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A Novel Method for Physical-Layer Authentication via Channel State Information

机译:一种基于信道状态信息的物理层认证的新方法

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The channel response between a wireless transmitter node and a receiver node changes as the nodes move and the environment changes. Recent studies have suggested several approaches to leverage such changes in channel response as an attribute for authenticating a communication node's claimed identity. We propose a specular reflector mapping approach to enable authentication of a communication node's reported location by comparing measured transmission channel characteristics to those expected for emissions from the reported location. This work focuses on how a specular reflecting plane can be estimated from the multipath time delay measurements over multiple transmitter positions presenting theoretical limits to estimating such a reflecting plane. Additionally, we provide a brief example to illustrate the value such a reflecting plane can bring in regards to authenticating a transmission's claimed position of origin.
机译:无线发送器节点和接收器节点之间的信道响应随节点的移动和环境的变化而变化。最近的研究提出了几种利用信道响应中的这种变化作为验证通信节点要求的身份的属性的方法。我们提出了一种镜面反射器映射方法,通过将测得的传输通道特性与预期来自报告位置的发射的传输信道特性进行比较,从而能够对通信节点的报告位置进行身份验证。这项工作着重于如何从多个发射器位置的多径时延测量中估计出镜面反射平面,从而给出了估计这种反射平面的理论极限。此外,我们提供了一个简短的示例来说明这种反射平面可以在验证传输的原始位置声明方面带来的价值。

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