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Power system resilience through defender-attacker-defender models with uncertainty: an overview

机译:通过具有不确定性的防御者-防御者-防御者模型的电力系统弹性:概述

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Making a power system more operationally resilient to disruption is an important and hard problem. Modeling decisions must include careful consideration of the interaction between system defenders and potential disruptors, the complex operational nature of the system, and the availability and uncertainty of information. Multi-level optimization defender-attacker-defender models are a suitable choice here since they can express such considerations, quantify resilience, and output prescriptive decisions for reaching resilience. In this paper, we review such models employed by power systems applications, with the aim of demonstrating accessibility and applicability of various formulations. In particular, we highlight modeling choices and assumptions, algorithmic details, and where uncertainty is captured or can be injected within a model.
机译:使电源系统在操作上更具抗破坏能力是一个重要而艰巨的问题。建模决策必须包括仔细考虑系统防御者与潜在破坏者之间的相互作用,系统的复杂操作性质以及信息的可用性和不确定性。多级优化防御者-防御者-防御者模型在这里是一个合适的选择,因为它们可以表达这些考虑,量化复原力并输出达到复原力的规定性决策。在本文中,我们回顾了电力系统应用所采用的此类模型,目的是展示各种公式的可访问性和适用性。特别是,我们重点介绍了建模选择和假设,算法细节以及不确定性在哪里捕获或可以注入模型的地方。

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