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Location Verification Systems Under Spatially Correlated Shadowing

机译:空间相关阴影下的位置验证系统

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The verification of the location information utilized in wireless communication networks is a subject of growing importance. In this work, we formally analyze, for the first time, the performance of a wireless location verification system (LVS) under the realistic setting of spatially correlated shadowing. Our analysis illustrates that anticipated levels of correlated shadowing can lead to a dramatic performance improvement of a received signal strength (RSS)-based LVS. We also analyze the performance of an LVS that utilizes differential received signal strength (DRSS), formally proving the rather counter-intuitive result that a DRSS-based LVS has identical performance to that of an RSS-based LVS, for all levels of correlated shadowing. Even more surprisingly, the identical performance of RSS and DRSS-based LVSs is found to hold even when the adversary does not optimize his true location. Only in the case where the adversary does not optimize all variables under his control, do we find the performance of an RSS-based LVS to be better than a DRSS-based LVS. The results reported here are important for a wide range of emerging wireless communication applications whose proper functioning depends on the authenticity of the location information reported by a transceiver.
机译:无线通信网络中使用的位置信息的验证是越来越重要的主题。在这项工作中,我们第一次正式分析了在空间相关阴影的实际设置下无线位置验证系统(LVS)的性能。我们的分析表明,相关阴影的预期水平可以大大提高基于接收信号强度(RSS)的LVS的性能。我们还分析了利用差分接收信号强度(DRSS)的LVS的性能,正式证明了在所有级别的相关阴影下,基于DRSS的LVS与基于RSS的LVS的性能完全相反的结果。更令人惊讶的是,即使对手没有优化其真实位置,也发现基于RSS和DRSS的LVS的性能相同。仅在对手未在其控制下优化所有变量的情况下,我们才发现基于RSS的LVS的性能要优于基于DRSS的LVS。此处报告的结果对于各种新兴的无线通信应用非常重要,这些应用的适当功能取决于收发器报告的位置信息的真实性。

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