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A rolling penalty function algorithm of real-time pricing for smart microgrids based on bilevel programming

机译:基于Bilevel编程的智能微电网的实时定价滚动罚函数算法

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A real-time pricing scheme is formulated based on bilevel programming to tackle the uncertainties for smart microgrids equipped with renewable energy sources, dispatchable resources and storage devices. The main grid is taken as the leader, who sets electricity prices to maximize its revenue. At the lower level, the price-anticipating microgrids determine the amount of dispatchable resources generated, the load and the storage serving while maximizing their payoffs. When setting price, the main grid needs to consider the microgrids' response. By Karush-Kuhn-Tucker conditions and a smoothing method, the primal bilevel programming is transformed into an equivalent single-level optimization problem with only smooth equality constraints, and then a rolling penalty function algorithm is designed to obtain the optimal solution. The convergence of the smoothing method is demonstrated. Simulations show that the proposed approach has good performance in cutting peak, balancing system energy distribution and improving benefits for both supply and demand.
机译:基于BileVel编程制定了实时定价方案,以解决配备可再生能源,可调度资源和存储设备的智能微电网的不确定性。主要网格被视为领导者,旨在最大限度地提高其收入。在较低级别,价格预测的微电网确定产生的调度资源量,负载和存储服务,同时最大化其收益。设置价格时,主要电网需要考虑微电网的响应。通过karush-kuhn-tucker条件和平滑方法,原始贝尔编程仅转换为相当于平等约束的等效单级优化问题,然后滚动损失功能算法旨在获得最佳解决方案。说明了平滑方法的收敛。模拟表明,该拟议的方法在切割峰值,平衡系统能量分布和提高供需益处方面具有良好的性能。

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