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MuCHLoc: Indoor ZigBee Localization System Utilizing Inter-Channel Characteristics

机译:MuCHLoc:利用通道间特性的室内ZigBee本地化系统

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摘要

The deployment of a large-scale indoor sensor network faces a sensor localization problem because we need to manually locate significantly large numbers of sensors when Global Positioning System (GPS) is unavailable in an indoor environment. Fingerprinting localization is a popular indoor localization method relying on the received signal strength (RSS) of radio signals, which helps to solve the sensor localization problem. However, fingerprinting suffers from low accuracy because of an RSS instability, particularly in sensor localization, owing to low-power ZigBee modules used on sensor nodes. In this paper, we present MuCHLoc, a fingerprinting sensor localization system that improves the localization accuracy by utilizing channel diversity. The key idea of MuCHLoc is the extraction of channel diversity from the RSS of Wi-Fi access points (APs) measured on multiple ZigBee channels through fingerprinting localization. MuCHLoc overcomes the RSS instability by increasing the dimensions of the fingerprints using channel diversity. We conducted experiments collecting the RSS of Wi-Fi APs in a practical environment while switching the ZigBee channels, and evaluated the localization accuracy. The evaluations revealed that MuCHLoc improves the localization accuracy by approximately 15% compared to localization using a single channel. We also showed that MuCHLoc is effective in a dynamic radio environment where the radio propagation channel is unstable from the movement of objects including humans.
机译:大型室内传感器网络的部署面临传感器定位问题,因为当室内环境中无法使用全球定位系统(GPS)时,我们需要手动定位大量传感器。指纹定位是一种依靠无线电信号的接收信号强度(RSS)的流行室内定位方法,有助于解决传感器定位问题。但是,由于RSS不稳定,特别是在传感器定位中,由于传感器节点上使用的低功耗ZigBee模块,指纹识别的准确性较低。在本文中,我们介绍了MuCHLoc,这是一种指纹传感器定位系统,可通过利用信道分集来提高定位精度。 MuCHLoc的关键思想是通过指纹定位从多个ZigBee信道上测量的Wi-Fi接入点(AP)的RSS提取信道分集。 MuCHLoc通过使用通道分集增加指纹的尺寸来克服RSS的不稳定性。我们进行了实验,在实际环境中在切换ZigBee通道的同时收集Wi-Fi AP的RSS,并评估了定位精度。评估显示,与使用单个通道进行定位相比,MuCHLoc将定位精度提高了约15%。我们还表明,MuCHLoc在动态无线电环境中有效,在该环境中,无线电传播通道由于包括人类在内的物体的移动而变得不稳定。

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