主动发电再调度提高飓风期间电力系统运行弹性

Michael Abdelmalak, M. Benidris
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引用次数: 5

摘要

本文提出了一种提高飓风期间电网运行弹性的主动再调度策略。提高整体运行弹性是一个涉及数学的问题,伴随着许多与建模和计算方法相关的挑战。大多数以前的弹性增强方法侧重于减少极端事件期间的减载量,而没有主动为预测的极端事件做好系统准备,也没有考虑事件发生后的后果。此外,系统运行成本通常被忽略,导致运行弹性增强策略的成本更高。本文建立了一个多目标混合整数线性规划优化问题,以保证电力系统在受飓风影响的1天时间间隔内,电力系统的负荷减少和运行成本最小。在优化问题中考虑了系统约束(例如,爬坡率、最小上/下时间和传输线约束)和极端事件的时空特性。将CPLEX求解器与MATLAB相结合,制定并求解优化问题。虽然所提出的方法可以用于提高电力系统对不同类型极端事件的弹性,但本工作的重点是提高电网对飓风的运行弹性。使用IEEE 30总线系统在两个严重级别下验证了所提出的策略:低影响和极端影响。结果表明,该方法在提高飓风发展过程中电网运行弹性方面是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proactive Generation Redispatch to Enhance Power System Operation Resilience during Hurricanes
This paper proposes a proactive generation redispatch strategy to enhance the operational resilience of power grids during hurricanes. Enhancing the overall operation resilience is a mathematically involved problem accompanied with many challenges related to modeling and computation methods. Most previous resilience enhancement methods focus on reducing the amount of load curtailment during extreme events without proactively preparing the system for forecasted extreme events or considering the consequences after the occurrence of an event. Also, system operational cost is usually neglected resulting in higher costs for operational resilience enhancement strategies. In this paper, a multiobjective mixed integer linear programming optimization problem is formulated for generation redispatch to minimize load curtailments and operational costs for a one-day interval when a power system is subjected to a hurricane. System constraints (e.g., ramping rates, minimum up/down times, and transmission line constraints) and spatiotemporal properties of extreme events are considered in the optimization problem. The CPLEX solver is integrated with MATLAB to formulate and solve the optimization problem. Although the proposed method can be adapted to enhance power system resilience against different types of extreme events, the focus of this work is on improving the operational resilience of power grids against hurricanes. The IEEE 30-bus system is used to validate the proposed strategy under two levels of severity: low and extreme impacts. The results demonstrate the effectiveness of the proposed method in improving power grid operational resilience during the development of hurricanes.
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