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Private blockchain-envisioned multi-authority CP-ABE-based user access control scheme in IIoT

机译:IoT中私有区块内容设想的基于多权力CP-ABE的用户访问控制方案

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摘要

Recent advances in Low Power Wide Area Network (LPWAN) are expected to augment the already prodigious proliferation of Industrial Internet of Things (IIoT). However, this unrepresented growth is tinged by the uncertainty of possible challenges in security and privacy. In this work, we propose a novel blockchain-envisioned fine grained user access control scheme for data security and scalability in IIoT environment. The proposed scheme supports multiple attribute authorities and also a constant size key and ciphertext. The data gathered by the IoT smart devices are encrypted using the cipher-policy attribute based encryption (CP-ABE) and sent to their nearby gateway nodes. Later, the gateway nodes form the transactions from the encrypted data from the smart devices which are used to form partial blocks. The partial blocks are then forwarded to the cloud server(s) in the peer-to-peer (P2P) network to convert them into full blocks, which are verified, mined and added into the blockchain using the voting-based practical Byzantine fault tolerance (PBFT) consensus algorithm. The proposed scheme also allows a user to access the secure data stored in the blocks into the blockchain using the CP-ABE mechanism. The security analysis demonstrates the robustness of the proposed scheme against various attacks, and the comparative study with related relevant schemes also highlights the advantage of the proposed scheme over existing approaches. Finally, a blockchain implementation of the presented scheme summarizes the computational costs for a varied number of transactions per block, and also for a varied number of blocks mined in the blockchain.
机译:预计低电站广域网(LPWAN)的最新进展将增强现代物联网(IIOT)的危险扩散。然而,这种不成绩的增长是安全和隐私可能挑战的不确定性。在这项工作中,我们提出了一种新颖的BlockChain-Envisioned的精细粒度的精细粒度用户访问控制方案,用于IIT环境中的数据安全性和可扩展性。该方案支持多个属性权限以及常量大小密钥和密文。由IoT智能设备收集的数据使用基于密码策略属性的加密(CP-ABE)进行加密,并发送到其附近的网关节点。稍后,网关节点从用于从用于形成部分块的智能设备的加密数据形成交易。然后将部分块转发到点对点(P2P)网络中的云服务器,以将它们转换为完整的块,这些块被验证,开采并使用基于投票的实际拜占庭容错容差的区块链。 (PBFT)共识算法。所提出的方案还允许用户使用CP-AP-ABE机制访问存储在块中的安全数据。安全分析表明,拟议方案对各种攻击的稳健性,相关相关方案的比较研究还突出了拟议方案对现有方法的优势。最后,呈现方案的区块链接总结了每个块的各种事务数量的计算成本,并且还可以在区块链中占用的各种块数。

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