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Modeling and computing two-settlement oligopolistic equilibrium in a congested electricity network

机译:拥挤电网中的两种解决方案的寡头均衡模型的建模和计算

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A model of two-settlement electricity markets is introduced, which accounts for flow congestion, demand uncertainty, system contingencies, and market power. We formulate the subgame perfect Nash equilibrium for this model as an equilibrium problem with equilibrium constraints (EPEC), in which each firm solves a mathematical program with equilibrium constraints (MPEC). The model assumes linear demand functions, quadratic generation cost functions, and a lossless DC network, resulting in equilibrium constraints as a parametric linear complementarity problem (LCP). We introduce an iterative procedure for solving this EPEC through repeated application of an MPEC algorithm. This MPEC algorithm is based on solving quadratic programming subproblems and on parametric LCP pivoting. Numerical examples demonstrate the effectiveness of the MPEC and EPEC algorithms and the tractability of the model for realistic-size power systems.
机译:引入了两种模式的电力市场模型,该模型考虑了流量拥堵,需求不确定性,系统突发事件和市场力量。我们将此模型的子博弈完美纳什均衡公式化为带有均衡约束(EPEC)的均衡问题,其中每个公司都求解带有均衡约束(MPEC)的数学程序。该模型假设线性需求函数,二次发电成本函数和无损DC网络,从而导致均衡约束成为参数线性互补问题(LCP)。我们介绍了通过重复应用MPEC算法来解决此EPEC的迭代过程。该MPEC算法基于求解二次编程子问题和参数LCP数据透视。数值示例证明了MPEC和EPEC算法的有效性以及该模型对于实际规模的电力系统的易处理性。

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