考虑需求响应的高风电并网成本补偿机制

Xuechun Wang, Hongkun Chen, Xin Jiang
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引用次数: 1

摘要

风能的快速增长对传统的电网调度和控制提出了巨大的挑战,因为风能具有间歇性、波动性和不可控性,对调峰有不利影响。为提高风电消纳水平,本文提出了一种成本补偿机制,便于大规模风电并网时需求方参与调峰。首先,分析了蓄热式电加热、插电式电动汽车和可中断负荷在容量和响应特性上的互补关系;在此基础上,建立了有需求侧参与的随机机组承诺模型,为风电消纳提供了方便。在优化结果的基础上,引入合作博弈论,提出了基于Shapley值法求解需求侧响应补偿成本分配结果的方法。计算实例表明,促进需求方参与风电消纳的成本补偿机制是有效的,即在降低火电机组运行成本的同时,最大限度地提高了需求方的灵活性和风电的消纳。
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Cost compensation mechanism for high wind power integration considering demand respond
The rapid growth of wind energy is presenting great challenges to the traditional dispatch and control of power grid since the wind energy which has an adverse effect on peak regulation is intermittent, fluctuant and uncontrollable. To improve the consumption level of wind energy, this paper proposed a cost compensation mechanism to facilitate the demand side to participate in peak regulation when a large-scale wind power integrates into the grid. Firstly, the complementary relationship of the regenerative electric heating, plug-in electric vehicles and interruptible load in capacity and response characteristics has been analyzed. Based on the analysis, a stochastic unit commitment model with the demand side participant is established, which facilitates the consumption of wind energy. Based on the optimization results, cooperative game theory is introduced to propose the method to work out the allocation results of the demand side response compensation cost, which is based on Shapley value method. Calculation example demonstrates that the cost compensation mechanism facilitating the demand side's participation in the wind power consumption is effective, namely reducing the operation cost of thermal power units while maximizing the flexibility of the demand side and the consumption of the wind energy.
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