科学技术与工程2024,Vol.24Issue(33) :14260-14269.DOI:10.12404/j.issn.1671-1815.2307491

考虑综合需求响应的含碳捕集与光热电站综合能源系统低碳经济调度

Low-carbon Economic Dispatch of Integrated Energy System with Carbon Capture and Solar Power Station Considering Integrated Demand Response

付波 杨勇康 方文俊 李超顺 权轶
科学技术与工程2024,Vol.24Issue(33) :14260-14269.DOI:10.12404/j.issn.1671-1815.2307491

考虑综合需求响应的含碳捕集与光热电站综合能源系统低碳经济调度

Low-carbon Economic Dispatch of Integrated Energy System with Carbon Capture and Solar Power Station Considering Integrated Demand Response

付波 1杨勇康 1方文俊 1李超顺 2权轶1
扫码查看

作者信息

  • 1. 湖北工业大学电气与电子工程学院,武汉 430068
  • 2. 华中科技大学土木与水利工程学院,武汉 430074
  • 折叠

摘要

提高清洁能源利用率,降低能源系统碳排放是实现能源结构低碳化转型以及"双碳"目标的重要手段.基于此背景,提出了一种阶梯式碳交易机制下包含风电、电储能、燃气机组、碳捕集设备与含储热光热电站的综合能源系统低碳经济调度方法,并结合负荷侧柔性资源的响应策略,从源荷两端联合调度挖掘综合能源系统在经济运行与低碳环保方面的调度潜力.最后以系统运行总成本最小为优化目标,运用CPLEX商业求解器对多个场景进行求解,结果表明:所提源荷协调调度方法可以有效降低系统碳排放并提高系统运行效益.

Abstract

Improving the utilization rate of clean energy and reducing the carbon emissions of energy systems are important means to achieve the low-carbon transformation of energy structure and the goal of"double carbon".Based on this background,a low-carbon eco-nomic dispatching method of integrated energy system including wind power,electric energy storage,gas turbine,carbon capture equip-ment and thermal storage solar power station under the step-by-step carbon trading mechanism was proposed.Combined with the response strategy of flexible resources on the load side,the dispatching potential of integrated energy system in economic operation and low-carbon environmental protection was explored from the joint dispatching of source and load.Finally,with the minimum total cost of system opera-tion as the optimization objective,CPLEX commercial solver was used to solve multiple scenarios.The results show that the source-load coordinated scheduling method proposed can effectively reduce the system carbon emissions and improve the system operation efficiency.

关键词

综合能源系统/碳捕集/光热电站/综合需求响应/阶梯式碳交易/优化调度

Key words

integrated energy system/carbon capture/solar power station/integrated demand response/stepped carbon trading/optimized scheduling

引用本文复制引用

出版年

2024
科学技术与工程
中国技术经济学会

科学技术与工程

CSTPCD北大核心
影响因子:0.338
ISSN:1671-1815
段落导航相关论文