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A Secure Identity Authentication Protocol for Edge Data in Smart Grid Environment

机译:智能电网环境中边缘数据的安全身份认证协议

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摘要

Edge computing uses devices deployed at the edge of the network to preprocess data to reduce the computing pressure on the central server. Through edge computing, smart grid can process large amounts of data faster, meeting real-time, reliability, and high-efficiency requirements. However, as the number of edge devices continues to increase, the problem of leakage and tampering of private data is gradually exposed. In order to solve this problem, this paper proposes a lightweight identity authentication scheme suitable for smart grid environment based on Elliptic Curve Encryption (ECC) technology. In the proposed protocol, we encrypt the identity and key information through ECC, and use the timestamp to verify the validity of the session. In addition, the proposed protocol is encrypted with a random number for each round of authentication, and an attacker cannot crack our protocol through a replay attack. Experimental analysis shows that the proposed protocol is safety and key information will not be leaked. Finally, the cost analysis shows that the proposed protocol has lower communication and lower calculation cost than other that of related protocols, and is suitable for deployment in large-scale intelligent smart grid environments.
机译:边缘计算使用在网络边缘部署到预处理数据以减少中央服务器上的计算压力。通过边缘计算,智能电网可以更快地处理大量数据,满足实时,可靠性和高效要求。然而,随着边缘设备的数量继续增加,漏洞和私有数据的篡改问题逐渐暴露。为了解决这个问题,本文提出了一种基于椭圆曲线加密(ECC)技术的智能电网环境的轻量级身份认证方案。在所提出的协议中,我们通过ECC加密身份和关键信息,并使用时间戳验证会话的有效性。此外,所提出的协议以每轮身份验证的随机数加密,攻击者无法通过重放攻击破解我们的协议。实验分析表明,所提出的协议是安全性,关键信息不会被泄露。最后,成本分析表明,所提出的协议的通信较低,计算成本低于其他协议的计算成本,并且适用于大规模智能智能电网环境中的部署。

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