Research on Optimal Operation of Substation Self-consumption Load Considering Uncertainty

Lili Jiang, Liang Kong, Xiaoqing Su, Jiansheng Huang, Yin Xia
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Abstract

Under the goal of "double carbon", in order to reduce the power consumption, reduce the cost of carbon emission and increase the utilization rate of renewable energy, we propose the optimal operation method of substation self-powered load considering uncertainty. The optimal operation model of substation is established with the objective function of minimizing the operating cost, carbon emission cost and load power variance. The optimal operation strategy of the substation is solved by the affiliation function and particle swarm algorithm, and at the same time, the starting and stopping situations of each load of the substation are solved according to integer planning. A substation in Henan Province is analyzed as an example, and the results show that the method has obvious advantages in reducing the cost of electricity consumption, carbon emission cost, and peak-to-valley difference of the power grid when considering different objectives for optimization comparison under the consideration of photovoltaic and time-sharing tariffs.
考虑不确定性的变电站自耗负荷优化运行研究
在 "双碳 "目标下,为降低电能消耗、减少碳排放成本、提高可再生能源利用率,我们提出了考虑不确定性的变电站自供电负荷优化运行方法。以运行成本最小化、碳排放成本最小化和负荷功率方差最小化为目标函数,建立了变电站最优运行模型。利用隶属函数和粒子群算法求解变电站的最优运行策略,同时根据整数规划求解变电站各负荷的启停情况。以河南省某变电站为例进行分析,结果表明,该方法在考虑光伏电价和分时电价的情况下,对不同目标进行优化比较,在降低用电成本、碳排放成本、电网峰谷差等方面具有明显优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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