
1.浙江大学 电气工程学院,浙江 杭州 310027
2.国网浙江省电力有限公司杭州供电公司,浙江 杭州 310016
3.中曜达数能生态科技(浙江)有限公司,浙江 杭州 310015
张运舸(2000 —),男,硕士研究生,主要研究方向为综合能源系统低碳优化调度(E-mail:22310096@zju.edu.cn);
包哲静(1974 —),女,副教授,博士研究生导师,博士,通信作者,主要研究方向为综合能源系统优化、人工智能在电力系统的应用(E-mail:zjbao@zju.edu.cn);
于 淼(1984 —),男,教授,博士研究生导师,博士,主要研究方向为微电网建模、控制与优化(E-mail:zjuyumiao@zju.edu.cn)。
收稿日期:2024-09-11,
修回日期:2025-04-10,
网络出版日期:2025-07-18,
纸质出版日期:2025-09-10
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张运舸,包哲静,尹建兵等.综合能源系统损耗碳排放责任的源荷双向分摊方法[J].电力自动化设备,2025,45(09):46-53.
ZHANG Yunge,BAO Zhejing,YIN Jianbing,et al.Bidirectional allocation method between source and load of carbon emission responsibility for loss in integrated energy system[J].Electric Power Automation Equipment,2025,45(09):46-53.
张运舸,包哲静,尹建兵等.综合能源系统损耗碳排放责任的源荷双向分摊方法[J].电力自动化设备,2025,45(09):46-53. DOI: 10.16081/j.epae.202507020.
ZHANG Yunge,BAO Zhejing,YIN Jianbing,et al.Bidirectional allocation method between source and load of carbon emission responsibility for loss in integrated energy system[J].Electric Power Automation Equipment,2025,45(09):46-53. DOI: 10.16081/j.epae.202507020.
针对综合能源系统损耗碳排放责任在源荷主体间分摊不清的问题,提出一种基于㶲的能源转换设备碳排放分摊模型,以及一种基于潮流追踪的综合能源系统网损碳排放责任分摊方法。提出计及㶲损的能源转换设备碳排放分摊模型,将㶲损对应的碳排放责任基于可调参数分摊给能源转换设备本身及其输出能流;对于具有多类型输出的能源转换设备,基于㶲分摊法,将输出能流碳排放在不同类型输出能流间进行分摊,得到不同类型能流的碳排放强度;根据能源转换设备碳排放分摊模型以及电-热-气网潮流模型,基于潮流追踪法,获取网损源荷双向分摊的统一矩阵计算公式,将电-热-气网的网损基于可调参数分摊给源端和负荷端,进而求解得到源端和负荷端的网损碳排放责任。算例结果验证了所提模型和方法的有效性和合理性,综合能源系统损耗碳排放责任的精细合理分摊,有助于准确追踪与溯源碳排放流,提高各主体的碳排放责任意识,降低系统碳排放。
Aiming at the unclear allocation problem of carbon emission responsibility for loss in integrated energy system among energy source and load,an exergy-based carbon emission allocation model for energy conversion equipment and a power flow tracking-based carbon emission responsibility allocation method for loss in integrated energy system are proposed. A carbon emission allocation model for energy conversion equipment is introduced considering the exergy loss,which allocates the carbon emission responsibility corresponded to the exergy loss to the energy conversion equipment and its output energy flow based on an adjustable parameter. Aiming at the energy conversion equipment with multiple output types,the output energy flow carbon emission is allocated among different types of output energy flow based on the exergy allocation method,which obtains the carbon emission intensity of different types of energy flow. According to the carbon emission allocation model of energy conversion equipment and the electricity-thermal-gas power flow model,a unified matrix calculation equation for bidirectional allocation of network loss between source and load is derived based on the power flow tracking method,the electricity-thermal-gas network loss is allocated to the source and load terminals based on the adjustable parameters,thereby the carbon emission res-ponsibility for loss at the source and load terminals are obtained. The example results verify the effectiveness and rationality of the proposed model and method. The refined and rational allocation of carbon emission responsibility for loss in integrated energy system is helpful for accurately tracking and tracing the carbon emission,enhances the carbon emission responsibility awareness of each entity,and reduces the system carbon emission.
康重庆 , 杜尔顺 , 李姚旺 , 等 . 新型电力系统的“碳视角”:科学问题与研究框架 [J]. 电网技术 , 2022 , 46 ( 3 ): 821 - 833 .
KANG Chongqing , DU Ershun , LI Yaowang , et al . Key scienti-fic problems and research framework for carbon perspective research of new power systems [J]. Power System Technology , 2022 , 46 ( 3 ): 821 - 833 .
寇江泽 , 刘温馨 . 落实“双碳”行动建设美丽中国 [N]. 人民日报 , 2024-04-28 (02).
周天睿 , 康重庆 , 徐乾耀 , 等 . 电力系统碳排放流分析理论初探 [J]. 电力系统自动化 , 2012 , 36 ( 7 ): 38 - 43,85 .
ZHOU Tianrui , KANG Chongqing , XU Qianyao , et al . Preliminary theoretical investigation on power system carbon emission flow [J]. Automation of Electric Power Systems , 2012 , 36 ( 7 ): 38 - 43,85 .
陈丽霞 , 孙弢 , 周云 , 等 . 电力系统发电侧和负荷侧共同碳责任分摊方法 [J]. 电力系统自动化 , 2018 , 42 ( 19 ): 106 - 111 .
CHEN Lixia , SUN Tao , ZHOU Yun , et al . Method of carbon obligation allocation between generation side and demand side in power system [J]. Automation of Electric Power Systems , 2018 , 42 ( 19 ): 106 - 111 .
朱继忠 , 周迦琳 , 张迪 . 清洁能源和电力系统碳足迹全生命周期核算综述 [J/OL]. 中国电机工程学报 . [ 2025-03-03 ]. http:∥kns.cnki.net/kcms/detail/11.2107.TM.20240621.1615.005.html http://kns.cnki.net/kcms/detail/11.2107.TM.20240621.1615.005.html .
LI L , YANG D C , LIU Z H , et al . Optimal scheduling of regional integrated energy system considering the integration of electric vehicles and the life cycle assessment method [J]. IEEE Transactions on Industry Applications , 2024 , 60 ( 1 ): 986 - 995 .
KANG C Q , ZHOU T R , CHEN Q X , et al . Carbon emission flow from generation to demand:a network-based model [J]. IEEE Transactions on Smart Grid , 2015 , 6 ( 5 ): 2386 - 2394 .
CHENG Y H , ZHANG N , WANG Y , et al . Modeling carbon emission flow in multiple energy systems [J]. IEEE Transac-tions on Smart Grid , 2018 , 10 ( 4 ): 3562 - 3574 .
张玉敏 , 孙鹏凯 , 吉兴全 , 等 . 考虑扩展碳排放流的综合能源系统低碳经济调度 [J]. 电网技术 , 2023 , 47 ( 8 ): 3174 - 3191 .
ZHANG Yumin , SUN Pengkai , JI Xingquan , et al . Low-carbon economic dispatch of integrated energy system with augmen-ted carbon emission flow [J]. Power System Technology , 2023 , 47 ( 8 ): 3174 - 3191 .
LIN X Q , CAO Y T , WANG D , et al . A carbon hub matrix model considering carbon emission flow loss of energy hub [C]∥ 2023 6th International Conference on Electrical Engi-neering and Green Energy . Grimstad,Norway : IEEE , 2023 : 270 - 274 .
曹逸滔 , 王丹 , 贾宏杰 , 等 . 计及站-网损耗分摊的区域综合能源系统碳排放流计算方法 [J]. 电力系统自动化 , 2024 , 48 ( 12 ): 14 - 23 .
CAO Yitao , WANG Dan , JIA Hongjie , et al . Calculation method for carbon emission flow in regional integrated energy system considering station-network loss allocation [J]. Automation of Electric Power Systems , 2024 , 48 ( 12 ): 14 - 23 .
KUMAR H , KHATOD D K . Loss allocation in three-phase distribution network using τ -value [J]. IEEE Transactions on Power Systems , 2024 , 39 ( 3 ): 4924 - 4934 .
刘家军 , 杨晓倩 , 陈乃兴 , 等 . 含小水电群的配电网网损分摊研究 [J]. 智慧电力 , 2020 , 48 ( 7 ): 93 - 99 .
LIU Jiajun , YANG Xiaoqian , CHEN Naixing , et al . Loss allocation of distribution network with small hydropower groups [J]. Smart Power , 2020 , 48 ( 7 ): 93 - 99 .
汪超群 , 陈懿 , 文福拴 , 等 . 电力系统碳排放流理论改进与完善 [J]. 电网技术 , 2022 , 46 ( 5 ): 1683 - 1693 .
WANG Chaoqun , CHEN Yi , WEN Fushuan , et al . Improvement and perfection of carbon emission flow theory in power systems [J]. Power System Technology , 2022 , 46 ( 5 ): 1683 - 1693 .
邵振国 , 林勇棋 , 陈飞雄 , 等 . 考虑碳-绿证耦合机制的电-气-热综合能源系统分布式鲁棒低碳经济调度 [J]. 电力自动化设备 , 2024 , 44 ( 6 ): 50 - 58,76 .
SHAO Zhenguo , LIN Yongqi , CHEN Feixiong , et al . Distributionally robust low-carbon economic dispatch of electricity-gas-heat integrated energy system considering carbon-green certificate coupling mechanism [J]. Electric Power Automation Equi-pment , 2024 , 44 ( 6 ): 50 - 58,76 .
李沅 , 陆帅 , 顾伟 , 等 . 考虑热动态的综合能源系统碳排放流建模与分析 [J]. 电力自动化设备 , 2024 , 44 ( 7 ): 205 - 213 .
LI Yuan , LU Shuai , GU Wei , et al . Modelling and analysis of carbon emission flow for integrated energy system considering thermal dynamic [J]. Electric Power Automation Equipment , 2024 , 44 ( 7 ): 205 - 213 .
刘睿捷 , 包哲静 , 林振智 . 考虑双层奖惩型碳交易机制的源网荷分布协同低碳经济调度 [J]. 电力系统自动化 , 2024 , 48 ( 9 ): 11 - 20 .
LIU Ruijie , BAO Zhejing , LIN Zhenzhi . Distributed collaborative low-carbon economic dispatching of source,grid and load considering dual-layer carbon trading mechanism with reward and punishment [J]. Automation of Electric Power Systems , 2024 , 48 ( 9 ): 11 - 20 .
景巍巍 , 王强 , 程好 , 等 . 电热综合能源系统稳态与区间潮流计算快速解耦新方法 [J]. 中国电力 , 2024 , 57 ( 7 ): 203 - 213 .
JING Weiwei , WANG Qiang , CHENG Hao , et al . New rapid decoupling methods for calculating steady-state and intervalpower flow of integrated electricity-heat energy systems [J]. Electric Power , 2024 , 57 ( 7 ): 203 - 213 .
LI J X , WANG D , JIA H J , et al . Mechanism analysis and unified calculation model of exergy flow distribution in regional integrated energy system [J]. Applied Energy , 2022 , 324 : 119725 .
殷晨旭 , 孙永辉 , 谢东亮 , 等 . 博弈视角下电-气互联综合能源系统多目标协同优化 [J]. 电力系统自动化 , 2024 , 48 ( 11 ): 173 - 183 .
YIN Chenxu , SUN Yonghui , XIE Dongliang , et al . Multi-objective cooperative optimization of electricity-gas interconnected integrated energy system from game perspective [J]. Automation of Electric Power Systems , 2024 , 48 ( 11 ): 173 - 183 .
陈威成 . 计及㶲效率的区域综合能源系统综合评估方法研究 [D]. 北京 : 华北电力大学 , 2020 .
CHEN Weicheng . Research on comprehensive evaluation method of regional integrated energy system considering exergy efficiency [D]. Beijing : North China Electric Power University , 2020 .
YANG W J , HUANG Y P , ZHANG T R , et al . Mechanism and analytical methods for carbon emission-exergy flow distribution in heat-electricity integrated energy system [J]. Applied Energy , 2023 , 352 : 121980 .
BUCHENAU N , HANNEN C , HOLZAPFEL P , et al . Allocation of carbon dioxide emissions to the by-products of combined heat and power plants:a methodological guidance [J]. Rene-wable and Sustainable Energy Transition , 2023 , 4 : 100069 .
张诗滔 , 顾明宏 , 李扬 . 考虑网损分摊的潮流跟踪方法 [J]. 电力系统及其自动化学报 , 2005 , 17 ( 4 ): 89 - 93 .
ZHANG Shitao , GU Minghong , LI Yang . Power flow tracing method considering loss allocation [J]. Proceedings of Electric Power System and Automation , 2005 , 17 ( 4 ): 89 - 93 .
陈大玮 . 电-气综合能源系统建模与协同优化运行研究 [D]. 杭州 : 浙江大学 , 2022 .
CHEN Dawei . Modelling and coordinated optimization operation of non-isothermal integrated power and natural gas systems [D]. Hangzhou : Zhejiang University , 2022 .
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