杨航, 张涛, 冉华军, 刘景, 田凤, 赵天悦. 考虑需求响应与碳价不确定性的综合能源系统优化调度[J]. 现代电力. DOI: 10.19725/j.cnki.1007-2322.2023.0195
引用本文: 杨航, 张涛, 冉华军, 刘景, 田凤, 赵天悦. 考虑需求响应与碳价不确定性的综合能源系统优化调度[J]. 现代电力. DOI: 10.19725/j.cnki.1007-2322.2023.0195
YANG Hang, ZHANG Tao, RAN Huajun, LIU Jing, TIAN Feng, ZHAO Tianyue. Optimal Dispatching of Integrated Energy Systems Considering Demand Response and Carbon Price Uncertainty[J]. Modern Electric Power. DOI: 10.19725/j.cnki.1007-2322.2023.0195
Citation: YANG Hang, ZHANG Tao, RAN Huajun, LIU Jing, TIAN Feng, ZHAO Tianyue. Optimal Dispatching of Integrated Energy Systems Considering Demand Response and Carbon Price Uncertainty[J]. Modern Electric Power. DOI: 10.19725/j.cnki.1007-2322.2023.0195

考虑需求响应与碳价不确定性的综合能源系统优化调度

Optimal Dispatching of Integrated Energy Systems Considering Demand Response and Carbon Price Uncertainty

  • 摘要: 双碳背景下,为充分调动综合能源系统(integrated energy system, IES)需求侧响应的灵活性,并克服碳排放权交易价格的不确定性对调度计划的影响,提出一种考虑需求响应与碳价不确定性的综合能源系统两阶段低碳经济调度模型。在第一阶段为缓解系统供能压力,建立需求响应模型以减少负荷峰谷差并提高供需侧的热电匹配度;第二阶段采用随机场景法对碳价不确定性进行建模,以系统总运行成本期望值最小为目标,构建了综合能源系统低碳经济调度模型。仿真算例表明,所提模型可以有效提高能源利用率,实现系统经济性与低碳性的统一。

     

    Abstract: To fully mobilize the flexibility of the demand-side response of integrated energy system (IES) and mitigate the impact of uncertainty of carbon emission trading price on the dispatching plan in a dual-carbon context, a two-stage low-carbon economic dispatching model of IES is proposed considering both demand response and carbon price uncertainty. In the first stage, a demand response model is developed to reduce the peak-to-valley load difference and improve the thermoelectricity matching between the supply and demand sides, so as to relieve the system supply pressure. In the second stage, a stochastic scenario method is employed to model the carbon price uncertainty, while the IES low-carbon economic dispatch model is constructed to minimize the system operation cost at each time. The simulation example demonstrates that the proposed model can effectively enhance energy utilization and realize the unification of the system economy and low carbon.

     

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