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Indoor localization based on hybrid Wi-Fi hotspots

机译:基于混合Wi-Fi热点的室内定位

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摘要

Most existing indoor localization algorithms basedudon Wi-Fi signals mainly rely on wireless access points (APs), i.e. hotspots, with fixed deployment, which are easily affected by the non-line of sight (NLOS) factors and the multipath effect. There also exist many other problems, such as positioning stability and blind spots, which can cause decline in positioning accuracy at certain positions, or even failure of positioning. However, it will increase the hardware cost by adding more static APs; if the localization mechanism integrates different wireless signals is adopted, it tends to cause high cost of positioning and long complex positioning process, etc. In this paper, we proposed a novel hybrid Wi-Fi access point-based localization algorithm (HAPLA), which utilizes the received signal strength indicationsud(RSSI) from static APs and dynamic APs to determine location scenes. It flexibly selects available AP signals and dynamically switches the positioning methods, thus to achieve efficient positioning. HAPLA only relies on the Wi-Fi signal strength values, which can reduce the cost of hardware and the complexity of localization system. The proposed method can also be able to effectively prevent interference from different signal sources. Inudour test scenario, we deployed typical indoor scenes with the NLOS factors and the multipath effect for experiments. The experiments demonstrate the effectiveness of proposed method and the results show that, compared with the classic K nearest neighbor-based location algorithm (KNN) and the variance-based fingerprint distance adjustment algorithm (VFDA), HAPLA has better adaptability and higher positioning accuracy, and can effectively solve the problem of positioning blind spots.
机译:现有的大多数基于 udon Wi-Fi信号的室内定位算法主要依赖于具有固定部署的无线接入点(AP),即热点,其很容易受到视线(NLOS)因素和多径效应的影响。还存在许多其他问题,例如定位稳定性和盲点,它们可能导致某些位置的定位精度下降,甚至导致定位失败。但是,通过添加更多的静态AP将增加硬件成本。如果采用集成不同无线信号的定位机制,往往会导致定位成本高,定位过程复杂等。本文提出了一种新的基于Wi-Fi混合接入点的定位算法(HAPLA),利用从静态AP和动态AP接收到的信号强度指示 ud(RSSI)来确定位置场景。它可以灵活地选择可用的AP信号并动态切换定位方法,从而实现高效定位。 HAPLA仅依赖Wi-Fi信号强度值,这可以降低硬件成本和本地化系统的复杂性。所提出的方法还能够有效地防止来自不同信号源的干扰。在测试环境中,我们将具有NLOS因子和多径效应的典型室内场景用于实验。实验证明了该方法的有效性,结果表明,与经典的基于K最近邻的定位算法(KNN)和基于方差的指纹距离调整算法(VFDA)相比,HAPLA具有更好的适应性和更高的定位精度,可以有效解决盲点定位问题。

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    Xu X.; Yu T.; Li S.;

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  • 年度 2017
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