A User Authentication Schema Under the Integration of Mobile Edge Computing and Blockchain Technology

Feng Xue, Fangju Li
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引用次数: 0

Abstract

The safe and efficient authentication of users is the basis for the realization of the Internet of Things. A reliable and fast user authentication schema that combines mobile edge computing and blockchain technology is proposed. This schema adopts the polling hosting method to optimize the practical Byzantine Fault Tolerance (PBFT) algorithm, it reduces the impact of tokens in the algorithm, and ensures trusted authentication. The two-way authentication protocol between the cluster head and the base station, and the one-way authentication protocol between the base station and the sensor node are designed to effectively simplify the authentication process of sensor nodes, which further guarantees the security and speed of user authentication and effectively meets the security, reliability, and convenience requirements of the Internet of Things. Simulation experiments show that the schema can achieve efficient information verification, and the identity authentication time and protocol authentication times are only 23.58 ms and 25.06 ms, respectively, which has obvious performance advantages over the Paillier algorithm, the hybrid Paillier-blowfish algorithm, and the ElGamal algorithm.
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移动边缘计算与区块链技术融合下的用户认证方案
安全高效的用户认证是实现物联网的基础。提出了一种结合移动边缘计算和区块链技术的可靠、快速的用户认证方案。该模式采用轮询托管的方式对实际的拜占庭容错(PBFT)算法进行优化,减少了令牌对算法的影响,保证了可信认证。通过设计簇头与基站之间的双向认证协议、基站与传感器节点之间的单向认证协议,有效简化了传感器节点的认证过程,进一步保证了用户认证的安全性和速度,有效满足了物联网对安全性、可靠性和便利性的要求。仿真实验表明,该模式能够实现高效的信息验证,身份认证时间和协议认证时间分别仅为23.58 ms和25.06 ms,与Paillier算法、Paillier-blowfish混合算法和ElGamal算法相比,具有明显的性能优势。
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CiteScore
3.50
自引率
0.00%
发文量
30
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