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HTC Vive as a Ground-Truth System for Anchor-Based Indoor Localization

机译:HTC Vive作为基于锚的室内定位的地面对地面系统

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The last decade has seen a surge in the popularity of indoor localization systems. Researchers and companies keep searching for technologies that can locate users on a large scale with low costs and the highest possible accuracy. When evaluating the accuracy of a localization system, there is a trade-off between the cost and labor involved in acquiring ground-truth measurements. The cheapest option is to acquire measurements in fixed spots and manually compute their true location in a local coordinate system using distance measuring tools. However, this method is prone to human errors and has a high setup overhead. In contrast, high-end motion capture systems are easy to set up but have prohibitive prices. A middle-of-the-road solution is to use a consumer-grade motion capture system such as the HTC Vive which, although designed for virtual reality video games, can be adapted for scientific applications. We propose a ground-truth system for anchor-based indoor localization systems which builds on the HTC Vive and we demonstrate its use on ultra-wideband (UWB) localization. We apply Procrustes Analysis to bring location data sets into the coordinate system of a room, in order to easily overlap, visualize, and analyze measurements. We use the HTC Vive to acquire the locations of UWB anchors, which allows users to quickly test which hardware placement yields the lowest localization error. The resulting ground-truth system costs under $1000, has an average accuracy of more than 5 mm, is easy to set up, and can be used for both static and dynamic measurements.
机译:在过去的十年中,室内本地化系统的普及激增。研究人员和公司一直在寻找能够以低成本和尽可能高的准确性大规模定位用户的技术。在评估本地化系统的准确性时,在获取地面实况测量值涉及的成本和人工之间要进行权衡。最便宜的选择是获取固定点的测量值,并使用距离测量工具手动计算其在本地坐标系中的真实位置。但是,此方法容易出现人为错误,并且设置开销较高。相比之下,高端运动捕捉系统易于设置,但价格昂贵。一种中间解决方案是使用诸如HTC Vive之类的消费级运动捕捉系统,尽管它是为虚拟现实视频游戏而设计的,但仍可适用于科学应用。我们为基于HTC Vive的基于锚的室内定位系统提出了一个地面真相系统,并演示了其在超宽带(UWB)定位中的使用。我们应用Procrustes Analysis将位置数据集带入房间的坐标系,以便轻松地重叠,可视化和分析测量值。我们使用HTC Vive来获取UWB锚点的位置,这使用户可以快速测试哪种硬件布局产生的定位误差最低。最终的真实系统成本低于1000美元,平均精度超过5毫米,易于设置,可用于静态和动态测量。

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