4.7 Article

Circuit Copyright Blockchain: Blockchain-Based Homomorphic Encryption for IP Circuit Protection

期刊

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TETC.2020.2993032

关键词

Blockchain; IP networks; Encryption; Integrated circuits; Contracts; Blockchain network; homomorphic encryption; IP circuit; consensus mechanism; double-spending

资金

  1. National Natural Science Foundation of China [61572188, 61976087]
  2. Scientific Research Program of the New Century Excellent Talents in Fujian Province University
  3. Fujian Provincial Natural Science Foundation of China [2018J01570]
  4. Hunan Provincial Science and Technology Project Foundation [2018TP1018]

向作者/读者索取更多资源

The proposed homomorphic encryption-based Blockchain system effectively addresses the issues in circuit copyright protection by utilizing intelligent contracts for fully homomorphic encryption-based identity authentication protocol. The system improves security and extensibility through distributed identity authentication and real-time extensible storage in a blockchain network for circuit copyright protection.
The fast development of Blockchain technology makes it widely applied in several fields of digital transactions, like e-government affairs and the protection of financial transactions. In this article, we propose a homomorphic encryption-based Blockchain for circuit copyright protection that effectively addresses the issues in the protection of circuit copyright transactions, such as low security of private data, low efficiency in transaction data storage, cooperation and supervision. First, we establish a homomorphic encryption-based mathematical model by utilizing Blockchain and intelligent contract, and next, the algorithms that include Blockchain generation, homomorphic chain encryption/decryption, and intelligent contract are designed. As the intelligent contract is correctly executed in Blockchain, a fully homomorphic encryption-based identity authentication protocol is tackled for Blockchain, given that it ensures the change operation of any third-party in Blockchain and realizes real-time verification. The system is apposite for circuit copyright protection in a blockchain network, due to the use of distributed identity authentication and real-time extensible storage improves the security and extensibility of blockchain-based circuit copyright protection. The experimental results show that the proposed algorithm has reduced the transmission cost and improved the efficiency of data storage and supervision. In addition, it is resilient to several common attacks (e.g., double-spending attacks), yet incurs low cost/overhead and has a higher level of security when compared to three other competing algorithms.

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