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Medium-term operation strategy for a grid-connected microgrid via minimax regret optimization

机译:通过Minimax后悔优化的网格连接的微电网的中期操作策略

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With the implementation of distributed generations, microgrid has become an important entity in the modern power systems. A grid-connected microgrid can participate in multiple electricity markets with different time scale to procure energy and self-schedule its internal generation resources to serve its demand. In a medium-term operation horizon (weekly, monthly or longer time span), the decision portfolio faced by a grid-connected microgrid includes forward market procurement, internal generator commitment and dispatching, and spot market procurement. To optimize this decision portfolio while manage the risks caused by the uncertainties, a medium-term operation decision-making model is proposed based on the minimax regret optimization theory. The corresponding mathematical model is formulated and solution method is provided. Numerical case studies are also provided to illustrate and verify the proposed model.
机译:随着分布式代代的实施,MicroGrid已成为现代电力系统中的重要实体。网格连接的微电网可以参与不同时间尺度的多个电力市场,以便采购能源并自行安排其内部发电资源以满足其需求。在中期操作地平线(每周,每月或更长的时间跨度)中,网格连接的微普林面对的决策组合包括前方市场采购,内部发电机承诺和调度以及现货市场采购。为了优化该决定组合,同时管理由不确定性引起的风险,基于Minimax遗憾优化理论提出中期操作决策模型。配制了相应的数学模型,提供了解决方法。还提供了数值案例研究以说明和验证所提出的模型。

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