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New Algorithm for Secure Outsourcing of Modular Exponentiation with Optimal Checkability Based on Single Untrusted Server

机译:基于单台不可信服务器的模块化可验证性最优检查安全外包新算法

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Nowadays, cloud computing is increasingly popular. As its important application, outsourcing has aroused great concern. Modular exponentiation is an expensive discrete-logarithm operation and it is difficult for users to calculate locally. Therefore, securely outsourcing modular exponentiation to cloud is a good choice for resource-limited users to reduce computation overhead. In this paper, to outsource modular exponentiation calculation, we dope out a fully verifiable secure outsourcing scheme with single server, so as to eliminate the collusion attacks which occur in algorithms based on two untrusted servers. Meanwhile, our algorithm allows outsourcers to detect any misbehavior with probability 1, which means the checkability of our algorithm shows a significant improvement in comparison to other single server based schemes. Furthermore, to protect data privacy, we propose a new division method to hide the primitive outsourced data. Compared with the state-of-the-art schemes, our secure outsourcing algorithm has an outstanding performance in both efficiency and checkability.
机译:如今,云计算越来越受欢迎。外包作为其重要的应用,引起了人们的极大关注。模幂运算是一种昂贵的离散对数运算,用户难以本地计算。因此,将模块化幂运算安全地外包给云是资源有限的用户减少计算开销的好选择。在本文中,为了将模块化的指数计算进行外包,我们采用单个服务器提供了一种完全可验证的安全外包方案,以消除基于两个不可信服务器的算法中发生的合谋攻击。同时,我们的算法允许外包商以概率1检测到任何不当行为,这意味着与其他基于单服务器的方案相比,我们的算法的可检查性显示出显着的改进。此外,为了保护数据隐私,我们提出了一种新的划分方法以隐藏原始的外包数据。与最新方案相比,我们的安全外包算法在效率和可检查性方面均具有出色的性能。

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