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Price-maker wind power producer participating in a joint day-ahead and real-time market

机译:参与风能制造商的价格制定者参与联合的日前和实时市场

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The large scale integration of stochastic renewable energy introduces significant challenges for power system operators and disputes the efficiency of the current market design. Recent research embeds the uncertain nature of renewable sources by modelling electricity markets as a two-stage stochastic problem, co-optimizing day-ahead and real-time dispatch. In this framework, we introduce a bilevel model to derive the optimal bid of a strategic wind power producer acting as price-maker both in day-ahead and real-time stages. The proposed model is a Mathematical Program with Equilibrium Constraints (MPEC) that is reformulated as a single-level Mixed-Integer Linear Program (MILP), which can be readily solved. Our analysis shows that adopting strategic behaviour may improve producer's expected profit as the share of wind power increases. However, this incentive diminishes in power systems where available flexible capacity is high enough to ensure an efficient market operation.
机译:随机可再生能源的大规模整合给电力系统运营商带来了巨大挑战,并质疑当前市场设计的效率。最近的研究通过将电力市场建模为两阶段的随机问题,共同优化日前和实时调度,将可再生资源的不确定性嵌入其中。在此框架中,我们引入了一个双层模型来推导战略性风能生产商在日前和实时阶段均充当价格制定者的最优报价。所提出的模型是带有平衡约束的数学程序(MPEC),可以重新公式化为单级混合整数线性程序(MILP),可以很容易地解决该问题。我们的分析表明,随着风能份额的增加,采取战略行为可能会提高生产商的预期利润。但是,这种激励措施在电力系统中会有所减少,在电力系统中,可用的弹性容量足够高,可以确保有效的市场运作。

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