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Design Flaws and Cryptanalysis of Elliptic Curve Cryptography-Based Lightweight Authentication Scheme for Smart Grid Communication

机译:基于智能电网通信的基于椭圆曲线密码术的轻质认证方案的设计缺陷和密码分析

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An authentication framework gives security demand in communication between user to user, user to station, user to substation, substation to another substation, user to thrust authority, and substation to thrust authority in smart grid environment. In smart grid communications, a suitable authority provides electricity updation and secure power connectivity in smart cities. In smart grid communication, an elliptic curve cryptography-based authentication protocol for smart grid communication is published by Mahmood et al. (J Futur Gener Comput Syst 81:557-565, 2018 [1]). We reviewed their framework and found security weaknesses such as fails to protect the session key, guessing identity attack, insider attack, user anonymity, impersonation attack, stolen device attack, lack of login phase, lack of password information, and clock synchronization problem. Thus, Mahmood et al. scheme is not suitable for smart grid environment. Hence, we proposed a possible solution for Mahmood et al. scheme.
机译:身份验证框架在用户到用户之间的通信中提供安全性需求,用户到站点,用户到变电站,将变电站变为另一个变电站,用户到智能电网环境中的转换权威权限。在智能电网通信中,合适的权限提供智能城市的电力更新和安全连接。在智能电网通信中,Mahmood等人发布了一种用于智能电网通信的基于椭圆曲线加密的认证协议。 (J Futur Pensic Comput SYST 81:557-565,2018 [1])。我们审查了他们的框架和发现的安全弱点,如未能保护会话密钥,猜测身份攻击,内幕攻击,用户匿名,模拟攻击,被盗设备攻击,缺少登录阶段,缺少密码信息和时钟同步问题。因此,Mahmood等人。方案不适合智能电网环境。因此,我们提出了Mahmood等人的可能解决方案。方案。

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