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Secure and Lightweight Authentication Scheme for Smart Metering Infrastructure in Smart Grid

机译:智能电网中智能计量基础设施的安全和轻量级认证方案

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摘要

In this article, a secure and lightweight authentication scheme, which provides trust, anonymity, and mutual authentication, with reduced energy, communicational, and computational overheads, is proposed for resource-constrained smart meters (SMs). The designed mutual authentication-based key agreement protocol leverages the advantages of fully hashed menezes-qu-vanstone key exchange mechanism along with Elliptic curve cryptography and one-way hash functions. Moreover, it allows to securely establish and verify the trust between the two communicating parties, i.e., SMs and neighbourhood area network gateway. These entities communicate over the insecure channel and form an important component of the smart metering infrastructure. Furthermore, extensive performance evaluation validates the supremacy of the designed protocol over the state-of-the-art in furnishing higher security features with minimal communicational and computational overheads. The obtained results also reflect that the proposed protocol is fit for implementation on resource-constrained SMs as it leads to minimal energy consumption.
机译:在本文中,提出了一种安全和轻量级认证方案,其提供具有减少的能量,通信和计算开销的信任,匿名和相互认证,用于资源受限智能仪表(SMS)。基于设计的相互认证的密钥协议协议利用完全散列Menezes-Qu-Vanstone密钥交换机制以及椭圆曲线密码和单向散列功能的优点。此外,它允许安全地建立和验证两个通信方之间的信任,即SMS和邻域区域网络网关。这些实体通过不安全的信道进行通信,并形成智能计量基础设施的重要组成部分。此外,广泛的性能评估验证了设计方案在提供更高的安全特征中的设计方案的至上,具有最小的通信和计算开销。所获得的结果还反映出,拟议的议定书适合于实施资源受限的短信,因为它导致最小的能耗。

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