CONSIDERING GREEN CERTIFICATE-CARBON JOINT TRADING AND DEMAND RESPONSE INTEGRATED ENERGY SYSTEM ECONOMIC OPERATION

被引:0
作者
Li Y. [1 ]
Wang W. [1 ]
Kou Y. [1 ]
Zhu S. [1 ]
机构
[1] Engineering Research Center of Education Ministry for Renewable Energy Power Generation and Grid Technology(Xinjiang University), Urumqi
来源
Taiyangneng Xuebao/Acta Energiae Solaris Sinica | 2023年 / 44卷 / 11期
关键词
carbon trading; demand response; green certificate trading; integrated energy system; low carbon economy;
D O I
10.19912/j.0254-0096.tynxb.2022-1153
中图分类号
学科分类号
摘要
Under the“30·60”dual carbon background,the existing green certificate trading,carbon trading and demand response mechanisms will be linked,which can better reflect the low-carbon attributes of renewable energy and achieve low-carbon economy of the system. This paper constructs an economic operation strategy for an integrated energy system considering green certificate-carbon joint trading and demand response. Firstly,the green certificate trading and carbon trading mechanism is introduced,through the green certificate carbon emission reduction mechanism,the green certificate trading and carbon trading are linked;then the demand response mechanism is introduced to optimize the user’s energy consumption behavior,promote the consumption of renewable energy,and improve the profitability of green certificate and carbon trading. Finally,an economic operation strategy aiming at minimizing the sum of energy purchase cost,green certificate transaction cost,carbon transaction cost and demand response compensation cost is proposed. The calculation example results prove that the introduction of green certificate trading,carbon trading and demand response mechanisms in the integrated energy system has superior low-carbon economy. © 2023 Science Press. All rights reserved.
引用
收藏
页码:538 / 546
页数:8
相关论文
共 20 条
[1]  
WANG Y Z, KANG L G,, ZHANG J,, Et al., Development history,typical form and future trend of integrated energy system[J], Acta energiae solaris sinica, 42, 8, pp. 84-95, (2021)
[2]  
LUO Z,, QIN J H,, LIANG J Y,, Et al., Operation optimization of integrated energy system with green certificate cross- chain transaction[J], Power system technology, 45, 4, pp. 1311-1320, (2021)
[3]  
DONG F G, SHI L., Design and simulation of renewable portfolio standard and tradable green certificate mechanism [J], Automation of electric power systems, 43, 12, pp. 113-121, (2019)
[4]  
CHEN J P,, HU Z J,, CHEN Y G,, Et al., Thermoelectric optimization of integrated energy system considering ladder- type carbon trading mechanism nd electric hydrogen production [J], Electric power automation equipment, 41, 9, pp. 48-55, (2021)
[5]  
QIN T, LIU H D, WANG J Q,, Et al., Carbon trading based low- carbon economic dispatch for integrated electricity-heat- gas energy system[J], Automation of electric power systems, 42, 14, pp. 8-13, (2018)
[6]  
ZHANG X H, LIU X Y, ZHONG J Q., Integrated energy system planning considering a reward and punishment ladder- type carbon trading and electric- thermal transfer load uncertainty[J], Proceedings of the CSEE, 40, 19, pp. 6132-6142, (2020)
[7]  
YANG H H, XIE M Y,, HUANG W T,, Et al., Low-carbon economic operation of urban integrated energy system including waste treatment [J], Power system technology, 45, 9, pp. 3545-3552, (2021)
[8]  
LUO Z, QIN J H, LIANG J Y,, Et al., Day-ahead optimal scheduling of integrated energy system with carbon-green certificate coordinated trading mechanism[J], Electric power automation equipment, 41, 9, pp. 248-255, (2021)
[9]  
YUAN G L, LIU P D, TANG F B, Et al., Source- load coordination optimial scheduling considering green power certificate and carbon trading mechanisms[J], Acta energiae solaris sinica, 43, 6, pp. 190-195, (2022)
[10]  
YANG D F,, XU Y,, JIANG C., Multiple time- scale coordinated scheduling of combined electro-thermal system considering multi-type demand response[J], Acta energiae solaris sinica, 42, 10, pp. 282-289, (2021)