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An Efficient Dynamic Group Key Agreement for Low-Power Mobile Devices

机译:低功耗移动设备的高效动态组密钥协议

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摘要

Group key agreement protocols are designed to provide a group of parties securely communicating over a public network with a session key. The mobile computing architecture is asymmetric in the sense of computational capabilities of participants. That is, the protocol participants consist of the stationary server (application servers) with sufficient computational power and a cluster of mobile devices (clients) with limited computational resources. It is desirable to minimize the amount of computation performed by each group member in a group involving low-power mobile devices such as smart cards or personal digital assistants (PDAs). Furthermore, we are required to update the group key with low computational costs when the members need to be excluded from the group or multiple new members need to be brought into an existing group. In this paper, we propose a dynamic group key protocol that offers computational efficiency to the clients with low-power mobile devices. We compare the total communicative and computational costs of our protocol with others and prove its security against a passive adversary in the random oracle model.
机译:组密钥协议协议旨在为一组团体提供公共密钥和会话密钥的安全通信。就参与者的计算能力而言,移动计算体系结构是不对称的。即,协议参与者包括具有足够计算能力的固定服务器(应用服务器)和具有有限计算资源的移动设备(客户端)集群。希望最小化涉及低功率移动设备(例如智能卡或个人数字助理(PDA))的组中每个组成员执行的计算量。此外,当需要将成员从组中排除或需要将多个新成员带入现有组时,我们需要以较低的计算成本来更新组密钥。在本文中,我们提出了一种动态组密钥协议,该协议可为具有低功耗移动设备的客户端提供计算效率。我们比较了该协议与其他协议的总通信和计算成本,并证明了它在随机预言机模型中针对被动对手的安全性。

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