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Embedding resilience in the design of the electricity supply for industrial clients

机译:在工业客户的电源设计中嵌入弹性

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摘要

This paper proposes an optimization model, using Mixed-Integer Linear Programming (MILP), to support decisions related to making investments in the design of power grids serving industrial clients that experience interruptions to their energy supply due to disruptive events. In this approach, by considering the probabilities of the occurrence of a set of such disruptive events, the model is used to minimize the overall expected cost by determining an optimal strategy involving pre- and post-event actions. The pre-event actions, which are considered during the design phase, evaluate the resilience capacity (absorption, adaptation and restoration) and are tailored to the context of industrial clients dependent on a power grid. Four cases are analysed to explore the results of different probabilities of the occurrence of disruptions. Moreover, two scenarios, in which the probability of occurrence is lowest but the consequences are most serious, are selected to illustrate the model’s applicability. The results indicate that investments in pre-event actions, if implemented, can enhance the resilience of power grids serving industrial clients because the impacts of disruptions either are experienced only for a short time period or are completely avoided.
机译:本文提出了一种使用混合整数线性规划(MILP)的优化模型,以支持与为服务于因中断事件而遭受能源供应中断的工业客户的电网设计进行投资相关的决策。在这种方法中,通过考虑发生此类破坏性事件的可能性,可通过确定涉及事件前和事件后行动的最佳策略,使用该模型将总预期成本降至最低。在设计阶段考虑的事前行动将评估弹性能力(吸收,适应和恢复),并针对依赖电网的工业客户进行量身定制。分析了四个案例,以探索发生中断的不同概率的结果。此外,选择了两种情况,其中发生的可能性最低,但后果最严重,以说明该模型的适用性。结果表明,对事件前行动的投资(如果实施)可以提高为工业客户服务的电网的弹性,因为中断的影响只能在很短的时间内经历,或者可以完全避免。

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