[1] 廖国栋,谢欣涛,侯益灵,等. 湖南电网暂态电压稳定性问题[J]. 电网技术,2012,36(10):196-202.
LIAO Guodong, XIE Xintao, HOU Yiling, et al . Study on transient voltage stability of Hunan power grid[J]. Power System Technology, 2012, 36(10): 196-202.
[2] 程改红,康义. 论直流换流站交流滤波器与并联电容器分组容量关系[J]. 中国电力,2016,49(1):114-118.
CHENG Gaihong, KANG Yi. Investigation on size of AC filters and shunt capacitors at DC converter station[J]. Electric Power, 2016, 49(1): 114-118.
[3] 邹欣,蒋维勇,李亚男. ±800 kV酒泉-湖南特高压直流工程无功补偿优化配置方案[J]. 电力建设,2015,36(9):43-49.
ZOU Xin, JIANG Weiyong, LI Yanan. Reactive power configuration scheme of ±800 kV Jiuquan-Hunan UHVDC project[J]. Electric Power Construction, 2015, 36(9): 43-49.
[4] 殷威扬,杨志栋. 特高压直流工程无功平衡和补偿策略[J]. 高电压技术,2006,32(9):50-54.
YIN Weiyang, YANG Zhidong. Study on reactive power balance and compensation strategy for UHVDC Project[J]. High Voltage Engineering, 2006, 32(9): 50-54.
[5] 宋军英,陈辉华,唐外文. 不同负荷模型对湖南电网暂态稳定水平的影响[J]. 电网技术,2007,31(5):29-33.
SONG Junying, CHEN Huihua, TANG Waiwen. Influence of different load models on transient stability level of Hunan power grid [J]. Power System Technology, 2007, 31(5): 29-33.
[6] 宋军英,李欣然. 考虑分布式小水电的负荷模型对湖南电网暂态稳定影响[J]. 湖南电力,2013,33(S2):1-3.
SONG Junying, LI Xinran. Influence of load models containing sistributed small hydropower on transient stability of Hunan power grid[J]. Hunan Electric Power, 2013, 33(S2): 1-3.
[7] 廖国栋,谢欣涛,侯益灵,等. ±800 kV酒泉特高压直流入湘对湖南电网暂态电压稳定性的影响[J]. 电网技术,2012,36(2): 23-28.
LIAO Guodong, XIE Xintao, HOU Yiling, et al . Impacts of ±800 kV DC power transmission from Jiuquan to Hunan on transient voltage stability of Hunan power grid[J]. Power System Technology, 2012, 36(2): 23-28.
[8] 钟胜,郭相国,田昕,等. 哈密至郑州特高压直流对受端电网影响分析[J]. 中国电力,2012,45(11):47-51.
ZHONG Sheng, GUO Xiangguo, TIAN Xin, et al . Influences of the UHVDC project from Hami to Zhengzhou on central China power grid [J]. Electric Power, 2012, 45(11): 47-51.
[9] 廖民传,蔡广林,张勇军. 交直流混合系统受端电网暂态电压稳定分析[J]. 电力系统保护与控制,2009,37(10):1-4. LIAO Minchuan, CAI Guanglin, ZHANG Yongjun. Transient voltage stability of received power grid in AC/DC hybrid power systems[J]. Power System Protection and Control, 2009, 37(10): 1-4.
[10] 刘晓明,慈文斌,刘玉田. 直流控制方式对受端电网电压稳定性影响[J]. 电力自动化设备,2011,31(4):69-73.
LIU Xiaoming, CI Wenbin, LIU Yutian. Influence of DC system control mode on voltage stability of receiving-end power grid[J]. Electric Power Automation Equipment, 2011, 31(4): 69-73.
[11] 胡艳梅,吴俊勇,李芳,等. ±800 kV哈郑特高压直流控制方式对河南电网电压稳定性影响研究[J]. 电力系统保护与控制, 2013,41(21):147-153.
HU Yanmei, WU Junyong, LI Fang, et al . Impacts of DC system control mode of ±800 kV Ha-Zheng UHVDC on voltage stability of Henan power grid[J]. Power System Protection and Control, 2013, 41(21): 147-153.
[12] 游文霞,周子恒,陈磊,等. 基于PSASP的特高压直流与湖南受端交流系统相互影响研究[J]. 电网与清洁能源,2016,32(3): 18-24.
YOU Wenxia, ZHOU Ziheng, CHEN Lei, et al . Study on mutual influences between UHVDC and the receiving-end AC system in Hunan based on PSASP[J]. Power System and Clean Energy, 2016, 32(3): 18-24.
[13] 国家电网公司华中分部. 2016年华中主网稳定规定[R]. 2版. 武汉:国家电网公司华中分部,2016.
[14] 汤涌,仲悟之,孙华东,等. 电力系统电压稳定机理研究[J]. 电网技术,2010,34(4):24-29.
TANG Yong, ZHONG Wuzhi, SUN Huadong, et al . Study on mechanism of power system voltage stability[J]. Power System Technology, 2010, 34(4): 24-29.
[15] 赵健,郑超,王爱渌,等. 感应电动机功率特性及其对电压稳定的影响机制[J]. 智能电网,2014,2(10):13-18.
ZHAO Jian, ZHENG Chao, WANG Ailu, et al . Power characteristic of induction motor and the influence mechanism to voltage stability [J]. Smart Grid, 2014, 2(10): 13-18.
[16] 国家能源局. 电力系统安全稳定计算技术规范: DL/T 1234—2013[S]. 北京:中国电力出版社,2013. |