全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

非正交解耦理论与集成于整流变压器的线性电抗器

DOI: 10.13334/j.0258-8013.pcsee.2015.13.027, PP. 3417-3425

Keywords: 非正交解耦,集成线性电抗器,舰船电力推进,滤波

Full-Text   Cite this paper   Add to My Lib

Abstract:

文中将空间非正交布置的两绕组间,有磁场耦合但没有功率耦合的一类电磁现象定义为非正交解耦。电力工程中的空心电抗器具有线性特性和低噪音的优点,也具有空间占用大的缺点。在舰船、城市配网等需要滤波的变电站中,特别既希望采用空心电抗器,又不希望有太多的空间占用。基于上述非正交解耦理论构造的集成于变压器的线性电抗器,可以满足此要求。制造了由6脉波二极管整流,300kVA、6300V/720V集成线性电抗器的整流变压器,滤波侧5、7、11次单调谐滤波器,构成的样机系统。样机系统实验表明非正交解耦理论正确,基于非正交解耦理论构造的集成于整流变压器的线性电抗器具有与变压器其他绕组解耦、线性、不占用额外空间、不增加噪音等显著特点。

References

[1]  宋艳琼.电力推进船舶电网谐波抑制仿真研究[D].武汉:武汉理工大学,2007.Song Yanqiong.Study on simulation of the electric propulsion ship harmonic suppression[D].Wuhan:Wuhan University of Technology,2007(in Chinese).
[2]  李先林.电力推进船舶电网谐波分析[D].大连:大连海事大学,2004.Li Xianlin.Analysis on electric propulsion ship power system harmonic[D].Dalian:Dalian Maritime University,2004(in Chinese).
[3]  吴任国.电力电子技术及电力系统谐波治理[J].船电技术,2010,30(11):55-58.Wu Renguo.Power electionic and harmonic elimination in power system[J].Marine Electric & Electronic Technology,2010,30(11):55-58(in Chinese).
[4]  D'Antona G,Muscas C,Pegoraro P A,et al.Harmonic source estimation in distribution systems[J].Transactions on Instrumentation and Measuremen,IEEE,2011,60(10):3351-3359.
[5]  Purwadi A, Mawardi A,Pranyoto,et al.Harmonic characteristics on 20 kV-medium voltage distribution and low voltage network in PT.PLN distribution west Java and Banten[C]//Electrical Engineering and Informatics (ICEEI),2011 International Conference on.Bandung,Malaysia,2011:1-7.
[6]  D’Antona G,Muscas C,Sulis S.State estimation for the localization of harmonic sources in electric distribution systems[J].Transactions on Instrumentation and Measurement,IEEE,2009,58(5):1462-1470.
[7]  吴隆辉,卓放,张鹏博,等.一种用于配电系统谐振抑制及谐波治理的新型PAPF控制方法[J].中国电机工程学报,2008,28(27):70-77.Wu Longhui,Zhuo Fang,Zhang Pengbo,et al.A novel control method of PAPF for resonance damping and harmonics compensation in power system[J].Proceedings of the CSEE,2008,28(27):70-77(in Chinese).
[8]  赵怀军,宋倩楠,邱宗明,等.舰船电力系统谐波的产生、危害和抑制[J].舰船科学技术,2007,29(4):61-65.Zhao Huaijun,Song Qiannan,Qiu Zongming,et al.Origination,harm and suppression of harmonics in ships electric power system[J].Ship Science and Technology,2007,29(4):61-65(in Chinese).
[9]  张鲲,熊一,刘振,等.舰船谐波引起次同步震荡的研究[J].电源学报,2011(5):60-64.Zhang Kun,Xiong Yi,Liu Zhen,et al.Study on sub-synchronous oscillation of ship harmonics[J].Journal of Power Supply,2011(5),60-64(in Chinese).
[10]  魏伟,付立军.全电力推进舰船电力系统谐波仿真与实验[J].船电技术,2006,26(4):1-5.Wei Wei,Fu Lijun.Simulation and experiment of power system of electric propulsion ship[J].Marine Electic & Electronic Technology,2006,26(4):1-5(in Chinese).
[11]  马春才,王双玉,毛亚娟,等.浅谈电力系统中谐波危害及抑制方法[J].黑龙江科技信息,2007(10):46.Ma Chuncai,Wang Shuangyu,Mao Yajuan,et al.Brief on the power system harmonic hazards and harmonic suppression[J].Heilongjiang Science and Technology,2007(10):46(in Chinese).
[12]  蔡维,许遐.低压配电网谐波状况调查及抑制措施[J].华北电力技术,2002(2):52-54.Cai Wei,Xu Xia.Investigation on harmonic status of L-V electrical power distribution network and its improvement[J].North China Electric Power,2002(2),52-54(in Chinese).
[13]  王艳松,刘军,李中树,等.配电网无源滤波器的优化配置[J].高电压技术,2010,36(9):2324-2328.Wang Yansong,Liu Jun,Li Zhongshu,et al.Optimal configuring of passive filters in distribution network[J].High Voltage Engineering,2010,36(9):2324-2328(in Chinese).
[14]  周林,张凤,栗秋华,等.配电网中谐波源定位方法综述[J].高电压技术,2007,33(5):103-108.Zhou Lin,Zhang Feng,Su Qiuhua,et al.Methods for localizing the harmonic source in power distribution network[J].High Voltage Engineering,2007,33(5):103-108(in Chinese).
[15]  孙志春.工厂高低压配电节能问题[J].科技创新与应用,2012(21):154.Sun Zhichun.Issues on the high and low voltage power distribution plant energy save[J].Technology Innovation and Application,2012(21):154(in Chinese).
[16]  魏伟.谐波抑制技术研究综述[J].电气技术,2009(6):19-23.Wei Wei.Review about harmonic suppression technique research[J].Electrical Engineering,2009(6):19-23(in Chinese).
[17]  陈国柱,吕征宇,钱照明,等.有源电力滤波器的一般原理及应用[J].中国电机工程学报,2000,20(9):17-21.Chen Guozhu,Lü Zhengyu,Qian Zhaoming,et al.The general principle of active filter and its application[J].Proceedings of the CSEE,2000,20(9):17-21(in Chinese).
[18]  王少杰,罗安.配电网低压大电流负荷的谐波与无功补偿装备研制[J].电力自动化设备,2010,30(12):25-29,41.Wang Shaojie,Luo An.Development of harmonics and var compensation equipment for distribution grid with low-voltage high-current load[J].Electric Power Automation Equipment,2010,30(12):25-29,41(in Chinese).
[19]  寇磊,罗安,楚烺,等.具备多类型谐波治理能力的新型串联混合型有源滤波器[J].电网技术,2013,35(7):2024-2029.Kou Lei,Luo An,Chu Lang,et al.A novel series hybrid active power filter capable of suppressing various types of harmonics[J].Power System Technology,2013,35(7):2024-2029(in Chinese).
[20]  赵怀军,宋倩楠,邱宗明,等.舰船电力系统单位功率因数谐波电流检测方法的研究[J].兵工学报,2007,28(11):1388-1392.Zhao Huaijun,Song Qiannan,Qiu Zongming,et al.Research on harmonic current detection method based on unit power factor for ship electric power systems[J].ACTA Armantarii,2007,28(11):1388-1392(in Chinese).

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133