[1] 吴国潮, 滕卫明, 范海东, 等. 智能化电厂建设中的问题与功能探讨[J]. 自动化博览, 2016(8):82-85 WU Guochao, TENG Weiming, FAN Haidong, et al. Discussion on problems and functions in the construction of intelligent power plants[J]. Automation Panorama, 2016(8):82-85 [2] 陈世和, 尹峰, 郭为民, 等. 智能电厂技术发展纲要[M]. 北京:中国电力出版社, 2016. [3] 王立地. 700 MW机组全程给水自动控制系统设计特点[J]. 中国电力, 2002, 35(8):44-47 WANG Lidi. Design features of full range feed-water automatic control system of 700 MW generating units[J]. Electric Power, 2002, 35(8):44-47 [4] 潘凤萍, 陈世和. 自启停控制系统在600 MW国产机组上的应用[J]. 广东电力, 2008, 21(12):55-58 PAN Fengping, CHEN Shihe. Application of automatic plant startup and shutdown control system to 600 MW domestic units[J]. Guangdong Electric Power, 2008, 21(12):55-58 [5] 潘凤萍, 陈世和, 张红福, 等. 1000 MW超超临界机组自启停控制系统总体方案设计与应用[J]. 中国电力, 2009, 42(10):15-18 PAN Fengping, CHEN Shihe, ZHANG Hongfu, et al. Design and application of 1000 MW ultra supercritical unit APS system[J]. Electric Power, 2009, 42(10):15-18 [6] 冯偶根, 张建江, 曹阳. 西门子9F联合循环机组自启停功能的应用[J]. 浙江电力, 2010, 29(2):40-42, 45 FENG Ougen, ZHANG Jianjiang, CAO Yang. Research on the application of APS function in SIEMENS 9F combined cycle unit[J]. Zhejiang Electric Power, 2010, 29(2):40-42, 45 [7] 牛海明, 吴东黎, 杨爽, 等. 超超临界1000 MW二次再热机组自启停控制系统设计方案与实现[J]. 热力发电, 2017, 46(2):125-129, 135 NIU Haiming, WU Dongli, YANG Shuang, et al. Design scheme and application of APS system in an ultra-supercritical 1000 MW unit with double-reheat cycle[J]. Thermal Power Generation, 2017, 46(2):125-129, 135 [8] 潘凤萍, 陈世和, 陈锐民, 等. 火力发电机组自启停控制技术及应用[M]. 北京:科学出版社, 2011. [9] 陈卫, 尹峰, 刘兰平, 等. 超(超)临界机组自启停控制技术[M]. 北京:中国电力出版社, 2016. [10] 欧卫海, 王立地. 火力发电厂机组APS监控关键技术研究[J]. 南方能源建设, 2015, 2(S1):19-25 OU Weihai, WANG Lidi. Key technique for APS of thermal power plant control system[J]. Southern Energy Construction, 2015, 2(S1):19-25 [11] 陈卫, 陈波, 尹峰, 等. 基于制粉系统柔性顺控启停的火电机组AGC大范围无缝运行控制[J]. 浙江电力, 2012, 31(12):42-45 CHEN Wei, CHEN Bo, YIN Feng, et al. Large-scale and non-break point operation control flexible SCS of milling system[J]. Zhejiang Electric Power, 2012, 31(12):42-45 [12] 张建玲, 朱晓星, 寻新, 等. 超(超)临界机组智能控制系统设计[J]. 热力发电, 2015, 44(5):59-63 ZHANG Jianling, ZHU Xiaoxing, XUN Xin, et al. Intelligent control system design for ultra-supercritical thermal power units[J]. Thermal Power Generation, 2015, 44(5):59-63 [13] 许锋, 袁未未, 罗雄麟. 大系统的常规控制系统结构设计[J]. 计算机与应用化学, 2017, 34(9):661-668 XU Feng, YUAN Weiwei, LUO Xionglin. Regulatory control configuration design for large-scale systems[J]. Computers and Applied Chemistry, 2017, 34(9):661-668 [14] 许阳, 赵宗贵. 一种人机协作的目标综合识别模型设计[J]. 计算机测量与控制, 2015, 23(11):3739-3743 XU Yang, ZHAO Zonggui. Design of integrated target identification with human-machine cooperation[J]. Computer Measurement & Control, 2015, 23(11):3739-3743 [15] 尹峰, 陈波, 苏烨, 等. 智慧电厂与智能发电典型研究方向及关键技术综述[J]. 浙江电力, 2017, 36(10):1-6, 26 YIN Feng, CHEN Bo, SU Ye, et al. Discussion on typical research directions and key technologies for smart power plants and smart power generation[J]. Zhejiang Electric Power, 2017, 36(10):1-6, 26 |