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Study on partial discharge signal detection by coupled Duffing oscillators

Wu Yong-Feng Huang Shao-Ping Jin Guo-Bin

Study on partial discharge signal detection by coupled Duffing oscillators

Wu Yong-Feng, Huang Shao-Ping, Jin Guo-Bin
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  • Bidirectional ring-coupled Duffing oscillator hasbeen investigated. A phenomenon is discovered, showing that when one of the oscillators is driven by pulsed signal under certain parameter conditions, this and the other oscillators will suddenly change from synchronization to transient non-synchronization and then rapidly return to synchronization, which is defined as transient synchronization mutation in this paper. This phenomenon is used to accurately detect partial discharge signal in strong noise environments. The experimental tests show that this method achieves good detection effect in low SNR for partial discharge signal of different discharge electrode, which can further extend the weak signal detection range based on Duffing oscillator.
    [1]

    Li Y, Yang B J, Du L Z, Yuan Y 2003 Chin. Phys. 12 0714

    [2]

    Wang Y C, Zhao Q C, Wang A B 2008 Chin. Phys B 17 2373

    [3]

    Xiang X Q, Shi B C 2010 Chaos 20 013104

    [4]

    Wang Y S, Jiang W Z, Zhao J J, Fan H D 2008 Acta Phys. Sin. 57 2053 (in Chinese) [王永生, 姜文志, 赵建军, 范洪达 2008 物理学报 57 2053]

    [5]

    Zhai D Q, Liu C X, Liu Y, Xu Z 2010 Acta Phys. Sin. 59 816 (in Chinese) [翟笃庆, 刘崇新, 刘尧, 许喆 2010 物理学报 59 0816]

    [6]

    Birx D L, Pipenberg S J 1992 IEEE Int. Joint Conf. Neural Networds 22 881

    [7]

    Wang G Y, Tao G L, Chen X, Lin J Y 1997 Chinese Journal of Scientific Instrument 18 209 (in Chinese) [王冠宇, 陶国良, 陈行, 林建亚 1997 仪器仪表学报 18 209]

    [8]

    Wang G Y, He S L 2003 IEEE Trans. Circuits-I 50 945

    [9]

    Li Y, Yang B J, Yuan Y, Liu X H 2007 Chin. Phys. 16 1072

    [10]

    Li Y, Yang B J, Yuan Y, Zhao X P, Lin H B 2006 Chin. Sci. Bull. 51 3010

    [11]

    Li Y, Yang B J 2003 Chin. Sci. Bull. 48 19

    [12]

    Li Y, Lu P, Yang B J, Zhao X P 2006 Acta Phys. Sin. 55 1672 (in Chinese) [李月, 路鹏, 杨宝俊, 赵雪平 2006 物理学报 55 1672]

    [13]

    Yuan Y, Li Y, Mandic D P, Yang B J 2009 Chin. Phys. B 18 958

    [14]

    Wu Y F, Zhang S P, Sun J W, Rolfe P 2011 Acta Phys. Sin. 60 020511 (in Chinese) [吴勇峰, 张世平, 孙金玮, Peter Rolfe 2011 物理学报 60 020511]

    [15]

    Wu Y F, Zhang S P, Sun J W, Rolfe P, Li Z 2011 Acta Phys. Sin. 60 100509 (in Chinese) [吴勇峰, 张世平, 孙金玮, Peter Rolfe, 李智 2011 物理学报 60 100509]

    [16]

    Wu Y F, Zhang S P, Sun J W 2010 Chinese Journal of Scientific Instrument 31 161 (in Chinese) [吴勇峰, 张世平, 孙金玮 2010 仪器仪表学报 31 161]

    [17]

    Wu Y F, Zhang S P, Sun J W, Li Z 2011 Chinese High Technology Letters 21 979 (in Chinese) [吴勇峰, 张世平, 孙金玮, 李智 2011 高技术通讯 21 979]

    [18]

    Stone G C 1996 IEEE Electrical Insulation Magazine 12 23

    [19]

    Gulski E 1995 IEEE Trans on Dielectric and Electrical Insulation 2 822

    [20]

    Qian Y, Huang C J, Chen C 2007 Proceedings of the CSEE 27 89 (in Chinese) [钱勇, 黄成军, 陈陈 2007 中国电机工程学报 27 89]

    [21]

    Xu J, Huang C J 2004 Power System Technology 28 80(in Chinese) [徐剑, 黄成军 2004 电网技术 28 80]

    [22]

    Liu W D, Liu S H, Wang L 2007 High Voltage Engineering 33 40 (in Chinese) [刘卫东, 刘尚合, 王雷 2007 高电压技术 33 40]

  • [1]

    Li Y, Yang B J, Du L Z, Yuan Y 2003 Chin. Phys. 12 0714

    [2]

    Wang Y C, Zhao Q C, Wang A B 2008 Chin. Phys B 17 2373

    [3]

    Xiang X Q, Shi B C 2010 Chaos 20 013104

    [4]

    Wang Y S, Jiang W Z, Zhao J J, Fan H D 2008 Acta Phys. Sin. 57 2053 (in Chinese) [王永生, 姜文志, 赵建军, 范洪达 2008 物理学报 57 2053]

    [5]

    Zhai D Q, Liu C X, Liu Y, Xu Z 2010 Acta Phys. Sin. 59 816 (in Chinese) [翟笃庆, 刘崇新, 刘尧, 许喆 2010 物理学报 59 0816]

    [6]

    Birx D L, Pipenberg S J 1992 IEEE Int. Joint Conf. Neural Networds 22 881

    [7]

    Wang G Y, Tao G L, Chen X, Lin J Y 1997 Chinese Journal of Scientific Instrument 18 209 (in Chinese) [王冠宇, 陶国良, 陈行, 林建亚 1997 仪器仪表学报 18 209]

    [8]

    Wang G Y, He S L 2003 IEEE Trans. Circuits-I 50 945

    [9]

    Li Y, Yang B J, Yuan Y, Liu X H 2007 Chin. Phys. 16 1072

    [10]

    Li Y, Yang B J, Yuan Y, Zhao X P, Lin H B 2006 Chin. Sci. Bull. 51 3010

    [11]

    Li Y, Yang B J 2003 Chin. Sci. Bull. 48 19

    [12]

    Li Y, Lu P, Yang B J, Zhao X P 2006 Acta Phys. Sin. 55 1672 (in Chinese) [李月, 路鹏, 杨宝俊, 赵雪平 2006 物理学报 55 1672]

    [13]

    Yuan Y, Li Y, Mandic D P, Yang B J 2009 Chin. Phys. B 18 958

    [14]

    Wu Y F, Zhang S P, Sun J W, Rolfe P 2011 Acta Phys. Sin. 60 020511 (in Chinese) [吴勇峰, 张世平, 孙金玮, Peter Rolfe 2011 物理学报 60 020511]

    [15]

    Wu Y F, Zhang S P, Sun J W, Rolfe P, Li Z 2011 Acta Phys. Sin. 60 100509 (in Chinese) [吴勇峰, 张世平, 孙金玮, Peter Rolfe, 李智 2011 物理学报 60 100509]

    [16]

    Wu Y F, Zhang S P, Sun J W 2010 Chinese Journal of Scientific Instrument 31 161 (in Chinese) [吴勇峰, 张世平, 孙金玮 2010 仪器仪表学报 31 161]

    [17]

    Wu Y F, Zhang S P, Sun J W, Li Z 2011 Chinese High Technology Letters 21 979 (in Chinese) [吴勇峰, 张世平, 孙金玮, 李智 2011 高技术通讯 21 979]

    [18]

    Stone G C 1996 IEEE Electrical Insulation Magazine 12 23

    [19]

    Gulski E 1995 IEEE Trans on Dielectric and Electrical Insulation 2 822

    [20]

    Qian Y, Huang C J, Chen C 2007 Proceedings of the CSEE 27 89 (in Chinese) [钱勇, 黄成军, 陈陈 2007 中国电机工程学报 27 89]

    [21]

    Xu J, Huang C J 2004 Power System Technology 28 80(in Chinese) [徐剑, 黄成军 2004 电网技术 28 80]

    [22]

    Liu W D, Liu S H, Wang L 2007 High Voltage Engineering 33 40 (in Chinese) [刘卫东, 刘尚合, 王雷 2007 高电压技术 33 40]

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  • Received Date:  19 January 2013
  • Accepted Date:  26 March 2013
  • Published Online:  05 July 2013

Study on partial discharge signal detection by coupled Duffing oscillators

  • 1. College of Electrical & Information Engineering, Hunan Institute of Engineering, Xiangtang 411104, China

Abstract: Bidirectional ring-coupled Duffing oscillator hasbeen investigated. A phenomenon is discovered, showing that when one of the oscillators is driven by pulsed signal under certain parameter conditions, this and the other oscillators will suddenly change from synchronization to transient non-synchronization and then rapidly return to synchronization, which is defined as transient synchronization mutation in this paper. This phenomenon is used to accurately detect partial discharge signal in strong noise environments. The experimental tests show that this method achieves good detection effect in low SNR for partial discharge signal of different discharge electrode, which can further extend the weak signal detection range based on Duffing oscillator.

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