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A Robust and Model Predictive Control based Energy Management Scheme for Grid-Connected Microgrids

机译:基于鲁棒和模型预测控制基于网格连接的微电网的能量管理方案

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As the number and scale of microgrids that connected to the main grid have grown obviously in recent years, and furthermore as the output of renewable energy and the level of user load in microgrids are usually uncertain, how to maintain the economic operation of microgrids while reducing microgrids'potential impact on the main grid has become a challenging problem. An energy management scheme which combines the robust optimization approach and model predictive control approach is proposed to cope with this problem. The proposed scheme divides the energy management work into two stages: a day-ahead stage and an intraday stage. In the day-ahead stage an energy management model is proposed to get the interaction plan between the main grid and the microgrid, and the robust optimization approach is utilized to deal with the uncertainties of renewable energy and user load. In the intra-day stage the model predictive control approach is adopted to cope with the updated predictive information in order to keep the real-time power balance of microgrids and reach this system's economic operational goal, in which the deviation betw een the interaction plan and the actual result of interaction is especially penalized to reduce the negative impact on the main grid. At last, the effectiveness of the proposed scheme of energy management for grid-connected microgrids is validated by simulation results, and comparison has also been conducted with other two schemes.
机译:由于近年来,连接到主电网的微电网的数量和规模显着增加,而且随着可再生能源的产量和微电网中的用户载荷水平通常不确定,如何保持微电网的经济运行,同时减少微电网对主要网格的影响已成为一个具有挑战性的问题。建议将稳健优化方法和模型预测控制方法结合的能量管理方案来应对这个问题。该方案将能源管理工作分为两个阶段:一天前阶段和盘中阶段。在前方阶段,提出了能量管理模型以获得主电网和微电网之间的交互计划,并且利用鲁棒优化方法来处理可再生能源和用户负载的不确定性。在日内阶段,采用模型预测控制方法来应对更新的预测信息,以便保持微电网的实时功率平衡并达到该系统的经济运行目标,其中互动计划的偏差和偏差相互作用的实际结果尤其惩罚,以减少对主电网的负面影响。最后,通过模拟结果验证了对电网连接的微电网的能量管理方案的有效性,并通过模拟结果验证,并使用其他两种方案进行比较。

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