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MagB: Repurposing the Magnetometer for Fine-Grained Localization of IoT Devices

机译:MAGB:修复磁力仪以进行物联网设备的细粒度定位

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Interest in fine-grained indoor localization remains high and various approaches including those based on Radio Frequency (RF), ultrasound, acoustic, magnetic field and light have been proposed. However, while the achieved accuracy may be high, many of these approaches do not work well in environments with lots of obstructions. In this paper, we present MagB, a decimeter-level localization scheme that uses the magnetometer available on many IoT devices. MagB estimates the bearing of magnetic beacons by detecting changes in the magnetic field strength. Localization is then performed based on Angle-of-Arrival (AoA) information. We have built a prototype of MagB using low cost, off-the-shelf components. Our evaluation shows that MagB is able to achieve a median accuracy of about 13cm and can localize devices even when they are placed in steel filing cabinet or inside the casing of a running PC.
机译:对细粒室内定位的兴趣仍然很高,并且已经提出了基于射频(RF),超声波,声学,磁场和光的各种方法。 然而,虽然实现的准确性可能很高,但是这些方法中的许多方法在具有大量障碍物的环境中不起作用。 在本文中,我们呈现了MAGB,比例级定位方案,这些方案使用许多物流仪在许多IOT设备上提供。 MAGB通过检测磁场强度的变化来估计磁性信标的轴承。 然后基于到达角度(AOA)信息来执行定位。 我们使用低成本,现成部件构建了MAGB的原型。 我们的评价表明,MAGB能够达到约13厘米的中值精度,并且即使它们被放置在钢送柜或运行PC的壳体内,也可以定位设备。

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