Journal of Shandong University(Engineering Science) ›› 2022, Vol. 52 ›› Issue (5): 123-131.doi: 10.6040/j.issn.1672-3961.0.2022.186

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Flexibility evaluation of grid consumption and peak shaving of power system with high proportion renewable energy

JIAN Qingzhi1, SUN Donglei1, WANG Chaofan2*, LIU Xiaoming1, LIU Dong1, SUN Yi1, SUN Yuanyuan2   

  1. 1. Economic &
    Technical Research Institute, State Grid Shandong Electric Power Company, Jinan 250021, Shandong, China;
    2. School of Electrical Engineering, Shandong University, Jinan 250061, Shandong, China
  • Published:2022-10-20

CLC Number: 

  • TM712
[1] 鲁宗相,李海波,乔颖. 含高比例可再生能源电力系统灵活性规划及挑战[J]. 电力系统自动化,2016,40(13):147-157. LU Zongxiang, LI Haibo, QIAO Ying. Flexible planning and challenges for power systems containing a high proportion of renewable energy[J]. Automation of Electric Power Systems, 2016, 40(13):147-157.
[2] LANNOYE E, FLYNN D, O'MALLEY M. The role of power system flexibility in generation planning[C] //Proceedings of 2011 IEEE Power Engineering Society General Meeting. San Diego, USA: IEEE, 2011: 1-6.
[3] LANNOYE E, FLYNN D, O'MALLEY M. Valuation of power system flexibility[J]. IEEE Transactions on Power Systems, 2012, 27(2):922-931.
[4] 施涛,朱凌志,于若英.电力系统灵活性评价研究综述[J].电力系统保护与控制,2016,44(5):146-154. SHI Tao, ZHU Lingzhi, YU Ruoying. Overview of power system flexibility evaluation[J]. Power System Protection and Control, 2016, 44(5):146-154.
[5] 肖定垚,王承民,曾平良,等.电力系统灵活性及其评价综述[J].电网技术,2014,38(6):1569-1576. XIAO Dingyao, WANG Chengmin, ZENG Pingliang, et al. Overview of power system flexibility and its evaluation[J]. Power System Technology, 2014, 38(6):1569-1576.
[6] KEN D, GEORGIOS P. Power system flexibility strategic roadmap[R]. Brussels, BEL:European Copper Inst-itute, 2015.
[7] LUND P D, LINDGREN J, MIKKOLA J, et al. Review of energy system flexibility measures to enable high levels of variable renewable electricity[J].Renewable & Sustainable Energy Reviews, 2015(45):785-807.
[8] LANNOYE E, FLYNN D, O'MALLEY M. Power system flexibility assessment-state of the art[C] //Power & Energy Society General Meeting.Montreal, Canada:IEEE, 2012: 1-6.
[9] 鲁宗相,李海波,乔颖. 高比例可再生能源并网的电力系统灵活性评价与平衡机理[J].中国电机工程学报,2017,37(1):9-19. LU Zongxiang, LI Haibo, QIAO Ying. Flexibility evaluation and supply/demand balance principle of power system with high-penetration renewable electricity[J]. Proce-edings of the CSEE, 2017, 37(1):9-19.
[10] NOSAIR H, BOUFFARD F. Flexibility envelopes for power system operational planning[J]. IEEE Trans-actions on Sustainable Energy, 2015, 6(3):800-809.
[11] 詹勋淞. 高比例可再生能源电网多尺度电源灵活性评估和储能配置研究[D].广州:华南理工大学,2020. ZHAN Xunsong. Research on multi-scale power supply flexibility evaluation and energy storage allocation of power system with high-penetration renewable electricity[D]. Guangzhou: South China University of Techn-ology, 2020.
[12] 刘英琪,谢敏,韦薇,等.高比例风电接入的电力系统灵活性评估与优化[J].电力建设,2019,40(9):1-10. LIU Yingqi, XIE Min, WEI Wei, et al. Assessment and optimization for power system flexibility with high proportion of wind power[J]. Electric Power Construction, 2019, 40(9):1-10.
[13] 李海波,鲁宗相,乔颖,等. 大规模风电并网的电力系统运行灵活性评估[J].电网技术,2015,39(6):1672-1678. LI Haibo, LU Zongxiang, QIAO Ying, et al. Assessment on operational flexibility of power grid with grid-connected large-scale wind farms[J]. Power System Technology, 2015, 39(6):1672-2678.
[14] 李则衡,陈磊,路晓敏,等. 基于系统灵活性的可再生能源接纳评估[J]. 电网技术,2017,41(7):2187-2194. LI Zeheng, CHEN Lei, LU Xiaomin, et al. Assessment of renewable energy accommodation based on system flexibility analysis[J]. Power System Technology, 2017, 41(7):2187-2194.
[15] CHANDLER H. Harnessing variable renewables: a guide to the balancing challenge[R]. Paris, France: International Energy Agency, 2011.
[16] LI Dexin, WANG Jiarui, ZHANG Jiajun. Analysis of energy storage output characteristics based on photo-voltaic volatility[J]. Power System and Clean Energy, 37(2):99-107.
[17] North American Electric Reliability Corporation. Special report: accommodating high levels of variable generation[R]. Atlanta, American: North American Electric Reliability Corporation, 2009.
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