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Optimal price zones of electricity markets: a mixed-integer multilevel model and global solution approaches

机译:电力市场最优价格区:混合整数多级模型和全球解决方案方法

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Mathematical modelling of market design issues in liberalized electricity markets often leads to mixed-integer nonlinear multilevel optimization problems for which no general-purpose solvers exist and which are intractable in general. In this work, we consider the problem of splitting a market area into a given number of price zones such that the resulting market design yields welfare-optimal outcomes. This problem leads to a challenging multilevel model that contains a graph-partitioning problem with multi-commodity flow connectivity constraints and nonlinearities due to proper economic modelling. Furthermore, it has highly symmetric solutions. We develop different problem-tailored solution approaches. In particular, we present an extended Karush-Kuhn-Tucker (KKT) transformation approach as well as a generalized Benders approach that both yield globally optimal solutions. These methods, enhanced with techniques such as symmetry breaking and primal heuristics, are evaluated in detail on academic as well as on realistic instances. It turns out that our approaches lead to effective solution methods for the difficult optimization tasks presented here, where the problem-specific generalized Benders approach performs considerably better than the methods based on KKT transformation.
机译:自由化电力市场中市场设计问题的数学建模往往导致混合整数非线性多级优化问题,没有任何通用求解器,通常是难以相干的。在这项工作中,我们考虑将市场区域分成给定数量的价格区,使得所得的市场设计产生福利最佳结果。此问题导致具有挑战性的多级模型,该模型包含由于适当的经济建模而具有多商品流连通性约束和非线性的图形分区问题。此外,它具有高度对称的解决方案。我们制定不同的问题量身定制的解决方案方法。特别是,我们展示了一个扩展的Karush-Kuhn-Tucker(KKT)转换方法以及广义弯曲者的方法,即产量全球最佳解决方案。这些方法,通过对称性破坏和原始启发式等技术增强,在学术和现实的情况下详细评估。事实证明,我们的方法导致了这里呈现的困难优化任务的有效解决方法,其中特定于特定于问题的广义弯曲机方法比基于KKT转换的方法更好地执行。

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