SDACS: Blockchain-Based Secure and Dynamic Access Control Scheme for Internet of Things

Q. Gong, Jinnan Zhang, Zheng Wei, Xinmin Wang, Xia Zhang, Xin Yan, Yang Liu, Liming Dong
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Abstract

With the rapid growth of the Internet of Things (IoT), massive terminal devices are connected to the network, generating a large amount of IoT data. The reliable sharing of IoT data is crucial for fields such as smart home and healthcare, as it promotes the intelligence of the IoT and provides faster problem solutions. Traditional data sharing schemes usually rely on a trusted centralized server to achieve each attempted access from users to data, which faces serious challenges of a single point of failure, low reliability, and an opaque access process in current IoT environments. To address these disadvantages, we propose a secure and dynamic access control scheme for the IoT, named SDACS, which enables data owners to achieve decentralized and fine-grained access control in an auditable and reliable way. For access control, attribute-based control (ABAC), Hyperledger Fabric, and interplanetary file system (IPFS) were used, with four kinds of access control contracts deployed on blockchain to coordinate and implement access policies. Additionally, a lightweight, certificateless authentication protocol was proposed to minimize the disclosure of identity information and ensure the double-layer protection of data through secure off-chain identity authentication and message transmission. The experimental and theoretical analysis demonstrated that our scheme can maintain high throughput while achieving high security and stability in IoT data security sharing scenarios.
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SDACS:基于区块链的物联网安全动态访问控制方案
随着物联网(IoT)的快速发展,大量终端设备连接到网络,产生了大量的物联网数据。可靠的物联网数据共享对智能家居和医疗保健等领域至关重要,因为它能促进物联网的智能化,并提供更快的问题解决方案。传统的数据共享方案通常依赖可信的集中式服务器来实现用户对数据的每次尝试访问,这在当前的物联网环境中面临着单点故障、可靠性低和访问过程不透明等严峻挑战。针对这些弊端,我们提出了一种安全、动态的物联网访问控制方案(SDACS),使数据所有者能够以可审计、可靠的方式实现分散、细粒度的访问控制。在访问控制方面,我们使用了基于属性的控制(ABAC)、超级账本架构(Hyperledger Fabric)和星际文件系统(IPFS),并在区块链上部署了四种访问控制合约,以协调和实施访问策略。此外,还提出了一种轻量级的无证书认证协议,通过安全的链外身份认证和消息传输,最大限度地减少身份信息的泄露,确保数据的双层保护。实验和理论分析表明,我们的方案可以在物联网数据安全共享场景中保持高吞吐量,同时实现高安全性和稳定性。
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