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Preventive-Corrective Demand Response to Improve Short-Term Voltage Stability and Transient Stability in Power Systems

机译:预防性纠正需求响应,可提高电力系统的短期电压稳定性和暂态稳定性

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This paper proposes a novel approach aiming to counteract short term voltage fluctuations and transient instability by employing centralized emergency demand response. The objectives in this optimization model include a proposed short-term voltage stability index, inversed transient stability margin and system operation cost. Combined demand response actions of load shedding and load recovery are applied during the corrective period. To reduce computational complexity, load shedding bus candidates are selected based on trajectory sensitivity ranking with respect to the load shedding quantities. Then the optimization model is solved via multiobjective evolutionary algorithms (MOEAs). Compared with existing practices, this work not only coordinates between preventive control (PC) and corrective control (CC) actions, but also considers a proposed user disruption indicator to reflect power supply deviation from nominal demand during load shedding and load recovery periods. A comprehensive three-dimensional Pareto-optimal tradeoff solution is computed for decision-making. The proposed method is verified by simulation results on the IEEE 39-bus system.
机译:本文提出了一种新颖的方法,旨在通过采用集中式紧急需求响应来应对短期电压波动和暂态不稳定性。该优化模型的目标包括拟议的短期电压稳定性指标,反暂态稳定裕度和系统运行成本。在校正期间,将减负荷和负荷恢复的需求响应组合起来。为了降低计算复杂度,基于相对于减载量的轨迹灵敏度等级来选择减载总线候选。然后通过多目标进化算法(MOEA)求解优化模型。与现有实践相比,这项工作不仅在预防控制(PC)和纠正控制(CC)措施之间进行协调,而且考虑了拟议的用户中断指标,以反映在甩负荷和负荷恢复期间电源与标称需求之间的偏差。计算了一个综合的三维帕累托最优权衡解决方案用于决策。 IEEE 39总线系统上的仿真结果验证了该方法的有效性。

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