西安交通大学电气工程学院,西安,710049
网络首发:2013-08-10,
纸质出版:2013
移动端阅览
宋国兵 1, 靳幸福 1, 李德坤 1, 等. 识别模型参数的电压源换流器型直流输电线路纵联保护[J]. 西安交通大学学报, 2013,47(8):110-114.
Novel Pilot Protection for Voltage Source Converter High Voltage Direct Current Transmission Lines by Identifying Model Parameters[J]. 2013, 47(8): 110-114.
宋国兵 1, 靳幸福 1, 李德坤 1, 等. 识别模型参数的电压源换流器型直流输电线路纵联保护[J]. 西安交通大学学报, 2013,47(8):110-114. DOI: 10.7652/xjtuxb201308019.
Novel Pilot Protection for Voltage Source Converter High Voltage Direct Current Transmission Lines by Identifying Model Parameters[J]. 2013, 47(8): 110-114. DOI: 10.7652/xjtuxb201308019.
针对电压源换流器型直流(VSC-HVDC)输电线路主保护耐过渡电阻能力差、后备保护动作速度慢的问题
提出了一种识别模型参数的VSC-HVDC输电线路纵联保护新原理。该原理将区外故障等效为正的电容模型
区内故障等效为负的电容模型。对于电压等级为±60 kV、电缆线路长为300 km的VSC-HVDC仿真模型
发生区外故障时
识别出的线路对地电容约为80 μF; 发生区内故障时
识别出的并联电容负值约为-1 000 μF。通过判别识别出的电容值的正负
即可区分区内和区外故障。结果表明
该原理不受过渡电阻、线路分布电容和控制方式的影响
灵敏度较高
在各种工况下均能在发生故障后10 ms内准确区分区内和区外故障
具有一定的实用价值。
To solve the problems in the existing protection for high voltage source converter high voltage direct current(VSC-HVDC)transmission lines
such as insufficient sensitivity for main protection and slow operation for backup protection
a novel pilot protection for VSC-HVDC transmission lines by identifying model parameters is proposed. In the principle
the external fault is equivalent to a positive capacitance model
while the internal fault is equivalent to a negative capacitance model. For a ±60 kV VSC-HVDC simulation model of 300 km cable lines
the identified capacitance is positive line-to-ground one
about 80 μF
when an internal fault occurs; the identified capacitance is negative shunt one
about -1 000 μF
when an external fault occurs. Internal faults and external faults can be distinguished by judging whether the identified capacitor is positive or negative. The results show that this principle
unaffected by transition resistance
line distributed capacitance and control type
can identify internal faults and external faults reliably within 10 ms under various operating conditions with sufficient sensitivity.
浙江大学发电教研组直流输电科研组. 直流输电 [M]. 北京:水利电力出版社,1985:1-24.
汤广福. 基于电压源换流器的高压直流输电技术 [M]. 北京:中国电力出版社, 2010:2-36.
徐政,陈海荣. 电压源换流器型直流输电技术综述 [J]. 高电压技术, 2007,30(1):1-10.
XU Zheng, CHEN Hairong. Review and applications of VSC HVDC [J]. High Voltage Engineering, 2007,30(1):1-10.
李庚银,吕鹏飞,李广凯,等. 轻型高压直流输电技术的发展与展望 [J]. 电力系统自动化, 2003,27(4):77-80.
LI Gengyin, LÜ Pengfei, LI Guangkai, et al. Development and prospects for HVDC light [J]. Automation of Electric Power Systems, 2003,27(4):77-80.
胡兆庆,毛承雄,陆继明,等. 一种新的直流输电技术:HVDC Light [J]. 电工技术学报, 2005,20(7):12-16.
HU Zhaoqing, MAO Chengxiong, LU Jiming, et al. New high voltage direct current transmission technology: HVDC light [J]. Transactions of Chinese Electrotechnical Society, 2005,20(7):12-16.
国家电网公司. 浙江舟山将建世界首个“五端柔性直流示范工程” [EB/OL]. [2012-07-24]. http:∥www.sgcc.com.cn/ztzl/newzndw/sdsf/07/277118.shtml.
韩明晓,文俊. 高压直流输电原理与运行 [M]. 北京:机械工业出版社, 2009:185-205.
李爱民,蔡泽祥,任达勇,等. 高压直流输电控制与保护对线路故障的动态响应特性分析 [J]. 电力系统自动化, 2009,33(11):72-75.
LI Aimin, CAI Zexiang, REN Dayong, et al. Analysis on the dynamic performance characteristics of HVDC control and protections for the HVDC line faults [J]. Automation of Electric Power Systems, 2009,33(11):72-75.
宋国兵,蔡新雷,高淑萍,等. VSC-HVDC频变参数电缆线路电流差动保护新原理 [J]. 中国电机工程学报, 2011,31(22):105-111.
SONG Guobing, CAI Xinlei, GAO Shuping, et al. A new current differential protection principle of VSC-HVDC considering frequency-dependent characteristic of cable line [J]. Proceedings of the CSEE, 2011,31(22):105-111.
宋国兵,蔡新雷,高淑萍,等. 基于模型识别的VSC-HVDC直流输电线路方向元件 [J]. 电力系统保护与控制, 2012,40(7):78-83.
SONG Guobing, CAI Xinlei, GAO Shuping, et al. Directional element for VSC-HVDC transmission lines based on model identification [J]. Power System Protection and Control, 2012,40(7):78-83.[11] 宋国兵,蔡新雷,高淑萍,等. 利用电流频率特性的VSC-HVDC直流输电线路纵联保护 [J]. 高电压技术, 2011,37(8):1989-1996.
SONG Guobing, CAI Xinlei, GAO Shuping, et al. New pilot protection for VSC-HVDC transmission lines based on natural frequency characteristic of current [J]. High Voltage Engineering, 2011,37(8):1989-1996.
索南加乐,杨铖,宋国兵,等. 模型识别用于继电保护的理论初探 [J]. 电力系统保护与控制, 2010,38(24):23-28.
SUONAN Jiale, YANG Cheng, SONG Guobing, et al. Survey on relay protection based on model recognition [J]. Power System Protection and Control, 2010,38(24):23-28.
索南加乐,杨铖,杨忠礼,等. 基于模型识别的输电线路纵联保护新原理 [J]. 电力系统自动化, 2008,32(24):30-34.
SUONAN Jiale, YANG Cheng, YANG Zhongli, et al. New type of transmission line pilot protection based on model identification [J]. Automation of Electric Power Systems, 2008,32(24):30-34.
索南加乐,邓旭阳,宋国兵,等. 基于模型参数识别的母线保护原理 [J]. 中国电机工程学报, 2010,30(22):92-99.
SUONAN Jiale, DENG Xuyang, SONG Guobing, et al. Model-parameter identification based bus-bar protection principle [J]. Proceedings of the CSEE, 2010,30(22):92-99.
索南加乐,陈福锋,齐军,等. 串补线路故障点位置的模型识别方法 [J]. 中国电机工程学报, 2005,25(1):66-72.
SUONAN Jiale, CHEN Fufeng, QI Jun, et al. New method for identifying the fault location on series compensated lines based on different fault models [J]. Proceedings of the CSEE, 2005,25(1):66-72.
葛耀中. 新型继电保护与故障测距原理与技术 [M]. 2 版. 西安:西安交通大学出版社, 2007:2-45.
康小宁,吴招座,索南加乐,等. 参数识别纵联差动保护应用中输电线路模型适用频带研究 [J]. 电力系统保护与控制, 2011,39(19):8-16.
KANG Xiaoning, WU Zhaozuo, SUONAN Jiale, et al. Research of suitable frequency band of transmission line model applied to pilot differential protection based on parameter identification [J]. Power System Protection and Control, 2011,39(19):8-16.
0
浏览量
4
下载量
5
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621