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Dynamic pricing in electricity and natural gas distribution networks: An EPEC model

机译:电力和天然气分配网络动态定价:EPEC模型

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Independent clearing of coupled retail electricity and natural gas markets generally results in a loss of market efficiency. This study investigates the problem of dynamic pricing in retail electricity and natural gas markets in the presence of network constraints by developing a two-leader multiple-follower bi-level model. Here, upper-level electricity and gas utility companies serve as leaders in the model, and determine their optimal dynamic retail prices in anticipation of the demand response (DR) provided by multiple lower-level integrated third-party DR providers or aggregators. Moreover, the model considers the dynamic gas prices provided by gas utility companies to electric utility companies for distributed gas-fired power units, which coordinates the operations of the separate utilities. The resulting model is recast as an equilibrium problem with equilibrium constraints (EPEC). Numerical results for a test system composed of an electric grid with distributed gas-fired power units, a gas distribution network, and multiple integrated DR aggregators indicate that the economic value of the proposed dynamic pricing scheme is up to 5.5% compared with existing regular pricing schemes.
机译:独立清算耦合零售电力和天然气市场通常导致市场效率损失。本研究通过开发双领导的多追随器双级模型来调查在网络限制存在下零售电力和天然气市场的动态定价问题。在这里,上层电力和天然气公用事业公司担任该模型的领导者,并确定其预期多级别综合第三方DR提供商或聚合器提供的需求响应(DR)的最佳动态零售价格。此外,该模型考虑了天然气公司提供的动态天然气价格,为分布式燃气电源单位的电气工具公司提供了分布式燃气电源单元,其协调单独的公用事业的运营。结果模型作为均衡限制(EPEC)的均衡问题重新循环。由具有分布式燃气电机,气体分配网络和多个集成DR聚合器的电网组成的测试系统的数值结果表明,与现有的常规定价相比,所提出的动态定价方案的经济价值高达5.5%方案。

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