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Distortion Rejecting Magneto-Inductive Three-Dimensional Localization (MagLoc)

机译:畸变抑制磁感应三维定位(MagLoc)

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摘要

Localization is a research area that, due to its overarching importance as an enabler for higher level services, has attracted a vast amount of research and commercial interest. For the most part, it can be claimed that GPS provides an unparalleled solution for outdoor tracking and navigation. However, the same cannot yet be said about positioning in GPS-denied or challenged environments, such as indoor environments, where obstructions such as floors and walls heavily attenuate or reflect high-frequency radio signals. This has led to a plethora of competing solutions targeted toward a particular application scenario, yielding a fragmented solution landscape. In this paper, we present a fresh approach to 3-D positioning based on the use of very low frequency (kHz) magneto-inductive (MI) fields. The most important property of MI positioning is that obstacles such as walls, floors, and people that heavily impact the performance of competing approaches are largely “transparent” to the quasi-static magnetic fields. MI has a number of challenges to robust operation that distort positions, including the presence of ferrous materials and sensitivity to user rotation. Through signal processing and sensor fusion across multiple system layers, we show how we can overcome these challenges. We showcase its highly accurate 3-D positioning in a number of environments, with positioning accuracy below 0.8 m even in heavily distorted areas.
机译:本地化是一个研究领域,由于它作为高级服务的推动者具有至关重要的意义,因此引起了广泛的研究和商业兴趣。在大多数情况下,可以说GPS为室外跟踪和导航提供了无与伦比的解决方案。但是,对于在GPS受限或受挑战的环境(例如室内环境)中定位的说法还不一样,在这些环境中,诸如地板和墙壁等障碍物会严重衰减或反射高频无线电信号。这导致针对特定应用场景的众多竞争解决方案,产生了零散的解决方案格局。在本文中,我们基于极低频(kHz)磁感应(MI)场的使用,提出了一种3D定位的新方法。 MI定位的最重要属性是,壁,地板和严重影响竞争方法性能的人员等障碍物对准静态磁场基本上是“透明的”。 MI对稳健的操作会产生很多挑战,这些操作会扭曲位置,包括铁质材料的存在以及对用户旋转的敏感性。通过跨多个系统层的信号处理和传感器融合,我们展示了如何克服这些挑战。我们展示了其在多种环境中的高精度3D定位,即使在严重变形的区域中,其定位精度也低于0.8 m。

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