[1] 金国强,刘爱君,高林. 2种协调控制系统对一次调频和AGC响应特性影响的仿真研究[J]. 热力发电,2013,42(10):86-90. JIN Guoqiang, LIU Aijun, GAO Lin. Simulation study on effect of two typical UCC systems on response performance of primary frequency regulation and AGC in a supercritical unit [J]. Thermal Power Generation, 2013, 42(10): 86-90. [2] 姚峻,高磊,陈维和,等. 900 MW超临界机组协调控制及AGC策略的研究与应用[J]. 中国电力,2005,38(8):62-65. YAO Jun, GAO Lei, CHEN Weihe, et al . Research and application of coordinated control and AGC strategy in 900 MW supercritical unit [J]. Electric Power, 2005, 38(8): 62-65. [3] 姚峻,李林,侯新建,等. 二次再热超超临界机组控制策略的研究[J]. 中国电力,2016,49(10):17-21. YAO Jun, LI Lin, HOU Xinjian, et al . Study on the control strategy of double-reheat ultra-supercritical unit [J]. Electric Power, 2016, 49(10): 17-21. [4] 王建强,郑渭建,童小忠,等. 基于热网蓄热提升机组AGC、一次调频品质的试验研究[J]. 中国电力,2014,47(9):1-5. WANG Jianqiang, ZHENG Weijian, TONG Xiaozhong, et al . Experimental study on enhancing the quality of AGC and primary frequency regulation based on heat system accumulation[J].Electric Power, 2014, 47(9): 1-5. [5] 王刚,郝涛,张江南,等. 火电机组一次调频合格率的影响因素分析[J]. 中国电力,2014,47(2):23-26. WANG Gang, HAO Tao, ZHANG Jiangnan, et al . Analysis on influencing factors of passing rate of primary frequency regulation of thermal power units [J]. Electric Power, 2014, 47(2): 23-26. [6] 游勇华,龙洋,万俊松,等. 超超临界直流炉协调控制策略设计与应用[J]. 江西电力2013(4):81-84. [7] 甘勇,马虎平,张跃. 提高机组AGC调节精度及速度的技术改进[J]. 中国电业(技术版),2014(12):25-27. GAN Yong, MA Huping, ZHANG Yue. Technology improvement of increasing the regulating precision and speed of AGC of unit[J]. China Electric Power(Technology Edition), 2014(12): 25-27. [8] 田娅菲,赵文杰,田岚. 火电机组快速响应负荷指令的优化设计[J]. 自动化与仪表,2014(1):38-42. TIAN Yafei, ZHAO Wenjie, TIAN Lan. Optimum design of fast response for thermal power unite load instructions [J]. Automation & Instrumentation, 2014(1): 38-42. [9] 王家兴,白焰,董玲,等. 超临界600 MW机组直流炉协调控制系统及AGC策略的改进与应用[J]. 热力发电,2008,37(12):85-89. WANG Jiaxing, BAI Yan, DONG Ling, et al . Retrofit of coordinated control system for once-through boiler of supercritical 600 MW unit and application of AGC strategy [J]. Thermal Power Generation, 2008, 37(12): 85-89. [10] 樊泉桂. 超超临界锅炉设计及运行[M]. 北京:中国电力出版社,2010. |