考虑火电低碳转型的风能、太阳能、火电协同规划与收益分配

X. Wu, Wenyun Luo, Hua Gao, Lixiong Xu
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摘要

双碳政策使电力系统发展发生重大变化,清洁能源占比高的新型电力系统成为中国未来电力工业发展的主要目标。在此背景下,由于风电和光伏具有较高的不确定性,火电的灵活性和稳定性尤为突出。然而,过去火力发电的碳排放一直处于较高水平,这给电力系统减少碳排放带来了很大的压力。因此,本文提出了考虑火电低碳转型的风能、太阳能和火电协同规划和利润分配模型。采用Shapley值法进行利润分配,采用分段线性化策略求解模型,采用核心理论验证合作博弈的存在性。通过实例验证了该方法的有效性。各市场主体的利润可以得到保障,火电机组的低碳转型战略可以在保证经济效益的同时降低电力系统的整体碳排放。
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Coordinated Planning and Profit Distribution of Wind, Solar and Thermal Power Considering the Low-carbon Transformation of Thermal Power
Double-Carbon Policy has created a major change to the development of power system, and new power system with high percentage of clean energy has become the main goal of China's future power industry development. Under the background, the flexibility and stability of thermal power are particularly prominent because wind power and photovoltaic have high uncertainty. However, carbon emissions from thermal power generation have always been at high levels in the past, which puts great pressure on power systems to reduce carbon emissions. Therefore, this paper proposes a model of coordinated planning and profit distribution of wind, solar and thermal power considering the low-carbon transformation of thermal power. Shapley value method is used to distribute profits, the piecewise linearization strategy is used to solve the model, and core theory is used to verify the existence of cooperative games. The proposed method is applied to an example to verify the effectiveness. The profits of various market players can be guaranteed, and the low-carbon transformation strategy of thermal power units can reduce the overall carbon emissions of the power system while ensuring economic efficiency.
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