Department of Computer Science and IT, La Trobe University, Plenty Rd., Bundoora 3086, Australia.
Centre for Intelligent Systems (CIS), School of Engineering and Technology, CQUniversity, Rockhampton 4700, Australia.
Sensors (Basel). 2021 Feb 23;21(4):1554. doi: 10.3390/s21041554.
IEC 61850 is one of the most prominent communication standards adopted by the smart grid community due to its high scalability, multi-vendor interoperability, and support for several input/output devices. Generic Object-Oriented Substation Events (GOOSE), which is a widely used communication protocol defined in IEC 61850, provides reliable and fast transmission of events for the electrical substation system. This paper investigates the security vulnerabilities of this protocol and analyzes the potential impact on the smart grid by rigorously analyzing the security of the GOOSE protocol using an automated process and identifying vulnerabilities in the context of smart grid communication. The vulnerabilities are tested using a real-time simulation and industry standard hardware-in-the-loop emulation. An in-depth experimental analysis is performed to demonstrate and verify the security weakness of the GOOSE publish-subscribe protocol towards the substation protection within the smart grid setup. It is observed that an adversary who might have familiarity with the substation network architecture can create falsified attack scenarios that can affect the physical operation of the power system. Extensive experiments using the real-time testbed validate the theoretical analysis, and the obtained experimental results prove that the GOOSE-based IEC 61850 compliant substation system is vulnerable to attacks from malicious intruders.
IEC 61850 是智能电网社区采用的最主要的通信标准之一,由于其具有高可扩展性、多供应商互操作性以及对多种输入/输出设备的支持,因此得到了广泛应用。通用面向对象的变电站事件(GOOSE)是 IEC 61850 中定义的一种广泛使用的通信协议,它为变电站系统提供了可靠和快速的事件传输。本文研究了该协议的安全漏洞,并通过使用自动化流程严格分析 GOOSE 协议的安全性,以及在智能电网通信上下文中识别漏洞,分析了其对智能电网的潜在影响。使用实时仿真和行业标准的硬件在环仿真对漏洞进行了测试。通过深入的实验分析,演示并验证了 GOOSE 发布-订阅协议在智能电网设置下针对变电站保护的安全弱点。观察到,熟悉变电站网络架构的攻击者可以创建伪造的攻击场景,从而影响电力系统的物理运行。使用实时测试平台进行的广泛实验验证了理论分析,并且获得的实验结果证明,基于 GOOSE 的符合 IEC 61850 标准的变电站系统容易受到恶意入侵者的攻击。