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GRAAD: Group Anonymous and Accountable D2D Communication in Mobile Networks

机译:GRAAD:移动网络中的组匿名和负责的D2D通信

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摘要

Device-to-device (D2D) communication is mainly launched by the transmission requirements between devices for specific applications such as proximity services in long-term evolution advanced networks, and each application will form a group of registered devices for the network-covered and network-absent D2D communications. During the applications of D2D communication, each device needs to identify the other devices of the same group in proximity by their group identity. This leads to the exposure of group information, by which the usage of applications can be analyzed by eavesdroppers. Hence, this paper introduces network-covered and network-absent authenticated key exchange protocols for D2D communications to guarantee accountable group anonymity, end-to-end security to network operators, as well as traceability and revocability for accounting and management requirements. We formally prove the security of those protocols, and also develop an analytic model to evaluate the quality of authentication protocols by authentication success rate in D2D communications. Besides, we implement the proposed protocols on android mobile devices to evaluate the computation costs of the protocols. We also evaluate the authentication success rate by the proposed analytic model and prove the correctness of the analytic model via simulation. Those evaluations show that the proposed protocols are feasible to the performance requirements of D2D communications.
机译:设备到设备(D2D)通信主要是由特定应用的设备之间的传输要求发起的,例如长期演进高级网络中的邻近服务,并且每个应用将形成一组已注册的设备,用于网络覆盖和网络-缺少D2D通信。在D2D通信的应用期间,每个设备都需要通过其组标识来识别同一组中的其他设备。这导致了组信息的暴露,通过窃听者可以分析应用程序的使用情况。因此,本文介绍了用于D2D通信的网络覆盖的和缺少网络的身份验证密钥交换协议,以保证负责的组匿名性,网络运营商的端到端安全性以及对记帐和管理要求的可追溯性和可撤消性。我们正式证明了这些协议的安全性,还开发了一种分析模型,用于通过D2D通信中的身份验证成功率来评估身份验证协议的质量。此外,我们在android移动设备上实现了拟议的协议,以评估协议的计算成本。我们还通过提出的解析模型评估认证成功率,并通过仿真证明了解析模型的正确性。这些评估表明,提出的协议对于D2D通信的性能要求是可行的。

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