Advancing wireless link signatures for location distinction

Junxing Zhang, M. H. Firooz, Neal Patwari, S. Kasera
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引用次数: 140

Abstract

Location distinction is the ability to determine when a device has changed its position. We explore the opportunity to use sophisticated PHY-layer measurements in wireless networking systems for location distinction. We first compare two existing location distinction methods - one based on channel gains of multi-tonal probes, and another on channel impulse response. Next, we combine the benefits of these two methods to develop a new link measurement that we call the complex temporal signature. We use a 2.4 GHz link measurement data set, obtained from CRAWDAD [10], to evaluate the three location distinction methods. We find that the complex temporal signature method performs significantly better compared to the existing methods. We also perform new measurements to understand and model the temporal behavior of link signatures over time. We integrate our model in our location distinction mechanism and significantly reduce the probability of false alarms due to temporal variations of link signatures.
推进无线链路签名的位置区分
位置区分是确定设备何时改变其位置的能力。我们探索在无线网络系统中使用复杂的物理层测量来进行位置区分的机会。我们首先比较了现有的两种位置区分方法——一种基于多音调探头的信道增益,另一种基于信道脉冲响应。接下来,我们结合这两种方法的优点来开发一种新的链接测量方法,我们称之为复杂时间签名。我们使用从CRAWDAD[10]获得的2.4 GHz链路测量数据集来评估三种位置区分方法。我们发现,与现有的方法相比,复合时间签名方法的性能明显更好。我们还执行新的测量来理解和建模链接签名随时间变化的行为。我们将我们的模型集成到我们的位置区分机制中,大大降低了由于链接签名的时间变化而导致的假警报的概率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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