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Optimal bidding strategy in transmission-constrained electricity markets

机译:输电受限的电力市场中的最优投标策略

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This paper addresses the problem of developing an optimal bidding strategy for a strategic producer in a transmission-constrained day-ahead electricity market. The optimal bidding strategy is formulated as a bi-level optimization problem, where the first level represents the producer profit maximization and the second level represents the ISO market clearing. The transmission network is incorporated into the ISO problem under two different approaches based on the Nodal and PTDF formulation, respectively. The bi-level problem is converted to a mathematical program with equilibrium constraints (MPEC) which, in turn, is transformed into a mixed-integer linear programming (MILP) model using the Karush-Kuhn-Tucker (KKT) optimality conditions and the strong duality theory. Test results on the IEEE 24-bus and 118-bus systems show that the PTDF formulation of the transmission constraints is computationally far more efficient than the Nodal formulation.
机译:本文讨论了在输电受限的日间电力市场中为战略生产商制定最佳投标策略的问题。最佳投标策略被表述为一个两级优化问题,其中第一级代表生产者的利润最大化,第二级代表ISO市场清算。分别基于Nodal和PTDF公式,采用两种不同的方法将传输网络合并到ISO问题中。将两级问题转换为带有平衡约束(MPEC)的数学程序,然后使用Karush-Kuhn-Tucker(KKT)最优性条件和较强的条件将其转换为混合整数线性规划(MILP)模型。对偶理论。在IEEE 24总线和118总线系统上的测试结果表明,传输约束的PTDF公式在计算上比Nodal公式有效得多。

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