A Novel and Efficient Anonymous Authentication Scheme Based on Extended Chebyshev Chaotic Maps for Smart Grid

Cong Wang, Xiaohan Li, M. Ma, Yiying Zhang
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Abstract

In a smart grid, the identity authentication between a smart meter and an aggregator is a prerequisite for both parties to establish a secure channel. All existing authentication schemes have their own shortcomings in either security or efficiency to make them difficult to meet the security requirements of the smart grid. In this paper, we are motivated to propose an efficient and secure mutual authentication scheme based on the extended Chebyshev chaotic maps. The smart meters and aggregators are registered with a trusted third party to conduct a mutual authentication. The proposed scheme provides anonymity protection for smart meters to achieve perfect forward secrecy. Through security analysis, we conclude that the proposed scheme has the characteristics of high security. In addition, we compare the proposed scheme with other three schemes in terms of number of encryption operations, computation delay. The performance comparison demonstrates that the proposed scheme is efficient without sacrificing the desired security properties.
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基于扩展Chebyshev混沌映射的智能电网新型高效匿名认证方案
在智能电网中,智能电表与聚合器之间的身份认证是双方建立安全通道的前提。现有的各种认证方案在安全性和效率上都存在一定的不足,难以满足智能电网的安全要求。在本文中,我们提出了一种基于扩展Chebyshev混沌映射的高效安全的互认证方案。智能电表和聚合器在可信的第三方注册,进行相互认证。该方案为智能电表提供匿名保护,实现完美的前向保密。通过安全性分析,我们得出该方案具有高安全性的特点。此外,我们还在加密操作次数、计算延迟等方面与其他三种方案进行了比较。性能比较表明,该方案在不牺牲安全性能的前提下是有效的。
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