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A Low Complexity Low Power Indoor Positioning System Based on Wireless Received Signal Strength

机译:基于无线接收信号强度的低复杂性低功率室内定位系统

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In this paper, we propose an indoor positioning system based on Bluetooth low energy (BLE), and the localization tag is with characteristics of low power, low cost, and high portability. The proposed system consists of BLE tags, BLE/WiFi repeaters, and a fusion server. The BLE tag is a device which broadcasts BLE beacons. The BLE/WiFi repeaters collect the beacons transmitted from the tag and extract the received signal strength (RSS). The RSS values are then transmitted to the fusion server through WiFi, and the server will estimate the position of the BLE tag with RSS-based positioning algorithm. We propose an indoor positioning algorithm which is a hybrid from received signal strength indication (RSSI)-fingerprint and cell of origin (CoO) to estimate the BLE tag's location. Some modifications are made to typical RSSI-fingerprint and CoO algorithm to get better accuracy. The test results show 1.2 m to 1.4 m positioning accuracy. The size of the BLE tag is 1.7 cm in radius and 0.5 cm thick. Each BLE tag costs 3 US dollars. The current consumption of the tag is 50 μA which can be used without charge for 136 days with a CR2025 battery.
机译:在本文中,我们提出了一种基于蓝牙低能量(BLE)的室内定位系统,并且定位标签具有低功率,成本低,便携性高的特性。所提出的系统包括BLE标签,BLE / WiFi中继器和融合服务器。 BLE标记是广播BLE信标的设备。 BLE / WiFi中继器收集从标签传输的信标并提取接收的信号强度(RSS)。然后通过WiFi将RSS值传输到Fusion Server,并且服务器将估计基于RSS的定位算法的BLE标签的位置。我们提出了一种室内定位算法,其是来自接收信号强度指示(RSSI)-Fingerrint和原点(COO)单元的混合动力,以估计BLE标签的位置。对典型的RSSI指纹和COO算法进行了一些修改,以获得更好的准确性。测试结果显示1.2米至1.4米的定位精度。半径的BLE标签的尺寸为1.7厘米,厚0.5厘米。每个BLE标签花费3美元。标签的电流消耗是50μA,可以使用CR2025电池而无需充电使用136天。

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