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Security Implications of Transport Layer Protocols in Power Grid Synchrophasor Data Communication

机译:电网同步相量数据通信中传输层协议的安全性

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摘要

Wide-area monitoring and control (WAMC) systems based on synchrophasor data streams are becoming more and more significant to the operation of the smart power grid. Reliable and secure communication, and higher quality of service (very low latency, high availability, etc.) of data are crucial to the success of WAMC systems. However, the IEEE standard for synchrophasor data communication (IEEE Standard C37.118.2-2011) does not place any restrictions on the choice of transport layer protocols. In light of this, we examine the communication between synchrophasors [phasor measurement units (PMUs)] and phasor data concentrators to analyze potential security vulnerabilities present at the transport layer, and investigate the advantages and disadvantages of both the TCP and UDP protocols, respectively, with an emphasis on security issues. Demonstrations of attacks related to these security vulnerabilities are shown in lab environment and underlying mechanisms are analyzed to determine the capabilities attackers to succeed with them.
机译:基于同步相量数据流的广域监视与控制(WAMC)系统对于智能电网的运行变得越来越重要。可靠,安全的通信以及更高的数据服务质量(极低的延迟,高可用性等)对于WAMC系统的成功至关重要。但是,用于同步相量数据通信的IEEE标准(IEEE标准C37.118.2-2011)对传输层协议的选择没有任何限制。有鉴于此,我们检查了同步相量[相量测量单元(PMU)]和相量数据集中器之间的通信,以分析传输层上存在的潜在安全漏洞,并分别研究了TCP和UDP协议的优缺点,重点关注安全问题。在实验室环境中显示了与这些安全漏洞相关的攻击的演示,并对底层机制进行了分析,以确定攻击者成功解决这些问题的能力。

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