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An Efficient Attribute-Based Encryption Scheme With Policy Update and File Update in Cloud Computing

机译:基于云计算的策略更新和文件更新的基于基于基于属性的加密方案

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摘要

Recently, more and more users and enterprises have entrusted data storage and platform construction to proxy cloud service provider (PCSP) through cloud technology. Under this background, the attribute-based encryption (ABE) mechanism is an alternative to fill the drawbacks of the traditional encryption through flexible fine-grained access policy and collusion prevention. However, there exist some security issues when the access policy and file need to be updated in practical applications. And the ABE has the problems of excessive computation and storage costs. In this article, an efficient ciphertext-policy ABE scheme with policy update and file update is proposed in cloud computing. The ciphertext components generated by first encryption can be shared when the policy update and file update happens. It reduces the storage and communication costs of the client, and the computational cost of the PCSP. Moreover, the proposed scheme is proved to be secure under the assumption of decision q-parallel bilinear Diffie-Hellman exponent (BDHE). Finally, experimental simulation shows that the proposed scheme is highly efficient in terms of policy update and file update.
机译:最近,越来越多的用户和企业通过云技术将数据存储和平台构造委托给代理云服务提供商(PCSP)。在此背景下,基于属性的加密(ABE)机制是通过灵活的细粒度访问策略和共谋预防来填补传统加密的缺点的替代方案。但是,当在实际应用程序中需要更新访问策略和文件时,存在一些安全问题。 ABE具有过度计算和存储成本的问题。在本文中,在云计算中提出了一个具有策略更新和文件更新的有效的密文 - 策略abe方案。当策略更新和文件更新发生时,可以共享由第一加密生成的密文组件。它降低了客户的存储和通信成本,以及PCSP的计算成本。此外,拟议方案被证明是在决定Q平行双线性Diffie-Hellman指数(BDHE)的决定下的安全。最后,实验模拟表明,在策略更新和文件更新方面,所提出的方案非常有效。

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