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Design of an enhanced message authentication scheme for smart grid and its performance analysis on an ARM Cortex-M3 microcontroller

机译:智能电网增强型消息认证方案的设计及其在ARM Cortex-M3微控制器上的性能分析

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Shared key generation between different entities of smart grid is so important because it can provide the possibility of subsequent fast and secure communications by means of symmetric key algorithms. Since the smart meters are some computationally-constrained electronic devices, this shared key generation process must put the least possible burden on the smart meters' resources. To this end, several lightweight authentication and key agreement schemes have been proposed during the last decade to be employed in the context of smart grid. Nevertheless, after careful consideration, we found that the efficiency and security of these schemes can still be improved. As a result, in this paper, we propose an enhanced elliptic curve cryptography based authentication and key agreement scheme that not only is secure against the well-known attacks and provides the perfect forward secrecy, but also is more efficient than similar recently published schemes in terms of both computational and communication costs. More significantly, our formal verification using the commonly-accepted ProVerif tool and implementation on a state-of-the-art Atmel 32-bit ARM Cortex-M3 microcontroller, as a suitable chip for the smart meters, confirm our claim.
机译:智能电网的不同实体之间共享密钥的生成非常重要,因为它可以通过对称密钥算法提供后续快速而安全的通信的可能性。由于智能电表是一些受计算约束的电子设备,因此,共享密钥生成过程必须使智能电表的资源负担最小。为此,在过去的十年中已经提出了几种轻量认证和密钥协商方案,这些方案将在智能电网的背景下使用。但是,经过仔细考虑,我们发现这些方案的效率和安全性仍然可以提高。结果,在本文中,我们提出了一种基于增强的椭圆曲线密码学的身份验证和密钥协商方案,该方案不仅可以抵御众所周知的攻击并提供完美的前向保密性,而且比最近发布的类似方案更有效。计算和通讯成本方面。更重要的是,我们使用公认的ProVerif工具进行了正式验证,并在最先进的Atmel 32位ARM Cortex-M3微控制器(作为适用于智能电表的芯片)上进行了实现,证实了我们的主张。

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