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A Feasibility Study of a Method for Identification and Modelling of Cybersecurity Risks in the Context of Smart Power Grids

机译:在智能电网背景下识别和建模网络安全风险的方法的可行性研究

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摘要

Power grids are undergoing a digital transformation are therefore becoming increasingly complex. As a result of this they are also becoming vulnerable in new ways. With this development come also numerous risks. Cybersecurity is therefore becoming crucial for ensuring resilience of this infrastructure which is critical to safety of humans and societies. Risk analysis of cybersecurity in the context of smart power grids is, however, particularly demanding due to its interdisciplinary nature, including domains such as digital security, the energy domain, power networks, the numerous control systems involved, and the human in the loop. This poses special requirements to cybersecurity risk identification within smart power grids, which challenge the existing state-of-the-art. This paper proposes a customized four-step approach to identification and modelling of cybersecurity risks in the context of smart power grids. The aim is that the risk model can be presented to decision makers in a suitable interface, thereby serving as a useful support for planning, design and operation of smart power grids. The approach applied in this study is based on parts of the "CORAS" method for model-based risk analysis. The paper also reports on results and experiences from applying the approach in a realistic industrial case with a distribution system operator (DSO) responsible for hosting a pilot installation of the self-healing functionality within a power distribution grid. The evaluation indicates that the approach can be applied in a realistic setting to identify cybersecurity risks. The experiences from the case study moreover show that the presented approach is, to a large degree, well suited for its intended purpose, but it also points to areas in need for improvement and further evaluation.
机译:因此电网正在经历数字化转型正变得越来越复杂。由于这一结果,他们也成为新的方式容易受到伤害。这样的发展也来了许多风险。因此,网络安全正在成为确保这些基础设施是人类和社会的安全至关重要的弹性至关重要。在智能电网的背景下网络安全的风险分析,但要求特别严格,由于其跨学科性质,包括领域,如数字安全,能源领域,电力网络,涉及的大量控制系统,并在循环中的人。这对智能电网中的特殊要求,网络安全风险的识别,其挑战现有的国家的最先进的。本文提出了一种定制的四步走的方法来识别和网络安全模型在智能电网方面的风险。其目标是使风险模型可以呈现给决策者一个合适的接口,从而作为智能电网的规划,设计和操作的有用的支持。在这项研究中所应用的方法是基于基于模型的风险分析“CORAS”方法的一部分。该文件还对在一个现实的工业情况与分配系统运营商(DSO)负责配电网内托管的自我修复功能试点安装应用方法成果和经验报告。评估表明,该方法可以在真实的场景中被应用,以确定网络安全风险。案例研究的经验介绍了,所提出的方法是大程度,适合其预期目的,但它也指向有需要改进和进一步评估的地区。

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