基于改进RSSI和Trilateration的BLE室内定位

Camellia S. Mouhammad, A. Allam, Mohamed Abdel-Raouf, Ehab Shenouda, M. Elsabrouty
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引用次数: 8

摘要

蓝牙BLE (Bluetooth low energy)工作在ISM频段,容易出现信号波动,从而影响接收信号强度指标(RSSI)。RSSI是目前应用最广泛的定位算法的主干,RSSI的波动会对定位估计精度产生负面影响。本文提出了一种用于医疗应用的室内定位的精确解决方案。这项工作展示了如何克服由于设备和环境造成的RSSI不稳定性,并计算目标与阅读器的距离。然后利用这些距离,通过改进的三边测量算法得到目标的坐标。提出的定位方法基于:只扫描一个BLE广告频道,在距离计算前引入硬波动去除滤波器,在距离计算前引入加权卡尔曼滤波器,在位置计算时引入加权三边检验。测试结果证实,该系统在视线测试中95%的读数误差小于0.5m。此外,该系统在成本和功耗方面具有可扩展性和优化性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BLE Indoor Localization based on Improved RSSI and Trilateration
Bluetooth low energy (BLE) operating in the ISM band is prone to signal fluctuations, which affect the received signal strength indicator (RSSI). RSSI is the backbone of most widely used localization algorithms and thus such fluctuations will have a negative impact on the location estimation accuracy. This paper proposes an accurate solution for indoor localization for medical applications. This work shows how to overcome RSSI instability due to equipment and environment, and to calculate the distances of a target from readers. Then the distances are used to get the coordinates of the target by means of improved trilateration algorithm. The proposed localization is based on the following: scanning only one BLE advertising channel, introducing a hard fluctuations removal filter, a weighted Kalman filter before distances calculation, and a weighted trilateration for position calculation. Test results confirm that the proposed system has an error of less than 0.5m for 95% of readings in line of sight testing. Also, the system is scalable and optimized in terms of cost and power consumption.
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