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Battery-Less Location Tracking for Internet of Things: Simultaneous Wireless Power Transfer and Positioning

机译:物联网的无电池位置跟踪:同时进行无线电源传输和定位

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摘要

We propose a battery-less location tracking system that enables 3-D positioning of an Internet of Things (IoT) device powered by the radio frequency (RF) wireless power transfer (WPT). In the proposed system, a power beacon is equipped with a phased antenna array that has the dual purposes of high-efficiency WPT and phase-based accurate positioning. In order to enhance the efficiency of the RF WPT, we propose a beam focusing algorithm that dynamically controls the respective phases of antenna elements to place the focal point of the electro-magnetic (EM) wave onto the target IoT device. We also propose a phase-based positioning algorithm that requires only one multiantenna anchor point for determining the distance as well as the direction from the anchor point. We analyze the Cramer-Rao lower bound (CRLB) of the phase-based positioning with a single multiantenna anchor point, and show that the distance from the anchor point can be estimated as long as the IoT device lies within the radiative near-field region. We propose a joint location tracking and WPT algorithm that performs 3-D positioning and beam-focused WPT in a unified way. We have built a real-life testbed with a large-scale antenna array with 64 antenna elements for testing the proposed algorithm. The experimental results show the effectiveness of the proposed algorithm in a real environment.
机译:我们提出了一种无电池位置跟踪系统,该系统可实现对由射频(RF)无线功率传输(WPT)供电的物联网(IoT)设备的3D定位。在提出的系统中,功率信标配备有相控天线阵列,该相控天线阵列具有高效WPT和基于相位的精确定位的双重目的。为了提高RF WPT的效率,我们提出了一种波束聚焦算法,该算法可动态控制天线元件的各个相位,以将电磁波(EM)的焦点置于目标IoT设备上。我们还提出了一种基于相位的定位算法,该算法仅需要一个多天线锚点来确定距离以及距锚点的方向。我们使用单个多天线锚定点分析了基于相位的定位的Cramer-Rao下界(CRLB),并表明只要IoT设备位于辐射近场区域内,就可以估算距锚定点的距离。我们提出了一种联合位置跟踪和WPT算法,该算法以统一的方式执行3-D定位和波束聚焦WPT。我们已经建立了一个具有大型天线阵列和64个天线单元的真实测试平台,用于测试所提出的算法。实验结果表明了该算法在真实环境中的有效性。

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