同时用于传感的通信链路。为了进行实验验证,我们在消声室中进行了信道测量。这项工作的主要贡献在于开发了一种利用天线模式解卷积增强目标识别的方法,并改进了所获数据的可视化表示。此外,本文还研究了在固定波束宽度下,角度步长对所发现物体分辨率的影响。与之前的研究相比,我们提出的方法增强了物体识别和重建能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced Object Localization Using a Beamsteering mmWave Communication System
This work focuses on object localization algorithms using channel impulse responses (CIR) of beamsteering millimeter wave (mmWave) communication systems. Without limiting generality, the transmitter and receiver are considered to reside in the two focal points of ellipses, while objects are positioned at the perimeter of those ellipses. The idea is inspired by bistatic RADAR systems, using a communication link that can simultaneously serve for sensing in a joint communication and sensing (JCAS) scenario. For experimental verification, we performed the channel measurements in an anechoic chamber. The main contribution of this work is developing an approach for enhancing object identification using antenna pattern deconvolution and improving the visual representation of the obtained data. Furthermore, the paper investigates the impact of the angular step size on the resolution of found objects for a fixed beam width. Our proposed method enhances object identification and reconstruction compared to prior research.
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