论文标题
网络物理弹性电源系统测试的设计和评估
Design and Evaluation of A Cyber-Physical Resilient Power System Testbed
论文作者
论文摘要
电力系统是一个复杂的网络物理系统,其安全性对于其功能至关重要。一个主要的挑战是对网络威胁建模和分析其通信途径。为了实现这一目标,介绍了捕获现实的网络,物理和保护系统功能的网络物理电源系统(CPPS)测试床的设计和评估。 Reslab构建是研究和提高复杂CPP对网络威胁的弹性的基本工具。使用通用开放研究模拟器(CORE)模拟网络网络,该模拟器是物理和保护设备进行通信的门户。使用PowerWorld Dynamic Studio(PWDS)在动态时间范围内模拟物理网格。保护组件使用PWD和物理设备(包括SEL实时自动化控制器(RTAC))建模。分布式网络协议3(DNP3)用于监视和控制网格。然后,说明了这些工具的设计和验证,本文使用Reslab介绍了有关网络攻击和防御的四个案例研究,我们在其中使用中间的人员和拒绝服务攻击进行了虚假的数据和命令注入,并在大型合成电网上对其进行了验证。
A power system is a complex cyber-physical system whose security is critical to its function. A major challenge is to model and analyze its communication pathways with respect to cyber threats. To achieve this, the design and evaluation of a cyber-physical power system (CPPS) testbed called Resilient Energy Systems Lab (RESLab) is presented that captures realistic cyber, physical, and protection system features. RESLab is architected to be a fundamental tool for studying and improving the resilience of complex CPPS to cyber threats. The cyber network is emulated using Common Open Research Emulator (CORE) that acts as a gateway for the physical and protection devices to communicate. The physical grid is simulated in the dynamic time frame using PowerWorld Dynamic Studio (PWDS). The protection components are modeled with both PWDS and physical devices including the SEL Real-Time Automation Controller (RTAC). Distributed Network Protocol 3 (DNP3) is used to monitor and control the grid. Then, exemplifying the design and validation of these tools, this paper presents four case studies on cyber-attack and defense using RESLab, where we demonstrate false data and command injection using Man-in-the-Middle and Denial of Service attacks and validate them on a large-scale synthetic electric grid.