使用匿名测量进行定位

Niklas Wirström, A. Behboodi, Filip Lemic, T. Voigt, A. Wolisz
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引用次数: 9

摘要

基于距离的IEEE 802.15.4定位系统目前对室内部署的锚点密度要求相对较高。因此,使用外部传输源作为附加锚点可能是有益的。我们提出了在只有两个IEEE 802.15.4锚节点可用的情况下,使用WiFi信标提高基于距离的IEEE 802.15.4定位系统的定位精度的方法。我们通过从在线动态采样的RSSI跟踪中识别WiFi信标,并使用识别信标的RSSI值应用指纹和基于范围的方法来实现这一点。然而,由于WiFi流量的数据不能被IEEE 802.15.4设备解码,这些RSSI测量值缺乏可以将它们与特定WiFi接入点(ap)关联的标识符。因此,指纹识别和基于距离的方法都需要新颖的方法,以便将这些额外的WiFi接入点用作锚点。我们通过实际测量表明,我们的信标识别方法的假阳性率仅为3%,如果对IEEE 802.15.4锚点的距离测量相对准确,标准偏差为1 m和3 m,则定位精度可以分别提高47%和24%。
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Localization Using Anonymous Measurements
Range-based IEEE 802.15.4 localization systems currently require relatively high anchor density for indoor deployments. It can therefore be beneficial to use external sources of transmission as additional anchors. We present methods for using WiFi beacons to improve localization accuracy of a range-based IEEE 802.15.4 localization system in cases where only two IEEE 802.15.4 anchor nodes are available. We do this by identifying WiFi beacons from RSSI traces that we dynamically sample online, and applying fingerprinting and range-based methods using the RSSI values of the identified beacons. However, because the data of the WiFi traffic is not decodable by the IEEE 802.15.4 devices, these RSSI measurements lack identifiers that can associate them to specific WiFi Access Points (APs). Therefore, novel methods are required for both fingerprinting and range-based approaches to allow for these additional WiFi APs to be used as anchors. We show by using real-world measurements that our beacon identification method gives a false-positive rate of only 3%, and that if the range measurements to the IEEE 802.15.4 anchors are relatively accurate, with a standard deviation of 1 and 3 m, a localization accuracy improvement of 47% and 24% can be gained, respectively.
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