An efficient byzantine consensus mechanism based on healthcare sector in blockchain

被引:0
|
作者
Kanagasankari, S. [1 ,2 ]
Vallinayagi, V. [1 ,2 ]
机构
[1] Sri Sarada Coll Women Autonomous, Dept Comp Sci, Tirunelveli 627011, India
[2] Manonmaniam Sundaranar Univ, Tirunelveli 627012, India
关键词
Blockchain; Consensus; Hyperledger Fabric Platform; Electronic Healthcare Records; IPBFT; PBFT; RSA Cryptography; SECURE;
D O I
10.1007/s11042-023-17548-3
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
A blockchain is a decentralized digital network system consisting of multiple blocks connected in a chain. Each block comprises multiple transactions and is linked to the previous block through its hash value. The hash values are calculated using the active transactions within each block and the hash value of the preceding block. A positive impact can be made by combining blockchain technology with the healthcare sector. The consensus mechanism is the key protocol for implementing agreements in the blockchain. This paper proposes a combined RSA (Rivest-Shamir-Adleman) cryptography algorithm with a novel consensus protocol IPBFT (Improved Practical Byzantine Fault Tolerance) in the Hyperledger Fabric platform, for a patient-centered approach using blockchain technology in the healthcare sector. It ensures the reliability and integrity of transactions and prevents malicious nodes from disrupting the network. The Hyperledger Fabric platform is used to provide transparency, security, and trust in the blockchain. Performance metrics such as latency, throughput, scalability, and comparative analysis for the proposed algorithm Improved Practical Byzantine Fault Tolerance (IPBFT) and existing Practical Byzantine Fault Tolerance (PBFT) algorithms have been evaluated to achieve enhanced results. The proposed algorithm solves many problems associated with existing Practical Byzantine Fault Tolerance solutions and improves efficiency and security in the healthcare sector.
引用
收藏
页码:51129 / 51158
页数:30
相关论文
共 50 条
  • [1] An efficient byzantine consensus mechanism based on healthcare sector in blockchain
    S. Kanagasankari
    V. Vallinayagi
    Multimedia Tools and Applications, 2024, 83 : 51129 - 51158
  • [2] Study on mobile trading mechanism based on blockchain Byzantine consensus algorithm
    Hu, Wei
    Li, Huanhao
    Yawei, Hu
    Yao, Wenhui
    INTERNATIONAL JOURNAL OF MOBILE COMMUNICATIONS, 2021, 19 (05) : 547 - 563
  • [3] A Committee-based Byzantine Consensus Protocol for Blockchain
    Meng, Yuli
    Cao, Zhao
    Qu, Dacheng
    PROCEEDINGS OF 2018 IEEE 9TH INTERNATIONAL CONFERENCE ON SOFTWARE ENGINEERING AND SERVICE SCIENCE (ICSESS), 2018, : 705 - 710
  • [4] TSBFT: A scalable and efficient leaderless byzantine consensus for consortium blockchain
    Tian, Junfeng
    Tian, Jin
    Xu, Hongwei
    COMPUTER NETWORKS, 2023, 222
  • [5] Blockchain consensus challenges and an efficient novel consensus mechanism
    Kshirsagar, Avinash
    Pachghare, Vinod
    JOURNAL OF INFORMATION & OPTIMIZATION SCIENCES, 2024, 45 (04): : 863 - 872
  • [6] Secured Energy Trading Using Byzantine-Based Blockchain Consensus
    Sheikh, A.
    Kamuni, V.
    Urooj, A.
    Wagh, S.
    Singh, N.
    Patel, Dhiren
    IEEE ACCESS, 2020, 8 : 8554 - 8571
  • [7] GT-NRSM: efficient and scalable sharding consensus mechanism for consortium blockchain
    Shen, Tao
    Li, Tianyu
    Yu, Zhuo
    Bai, Fenhua
    Zhang, Chi
    JOURNAL OF SUPERCOMPUTING, 2023, 79 (17): : 20041 - 20075
  • [8] Research on efficient deep learning method based on blockchain consensus mechanism
    Wang, Shuangming
    Zhang, Tuo
    2024 4TH INTERNATIONAL CONFERENCE ON COMPUTER COMMUNICATION AND ARTIFICIAL INTELLIGENCE, CCAI 2024, 2024, : 278 - 282
  • [9] Optimization Scheme of Consensus Mechanism Based on Practical Byzantine Fault Tolerance Algorithm
    Gao, Zhipeng
    Yang, Lulin
    BLOCKCHAIN TECHNOLOGY AND APPLICATION: SECOND CCF CHINA BLOCKCHAIN CONFERENCE (CBCC 2019), 2020, 1176 : 187 - 195
  • [10] An Efficient and Scalable Byzantine Fault-Tolerant Consensus Mechanism Based on Credit Scoring and Aggregated Signatures
    Tong, Shihua
    Li, Jibing
    Fu, Wei
    IEEE ACCESS, 2024, 12 : 10393 - 10410