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

机译:追求毫米级精度:毫米波系统中的测距和定位

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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)和三维大型天线阵列研究以毫米(mm)级精度进行测距和定位的可行性。要定位的代理配备了大型均匀矩形阵列(URA),并且考虑了多个锚点以追求更高的精度,在这种情况下,相控的大型URA被假定为远场环境。通过同时考虑坐标未知的坐席静止的静态情况和坐席正在移动的动态情况,基于时间的测距和定位的基本限制是由多路径模型中的Cramer-Rao约束导出的,该模型具有和不具有与毫米波传输和大规模URA相关的先验信道知识。从理论上阐明了距离估计的基本范围与位置估计的基本范围之间的关系,并推导了精度位置稀释的下限。通过研究两个模型,可以观察到代理移动对测距和定位精度的影响。数值结果表明,所提出的定位网络在测距和定位方面达到了精确的毫米级精度。

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