Title
SEAF: A Secure, Efficient and Accountable Access Control Framework for Information Centric Networking.
Abstract
Information Centric Networking (ICN) has been regarded as an ideal architecture for the next-generation network to handle users' increasing demand fir content delivery with in network cache. While making better use of network resources and providing better delivery service, an effective access control mechanism is needed due to wide dissemination of contents. However, in the existing solutions, making cache-enabled routers or content providers authenticate users' requests causes high computation overhead and unnecessary delay. Also, straight forward utilization of advanced encryption algorithms increases the opportunities for DoS attacks. Besides, privacy protection and service accountability are rarely taken into account in this scenario. In this paper, we propose a secure, efficient, and accountable access control framework, called SEAF', for ICN, in which authentication is performed at the network edge to block unauthorized requests at the very beginning. We adopt group signature to achieve anonymous authentication, and use hash chain technique to greatly reduce the overhead when users make continuous requests fir the same file. Furthermore, the content providers can affirm the service amount received from the network and extract feedback information from the signatures and hash chains. By formal security analysis and the comparison with related works, we show that SEAF achieves the expected security goals and possesses more useful features. The experimental results also demonstrate that our design is efficient for routers and content providers, and introduces only slight delay for users' content retrieval.
Year
Venue
Field
2018
IEEE INFOCOM
Authentication,Denial-of-service attack,Computer science,Computer network,Encryption,Edge device,Hash function,Access control,Information-centric networking,Hash chain
DocType
ISSN
Citations 
Conference
0743-166X
0
PageRank 
References 
Authors
0.34
0
6
Name
Order
Citations
PageRank
Kaiping Xue157259.56
Xiang Zhang2312.18
Qiudong Xia342.08
David S. L. Wei442251.53
Hao Yue542.42
Feng Wu63635295.09