考虑用电权重的虚拟电厂参与电力市场的博弈模型

Hao Ruhai, Zhou Zhiyi, Liu Junmin, Bao Guangqing
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引用次数: 0

摘要

近年来,中国的电力市场化改革和可再生能源消费机制取得了一定的成功。然而,风电、太阳能弃电、大量碳排放等问题依然存在。本文基于虚拟电网的框架,从电力市场的角度出发,提出了一种考虑清洁能源消费权重因子的虚拟电厂市场博弈模型,为解决这一困境寻找出路。该模型以两层的形式构建。上层的目标是虚拟电厂的利润最大化,下层的目标是系统运营商的购电成本最小化。考虑到上下最优结果之间的相互耦合,利用KKT (Karush Kuhn Tucker)定理将两层博弈模型简化为单个非线性模型。利用强对偶定理和大M展开法对非线性模型进行近似线性化,有效地得到了最优解。工程实例结果表明,降低了结算价格的波动,更有利于电力市场的平稳运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Game Model of Virtual Power Plant Participating in Electric Power Market with Consumption Weight
The electric power market reform and renewable energy consumption mechanism have achieved some success in China in recent years. However, problems such as wind and solar power curtailment and large carbon emissions still exist. Based on the framework of virtual power grid, this paper proposes a novel virtual power plant market game model considering the clean energy consumption weight factor to find a way out of the dilemma from the perspective of power market. The model is constructed in the form of two-layer. The goal of the upper layer is to maximize the profit of the virtual power plant and the lower layer is to minimize the power purchase cost of the system operator. Considering the mutual coupling between the upper and lower optimal results, the two-layer game model is reduced to a single nonlinear model with KKT (Karush Kuhn Tucker) theorem. And the nonlinear model is approximately linearized based on the strong duality theorem and big M expansion method to obtain the optimal solution efficiently. The project example results show the fluctuation of clearing price is reduced, which is more conducive to the smooth operation of the power market.
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