Multi-Time Scale Active and Reactive Power Coordinated Optimal Dispatch in Active Distribution Network Based on Scenario Method

Shuai Chen, Chengfu Wang, Hongzhang Sheng, Zhenwei Zhang
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引用次数: 1

Abstract

To improve the adaptability for renewable energy sources (RES), a multi-time scale optimal dispatching strategy based on the scenario method is proposed in the active distribution network (ADN). In the day-ahead stage, polynomial normal transformation and Latin hypercube sampling technology are employed to generate scenarios with temporal correlation. By optimizing the operation state of slow-response resources, the expected cost of ADN under all scenarios achieves a minimum. In the intraday stage, based on the updated predicted output of RES, the operation status of the fast-response resources is optimized using the same procedure. In the real-time stage, a rolling finite time-domain optimization strategy is adopted to minimize the deviation between the actual output and the intraday reference. Through the coordination of different time scales, the proposed method can reduce the action numbers of discrete reactive power compensation devices and restrain the fluctuation of bus voltage. A case study on a modified IEEE 33-bus system verified the economy and effectiveness of the proposed method.
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基于情景法的有功配电网多时间尺度有功与无功协调优化调度
为提高电网对可再生能源的适应性,提出了一种基于情景法的有源配电网多时间尺度优化调度策略。在日前阶段,采用多项式正态变换和拉丁超立方采样技术生成具有时间相关性的场景。通过优化慢响应资源的运行状态,使所有场景下ADN的预期成本达到最小。在日内阶段,基于更新后的RES预测输出,采用相同的流程对快速响应资源的运行状态进行优化。在实时阶段,采用滚动有限时域优化策略,使实际输出与当日参考之间的偏差最小。通过不同时间尺度的协调,减少离散无功补偿装置的动作次数,抑制母线电压的波动。对改进的IEEE 33总线系统进行了实例研究,验证了该方法的经济性和有效性。
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