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A lightweight integrity protection scheme for low latency smart grid applications

机译:用于低延迟智能电网应用程序的轻量级完整性保护方案

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The substation communication protocol used in smart grid allows the transmission of messages without integrity protection for applications that require very low communication latency. This leaves the real-time measurements taken by phasor measurement units (PMUs) vulnerable to man-in-the-middle attacks, and hence makes high voltage to medium voltage (HV/MV) substations vulnerable to cyber-attacks. In this paper, a lightweight and secure integrity protection algorithm has been proposed to maintain the integrity of PMU data, which fills the missing integrity protection in the IEC 61850-90-5 standard, when the MAC identifier is declared 0. The rigorous security analysis proves the security of the proposed integrity protection method against ciphertext-only attacks and known/chosen plaintext attacks. A comparison with existing integrity protection methods shows that our method is much faster, and is also the only integrity protection scheme that meets the strict timing requirement. Not only the proposed method can be used in power protection applications, but it also can be used in emerging anomaly detection scenarios, where a fast integrity check coupled with low latency communications is used for multiple rounds of message exchanges. This paper is an extension of work originally reported in Proceedings of 14th International Conference on Security and Cryptography (Jolfaei and Kant, 2017). (C) 2018 Elsevier Ltd. All rights reserved.
机译:智能电网中使用的变电站通信协议允许消息的传输,而对于要求非常低的通信延迟的应用程序则没有完整性保护。这使相量测量单元(PMU)进行的实时测量容易受到中间人攻击,因此使高压到中压(HV / MV)变电站容易受到网络攻击。本文提出了一种轻量级且安全的完整性保护算法来维护PMU数据的完整性,当MAC标识符被声明为0时,该算法可填补IEC 61850-90-5标准中缺少的完整性保护。证明了所提出的完整性保护方法针对纯密文攻击和已知/选择的明文攻击的安全性。与现有完整性保护方法的比较表明,我们的方法速度更快,并且是唯一满足严格时序要求的完整性保护方案。所提出的方法不仅可以用于电源保护应用中,而且还可以用于新兴的异常检测情况下,在该情况下,快速完整性检查和低延迟通信一起用于多轮消息交换。本文是对第14届国际安全和密码学会议论文集(Jolfaei和Kant,2017)最初报告的工作的扩展。 (C)2018 Elsevier Ltd.保留所有权利。

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