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Implementation of Wi-Fi Signal Sampling on an Android Smartphone for Indoor Positioning Systems

机译:用于室内定位系统的Android智能手机上Wi-Fi信号采样的实现

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摘要

Collecting and maintaining radio fingerprint for wireless indoor positioning systems involves considerable time and labor. We have proposed the quick radio fingerprint collection (QRFC) algorithm which employed the built-in accelerometer of Android smartphones to implement step detection in order to assist in collecting radio fingerprints. In the present study, we divided the algorithm into moving sampling (MS) and stepped MS (SMS), and describe the implementation of both algorithms and their comparison. Technical details and common errors concerning the use of Android smartphones to collect Wi-Fi radio beacons were surveyed and discussed. The results of signal sampling experiments performed in a hallway measuring 54 m in length showed that in terms of the amount of time required to complete collection of access point (AP) signals, static sampling (SS; a traditional procedure for collecting Wi-Fi signals) took at least 2 h, whereas MS and SMS took approximately 150 and 300 s, respectively. Notably, AP signals obtained through MS and SMS were comparable to those obtained through SS in terms of the distribution of received signal strength indicator (RSSI) and positioning accuracy. Therefore, MS and SMS are recommended instead of SS as signal sampling procedures for indoor positioning algorithms.
机译:收集和维护无线室内定位系统的无线电指纹会占用大量时间和劳力。我们提出了快速无线指纹采集(QRFC)算法,该算法采用Android智能手机的内置加速度计来实现步距检测,以帮助收集无线指纹。在本研究中,我们将算法分为移动采样(MS)和步进MS(SMS),并描述了这两种算法的实现及其比较。调查和讨论了有关使用Android智能手机收集Wi-Fi无线电信标的技术细节和常见错误。在长度为54 m的走廊中进行的信号采样实验的结果表明,就完成接入点(AP)信号收集所需的时间而言,静态采样(SS)是传统的收集Wi-Fi信号的过程)至少花了2个小时,而MS和SMS分别花了大约150和300 s。值得注意的是,就接收信号强度指示器(RSSI)的分布和定位精度而言,通过MS和SMS获得的AP信号与通过SS获得的AP信号相当。因此,建议使用MS和SMS代替SS作为室内定位算法的信号采样过程。

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