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Enhanced Indoor Navigation System with Beacons and Kalman Filters

机译:具有信标和卡尔曼滤波器的增强型室内导航系统

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Indoor positioning systems are used in a variety of applications from shopping malls and museums to subject monitoring and tracking. The reliability and usability of such systems are highly based on their accuracy as well as cost and ease of deployment. Although the Global Positioning System (GPS) is an accurate solution for outdoor use, it can not be used indoors. A popular approach is a wireless navigation system which makes use of Received Signal Strength Indicators (RSSI). However, signal propagation, as well as surrounding noise and a dynamic environment, can affect their performance. Recent advancements in Bluetooth Low Energy (BLE) devices and the introduction of small and inexpensive beacons can alleviate the problem. In this work, we introduce an indoor navigation system with BLE beacons. To measure system accuracy an Android application was developed to collect the signal. Moreover, a Kalman filter was also developed within the application to improve the accuracy. Experimental results showed improvement of systems accuracy in three square topologies. The Kalman filter improved the accuracy up to 78.9%. while the experiments also show a correlation between the overall accuracy and how close BLE beacons are to each other.
机译:室内定位系统用于购物中心和博物馆的各种应用,以进行监控和跟踪。这种系统的可靠性和可用性高度基于其准确性以及成本和易于部署。虽然全球定位系统(GPS)是户外使用的准确解决方案,但它不能在室内使用。一种流行的方法是一种无线导航系统,它利用接收信号强度指示器(RSSI)。但是,信号传播以及周围噪声和动态环境可能会影响其性能。蓝牙低能量(BLE)器件的最新进展以及引入小型和廉价的信标可以缓解问题。在这项工作中,我们介绍了一个带BLE信标的室内导航系统。为了测量系统精度,开发了Android应用程序以收集信号。此外,还在应用中开发了卡尔曼滤波器以提高精度。实验结果表明,三个方形拓扑中的系统精度的提高。卡尔曼滤波器改善了高达78.9 \%的准确性。虽然实验还显示了整体准确性与彼此彼此的近距离之间的相关性。

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