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Incorporating unit commitment aspects to the European electricity markets algorithm: An optimization model for the joint clearing of energy and reserve markets

机译:将单位承诺方面的内容纳入欧洲电力市场算法:能源和储备市场联合清算的优化模型

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The European electricity markets' integration aims at the market coupling among interconnected power systems and the enhancement of market competitive forces. This process is facilitated by the adoption of a common clearing algorithm among European power exchanges, entitled EUPHEMIA (Pan-European Hybrid Electricity Market Integration Algorithm), which however lacks to capture critical technical aspects of power systems, as done by the unit commitment problem including start-up and shut-down decisions, time constraints (minimum on- and off-times), as well as the consideration of ancillary services. This paper presents an optimization-based framework for the optimal joint energy and reserves market clearing algorithm, further utilizing the hourly offers module of the EUPHEMIA algorithm. In particular, through the formulation of a mixed integer linear programming (MILP) model and employing an iterative approach, it determines the optimal energy and reserves mix, the resulting market clearing prices, and it calculates the welfares of the market participants. The model incorporates infra-hourly power reserve constraints, as well as introduces new market products such as the option of forming linked groups of power units, aiming at supplying additional flexibility in the decision-making of the market participants. The model applicability has been assessed in the Greek power system and its interconnections with neighboring power systems in Southeast Europe. The proposed optimization framework can provide useful insights on the determination of the optimal generation and interconnection portfolios that address the new market-based operational challenges of contemporary power systems subject to technical and economic constraints.
机译:欧洲电力市场的整合旨在互连电力系统之间的市场耦合以及增强市场竞争力。通过在欧洲电力交易所中采用名为EUPHEMIA(泛欧混合电力市场整合算法)的通用清算算法,可促进此过程,但是该算法缺乏捕获电力系统的关键技术方面的能力,如机组承诺问题所致。启动和关闭决策,时间限制(最小接通和断开时间)以及对辅助服务的考虑。本文通过进一步利用EUPHEMIA算法的按小时报价模块,提出了一种基于最优优化的联合能源和储备市场结算算法框架。特别是,通过制定混合整数线性规划(MILP)模型并采用迭代方法,可以确定最佳的能源和储备组合,所产生的市场清算价格,并计算市场参与者的福利。该模型包含了小时内的备用电量约束,并引入了新的市场产品,例如可以选择组建链接的动力装置组,旨在为市场参与者的决策提供更多的灵活性。该模型的适用性已在希腊电力系统及其与东南邻电力系统的互连中进行了评估。所提出的优化框架可以为确定最佳发电和互连组合提供有用的见解,以解决受技术和经济约束的当代电力系统基于市场的新运营挑战。

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