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Strategic bidding optimization of microgrids in electricity distribution market

机译:配电市场微电网的战略竞标优化

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Future distribution network is expected to be a combination of multiple microgrids. Under the environment of power market reformation in the retail side, microgrids are foreseeable to be the emerging players to participate in the competition of the market. Therefore, there is an urgent need to explore the transaction and bidding mechanism of electricity distribution market with microgrids. In this paper, the strategic bidding optimization of microgrids is formulated as a bi-level programming problem. The path following interior point algorithm and genetic algorithm are utilized to solve the lower level market clearing of the distribution system operator subproblem and the upper level profits maximization of each microgrid operator subproblem, respectively. The Nash Equilibrium of the market is achieved based on dynamic game under complete information. A suite of case studies on the IEEE 33-bus system are conducted to evaluate and validate the proposed method.
机译:未来的分销网络预计将是多个微电网的组合。在零售方面电力市场改革的环境下,可以预见的是,微电网将成为参与市场竞争的新兴参与者。因此,迫切需要探索具有微电网的配电市场的交易和招标机制。本文将微电网的战略竞标优化设计为双层规划问题。利用路径内点算法和遗传算法分别解决配电系统运营商子问题的下级市场清理和每个微电网运营商子问题的上级利润最大化。市场的纳什均衡是基于在完整信息下的动态博弈而实现的。进行了一系列有关IEEE 33总线系统的案例研究,以评估和验证所提出的方法。

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