智能电网数据安全的新型认证管理

IF 3.3 Q3 ENERGY & FUELS
Imtiaz Parvez;Maryamossadat Aghili;Hugo Riggs;Aditya Sundararajan;Arif I. Sarwat;Anurag K. Srivastava
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引用次数: 0

摘要

双向无线通信应用于各种智能电网组件,如智能电表、控制和监控应用,其安全性至关重要。在智能电网基于密钥管理的加密技术中,智能电表和第三方之间的可信第三方(TTP)和无线连接被认为是完全可信和可靠的。然而,在有线/无线介质中,中间人可能会试图破坏、监控和操纵网络,或者干脆实施重放攻击,从而暴露出网络的漏洞。认识到这一点,本研究提出了一种由两层安全模式组成的新型认证管理(模型)。第一层在两个部分可信的简单服务器(构成 TTP)的帮助下,为仪表和控制中心之间的安全数据交换实施了一种高效的新型加密方法。在这种情况下,一台服务器处理电表与控制中心/中央数据库之间的数据加密,另一台服务器管理数据传输的随机序列。第二层监控和验证智能电表之间交换的数据包。它能检测到来自可疑来源的异常数据包。为实现节点间的认证,提出了一类支持向量机算法,该算法利用了位置信息和数据传输历史记录(节点标识、数据包大小和数据传输频率)。这种方案可确保数据通信的安全,并在整个系统中实现全面的隐私保护,而不会大大增加传统密钥管理方案的复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Authentication Management for the Data Security of Smart Grid
Bidirectional wireless communication is employed in various smart grid components such as smart meters and control and monitoring applications where security is vital. The Trusted Third Party (TTP) and wireless connectivity between the smart meter and the third party in the key management-based encryption techniques for the smart grid are expected to be totally trustworthy and dependable. In a wired/wireless medium, however, a man-in-the-middle may seek to disrupt, monitor and manipulate the network, or simply execute a replay attack, revealing its vulnerability. Recognizing this, this study presents a novel authentication management (model) comprised of two layer security schema. The first layer implements an efficient novel encryption method for secure data exchange between meters and control center with the help of two partially trusted simple servers (constitutes the TTP). In this setting, one server handles the data encryption between the meter and control center/central database, and the other server administers the random sequence of data transmission. The second layer monitors and verifies exchanged data packets among smart meters. It detects abnormal packets from suspicious sources. To implement this node-to-node authentication, One class support vector machine algorithm is proposed which takes advantages of the location information as well as the data transmission history (node identification, packet size, and data transmission frequency). This schema secures data communication, and imposes a comprehensive privacy throughout the system without considerably extending the complexity of the conventional key management scheme.
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来源期刊
CiteScore
7.80
自引率
5.30%
发文量
45
审稿时长
10 weeks
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