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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >IMPROVED INDOOR POSITIONING USING BLE DIFFERENTIAL DISTANCE CORRECTION AND PEDESTRIAN DEAD RECKONING
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IMPROVED INDOOR POSITIONING USING BLE DIFFERENTIAL DISTANCE CORRECTION AND PEDESTRIAN DEAD RECKONING

机译:利用BLE差分距离校正和行人死亡的改进室内定位

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摘要

Recently, indoor positioning becomes a popular issue because of its corresponding location-aware applications. Owing to the limits of the sheltered signal of satellites in indoor environments, one of the alternative scheme is Bluetooth Low Energy (BLE) technology. BLE device broadcasts Received Signal Strength Indicator (RSSI) for distance estimation and further positioning. However, in the complex indoor environment, the reflection, fading, and multipath effect of BLE make the variable RSSI and may lead to poor quality of RSSI. In this study, the concept called Differential Distance Correction (DDC) is similar to the Differential Global Navigation Satellite System (DGNSS). This method can eliminate some residuals and further improve the results with the corrected distance. On the other hand, Pedestrian Dead Reckoning (PDR) is another common indoor positioning method. PDR can propagate the next position from the current position by the implemented of inertial sensors. Despite that, the error of inertial sensors would accumulate with time and walking distance, which position update is required for restraining the drift. Accordingly, the two indoor positioning methods have their strong and weak point. BLE-based positioning is absolute positioning, while PDR is relative positioning. This study proposes a concept that combines the two methods. The pedestrian receives the RSSI and records the information from inertial sensors simultaneously. Through the complementary of two methods, the positioning results would be improved from 29% to 66% according to different travelled distance.
机译:最近,由于其相应的位置感知应用程序,室内定位成为一个受欢迎的问题。由于室内环境中卫星的庇护信号的限制,其中一个替代方案是蓝牙低能量(BLE)技术。 BLE设备广播接收的信号强度指示器(RSSI),用于距离估计和进一步定位。然而,在复杂的室内环境中,BLE的反射,衰落和多径效应使变量RSSI产生变量,可能导致RSSI的质量差。在本研究中,称为差分距离校正(DDC)的概念类似于差分全局导航卫星系统(DGNS)。该方法可以消除一些残差,并进一步改善校正距离的结果。另一方面,行人死亡估算(PDR)是另一种常见的室内定位方法。 PDR可以通过实施的惯性传感器从当前位置传播下一个位置。尽管如此,惯性传感器的误差会随时间和步行距离累积,抑制漂移需要哪个位置更新。因此,两个室内定位方法具有它们的强弱点。基于BLE的定位是绝对定位,而PDR是相对定位的。本研究提出了一种结合两种方法的概念。行人接收RSSI并同时记录来自惯性传感器的信息。通过两种方法的互补,根据不同的行驶距离,定位结果将从29%提高到66%。

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