Offline Authentication Scheme based on Blockchain Technology for Smart Lock

Daoqi Han, Yueming Lu, Xiaofeng Du, Jiefu Gan
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引用次数: 4

Abstract

Driven by the technology of mobile Internet of things and the wide demand of sharing economy, the development of smart locks is changing with each passing day. Current schemes rely on the open network architecture which has security vulnerabilities, privacy leaks, vulnerability to various attacks and other security risks. We propose an end-to-end succinct non-interactive offline authentication scheme based on blockchain technology(BC-SNOA). Using blockchain techniques such as anonymity, ellipticcurve cryptography, workload consensus, and privacy-preserving zero-knowledge proof, the BC-SNOA implements one-time pad to improve confidentiality, offline authentication to avoid network remote intrusions and the risk of network services interruptions. It is difficult to replicate and crack because of the in chip calculation of workloads and mathematical problems. Compared with current smart locks which extract biometric verification information and control by network services, the BC-SNOA scheme is likely to accomplish beneficial properties such as high verification performance and more secure, and also makes simple hardware implementations possible.
基于区块链技术的智能锁离线认证方案
在移动物联网技术和共享经济广泛需求的推动下,智能锁的发展日新月异。目前的方案依赖于开放的网络架构,存在安全漏洞、隐私泄露、易受各种攻击等安全隐患。我们提出了一种基于区块链技术的端到端简洁的非交互式离线认证方案(BC-SNOA)。BC-SNOA使用匿名、椭圆曲线加密、工作负载共识和保护隐私的零知识证明等区块链技术,实现了一次性pad来提高保密性,离线认证以避免网络远程入侵和网络服务中断的风险。由于芯片内计算的工作量和数学问题,难以复制和破解。与现有智能锁提取生物特征验证信息并通过网络服务进行控制相比,BC-SNOA方案可以实现更高的验证性能和更安全的特性,并且可以实现简单的硬件实现。
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