基于路由预测算法的信标逆指纹识别影响因素评估

M. Sridharan, J. Bigham, Paul Michael Campbell, E. Bodanese
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引用次数: 1

摘要

传统的基于射频(RF)的指纹识别由于其固有的准确性和可靠性,仍然是其他室内定位技术中最受欢迎的方法之一。然而,在定位系统的设计中,对可能影响指纹识别结果的因素进行分析的研究并不多见。在本文中,我们进行了一项研究,以推断是否减少配备高增益天线的接收器数量可以在复杂的室内环境中提供更好的蓝牙低功耗(BLE)指纹识别性能。评估在标准的家庭公寓中进行,采用以活动为中心的方法,使用单个可穿戴信标和多个接收器。基于排名的路线选择算法用于列出候选位置或路线,这些位置或路线表明受试者最可能的路径。此外,我们讨论了利用基于轨迹的预测模型实现逆指纹识别方法的好处,并研究了周围电干扰的影响。实验结果表明,增加天线增益和部署足够数量的接收机对总体排序精度有积极的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Factors Affecting Inverse Beacon Fingerprinting Using Route Prediction Algorithm
Conventional Radio Frequency (RF) based fingerprinting still remains one of the most popular methods amongst other indoor positioning techniques due to its inherent accuracy and reliability. However, not much prominence has been shown in analyzing certain factors that may affect the outcome of the fingerprinting method while designing the localization system. In this paper, we conduct a study to infer if a reduced number of receivers equipped with higher gain antennas can provide improved Bluetooth Low Energy (BLE) fingerprinting performance in a complex indoor environment. The evaluation is performed in a standard domestic apartment with an activity centric approach using a single wearable beacon and multiple receivers. A rank based route selection algorithm is used to list the candidate positions or routes that indicate the most likely path on which the subject was travelling. Furthermore, we discuss the benefits of implementing the inverse fingerprinting method with a trajectory based prediction model and also examine the effect of surrounding electrical interference. Experimental results indicate that an increased antenna gain in addition to deploying an adequate number of receivers have a positive effect on the overall ranking accuracy.
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