Suzhou Electric Appliance Research Institute
期刊号: CN32-1800/TM| ISSN1007-3175

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新型变压器有载分接开关综述

来源:电工电气发布时间:2016-04-05 16:05 浏览次数:707

新型变压器有载分接开关综述 

高飞,李金忠,张书琦 
中国电力科学研究院,北京 100192 
 

摘 要:电网中无功功率的变化会导致电压的波动,为调节无功功率,需对电压进行调节,电力变压器有载分接开关是电压调节的重要手段。通过分析不同类型有载分接开关的工作原理和调压过程,对机械式、电力电子式和混合式有载分接开关进行了对比研究,总结了它们的优缺点。介绍了三种混合式有载分接开关的结构及实现时存在的技术难点,为进一步开展混合式有载分接开关研究提供了参考。
关键词:有载分接开关;机械式;电力电子式;混合式
中图分类号:TM403.4 文献标识码:A 文章编号:1007-3175(2013)10-0001-05


Comprehensive Description of New-Type Transformer On-Load Tap-Changer 

GAO Fei, LI Jin-zhong, ZHANG Shu-qi 
China Electric Power Research Institute, Beijing 100192, China 
 

Abstract: Changes of reactive power will lead to voltage fluctuations in power system. In order to adjust reactive power, there is a need to have voltage adjustment, and power transformer on-load tap-changer is an important means for voltage adjustment. Via analysis of working principle and on-load tap-changer voltage adjusting process of different kind of on-load tap-changers, comparisons were carried out for mechanical type, power electronic type and hybrid type, their advantages and disadvantages summarized. Introduction was made to structures and existing technical difficulties in realization for three kinds of hybrid type on-load tap-changers, which provided reference for further carrying out hybrid type on-load tap-changer study.
       Key words: on-load tap-changer; mechanical; power electronic type; hybrid


参考文献
[1] Degeneff R C.A new concept for a solid-state onload tap changers[C]//Electricity Distribution.
Part 1:Contributions CIRED 14th International Conference and Exhibition on,1997.
[2] Faiz J,Siahkolah B.New solid-state onload tap-changers topology for distribution transformers[J].IEEE Transactions on Power Delivery,2003,18(1):136-141.
[3] M o n r o y - B e r j i l l o s D ,G o m e z - E x p o s i t o A ,Bachiller-Soler A.A lab setup illustrating thyristor-assisted under-load tap changers[J].IEEE Transactions on Power Systems, 2010,25(3):1203-1210.
[4] 张德明. 有载分接开关国内现状及其发展动向[J].变压器,2000,37(1):36-39.
[5] 朱国荣,李民族,刘晓东,等. 配电变压器的晶闸管串联调压方法[J]. 变压器,2002,39(7):22-26.
[6] 吕艳玲,赵玉林,徐建华,等. 基于固态继电器的配电变压器自动稳压装置[ J ] . 电力系统自动化,2003,27(24):74-77.
[7] 李晓明,黄俊杰,尹项根,等. 平滑无冲击电力电子有载调压装置[ J ] . 电力系统自动化,2003,27(20):45-48.
[8] 蔡博,崔学深,陈晓. 无触点有载调压过渡过程中无冲击电流的研究[J]. 电工电气,2010(1):1-4.
[9] 付岩. 无触点有载自动调压配电变压器关键技术的研究[D]. 哈尔滨:东北农业大学,2011.
[10] 姚志松,姚磊. 有载分接开关实用手册[K]. 北京:中国电力出版社,2003.
[11] 朱英浩,沈大中. 有载分接开关电气机理[M]. 北京:中国电力出版社,2012.
[12] 王金丽,李金元,徐腊元. 大功率电力电子开关用于配电变压器无弧有载调压方案[ J ] . 电力系统自动化,2006,30(15):97-102.
[13] 张品秀. 基于晶闸管的有载自动调压分接开关的研究[D]. 哈尔滨:东北农业大学,2009.
[14] 沈谢林.M 型有载分接开关产气量的研究[J]. 变压器,2011,48(3):55-59.
[15] 朱志莹,孙玉坤,阮浩. 无触点无级有载调压装置控制系统设计[J]. 变压器,2009,46(1):44-47.
[16] 黄俊杰,李晓明. 基于电力电子技术有载调压变压器的无冲击调压方法[ J ] . 电力系统自动化,2009,33(10):69-73.
[17] 赵刚,施围. 无弧有载分接开关的研究[ J ] . 高电压技术,2004,30(4):49-51.
[18] 苏泽光,李劲松,徐祖华. 基于电力电子技术新型分接开关的发展[J]. 电气应用,2005,24(4):43-46.
[19] 骆平,刘清澄. 无弧切换的有载调压变压器[ J ] .中国电力,2003,36(z1):21-23.