IMU and Bluetooth Data Fusion to Achieve Submeter Position Accuracy in Indoor Positioning

Ugur Acar
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Abstract

Indoor navigation applications have become widespread in recent years with the ability of mobile phones which determine the position. Due to the inefficiency of global positioning system (GPS) indoors, other positioning methods have been developed based on local networks using technologies such as Bluetooth, wireless networks, ultra-wideband signals, ultrasonic signals, and radio frequency identification modules. Various technologies yield high or medium accuracy. Combining data from multiple sources via fusion enhances location precision. In this study, indoor positions were estimated using trilateration with Bluetooth devices, and the accuracy was improved by applying filters to the data from inertial measurement unit (IMU) sensors on the phone. As a result of combining Bluetooth and IMU data with data fusion, submeter accuracy was achieved. The results obtained were tested at Yildiz Technical University-Istanbul Türkiye. It was determined that 92% of the data was obtained with submeter accuracy.
IMU 和蓝牙数据融合实现室内定位的亚米级定位精度
近年来,随着移动电话确定位置的能力,室内导航应用变得广泛。由于全球定位系统(GPS)在室内的低效率,其他基于本地网络的定位方法已经开发出来,使用蓝牙、无线网络、超宽带信号、超声波信号和射频识别模块等技术。各种技术产生高或中等精度。通过融合将多个来源的数据组合在一起,可以提高定位精度。在这项研究中,利用蓝牙设备的三边测量来估计室内位置,并通过对手机上的惯性测量单元(IMU)传感器的数据应用滤波器来提高精度。将蓝牙和IMU数据结合起来,进行数据融合,达到亚米级精度。所获得的结果在伊尔德兹技术大学-伊斯坦布尔 rkiye进行了测试。确定92%的数据以亚米精度获得。
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