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Multi-Time-Scale Rolling Optimal Dispatch for AC/DC Hybrid Microgrids With Day-Ahead Distributionally Robust Scheduling

机译:具有提前日分布鲁棒调度的AC / DC混合微电网的多时标滚动优化调度

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摘要

To cope with the impact of predicted source-load deviations on the optimal dispatch of ac/dc hybrid microgrids at different time scales, this paper develops a multiple-time-scale (MTS) rolling optimal dispatching framework. A novel day-ahead distributionally robust optimization (DRO) model, based on the predicted means, deviations, and confidence probabilities of the source-load power, reduces the conservativeness of the adaptive robust optimization and provides robust day-ahead scheduling plans. The source-load deviations are effectively compensated by an MTS rolling optimization for the intraday dispatch, which adjusts the operating power of the controllable units. Relaxed penalty cost functions and rigid constraints on the state of charge are added to ensure cyclic regulation of the energy storage. The superiority and validity of the day-ahead DRO model and the intraday MTS rolling optimization model are verified in case studies.
机译:为了应对预测的源负载偏差对交流/直流混合微电网在不同时间尺度上的最优调度的影响,本文建立了一个多时间尺度(MTS)滚动最优调度框架。一种基于源负载功率的预测均值,偏差和置信概率的新颖的日前分布式鲁棒优化(DRO)模型,降低了自适应鲁棒优化的保守性,并提供了鲁棒的日前调度计划。通过对日间调度进行MTS滚动优化,可以有效地补偿源负载偏差,从而调整可控单元的运行功率。添加了宽松的惩罚成本函数和对充电状态的严格约束,以确保对能量存储的周期性调节。案例研究验证了日前DRO模型和日内MTS滚动优化模型的优越性和有效性。

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