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首页> 外文期刊>Computer communication review >FALE: Fine-grained Device Free Localization that can Adaptively work in Different Areas with Little Effort
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FALE: Fine-grained Device Free Localization that can Adaptively work in Different Areas with Little Effort

机译:FALE:细粒度的设备免费本地化,可以轻松地在不同区域自适应地工作

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摘要

Many emerging applications and the ubiquitous wireless signals have accelerated the development of Device Free localization (DFL) techniques, which can localize objects without the need to carry any wireless devices. Most traditional DFL methods have a main drawback that as the pre-obtained Received Signal Strength (RSS) measurements (i.e., fingerprint) in one area cannot be directly applied to the new area for localization, and the calibration process of each area will result in the human effort exhausting problem. In this paper, we propose FALE, a fine-grained transferring DFL method that can adaptively work in different areas with little human effort and low energy consumption. FALE employs a rigorously designed transferring function to transfer the fingerprint into a projected space, and reuse it across different areas, thus greatly reduce the human effort. On the other hand, FALE can reduce the data volume and energy consumption by taking advantage of the compressive sensing (CS) theory. Extensive real-word experimental results also illustrate the effectiveness of FALE.
机译:许多新兴的应用程序和无处不在的无线信号加速了无设备定位(DFL)技术的发展,该技术可以在无需携带任何无线设备的情况下定位对象。大多数传统的DFL方法都有一个主要缺点,因为一个区域中的预先获得的接收信号强度(RSS)测量(即指纹)无法直接应用于新区域进行定位,并且每个区域的校准过程都会导致令人费力的人力问题。在本文中,我们提出了FALE,这是一种细粒度的转移DFL方法,该方法可以自适应地工作在不同的区域,而无需人工,能耗低。 FALE采用了严格设计的传输功能,可以将指纹传输到投影空间中,并在不同区域重复使用,从而大大减少了人工。另一方面,FALE可以利用压缩感测(CS)理论来减少数据量和能耗。大量的实词实验结果也说明了FALE的有效性。

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