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Shadow fading assisted device-free localization for indoor environments

机译:阴影衰落为室内环境提供辅助设备本地化

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Device-free localization (DFL) localizes the target by employing the variation of received signal strength (RSS) due to the presence of the target which wears no device. The existing fingerprint-based DFL (FDFL) method simply compares the online RSS variations with the radio map and does not care about how RSS variation is caused. However, we have found that when some links are shadowed by the target, even in indoor environments, the RSS of the links will experience large attenuation. Hence, in this paper, we propose to leverage shadowed links to enhance the performance of FDFL method. Specifically, we first detect the shadowed links in the monitored region, where the detection takes both the RSS variations and fade levels of the links into consideration. Afterwards, we reformulate the fingerprint matching by reducing the search space into the shadow region for improving the localization accuracy. Moreover, we propose a geometrical localization (GL) method if shadow regions of the detected shadowed links intersect. The experimental results show that the performance of the proposed method has been improved significantly compared to the traditional FDFL method.
机译:无设备定位(DFL)通过采用由于存在的目标的存在而采用接收信号强度(RSS)的变化来定位目标。现有的指纹的DFL(FDFL)方法只是将在线RSS变化与无线电贴图进行比较,并且不关心如何引起RSS变化。但是,我们发现,当某些链接被目标阴影时,即使在室内环境中,链接的RSS也会经历大的衰减。因此,在本文中,我们建议利用阴影链接来提高FDFL方法的性能。具体地,我们首先检测受监控区域中的阴影链接,其中检测考虑了RSS变化和淡入链路的淡入级别。之后,我们通过将搜索空间减少到荫区域以提高本地化精度来重构指纹匹配。此外,如果检测到的阴影链路的阴影区域相交,我们提出了几何定位(GL)方法。实验结果表明,与传统的FDFL方法相比,该方法的性能得到了显着改善。

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