Design of load shedding schemes against voltage instability

C. Moors, D. Lefebvre, T. Cutsem
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引用次数: 51

Abstract

This paper proposes a methodology for the design of automatic load shedding against long-term voltage instability. In a first step, a set of training scenarios is set up, corresponding to various operating conditions and disturbances. Each scenario is analyzed to determine the minimal load shedding which stabilizes the system, with due consideration for the shedding location and delay. In a second step, the parameters of a closed-loop undervoltage load shedding scheme are determined so as to: (i) approach as closely as possible the optimal sheddings computed in the first step, over the whole set of scenarios; (ii) stabilize the system in all the unstable scenarios; and (iii) shed no load in the stable ones. The corresponding optimization problem is solved using a (micro-)genetic algorithm. A detailed example is given on the Hydro-Quebec system in which load shedding is presently planned.
针对电压不稳定的减载方案设计
本文提出了一种针对长期电压不稳定的自动减载设计方法。在第一步,设置一组训练场景,对应于各种操作条件和干扰。对每种情况进行分析,确定稳定系统的最小减载,并适当考虑减载位置和延迟。在第二步,确定闭环欠压减载方案的参数,以便:(i)在整个场景集上尽可能接近第一步计算的最优减载;(ii)在所有不稳定的情况下稳定系统;(三)稳定时不减载。采用(微)遗传算法求解相应的优化问题。以魁北克水电系统为例进行了详细的减载规划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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