4.6 Article

Fine Grained Access Control Based on Smart Contract for Edge Computing

期刊

ELECTRONICS
卷 11, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/electronics11010167

关键词

access control; SCAC; CPN; blockchain; edge computing

资金

  1. State Key Laboratory of Computer Architecture (ICT, CAS) [CARCHA202010]
  2. JIT fund [0620025]
  3. fund of Science and Technology Development Center, Ministry of Education [2018A03040, jit-h-2019-143]
  4. [40620025]

向作者/读者索取更多资源

Traditional centralized and distributed access control face different challenges, while the Smart Contract-based Access Control (SCAC) method combines the advantages of edge computing and blockchain to achieve fine-grained access control, considering both security and efficiency.
Traditional centralized access control faces data security and privacy problems. The core server is the main target to attack. Single point of failure risk and load bottleneck are difficult to solve effectively. And the third-party data center cannot protect data owners. Traditional distributed access control faces the problem of how to effectively solve the scalability and diversified requirements of IoT (Internet of Things) applications. SCAC (Smart Contract-based Access Control) is based on ABAC (Attributes Based Access Control) and RBAC (Role Based Access Control). It can be applied to various types of nodes in different application scenarios that attributes are used as basic decision elements and authorized by role. The research objective is to combine the efficiency of service orchestration in edge computing with the security of consensus mechanism in blockchain, making full use of smart contract programmability to explore fine grained access control mode on the basis of traditional access control paradigm. By designing SSH-based interface for edge computing and blockchain access, SCAC parameters can be found and set to adjust ACLs (Access Control List) and their policies. The blockchain-edge computing combination is powerful in causing significant transformations across several industries, paving the way for new business models and novel decentralized applications. The rationality on typical process behavior of management services and data access control be verified through CPN (Color Petri Net) tools 4.0, and then data statistics on fine grained access control, decentralized scalability, and lightweight deployment can be obtained by instance running in this study. The results show that authorization takes into account both security and efficiency with the blockchain-edge computing combination.

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