分布式VSCADA:电力系统公用事业安全建模与仿真的集成异构框架

Avik Dayal, A. Tbaileh, Yi Deng, S. Shukla
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引用次数: 3

摘要

美国的经济机制依赖于复杂的大规模网络物理系统,包括电网、石油和天然气系统、运输系统等。保护这些系统及其控制免受安全威胁,并提高这些系统的健壮性和弹性,是重要的目标。由于所有这些系统的控制中心都有监控和数据采集(SCADA),因此在各个实验室开发了许多试验台。通常在这样的试验台上,人们接受了操作和保护这些关键系统的培训。在本文中,我们描述了一个我们开发的虚拟化分布式测试平台,用于SCADA应用的建模和仿真以及进行相关的安全性研究。该试验台是通过集成各种异构仿真组件实现的虚拟试验台。该测试平台可以重新配置,以模拟电力系统、运输系统或任何其他关键系统的SCADA,只要为这些系统附加一个特定于后端域的模拟器。在本文中,我们描述了如何创建一个可扩展的架构,能够模拟更大的基础设施,并通过集成通信模型来模拟不同的网络协议。我们还开发了一系列中间件包,使用Python脚本语言将各种模拟平台集成到我们的测试平台中。为了验证测试平台的可用性,我们简要描述了如何在我们的测试平台中对电力系统SCADA场景进行建模和仿真。
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Distributed VSCADA: An integrated heterogeneous framework for power system utility security modeling and simulation
The economic machinery of the United States is reliant on complex large-scale cyber-physical systems which include electric power grids, oil and gas systems, transportation systems, etc. Protection of these systems and their control from security threats and improvement of the robustness and resilience of these systems, are important goals. Since all these systems have Supervisory Control and Data Acquisition (SCADA) in their control centers, a number of test beds have been developed at various laboratories. Usually on such test beds, people are trained to operate and protect these critical systems. In this paper, we describe a virtualized distributed test bed that we developed for modeling and simulating SCADA applications and to carry out related security research. The test bed is a virtualized by integrating various heterogeneous simulation components. This test bed can be reconfigured to simulate the SCADA of a power system, or a transportation system or any other critical systems, provided a back-end domain specific simulator for such systems are attached to it. In this paper, we describe how we created a scalable architecture capable of simulating larger infrastructures and by integrating communication models to simulate different network protocols. We also developed a series of middleware packages that integrates various simulation platforms into our test bed using the Python scripting language. To validate the usability of the test bed, we briefly describe how a power system SCADA scenario can be modeled and simulated in our test bed.
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