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Privacy-Preserving Location Authentication in Wi-Fi Networks Using Fine-Grained Physical Layer Signatures

机译:使用细粒度物理层签名的Wi-Fi网络中的隐私保护位置身份验证

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A recent measurement reveals that a large portion of the reported locations is either forged or superfluous, which raises security issues such as bogus alibis and illegal usage of restricted resources. However, most prior approaches leak users’ location information or rely on external devices. To overcome these limitations, we propose , a privacy-preserving location authentication system that verifies users’ location information based on physical layer (PHY) information available in legacy Wi-Fi preambles. The crux of PriLA is to turn detrimental features in wireless systems, namely carrier frequency offset (CFO) and multipath, into useful signatures for privacy protection and authentication. In particular, PriLA exploits CFO and channel state information (CSI) to secure wireless transmissions starting from the handshake phase between mobile users and the access point (AP), and meanwhile verify the truthfulness of users’ reported locations based on users’ multipath profiles. We have implemented PriLA on GNURadio/USRP platform and commercial off-the-shelf Intel 5300 NICs, and the experimental results show that PriLA achieves the authentication accuracy of 93.2% on average, while leaking merely 45.7% information in comparison with the state-of-the-art approach.
机译:最近的一项测量表明,报告的位置中有很大一部分是伪造的或多余的,这带来了安全问题,例如虚假的证明和非法使用受限资源。但是,大多数现有方法都会泄漏用户的位置信息或依赖外部设备。为了克服这些限制,我们提出了一种隐私保护的位置验证系统,该系统根据旧版Wi-Fi前导码中可用的物理层(PHY)信息验证用户的位置信息。 PriLA的症结在于将无线系统中的有害功能(即载波频率偏移(CFO)和多径)转变为有用的签名,以保护隐私和进行身份验证。特别是,PriLA利用CFO和信道状态信息(CSI)来保护从移动用户和接入点(AP)之间的握手阶段开始的无线传输,并同时根据用户的多路径配置文件验证用户报告的位置的真实性。我们已经在GNURadio / USRP平台和商用现成的Intel 5300 NIC上实现了PriLA,实验结果表明PriLA的平均身份验证准确率达到93.2%,而与之相比,泄漏的信息仅为45.7%。最先进的方法。

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