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OpenStack-Based Evaluation Framework for Smart Grid Cyber Security

机译:基于OpenStack的智能电网网络安全评估框架

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The rapid evolution of the power grid into a smart one calls for innovative and compelling means to experiment with the upcoming expansions, and analyze their behavioral response under normal circumstances and when targeted by attacks. Such analysis is fundamental to setting up solid foundations for the smart grid. Smart grid Hardware-In-the-Loop (HIL) co-simulation environments serve as a key approach to answer questions on the systems components, functionality, security concerns along with analysis of the system outcome and expected behavior. In this paper, we introduce a HIL co-simulation framework capable of simulating the smart grid actions and responses to attacks targeting its power and communication components. Our testbed is equipped with a real-time power grid simulator, and an associated OpenStack-based communication network. Through the utilized communication network, we can emulate a multitude of attacks targeting the power system, and evaluating the grid response to those attacks. Moreover, we present different illustrative cyber attacks use cases, and analyze the smart grid behavior in the presence of those attacks.
机译:电网迅速发展为智能电网,需要创新而引人注目的手段来试验即将到来的扩展,并分析它们在正常情况下以及受到攻击时的行为响应。这种分析对于为智能电网建立坚实的基础至关重要。智能电网硬件在环(HIL)协同仿真环境是回答有关系统组件,功能,安全性问题以及分析系统结果和预期行为的关键方法。在本文中,我们介绍了一种HIL协同仿真框架,该框架能够仿真智能电网的动作和针对其电源和通信组件的攻击响应。我们的测试平台配备了实时电网模拟器以及相关的基于OpenStack的通信网络。通过使用的通信网络,我们可以模拟针对电力系统的多种攻击,并评估电网对这些攻击的响应。此外,我们提出了各种说明性的网络攻击用例,并在存在这些攻击的情况下分析了智能电网的行为。

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