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Fast Radio Map Construction by using Adaptive Path Loss Model Interpolation in Large-Scale Building

机译:大型建筑中采用自适应路径损耗模型插值的快速无线电地图构建

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摘要

The radio map construction is usually time-consuming and labor-sensitive in indoor fingerprinting localization. We propose a fast construction method by using an adaptive path loss model interpolation. Received signal strength (RSS) fingerprints are collected at sparse reference points by using multiple smartphones based on crowdsourcing. Then, the path loss model of an access point (AP) can be built with several reference points by the least squares method in a small area. Afterwards, the RSS value can be calculated based on the constructed model and corresponding AP’s location. In the small area, all models of detectable APs can be built. The corresponding RSS values can be estimated at each interpolated point for forming the interpolated fingerprints considering RSS loss, RSS noise and RSS threshold. Through combining all interpolated and sparse reference fingerprints, the radio map of the whole area can be obtained. Experiments are conducted in corridors with a length of 211 m. To evaluate the performance of RSS estimation and positioning accuracy, inverse distance weighted and Kriging interpolation methods are introduced for comparing with the proposed method. Experimental results show that our proposed method can achieve the same positioning accuracy as complete manual radio map even with the interval of 9.6 m, reducing 85% efforts and time of construction.
机译:在室内指纹定位中,无线电地图的构建通常是耗时且劳动敏感的。我们提出了一种使用自适应路径损耗模型插值的快速构造方法。通过使用基于众包的多个智能手机,在稀疏参考点收集接收信号强度(RSS)指纹。然后,可以在最小面积内通过最小二乘法用几个参考点建立接入点(AP)的路径损耗模型。然后,可以根据构建的模型和相应AP的位置来计算RSS值。在较小的区域中,可以建立所有可检测AP的模型。考虑到RSS损失,RSS噪声和RSS阈值,可以在每个内插点处估计对应的RSS值以形成内插指纹。通过组合所有内插的和稀疏的参考指纹,可以获得整个区域的无线电图。实验在长度为211 m的走廊上进行。为了评估RSS估计的性能和定位精度,引入了逆距离加权和Kriging插值方法,以与所提出的方法进行比较。实验结果表明,即使间隔为9.6 m,我们提出的方法也可以达到与完整的手动无线电地图相同的定位精度,减少了85%的工作量和时间。

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