Page 64 - 中国仿真学会通讯
P. 64

Xu Fei, Min Yong, Chen Lei, et al . Combined electricity - heat operation system containing large capacity
         thermal energy storage[ J] . Proceedings of the CSEE, 2014, 34(29) : 5063-5072( in Chinese) .
[37]   顾泽鹏, 康重庆, 陈新宇, 等. 考虑热网约束的电热能源集成系统运行优化及其风电消纳效益分析[ J] .
         中国电机工程学报, 2015, 35(14) : 3596-3604.
         Gu Zepeng, Kang Chongqing, Chen Xinyu, et al. Operation optimization of integrated power and heat energy
         systems and the benefit on wind power accommodation considering heating network constraints [ J] . Proceedings of
         CSEE, 2015, 35(14) : 3596-3604( in Chinese) .
[38]   王珺, 顾伟, 陆帅, 等. 结合热网模型的多区域综合能源系统协同规划[ J] . 电力系统自动化, 2016, 40
         (15) : 17-24.
         Wang Jun, Gu Wei, Lu Shuai, et al. Coordinated planning of multi-district integrated energy system combining
         heating network model[ J] . Automation of Electric Power Systems, 2016, 40(15) : 17-24( in Chinese) .
[39]   Yang Yulong, Wu Kai, Long Hongyu, et al. Integrated electricity and heating demand - side management for
         wind power integration in China[ J] . Energy, 2014, 78: 235-246.
[40]   Gahleitner G. Hydrogen from renewable electricity: an international review of power - to - gas pilot plants for
         stationary applications[ J] . International Journal of Hydrogen Energy, 2013, 38(5) : 2039-2061
[41]   王一家, 董朝阳, 徐岩, 等. 利用电转气技术实现可再生能源的大规模存储与传输[ J] . 中国电机工程学
         报, 2015, 35(14) : 3586-3595.
         Wang Yijia, Dong Zhaoyang, Xu Yan, et al. Enabling large - scale energy storage and renewable energy grid
         connectivity: a power - to - gas approach [ J ] . Proceedings of the CSEE, 2015, 35 ( 14 ) : 3586 - 3595 ( in
         Chinese) .
[42]   李杨, 刘伟佳, 赵俊华, 等. 含电转气的电-气-热系统 协同调度与消纳风电效益分析[ J] . 电网技术,
         2016, 40(12) : 3680-3688.
         Li Yang, Liu Weijia, Zhao Junhua, et al. Optimal dispatch of combined electricity-gas-heat energy systems with
         power-to-gas devices and benefit analysis of wind power accommodation[ J] . Power System Technology, 2016,
         40(12) : 3680-3688( in Chinese) .
[43]   黄国日, 刘伟佳, 文福拴, 等. 具有电转气装置的电-气混联综合能源系统的协同规划[ J] . 电力建设,
         2016, 37(9) : 1-13.
         Huang Guori, Liu Weijia, Wen Fushuan, et al. Collaborative planning of integrated electricity and natural gas
         energy systems with power-to-gas stations [ J] . Electric Power Construction, 2016, 37(9) : 1-13( in Chinese) .
[44]   Qadrdan M, Wu J Z, Jenkins N, et al. Operating strategies for a GB integrated gas and electricity network
         considering the uncertainty in wind power forecasts [ J] . IEEE Transactions on Sustainable Energy, 2014, 5(1) :
         128-138.
[45]   Ramirez - Elizondo L M, Paap G C. Unit commitment in multiple energy carrier systems [ C ] / / 2009 North
         American Power Symposium ( NAPS) . Starkville, MS, USA: IEEE, 2009: 1-6.
[46]   Liu Cong, Shahidehpour M, Fu Yong, et al. Securityconstrained unit commitment with natural gas transmission
         constraints[ J] . IEEE Transactions on Power Systems, 2009, 24(3) : 1523-1536.
[47]   Liu C, Shahidehpour M, Wang J . Application of augmented Lagrangian relaxation to coordinated scheduling of
         interdependent hydrothermal power and natural gas systems [ J] . IET Generation, Transmission & Distribution,
         2010, 4(12) : 1314-1325.
[48]   Unsihuay C, Marangon-Lima J W, de Souza A C Z. Shortterm operation planning of integrated hydrothermal and
         natural gas systems[ C] / / 2007 IEEE Lausanne Power Tech. Lausanne: IEEE, 2007: 1410-1416.
[49]   Zhang Xiaping, Shahidehpour M, Alabdulwahab A, et al . Optimal expansion planning of energy hub with
         multiple energy infrastructures[ J] . IEEE Transactions on Smart Grid, 2015, 6(5) : 2302-2311
[50]   Zhang Xiaping, Shahidehpour M, Alabdulwahab A S, et al. Security -constrained co -optimization planning of
         electricity and natural gas transportation infrastructures [ J] . IEEE Transactions on Power Systems, 2015, 30

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