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碳交易机制下考虑需求响应的综合能源系统优化运行
引用本文:魏震波,马新如,郭毅,魏平桉,卢炳文,张海涛. 碳交易机制下考虑需求响应的综合能源系统优化运行[J]. 电力建设, 2022, 43(1): 1-9. DOI: 10.12204/j.issn.1000-7229.2022.01.001
作者姓名:魏震波  马新如  郭毅  魏平桉  卢炳文  张海涛
作者单位:1.四川大学电气工程学院,成都市 6100652.国网河南省电力公司濮阳供电公司,河南省濮阳市 457000
基金项目:国家自然科学基金项目(51807125)~~;
摘    要:综合能源系统是实现“双碳”目标的有效途径,为进一步挖掘其需求侧可调节潜力对碳减排的作用,提出了一种碳交易机制下考虑需求响应的综合能源系统优化运行模型。首先,根据负荷响应特性将需求响应分为价格型和替代型2类,分别建立了基于价格弹性矩阵的价格型需求响应模型,及考虑用能侧电能和热能相互转换的替代型需求响应模型;其次,采用基准线法为系统无偿分配碳排放配额,并考虑燃气轮机和燃气锅炉的实际碳排放量,构建一种面向综合能源系统的碳交易机制;最后,以购能成本、碳交易成本及运维成本之和最小为目标函数,建立综合能源系统低碳优化运行模型,并通过4类典型场景对所提模型的有效性进行了验证。通过对需求响应灵敏度、燃气轮机热分配比例和不同碳交易价格下系统的运行状态分析发现,合理分配价格型和替代型需求响应及燃气轮机产热比例有利于提高系统运行经济性,制定合理的碳交易价格可以实现系统经济性和低碳性协同。

关 键 词:碳交易机制  需求响应  综合能源系统  优化运行  
收稿时间:2021-05-19

Optimized Operation of Integrated Energy System Considering Demand Response under Carbon Trading Mechanism
WEI Zhenbo,MA Xinru,GUO Yi,WEI Pingan,LU Bingwen,ZHANG Haitao. Optimized Operation of Integrated Energy System Considering Demand Response under Carbon Trading Mechanism[J]. Electric Power Construction, 2022, 43(1): 1-9. DOI: 10.12204/j.issn.1000-7229.2022.01.001
Authors:WEI Zhenbo  MA Xinru  GUO Yi  WEI Pingan  LU Bingwen  ZHANG Haitao
Affiliation:1. College of Electrical Engineering, Sichuan University, Chengdu 610065, China2. State Grid Henan Electric Power Company Puyang Power Supply Company, Puyang 457000, Henan Province, China
Abstract:The integrated energy system (IES) is an effective way to achieve the“carbon neutrality and emission peak”goal. In order to further explore the role of the adjustable potential of demand side on carbon emission reduction, an optimized operation model of IES considering the demand response under the carbon trading mechanism is proposed. Firstly, according to the characteristics of load response, the demand response is divided into two types: price-type and substitution-type. The price-type demand response model is established on the basis of price elasticity matrix, and the substitution-type demand response model is constructed by considering the conversion of electricity and heat. Secondly, base-line method is used to allocate free carbon emission quota for the system, and considering the actual carbon emissions of gas turbine and gas boiler, a carbon trading mechanism for the IES is constructed. Finally, a low-carbon optimal operation model of IES is established, whose objective is to minimize the sum cost of energy purchase, cost of carbon transaction and cost of IES operation and maintenance. The effectiveness of the proposed model is verified through four typical scenarios. By analyzing the sensitivity of demand response, heat distribution ratio of gas turbine and the operating state of the system under different carbon trading prices, it is found that reasonable allocation of price-type and substitution-type demand response and heat production ratio of gas turbine is beneficial to improve the operating economy of the system. Making reasonable carbon trading price can realize the coordination of system economy and low carbon.
Keywords:carbon trading mechanism  demand response  integrated energy system  optimized operation
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