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首页> 外文期刊>IEEE Transactions on Signal Processing >Approximate Calibration-Free Trajectory Reconstruction in a Wireless Network
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Approximate Calibration-Free Trajectory Reconstruction in a Wireless Network

机译:无线网络中的近似无标定轨迹重建

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摘要

The problem of location tracking of a mobile station in a wireless network has received considerable attention in recent literature. In many installations, a mobile station transmits a radio frequency signal which is received at a number of base stations, from which location estimation follows. Such an application requires some form of signal-distance calibration, either an empirical signal map, or a model-based method which relies on functional relationships between signal and distance derivable from physical principles. In this paper, we propose an alternative approach in which a time series of received signal strength (RSS) measurements is mapped onto a plane in a manner which preserves the general topological and directional properties of any trajectory of a mobile station. This is accomplished without requiring a signal-distance calibration, or even exact knowledge of the base station locations. A detailed proof of the stability properties of the mapping is given. An implementation protocol is developed, and illustrated with numerical examples.
机译:在最近的文献中,无线网络中的移动台的位置跟踪问题已经受到相当大的关注。在许多设施中,移动站发送射频信号,该射频信号在多个基站处接收,据此进行位置估计。这样的应用需要某种形式的信号距离校准,或者是经验信号图,或者是基于模型的方法,该方法依赖于信号和可从物理原理得出的距离之间的函数关系。在本文中,我们提出了一种替代方法,其中将接收信号强度(RSS)测量值的时间序列映射到一个平面上,该方式可以保留移动站任何轨迹的一般拓扑和方向特性。无需信号距离校准,甚至无需确切了解基站位置即可完成此操作。给出了映射稳定性特性的详细证明。开发了一种实现协议,并通过数字示例进行了说明。

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