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A Control Strategy Based on Power Forecasting for Micro-Grid Systems

机译:基于功率预测的微电网系统控制策略

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Balancing production and demand of energy is the main challenge to integrate renewable energy sources (RES) in micro-grid (MG) systems. However, the variability and the uncertainty nature of the production and the consumption make the system more difficult to control. In fact, weather conditions influence on the production of renewable energy sources while occupancy influences on the power consumption. Therefore, the development of accurate short term forecasts are needed for a seamless integration of RES (e.g. photovoltaic system, wind turbine) together with the traditional electrical grid in MG systems. This paper presents a forecasting model for predicting the power production and consumption in MG systems together with the battery state of charge (SoC). A control strategy is then implemented to balance the Demand/Response by taking into account the forecasted and real-time values. Based on the data collected from a real MG system, simulation results are presented to show the effectiveness of power forecasting for MG control.
机译:平衡能源的生产和需求是将可再生能源(RES)集成到微电网(MG)系统中的主要挑战。但是,生产和消耗的可变性和不确定性使系统更加难以控制。实际上,天气状况会影响可再生能源的生产,而占用会影响功耗。因此,需要准确的短期预测以将RES(例如光伏系统,风力涡轮机)与MG系统中的传统电网无缝集成。本文提出了一种预测模型,用于预测MG系统的发电量和功耗以及电池的充电状态(SoC)。然后,通过考虑预测值和实时值,实施控制策略以平衡需求/响应。基于从实际MG系统收集的数据,给出了仿真结果,以显示功率预测对MG控制的有效性。

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