Title :
A Privacy-Aware Authentication Scheme for Distributed Mobile Cloud Computing Services
Author :
Jia-Lun Tsai ; Nai-Wei Lo
Author_Institution :
Dept. of Inf. Manage., Nat. Taiwan Univ. of Sci. & Technol., Taipei, Taiwan
Abstract :
In modern societies, the number of mobile users has dramatically risen in recent years. In this paper, an efficient authentication scheme for distributed mobile cloud computing services is proposed. The proposed scheme provides security and convenience for mobile users to access multiple mobile cloud computing services from multiple service providers using only a single private key. The security strength of the proposed scheme is based on bilinear pairing cryptosystem and dynamic nonce generation. In addition, the scheme supports mutual authentication, key exchange, user anonymity, and user untraceability. From system implementation point of view, verification tables are not required for the trusted smart card generator (SCG) service and cloud computing service providers when adopting the proposed scheme. In consequence, this scheme reduces the usage of memory spaces on these corresponding service providers. In one mobile user authentication session, only the targeted cloud service provider needs to interact with the service requestor (user). The trusted SCG serves as the secure key distributor for distributed cloud service providers and mobile clients. In the proposed scheme, the trusted SCG service is not involved in individual user authentication process. With this design, our scheme reduces authentication processing time required by communication and computation between cloud service providers and traditional trusted third party service. Formal security proof and performance analyses are conducted to show that the scheme is both secure and efficient.
Keywords :
cloud computing; data privacy; formal verification; message authentication; mobile computing; private key cryptography; trusted computing; SCG service; authentication processing time; bilinear pairing cryptosystem; cloud computing service provider; distributed cloud service provider; distributed mobile cloud computing services; dynamic nonce generation; formal security proof; key exchange; memory space; mobile client; mobile user authentication session; multiple mobile cloud computing service; multiple service provider; mutual authentication; performance analysis; privacy-aware authentication scheme; secure key distributor; security strength; service requestor; single private key; trusted smart card generator service; trusted third party service; user anonymity; user authentication process; user untraceability; verification table; Authentication; Cloud computing; Mobile communication; Mobile handsets; Public key; Authentication scheme; bilinear pairing; mobile cloud computing services; user anonymity; user untraceability;
Journal_Title :
Systems Journal, IEEE
DOI :
10.1109/JSYST.2014.2322973