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FINE-GRAINED ACCESS CONTROL SYSTEMS SUITABLE FOR RESOURCE-CONSTRAINED USERS IN CLOUD COMPUTING

机译:适用于在云计算中由资源受限的用户使用的精细访问控制系统

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摘要

For the sake of practicability of cloud computing, fine-grained data access is frequently required in the sense that users with different attributes should be granted different levels of access privileges. However, most of existing access control solutions are not suitable for resource-constrained users because of large computation costs, which linearly increase with the complexity of access policies. In this paper, we present an access control system based on ciphertext-policy attribute-based encryption. The proposed access control system enjoys constant computation cost and is proven secure in the random oracle model under the decision Bilinear Diffie-Hellman Exponent assumption. Our access control system supports AND-gate access policies with multiple values and wildcards, and it can efficiently support direct user revocation. Performance comparisons indicate that the proposed solution is suitable for resource-constrained environment.
机译:出于云计算实用性的考虑,经常需要对细粒度的数据访问,因为应该向具有不同属性的用户授予不同级别的访问特权。但是,大多数现有的访问控制解决方案由于计算成本高而不适合资源受限的用户,计算成本随着访问策略的复杂性线性增加。在本文中,我们提出了一种基于密文策略属性加密的访问控制系统。所提出的访问控制系统具有恒定的计算成本,并且在决策双线性Diffie-Hellman指数假设的随机预言模型中被证明是安全的。我们的访问控制系统支持具有多个值和通配符的AND门访问策略,并且可以有效地支持直接用户吊销。性能比较表明,所提出的解决方案适用于资源受限的环境。

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