Title :
FEACS: A Flexible and Efficient Access Control Scheme for Cloud Computing
Author :
Yu Zhang ; Jing Chen ; Ruiying Du ; Lan Deng ; Yang Xiang ; Qing Zhou
Author_Institution :
Dept. of Comput. Sci., Wuhan Univ., Wuhan, China
Abstract :
In the past few years, cloud computing has emerged as one of the most influential paradigms in the IT industry. As promising as it is, this paradigm brings forth many new challenges for data security because users have to outsource sensitive data on untrusted cloud servers for sharing. In this paper, to guarantee the confidentiality and security of data sharing in cloud environment, we propose a Flexible and Efficient Access Control Scheme (FEACS) based on Attribute-Based Encryption, which is suitable for fine-grained access control. Compared with existing state-of-the-art schemes, FEACS is more practical by following functions. First of all, considering the factor that the user membership may change frequently in cloud environment, FEACS has the capability of coping with dynamic membership efficiently. Secondly, full logic expression is supported to make the access policy described accurately and efficiently. Besides, we prove in the standard model that FEACS is secure based on the Decisional Bilinear Diffie-Hellman assumption. To evaluate the practicality of FEACS, we provide a detailed theoretical performance analysis and a simulation comparison with existing schemes. Both the theoretical analysis and the experimental results prove that our scheme is efficient and effective for cloud environment.
Keywords :
authorisation; cloud computing; cryptography; decision making; network servers; outsourcing; FEACS; IT industry; attribute-based encryption; cloud computing; cloud environment; data security; data sharing confidentiality; decisional bilinear Diffie-Hellman assumption; fine-grained access control; flexible and efficient access control scheme; full logic expression; sensitive data outsourcing; untrusted cloud servers; Access control; Cloud computing; Encryption; Games; Registers; attribute-based encryption; cloud computing; dynamic membership; full logic expression;
Conference_Titel :
Trust, Security and Privacy in Computing and Communications (TrustCom), 2014 IEEE 13th International Conference on
Conference_Location :
Beijing
DOI :
10.1109/TrustCom.2014.42