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Indoor Large-Scale MIMO-Based RSSI Localization with Low-Complexity RFID Infrastructure

机译:基于室内大型MIMO的RSSI本地化具有低复杂性RFID基础设施

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摘要

Indoor localization based on unsynchronized, low-complexity, passive radio frequency identification (RFID) using the received signal strength indicator (RSSI) has a wide potential for a variety of internet of things (IoTs) applications due to their energy-harvesting capabilities and low complexity. However, conventional RSSI-based algorithms present inaccurate ranging, especially in indoor environments, mainly because of the multipath randomness effect. In this work, we propose RSSI-based localization with low-complexity, passive RFID infrastructure utilizing the potential benefits of large-scale MIMO technology operated in the millimeter-wave band, which offers channel hardening, in order to alleviate the effect of small-scale fading. Particularly, by investigating an indoor environment equipped with extremely simple dielectric resonator (DR) tags, we propose an efficient localization algorithm that enables a smart object equipped with large-scale MIMO exploiting the RSSI measurements obtained from the reference DR tags in order to improve the localization accuracy. In this context, we also derive Cramer–Rao lower bound of the proposed technique. Numerical results evidence the effectiveness of the proposed algorithms considering various arbitrary network topologies, and results are compared with an existing algorithm, where the proposed algorithms not only produce higher localization accuracy but also achieve a greater robustness against inaccuracies in channel modeling.
机译:基于非同步,低复杂性,使用接收信号强度指示器(RSSI)的无源射频识别(RFID)的室内定位具有由于其能量收集能力和低的各种内容(IOT)应用的各种内容互联网的巨大潜力复杂。然而,传统的基于RSSI的算法存在不准确的测距,特别是在室内环境中,主要是因为多径随机性效应。在这项工作中,我们提出了基于RSSI的定位,利用大型MIMO技术在毫米波频段中运行的大规模MIMO技术的潜在好处,提供频道硬化,以减轻小 - 缩小衰落。特别是,通过调查配备有极其简单的介质谐振器(DR)标签的室内环境,我们提出了一种有效的本地化算法,使配备有大规模MIMO的智能对象利用从参考DR标签获得的RSSI测量以改善本地化准确性。在这种情况下,我们还派生了克拉姆 - 饶的较低的拟议技术。数值结果证据证据了所提出的算法考虑各种任意网络拓扑的有效性,以及结果与现有算法进行了比较,其中所提出的算法不仅产生更高的定位精度,而且还可以实现渠道建模中的不准确性更大的鲁棒性。

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