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Indoor Localization and Radio Map Estimation Using Unsupervised Manifold Alignment with Geometry Perturbation

机译:使用无监督歧管对准和几何摄动的室内定位和无线电地图估计

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The Received Signal Strength (RSS) based fingerprinting approaches for indoor localization pose a need for updating the fingerprint databases due to dynamic nature of the indoor environment. This process is hectic and time-consuming when the size of the indoor area is large. The semi-supervised approaches reduce this workload and achieve good accuracy around 15 percent of the fingerprinting load but the performance is severely degraded if it is reduced below this level. We propose an indoor localization framework that uses unsupervised manifold alignment. It requires only 1 percent of the fingerprinting load, some crowd sourced readings, and plan coordinates of the indoor area. The 1 percent fingerprinting load is used only in perturbing the local geometries of the plan coordinates. The proposed framework achieves less than 5 m mean localization error, which is considerably better than semi-supervised approaches at very small amount of fingerprinting load. In addition, the few location estimations together with few fingerprints help to estimate the complete radio map of the indoor environment. The estimation of radio map does not demand extra workload rather it employs the already available information from the proposed indoor localization framework. The testing results for radio map estimation show almost 50 percent performance improvement by using this information as compared to using only fingerprints.
机译:由于室内环境的动态特性,用于室内定位的基于接收信号强度(RSS)的指纹识别方法需要更新指纹数据库。当室内区域较大时,此过程比较麻烦且耗时。半监督方法减少了此工作量,并在指纹负载的15%左右达到了良好的准确性,但是如果将其降低到低于此水平,则性能会严重下降。我们提出了一种使用无监督歧管对准的室内定位框架。它仅需要指纹负载的1%,一些来自人群的读数以及室内区域的平面坐标。 1%的指纹负载仅用于扰动平面坐标的局部几何形状。所提出的框架实现了小于5 m的平均定位误差,这在指纹负载量非常小的情况下比半监督方法要好得多。另外,很少的位置估计和很少的指纹有助于估计室内环境的完整无线电地图。无线电地图的估计不需要额外的工作量,而是采用了来自建议的室内定位框架的已有信息。无线电地图估计的测试结果表明,使用此信息与仅使用指纹相比,性能提高了近50%。

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