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Towards indoor localization of pedestrians via smart building vibration sensing

机译:通过智能建筑振动感应实现行人的室内定位

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Indoor localization by means of GNSS or a cellular-based method is known to be difficult. Potentially, other wireless technologies could address the technical requirements, but they usually imply the end user must carry a device compatible with this additional technology too. In this paper we investigate the feasibility of collecting vibration sensor readings within a building to locate pedestrians by their footsteps. Vibration propagation in buildings is markedly different than radio wave propagation in free space, thus prompting one to question the suitability of conventional positioning algorithms for this task. We presents the results of experiments conducted with actual measurements from an instrumented, smart building. We expect such buildings to become more prevalent in the future thanks to the technical advances and cost reductions provided by the Internet-of-Things (IoT). The promising initial findings indicate that time-difference-of-arrival, within a limited spatial extent, could be a viable localization technique, and these results encourage further research into vibration-based indoor localization.
机译:已知通过GNSS或基于细胞的方法来室内定位是困难的。潜在的是,其他无线技术可以解决技术要求,但通常暗示最终用户必须携带与此额外技术兼容的设备。在本文中,我们调查了在建筑物内收集振动传感器读数的可行性来定位步行者的脚步。建筑物中的振动传播比自由空间中的无线电波传播显着不同,从而提示一个问题对此任务的传统定位算法的适用性。我们介绍了使用仪表智能建筑的实际测量进行的实验结果。由于互联网(IOT)提供的技术进步和成本减少,我们预计未来将变得更加普遍。有希望的初始调查结果表明,在有限的空间范围内,到达时间差异,可以是可行的本地化技术,这些结果促进进一步研究基于振动的室内定位。

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