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Map-aware models for indoor wireless localization systems: an experimental study

机译:室内无线定位系统的地图感知模型:一项实验研究

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摘要

The accuracy of indoor wireless localization systems can be substantially enhanced by map-awareness, i.e., by the knowledge of the map of the environment in which localization signals are acquired. In fact, this knowledge can be exploited to cancel out, at least to some extent, the signal degradation due to propagation through physical obstructions, i.e., to the so called non-line-of-sight bias. This result can be achieved by developing novel localization techniques that rely on proper map-aware statistical modelling of the measurements they process. In this manuscript a unified statistical model for the measurements acquired in map-aware localization systems based on time-of-arrivaland received signal strength techniques is developed and its experimental validation is illustrated. Finally, the accuracy of the proposed map-aware model is assessed and compared with that offered by its map-unaware counterparts. Our numerical results show that, when the quality of acquired measurements is poor, map-aware modelling can enhance localization accuracy by up to 110% in certain scenarios.
机译:室内无线定位系统的准确性可以通过地图感知(即,通过了解获取定位信号的环境的地图)来显着提高。实际上,可以利用该知识至少在某种程度上抵消由于通过物理障碍物传播的信号衰减,即所谓的非视线偏差。可以通过开发新颖的定位技术来获得此结果,该技术依赖于对其处理的测量值的正确地图感知统计模型。在该手稿中,针对基于到达时间接收信号强度技术的地图感知定位系统中获得的测量数据,建立了统一的统计模型,并说明了其实验验证。最后,评估了拟议的地图感知模型的准确性,并将其与地图未知模型所提供的准确性进行了比较。我们的数值结果表明,当所获取的测量质量较差时,在某些情况下,可感知地图的建模可以将定位精度提高多达110%。

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