一种用于目标位置估计的无协作设备无线传感设计与分析

Yucheng Dai, Wooseok Nam, Tao Luo, A. Kannan
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引用次数: 1

摘要

由于硬件制造和信号处理技术的发展,用户设备(UE)已经不仅仅是一种通信工具,而且是一种能够感知环境的先进设备。虽然目前终端侧的传感设计主要集中在电磁环境或存在可以传输信号的设备,但5G/6G标准计划在不久的将来将传感功能扩展到感知物理环境和“无设备”物体。针对蜂窝系统中现有的发射/接收点(TRPs)和终端,提出了一种无设备协同无线传感方法来估计目标的位置。构建了Qualcomm Morehouse校园的三维光线追踪通道模型,用于传感性能评估。结果表明,对于尺寸为$1\ × 1\ × 0.2$ m的立方体目标,使用单个TRP和3个TRP的投影距离误差分别在90%的情况下小于0.34米和0.26米。
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A Cooperative Device Free Wireless Sensing Design and Analysis for Target Position Estimation
Owing to the development in both hardware man-ufacturing and signal processing techniques, a User Equipment (UE) has evolved into not just a communication tool but also an advanced device which can perceive the environment. Although current sensing designs at UE side mainly focus on the electro-magnetic environment or the existence of the device which can transmit signal, the 5G/6G standards plan to extend the sensing function to perceive the physical environment and the ‘device-free’ object in the near future. This paper proposes a cooperative device-free wireless sensing method for estimating the position of a target, aiming to exploit the existing Transmit/Receive Points (TRPs) and UEs in the cellular system. A 3D ray-tracing channel model of Qualcomm Morehouse campus has been constructed for sensing performance evaluation. The results show that, for a cuboidal target with dimensions $1\times 1\times 0.2$ meters, a projected distance error less than 0.34 meter and 0.26 meter in 90 percent cases can be achieved with a single TRP and 3 TRPs, respectively.
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