A Model for Carbon Dioxide Emission Characteristics of Coal-Fired Units for Environment-Economic Dispatch Research

被引:0
|
作者
Zhang Z. [1 ]
Ban M. [1 ]
Guo D. [2 ]
Chen Q. [3 ]
Jiang H. [4 ]
机构
[1] College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin
[2] Harbin Hongguang Boiler Group Co., Ltd., Harbin
[3] State Grid Economic and Technological Research Institute Co., Ltd., Beijing
[4] Power Dispatch and Control Center, State Grid Heilongjiang Electric Power Co., Ltd., Harbin
来源
Ban, Mingfei (mban2@iit.edu) | 1663年 / Shanghai Jiaotong University卷 / 55期
关键词
Carbon dioxide; Coal-fired units; Emission characteristic model; Emission intensity; Power system;
D O I
10.16183/j.cnki.jsjtu.2021.368
中图分类号
学科分类号
摘要
In order to accurately quantify the carbon emissions of coal-fired units with different capacities and serve the goal of "carbon peaking and carbon neutrality" in China better, a novel CO2 emission characteristic model for environment-economic dispatch of power systems is established. First, the changes in the capacity and coal consumption of coal-fired units in China in recent years are summarized and analyzed. Then, the relationship between the load rate and CO2 emission intensity is analyzed using the K-Medoide cluster method, and the carbon emission characteristic model of new coal-fired units restricted to basic equations is established. Finally, combined with theoretical analysis and actual data, a simulation is conducted to verify the validity of the model. © 2021, Shanghai Jiao Tong University Press. All right reserved.
引用
收藏
页码:1663 / 1672
页数:9
相关论文
共 34 条
  • [1] WEI Zhinong, XIANG Yupeng, SUN Guoqiang, Et al., Carbon emission-considered multi-objective dynamic optimal power flow of power system containing carbon-capture plant, Power System Technology, 36, 12, pp. 11-17, (2012)
  • [2] ZHOU Yuan, ZHENG Lifeng, ZHOU Xinnian, Et al., Eco-benefit evaluation of biomass solid fuel based on forest cutting ResiduesFull text replacement, Forest Engineering, 34, 1, pp. 24-29, (2018)
  • [3] KANG Chongqing, CHEN Qixin, XIA Qing, Prospects of low-carbon electricity, Power System Technology, 33, 2, pp. 1-7, (2009)
  • [4] TANG L, QU J B, MI Z F, Et al., Substantial emission reductions from Chinese power plants after the introduction of ultra-low emissions standards, Nature Energy, 4, 11, pp. 929-938, (2019)
  • [5] TALAQ J H, EL-HAWARY F, EL-HAWARY M E., A summary of environmental/economic dispatch algorithms, IEEE Transactions on Power Systems, 9, 3, pp. 1508-1516, (1994)
  • [6] VENKATESH P, GNANADASS R, PADHY N P., Comparison and application of evolutionary programming techniques to combined economic emission dispatch with line flow constraints, IEEE Transactions on Power Systems, 18, 2, pp. 688-697, (2003)
  • [7] KULKARNI A G K., Combined economic and emission dispatch using improved backpropagation neural network, Electric Machines & Power Systems, 28, 1, pp. 31-44, (2000)
  • [8] LIU Shengsong, TAI Nengling, HOU Zhijian, Et al., Study on environmental protection of power systems based on optimal power flow and fuzzy nearness, Proceedings of the CSEE, 23, 4, pp. 21-26, (2003)
  • [9] TAN Zhongfu, YU Chao, A fuzzy optimization model for allocation of generated energy among coal-fired units with targets of energy saving and emission reduction, Power System Technology, 36, 1, pp. 219-223, (2012)
  • [10] LIU Xiao, AI Xin, PENG Qian, Optimal dispatch coordinating power generation with carbon emission permit for wind farms integrated power grid considering demand response, Power System Technology, 36, 1, pp. 213-218, (2012)