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An Efficient Privacy-Aware Authentication Scheme for Distributed Mobile Cloud Computing Services without Bilinear Pairings

机译:无双线性配对的分布式移动云计算服务的一种有效的隐私感知身份验证方案

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摘要

Constructing efficient privacy-aware authentication scheme for Mobile Cloud Computing (MCC) services environment has been an important research topic with ever-increasing mobile devices. However, to the best of our knowledge, most of the schemes for MCC services use heavy bilinear pairings and map-to-point hash operations, which are two very time-consuming operations in modern public key cryptography. In this work, we construct an efficient privacy-aware authentication scheme for MCC services using elliptic curve cryptography. As a result, due to the fact that no bilinear pairings and map-to-point hash operations are involved in the execution, the proposed scheme has much better computation and communication efficiencies than existing related schemes. Detailed performance analysis shows that the computation and the communication costs of our scheme are about 17.44 and 10.64% less than that of the most effective related schemes. Besides, the security analysis shows that our scheme is provably secure in the random oracle model.
机译:随着移动设备的日益增多,为移动云计算(MCC)服务环境构建有效的隐私感知身份验证方案已成为重要的研究课题。但是,据我们所知,大多数用于MCC服务的方案都使用重双线性配对和映射到点的哈希操作,这是现代公钥密码术中两个非常耗时的操作。在这项工作中,我们使用椭圆曲线密码学为MCC服务构建了一种有效的隐私感知身份验证方案。结果,由于在执行过程中不涉及双线性配对和映射到点的哈希运算,因此与现有的相关方案相比,所提出的方案具有更好的计算和通信效率。详细的性能分析表明,与最有效的相关方案相比,我们的方案的计算和通信成本分别降低了17.44和10.64%。此外,安全性分析表明我们的方案在随机预言模型中是可证明的安全性。

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