Open Access
Issue
E3S Web of Conf.
Volume 406, 2023
2023 9th International Conference on Energy Materials and Environment Engineering (ICEMEE 2023)
Article Number 02037
Number of page(s) 4
Section Energy Conservation Technology and Energy Sustainability
DOI https://doi.org/10.1051/e3sconf/202340602037
Published online 31 July 2023
  1. Asano H,Takahashi M,Yamaguchi N, et al. Demand participation in the power market by load curtailment of building energy use and distributed generation of commercial customers in Janpan[C]. International Conference on Clean Electrical Power. IEEE, 2009: 520-525. [Google Scholar]
  2. H.Z. Cheng,X. Hu,L. Wang, et al. Overview of regional comprehensive energy system planning research [J]. Automation of Electric Power System, 2019, 43 (07): 2-13. [Google Scholar]
  3. J.Z. Zhu, T.Y. Luo,W.L. Wu, et al. Comment on the operation reliability evaluation of integrated Energy System I: Model drive method [J]. Journal of Electrical Technology, 2022, 37 (11): 2761-2776. [Google Scholar]
  4. P.Gong,S.Q. Luo, Y.X. Zhang, et al. Technical evaluation index system of comprehensive energy system [J]. Electrical appliances and Energy Efficiency Management Technology, 2021, (12): 28-33. [Google Scholar]
  5. F.G. Dong,Y. Zhang,M.M. Shang. Research on the comprehensive evaluation of multiple indexes of distributed energy system [J]. Chinese Journal of Electrical Engineering, 2016, 36 (12): 3214-3223. [Google Scholar]
  6. H. Zhou,L.Q. Huang,R.J. Wu, et al. Value evaluation method of comprehensive energy system based on green economy [J]. Automation of Electric Power System, 2020, 44 (02): 36-42. [Google Scholar]
  7. J.L. Yan,J.G. Lin,K.W. Lou, etc. Building-type integrated energy system evaluation system based on AHP coefficient of variation method [J]. Thermal power generation, 2019, 48 (12): 25-30. [Google Scholar]
  8. H.J. Jia,D. Wang,X.D. Xu, et al. Some problems of the Regional Integrated Energy System [J]. Automation of electric power System, 2015 (07): 198207. [Google Scholar]
  9. M. Wen,Y.Q. Liu,X. Hu, et al. Comprehensive energy system planning and evaluation including distributed energy supply equipment [J]. Electrical survey and instrumentation, 2018 (21): 6874. [Google Scholar]
  10. S.X. Zhang,S.K. Lu. Evaluation method of comprehensive energy system for park microgrid [J]. Power Grid Technology, 2018 (08): 24312438. [Google Scholar]
  11. M. Shen, G. Zhang,C. Zhang. Comprehensive evaluation method and application of regional comprehensive energy system at park level [J]. Journal of Beijing Institute of Technology (Social Science Edition), 2022 (04): 5265. [Google Scholar]
  12. J.L. Yan,J.G. Lin,K.W. Lou, etc. Building-based integrated energy system evaluation system based on AHP-coefficient of variation method [J]. Thermal power generation, 2019, 48 (12): 25-30. [Google Scholar]
  13. F.Z. Zhao,Q. Li,Q.C. Zhang, et al. Multi-dimensional comprehensive evaluation method of multi-energy complementary energy system [J]. Journal of Agricultural Engineering, 2021, 37(17): 204-210. [Google Scholar]

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