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Pursuance of mm-Level Accuracy: Ranging and Positioning in mmWave Systems

机译:追求MM-Level精度:MMWAVE系统的测距和定位

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摘要

This paper aims at investigating the feasibility of ranging and positioning in millimeter (mm)-level accuracy by adopting millimeter-wave (mmWave) and three-dimensional massive antenna arrays. The agent to be localized is equipped with massive uniform rectangular array (URA) and multiple anchors are considered to pursue a higher accuracy, where a far-field environment is assumed for phased massive URA. By considering both a static scenario where the agent with an unknown coordinate is stationary and a dynamic scenario where the agent is moving, the fundamental limits of time-based ranging and positioning are derived by Cramer-Rao bound in a multipath model with and without a priori channel knowledge associated withmmWave transmission and massive URA. The relationship between the fundamental bound of range estimation and that of position estimation is theoretically clarified and the lower bound of position dilution of precision is derived. By investigating both models, the effect of the agent's movement to ranging and positioning accuracy is observed. Numerical results show that the proposed localization network achieves a precise mm-level accuracy for ranging and positioning.
机译:本文旨在通过采用毫米波(MMWAVE)和三维大量天线阵列来研究以毫米(MM) - 灯泡精度的测距和定位的可行性。待定位的代理配有大量均匀的矩形阵列(URA),并且认为多个锚固件追求更高的精度,其中假设用于分阶段的大型URA的远场环境。通过考虑具有未知坐标的代理是静止的静态场景,并且代理正在移动的动态场景,基于时间的测距和定位的基本限制由Cramer-Rao绑定在具有和没有A的多径模型中绑定与MMWave传输和大规模URA相关的先验信道知识。范围估计的基本边界与位置估计的基本边界之间的关系是从理论上澄清的,并且得出了精度稀释的位置稀释的下限。通过调查两种模型,观察到代理运动的运动的效果和定位精度。数值结果表明,所提出的本地化网络实现了测距和定位的精确MM级精度。

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