电网技术 2009, 33(17) 102-107 DOI:     ISSN: 1000-3673 CN: 11-2410/TM

本期目录 | 下期目录 | 过刊浏览 | 高级检索                                                            [打印本页]   [关闭]
电力系统
扩展功能
本文信息
Supporting info
PDF(640KB)
[HTML全文]
参考文献[PDF]
参考文献
服务与反馈
把本文推荐给朋友
加入我的书架
加入引用管理器
引用本文
Email Alert
文章反馈
浏览反馈信息
本文关键词相关文章
晶闸管投切滤波器
微电网
电力电子
海洋平台
谐波
电力系统
本文作者相关文章
PubMed
晶闸管投切滤波装置在海洋平台电力系统谐波治理中的应用
魏克新,屈重年,冷建伟,马中原
天津理工大学 自动化学院,天津市 南开区 300384
摘要

以海洋平台电力系统这一类特殊的微电网为背景,重点分析海洋平台电力系统的主要特点和特征次谐波。在满足无功补偿要求的前提下,利用晶闸管投切滤波器对海洋平台电力系统的谐波进行治理,根据实地测量的电网谐波,利用遗传算法对晶闸管投切滤波器的参数进行优化设计。Matlab软件的仿真结果表明,晶闸管投切滤波器对海洋平台电力系统谐波的治理效果比较好,并且兼顾了无功补偿的要求。

关键词 晶闸管投切滤波器   微电网   电力电子   海洋平台   谐波   电力系统  
Application of Thyristor Switched Filter in Harmonic Elimination of Offshore Platform Power System
WEI Ke-xin ,QU Chong-nian ,LENG Jian-wei ,MA Zhong-yuan
School of Electrical Engineering,Tianjin University of Technology,Nankai District,Tianjin 300384,China
Abstract:

Taking a kind of special micro-grid such as offshore platform power system for research background, the main features and characteristic harmonics of offshore platform power system are emphatically analyzed. Under the presupposition that the demand of reactive power compensation is met, an approach to eliminate harmonics of offshore platform power system by use of thyristor switched filter is given; based on the place measured harmonic data and by use of genetic algorithm the optimal design of parameters of thyristor switched filter is performed. Simulation results by Matlab show that thyristor switched filter can well eliminate harmonics of offshore platform power system while the demand of reactive power compensation is considered.

Keywords: thyristor switched filter   micro-grid   power electronics   offshore platform   harmonic   power system  
收稿日期 2008-09-25 修回日期 2009-06-01 网络版发布日期 2009-09-17 
DOI:
基金项目:

通讯作者: 魏克新
作者简介:
作者Email: kxwei@tjut.edu.cn

参考文献:

[1] 郑漳华,艾芊.微电网的研究现状及在我国的应用前景[J].电网技术,2008,32(16):27-31. Zheng Zhanghua,Ai Qian.Present situation of research on microgrid and its application prospects in China[J].Power System Technology,2008,32(16):27-31(in Chinese). [2] 鲁宗相,王彩霞,闵勇,等.微电网研究综述[J].电力系统自动化,2007,31(19):100-107. Lu Zongxiang,Wang Caixia,Min Yong,et al.Overview on microgrid research[J].Automation of Electric Power Systems,2007,31(19):100-107(in Chinese). [3] 盛鹍,孔力,齐智平.新型电网:微电网(Microgrid)研究综述[J].继电器,2007,35(12):75-81. Sheng Kun,Kong Li,Qi Zhiping.A survey on research of microgrid:a new power system[J].Relay,2007,35(12):75-81(in Chinese). [4] 涂春鸣,罗安,刘娟.无源滤波器的多目标优化设计[J].中国电机工程学报,2002,22(3):17-21. Tu Chunming,Luo An,Liu Juan.Multi-objective optimal design of passive power filters[J].Proceedings of the CSEE,2002,22(3):17-21(in Chinese). [5] Tse K K,Raymond Wai Mang.An evaluation of the spectral characteristics of switching converters with chaotic carrier frequency modulation[J].IEEE Trans on Industrial Electronics,2003,50(1): 171-182. [6] 曹孝宁,吴华仁,李晓惠.高性能电网谐波分析仪[J].电力系统自动化,1996,20(12):46-49. Cao Xiaoning,Wu Huaren,Li Xiaohui.High performance power line harmonic analyzer[J].Automation of Electric Power Systems,1996,20(12):46-49(in Chinese). [7] 肖健华,吴今培.电力系统谐波测试仪的设计与实现[J].吉首大学学报:自然科学版,2000,21(3):20-23. Xiao Jianhua,Wu Jinpei.The design of the power harmonics detection system[J].Journal of Jishou University:Natural Science Edition,2000,21(3):20-23(in Chinese). [8] Cheng Po-Tai1,Lee Zhung-Lin.Distributed active filter systems (DAFS):A new approach to power system harmonics[C].The 2004 IEEE Industry Applications Conference,Seattle,WA,United States,2004. [9] 鞠儒生,陈宝贤,陈燕.一种新型PWM整流器[J].电工技术学报,2002,17(6):48-53. Ju Rusheng,Chen Baoxian,Chen Yan.A novel PWM rectifier [J].Transactions of China Electro Technical Society,2002,17(6):48-53(in Chinese). [10] 张兴,季建强,余勇,等.电流型PWM 整流器低电压应力空间矢量PWM(SVPWM)研究[J].中国电机工程学报,2004,24(2):144-149. Zhang Xing,Ji Jianqiang,Yu Yong,et al.Study of low voltage stress space vector PWM control for current source PWM rectifier [J].Proceedings of the CSEE,2004,24(2):144-149(in Chinese). [11] 王群,姚为正,刘进军,等.谐波源与有源电力滤波器的补偿特性[J].中国电机工程学报,2001,21(2):16-20. Wang Qun,Yao Weizheng,Liu Jinjun,et al.Harmonic source and compensation characteristics of active power filter[J].Proceedings of the CSEE,2001,21(2):16-20(in Chinese). [12] 侯世英,郑含博,周雒维,等.基于单周控制的三相直流侧串联型有源电力滤波器[J].电网技术,2008,32(18):52-56. Hou Shiying,Zheng Hanbo,Zhou Luowei,et al.A novel three-phase DC side series active power filter with one cycle control[J].Power System Technology,2008,32(18):52-56(in Chinese). [13] 张大禹,谭光慧,纪延超.级联型有源电力滤波器的新型控制策略[J].电网技术,2008,32(3):70-74. Zhang Dayu,Tan Guanghui,Ji Yanchao.A novel control strategy for cascaded active power filters[J].Power System Technology,2008,32(3):70-74(in Chinese). [14] 杨华云,任士焱.一种实用的串并联混合有源电力滤波器[J].电网技术,2007,31(21):32-36. Yang Huayun,Ren Shiyan.A practical series-parallel hybrid active power filter[J].Power System Technology,2007,31(21):32-36(in Chinese). [15] 张少如,吴爱国,盖彦荣,等.并联型有源滤波器直流电压的简单自适应控制[J].电网技术,2007,31(17):11-15. Zhang Shaoru,Wu Aiguo,Gai Yanrong,et al.Simple adaptive control of DC voltage in shunt active power filter[J].Power System Technology,2007,31(17):11-15(in Chinese). [16] 汤洪海,李春文,郑雪生,等.基于切换线性系统的单相有源电力滤波器的建模与控制[J].电网技术,2007,31(13):29-33. Tang Honghai,Li Chunwen,Zheng Xuesheng,et al.Modeling and control of single phase active power filter based on switched linear system[J].Power System Technology,2007,31(13):29-33(in Chinese). [17] 侯世英,郑含博,周雒维,等.新型直流侧串联型有源电力滤波器[J].电网技术,2008,32(15):36-40. Hou Shiying,Zheng Hanbo,Zhou Luowei,et al.A novel DC side series active power filter[J].Power System Technology,2008,32(15):36-40(in Chinese). [18] 杜雄,周雒维,侯世英.三相整流桥直流侧并联型有源电力滤波器[J].中国电机工程学报,2008,28(15):98-102. Du Xiong,Zhou Luowei,Hou Shiying.Three-phase rectifier DC side parallel active power filter[J].Proceedings of the CSEE,2008,28(15):98-102(in Chinese). [19] 赵振波,李和明,董淑惠.采用电流滞环调节器的电压矢量控制PWM整流器系统[J].电工技术学报,2004,19(1):31-35. Zhao Zhenbo,Li Heming,Dong Shuhui.Voltage vector controlled PWM rectifier system with current hysteresis regulators [J].Transactions of China Electro Technical Society,2004,19(1):31-35(in Chinese). [20] Maswood A,Liu Fangrui.A unity power-factor converter using the synchronous-reference-frame-based hysteresis current control [J].IEEE Trans on Industry Applications,2007,43(2):593-599. [21] 赵曙光,王宇平,焦李成.基于自适应遗传算法的无源电力滤波器综合优化方法[J].中国电机工程学报,2004,24(7):173-176. Zhao Shuguang,Wang Yuping,Jiao Licheng.Adaptive genetic algorithm based optimal design approach for passive power filters [J].Proceedings of the CSEE,2004,24(7):173-176(in Chinese). [22] Green A W,Boys J T,Gates G F.3-phase voltage sourced reversible rectifier[J].IEEE Proceedings B,Electric Power Applications,1988,135(6):362-370. [23] Dixon J W,Ooi B T.Indirect current control of a unity power factor sinusoidal current boost type three-phase rectifier[J].IEEE Trans on Industrial Electronics,1998,35(4):508-515. [24] 曾祥君,陈博,唐欣.三调谐电力滤波器的研究[J].中国电机工程学报,2007,27(19):104-109. Zeng Xiangjun,Chen Bo,Tang Xin.A novel three tuned filter for power system[J].Proceedings of the CSEE,2007,27(19):104-109(in Chinese). [25] Lee Tzung-Lin,Li Jian-Cheng,Cheng Po-Tai.A discrete frequency tuning active filter for power system harmonics[C].The 39th IEEE Annual Power Electronics Specialists Conference,Rhodes,Greece,2008.

本刊中的类似文章
1.张侃君 尹项根 陈德树 张哲 杨德先 吴彤 .大型多分支绕组水轮发电机动态模拟研究[J]. 电网技术, 2009,33(6): 96-101
2.秦晓辉 宋云亭 赵良 覃琴 郭强 申洪.大电源接入系统方式的比较[J]. 电网技术, 2009,33(17): 64-69
3.宋墩文 马世英.电力仿真软件数据编辑环境中的智能感知技术[J]. 电网技术, 2009,33(17): 76-80
4.李明 张葛祥 王晓茹.时频原子方法在间谐波分析中的应用[J]. 电网技术, 2009,33(17): 81-85
5.曹健 林涛 刘林 张蔓 崔一铂.基于最小二乘法和复连续小波变换的电力系统间谐波测量方法[J]. 电网技术, 2009,33(17): 86-90
6.戴伟华 李曼丽 熊宁.基于负荷区间的最小电压稳定域求解方法[J]. 电网技术, 2009,33(17): 119-123
7.汪伟 汲胜昌 曹涛 张晋 欧小波 李彦明.基波铁磁谐振理论分析及实验验证[J]. 电网技术, 2009,33(17): 226-230
8.赵强 王丽敏 刘肇旭 卜广全.全国电网互联系统频率特性及低频减载方案[J]. 电网技术, 2009,33(8): 35-40
9.徐玮 罗欣 刘梅 那志强 吴臻 黄静 姜巍 孙珂.用于小水电地区负荷预测的两阶段还原法[J]. 电网技术, 2009,33(8): 87-92
10.李倩 王建功1 王浩.电网可视化技术及其在N-1静态安全分析中的应用[J]. 电网技术, 2009,33(8): 108-111
11.丁冠军1,丁明1,汤广福2,贺之渊2,温家良2.应用于VSC-HVDC输电系统中的新型混合脉宽调制技术[J]. 电网技术, 2009,33(7): 7-13
12.孔祥玉|房大中|侯佑华.基于直流潮流的网损微增率算法[J]. 电网技术, 2007,31(15): 39-43
13.李 超|王正仕|陈辉明|林金燕.可抑制5次谐波的分布式发电系统并网设计[J]. 电网技术, 2007,31(15): 66-69
14.徐先勇 罗安 方璐 李欣然 涂春鸣 彭双剑.配电网综合电气节能关键技术研究[J]. 电网技术, 2009,33(7): 47-54
15.杨以涵 艾琳 姜彤 彭谦.基于效益风险函数的电磁环网风险评估与控制[J]. 电网技术, 2009,33(7): 65-70

Copyright by 电网技术