60 GHz网络的精确3D定位

Ioannis Pefkianakis, Kyu-Han Kim
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引用次数: 33

摘要

基于射频(主要是Wi-Fi和BLE)的定位系统已经获得了业界的大量关注,因为它们不需要部署任何特殊和昂贵的基础设施,如摄像头和深度传感器,而是利用现有的无线接入点(ap)和移动客户端。然而,大量的现场试验表明,这种解决方案可能不准确(例如,米级定位误差)和/或不切实际(例如,需要集中控制,密集的AP部署)。在本文中,我们专注于毫米波无线网络,它在室内和室外连接中越来越流行,以克服上述限制并提供准确的3D定位。具体来说,我们提出了mwaveoc,这是一个利用毫米波(例如60 GHz)网络的小波长(毫米)和定向通信的系统,用于精确和实用的3D定位。mwavoc仅依靠单个AP来跟踪设备的位置,并与现有的现成802.11ad 60 GHz设备一起工作。我们在商用802.11ad测试平台上的实现和实验结果表明,mwavoc可以在视距设置下实现厘米级ap客户端距离估计精度和分米级3D定位精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accurate 3D Localization for 60 GHz Networks
RF-based (mainly Wi-Fi and BLE) localization systems have been gaining the significant amount of attention from industry, since they do not require the deployment of any special and costly infrastructure such as cameras and depth sensors but leverage existing wireless Access Points (APs) and mobile clients. However, extensive field trials have shown that such solutions can be inaccurate (e.g., meter-level localization error) and/or impractical (e.g., requiring centrally-controlled, dense AP deployments). In this paper, we focus on millimeter-wave wireless networks, which are becoming increasingly popular for both indoors and outdoors connectivity, to overcome the aforementioned limitations and to provide accurate 3D localization. Specifically, we propose mWaveLoc, a system that exploits the small wavelength (millimeter) and directional communication of millimeter-wave (e.g., in 60 GHz) networks for accurate and practical 3D localization. mWaveLoc relies only on a single AP to track a device's position and works with existing off-the-shelf 802.11ad 60 GHz devices. Our implementation and experimental results on commodity 802.11ad testbeds show that mWaveLoc can achieve centimeter-level AP-client distance estimation accuracy and decimeter-level 3D localization accuracy in Line-Of-Sight settings.
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