RSSI Based Localization of Bluetooth Devices for Visually Impaired

Muhammad Irfan Aziz, T. Owens, Uzair Khaleeq-uz-Zaman, Muhammad B. Akbar
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引用次数: 5

Abstract

Localization for visually impaired people in dynamically changing environments with unexpected hazards and obstacles is a current need. Many techniques have been discussed in the literature with respect to location-based services and techniques used for the positioning of devices. Time difference of arrival (TDOA), time of arrival (TOA) and received signal strength (RSS) have been widely used for the positioning but narrow band signals such as Bluetooth cannot efficiently utilize TDOA or TOA. Received signal strength indicator (RSSI) to measure RSS, has been found to be more reliable. RSSI measurement estimations depend heavily on the environmental interference. RSSI measurement estimations of Bluetooth systems can be improved either by improving the existing methodologies used to implement them or by using fusion techniques that employ Kalman filters to combine more than one RSSI method to improve the results significantly. This paper focuses on improving the existing methodology of measuring RSSI by proposing a new method using trilateration for localization of Bluetooth devices for visually impaired people. To validate the new method, class 2 Bluetooth devices (Blue Giga WT-12) were used with an evaluation board. The software required was developed in National Instruments LabView. The PCB was designed and manufactured as well. Experiments were then conducted, and surface plots of Bluetooth modules were obtained to show the signal interference and other environmental effects. Lastly, the results were discussed, and relevant conclusions were drawn.
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基于RSSI的视障蓝牙设备定位
视障人士在充满意外危险和障碍的动态变化环境中进行定位是当前的需求。关于基于位置的服务和用于设备定位的技术,文献中已经讨论了许多技术。到达时间差(TDOA)、到达时间(TOA)和接收信号强度(RSS)被广泛用于定位,但蓝牙等窄带信号不能有效地利用TDOA或TOA。接收信号强度指标(RSSI)来衡量RSS,已被发现是比较可靠的。RSSI测量估计严重依赖于环境干扰。蓝牙系统的RSSI测量估计可以通过改进用于实现它们的现有方法来改进,或者通过使用卡尔曼滤波的融合技术来组合多个RSSI方法来显着改善结果。本文着重于改进现有的RSSI测量方法,提出了一种使用三边定位视障人士蓝牙设备的新方法。为了验证新方法,使用了带有评估板的2类蓝牙设备(Blue Giga WT-12)。所需的软件是在美国国家仪器公司LabView中开发的。设计并制造了PCB。然后进行实验,得到蓝牙模块的表面图,以显示信号干扰和其他环境影响。最后对研究结果进行了讨论,得出了相关结论。
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