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Optimal dispatch and bidding strategy of a virtual power plant based on a Stackelberg game

机译:基于Stackelberg博弈的虚拟电厂最优调度与竞价策略

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摘要

The virtual power plant is a new type of energy management platform, which can aggregate a variety of distributed energy resources as a single generation unit to participate in the electricity market. When intermittent renewables make up a large share of the VPP, it will lead to high penalty costs in electricity market transactions. Therefore, it is necessary to optimize the internal power output and trading strategy of the virtual power plants to improve the overall operational economy. This paper deeply analyses the trading mechanism of the electricity market and models the risk cost of virtual power plants in the electricity market. Then a Stackelberg game model is established and the objective function is established to maximize the profit of the virtual power plant and minimize the cost of purchasing electricity by users. Finally, the results of a realistic case study are provided to show that the proposed approach can reduce the bidding bias of a virtual power plant in the electricity market, increase operating profit and reduce the cost of electricity purchasing. In addition, the impact of the load type and bidding method on the economy on a virtual power plant is analysed.
机译:虚拟电厂是一种新型的能源管理平台,它可以将各种分布式能源整合为一个发电单元,以参与电力市场。当间歇性可再生能源在VPP中占很大比重时,将导致电力市场交易中的高罚款成本。因此,有必要优化虚拟电厂的内部电力输出和交易策略,以改善整体运营经济性。本文对电力市场的交易机制进行了深入分析,并对虚拟电厂在电力市场中的风险成本进行了建模。然后,建立Stackelberg博弈模型并建立目标函数,以最大程度地提高虚拟电厂的利润并最小化用户的用电成本。最后,提供了一个实际案例研究的结果,表明所提出的方法可以减少电力市场中虚拟电厂的投标偏差,增加运营利润并降低购电成本。另外,分析了负荷类型和投标方式对虚拟电厂经济性的影响。

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