[1]
Berkovich V M, Gorokhov V F, Tatarnikov V P. Possibility of regulating the capacity of a power system by means of nuclear power plants[J]. Teploenergetika, 1974(6): 16-19.
Google Scholar
[2]
Grum A. Design of nuclear power plant with pressurized water reactor for optimum load follow capability[J]. Atomkernenergic Kerntechnik, 1986, 48(3): 138-143.
Google Scholar
[3]
Levent A H, Altin V. Rule-based fuzzy logic controller for a PWR-type nuclear power plant[J]. IEEE Transactions on Nuclear Science, 1991, 38(2): 883-890.
DOI: 10.1109/23.289405
Google Scholar
[4]
Christenson J M. Application of optimal control theory to a load following pressurized water reactor[J]. Nuclear Technology, 1992, 100(3): 361.
DOI: 10.13182/nt92-a34731
Google Scholar
[5]
Wu Guo-wei, Tao Jin. Research of Load Follow for Nuclear Power Plant with Pressurized Water Reactors[J]. Nuclear Power Engineering, 1998, 19(5): 394-397.
Google Scholar
[6]
Ge Bin, Wu Yi[J]. A Study on a real-time simulation for the second loop of PWR nuclear power unit[J]. Proceedings of the CSEE, 2002, 22(6): 142. 145.
Google Scholar
[7]
Wu Ping, Liu Di-chen, Zhao Jie, et al. Fuzzy adaptive PID control-based load following of pressurized water reactor[J]. Power System technology, 2011, 35(4): 76-81.
Google Scholar
[8]
Zhao Jie, Liu Di-chen, Wu Yao-wen. Modeling of pressurized water reactor nuclear power plant integrated into power system simulation[J]. Proceedings of the CSEE, 2007, 29(31): 8-13.
Google Scholar
[9]
Zhang Xue-cheng, Hu Xue-hao, Zhou Xiu-ming, et al. Development of MID term dynamic simulation program including nuclear power plant model and study of interaction between large nuclear power plant and power system[J]. Power System technology, 1995, 19(2): 5-10.
Google Scholar
[10]
Ma Xi-peng. Discussion on large-scale PWR power plants participating in sufficing peak- load of Grid[J]. Shandong DianLiJiShu, 2007(6): 35-40.
Google Scholar
[11]
Chen Han-xiong, Zheng Yong. Adaptability of large-capacity nuclear power plants accessing Sichuan and Chongqing grids and ability of participating in system peak-load regulation[J]. Electric Power, 2011, 44(3): 1-5.
Google Scholar
[12]
Zheng Xiu-bo, Liu Yun, Sun Jing-qiang. The peak load regulation of nuclear power plant in Guangdong power grid[J]. Electric Power Technology, 2010, 19(13-14): 82-85.
Google Scholar
[13]
Brendan K, John K, Harvey L, et al. Nuclear Generating Stations and Transmission Grid Reliability[C] /2007 39th North American Power Symposium. Las Cruces, USA: Power Engineering Society, 2007: 279-287.
DOI: 10.1109/naps.2007.4402323
Google Scholar
[14]
Maldonado G I. The performance of North American nuclear power plants during the electric power blackout of August 14, 2003[C]/Nuclear Science Symposium Conference. Rome, Italy: IEEE, 2004: 4603-4606.
DOI: 10.1109/nssmic.2004.1466907
Google Scholar
[15]
He Yongxiu, Yang Weiwei, Lu Yu, et al. Peak-load regulation and emergency response function of weekly adjusted pumped storage station in Beijing-Tianjin-Tangshan Power Grid[J]. Power System Technology, 2006, 30(19): 71-75.
Google Scholar
[16]
Yang Jingyan, Fu Zhikui. A model and arithmetic for the planning of pumped-storage power plant[J]. Proceedings of the CSEE, 2001, 21(2): 33-36.
Google Scholar
[17]
Zhao Jie, Liu Di-chen, et al. Analysis of Nuclear Power Plant Participating in Peak Load Regulation of Power Grid and Combined Operation With Pumped Storage Power Plant[J]. Proceedings of the CSEE, 2011, 31(7): 1-5.
Google Scholar
[18]
Li Bi-hui, Shen Hong, Tang Yong, et al. Impacts of energy storage capacity configuration of HPWS to active power characteristics and Its Relevant Indices[J]. Power System Technology, 2011, 35(4): 123-128.
DOI: 10.1109/powercon.2010.5666672
Google Scholar
[19]
Wang Hao-huai, Tang Yong, et al. Composition modeling and equivalence of an integrated power generation system of wind,photovoltaic and energy storage unit[J]. Proceedings of the CSEE, 2011, 31(34): 1-9.
Google Scholar
[20]
Liu Xia, Jiang Quan-yuan. An optimal coordination control of hybrid wind/ photovoltaic/ energy storage system[J]. Automation of Electric Power Systems, 2012, 36(14): 5-100.
Google Scholar