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Lightweight Indoor Localization for 60-GHz Millimeter Wave Systems

机译:60 GHz毫米波系统的轻量级室内本地化

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In this paper, we target single-anchor localization schemes for millimeter wave (MMW) systems. The schemes are designed to be lightweight, so that even computationally-constrained devices can support them. We identify the main propagation properties of MMW signals that have an impact on localization and design three algorithms that exploit these, namely a triangulation-validation procedure, an angle difference-of-arrival approach, and a scheme based on location fingerprinting. We evaluate the algorithms by means of simulations, and draw conclusions on their robustness. We then validate our results via measurements involving commercial pre- standard 60- GHz MMW hardware. Our experiments confirm that, by relying only on a single anchor and without requiring complex signal processing at the receiver, the algorithms can localize a node with high probability, and in many cases with sub-meter accuracy. We conclude by discussing how these algorithms complement each other in terms of robustness and localization success probability.
机译:在本文中,我们针对毫米波(MMW)系统的单锚定位方案。该方案被设计为轻量级的,因此即使受计算限制的设备也可以支持它们。我们确定了对定位有影响的MMW信号的主要传播特性,并设计了三种利用这些算法的算法,即三角剖分验证过程,到达角度差方法和基于位置指纹的方案。我们通过仿真评估算法,并就其鲁棒性得出结论。然后,我们通过涉及商用预标准60 GHz MMW硬件的测量来验证我们的结果。我们的实验证实,通过仅依赖单个锚,而无需在接收器处进行复杂的信号处理,该算法可以以很高的概率来定位节点,并且在许多情况下可以以亚米计精度定位。我们通过讨论这些算法如何在鲁棒性和定位成功率上相互补充来得出结论。

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