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...

空气开关电弧电流密度分布的智能反演方法研究

, PP. 160-168

Keywords: 开关电器,空气电弧,电流密度分布,智能反演

Full-Text   Cite this paper   Add to My Lib

Abstract:

作为一种非介入式测试手段,基于电磁逆问题求解的磁测试技术在开关电弧等离子体的试验研究中表现出了较好的应用前景。但逆问题的求解有其自身的特点和困难,如非线性、病态性、计算规模大等,因此,为了满足逆问题应用于实际的需要,须在克服病态性的基础上,寻求求解逆问题的高效算法。该文针对空气开关电弧电流密度分布反演重构电磁逆问题的数学模型,基于蚁群、粒子群、模拟退火等优化方法建立了3种智能反演算法,并在对比分析各算法性能的基础上,对适用性较强的基于单点搜索的模拟退火反演算法的关键参数进行了优化。实例分析表明,电弧电流密度分布智能反演方法有效而可靠,能够为电弧内部机理的研究提供一条有效的途径。

References

[1]  Shhkolnik S M,Afanasev V P,Barinov Y A,et al.Distribution of cathode current density and breaking capacity of medium voltage vacuum interrupters with axial magnetic field[J].IEEE Trans.on Plasma Science,2005,33(5):1511-1518.
[2]  Chaly A M,Logatchev A A,Shkolnik S M,et al.Current density on the cathode of high current vacuum arc stabilized by axial magnetic field[C]//Proceeding of the 19th International Symposium on Discharges and Electrical Insulation in Vacuum.Xi’an,China:IEEE,2000:286-289.
[3]  Lnadi G.The Lagrange method for the regularization of discrete ill-posed problems[J].Computational Optimization and Applications,2008,39(3):347-368.
[4]  Toumazet J P,Brdys C,Laurent A,et al.Experimental study of breaking devices arcs using coupled optical and magnetic measurements[J].IEEE Trans.on Plasma Science,2008,36(4):1036-1037.
[5]  Toumazet J P,Brdys C,Laurent A,et al.Combined use of an inverse method and a voltage measurement: estimation of the arc column volume and its variations [J].IEEE Trans.on Measurement Science and Technology,2005,7(16):1525-1533.
[6]  Brdys C,Toumazet J P,Velleaud G,et al.Study of the low-voltage electric breaking arc re-strike by means of an inverse method[J].IEEE Trans.on Plasma Science,1999,27(2):595-603.
[7]  Zeller P,Danninger C,Rabl M.Observation of current distribution in arc chutes with a Hall probe matrix[C]// Proceeding of the IEEE Conference on Sensors.Vienna,Austria:IEEE,2004,2:631-634.
[8]  Brdys C,Toumazet J P,Laurent A,et al.Optical and magnetic diagnostics of the electric arc dynamics in a low voltage circuit breaker[J].IEEE Trans.on Measurement Science and Technology,2002,13(7):1146-1153.
[9]  Cajal D,Laurent A,Gary F,et al.A study of the various phases of the break in a low-voltage circuit breaker thanks to the magnetic camera[J].Journal of Physics:Applied Physics,1999,32(10):1130-1135.
[10]  张鹏飞,张国钢,杨博宇,等.基于电磁逆问题求解的开关电弧形态重构方法研究[J].中国电机工程学报,2013,33(12):159-166.Zhang Pengfei,Zhang Guogang,Yang Boyu,et al.Research on the method of spatial morphology reconstruction of switching electric arc based on the inverse electromagnetic problem solving[J].Proceedings of the CSEE,2013,33(12):159-166(in Chinese).
[11]  Lopez Ibanez Manuel,Stuetzle Thomas.The automatic design of multi-objective ant colony optimization algorithms[J].IEEE Trans.on Evolutionary Computation,2012,16(6):861-875.
[12]  Jeynes C,Barradas N P,Marriott P K,et al.Elemental thin film depth profiles by ion beam analysis using simulated annealing-a new tool[J].Journal of Physics D: Applied Physics,2003,36(7):R97- R126.
[13]  Adly A A,Abd-El-Hafiz S K.Using the particle swarm evolutionary approach in shape optimization and field analysis of devices involving non-linear magnetic media[C]//IEEE International Magnetics Conference.San Diego,CA,USA:IEEE:336-345.
[14]  徐铁军,荣命哲,吴翊,等.代数重建算法在重建运动弧根电流密度分布中的应用[J].中国电机工程学报,2009,29(10):7-11.Xu Tiejun,Rong Mingzhe,Wu Yi,et al.Application of the ART algorithm to reconstructing the current density distribution in a moving arc root[J].Proceedings of the CSEE,2009,29(10):7-11(in Chinese).
[15]  Drouet M G,Beaudet R,Jutras R.Anode current distribution in a moving arc[J].Journal of American Institute of Aeronautics and Astronautics and American Society,1975,13(7):929-933.
[16]  Yu Zhaoxian,Mo Dang.Generalized simulated annealing algorithm applied in the ellipsometric inversion problem [J].Journal of Thin Solid Films,2003,425(2):108-933.
[17]  Szente R N,Drouet M G,Munz R J.Current distribution of an electric arc at the surface of plasma torch electrodes[J].Journal of Physics:Applied Physics,1991,69(3):1263-1268.
[18]  Chen Shujun,Jiang Fan,Lu Zhenyang,et al.Measurement and analysis of the welding arc current density and pressure distribution based on split anode method[C]// Proceeding of the IEEE Conference on Mechatronics and Automation.Beijing,China:IEEE,2011:1544-1549.
[19]  Xu Tiejun,Rong Mingzhe,Wu Yi,et al.The estimation of the current-density distribution in a moving arc root using the ART algorithm[J].IEEE Trans.on Plasma Science,2009,37(7):1311-1317.
[20]  Drouet M G,Meunier J L,Poissar P,et al.Measurement of the current distribution at the anode of an arc burning in a gas and in a vacuum[J].Journal of Physics E:Scientific Instruments,1987,20(6):625-626.
[21]  贾昌申,肖克民,刘海侠,等.直流TIG电弧的电流密度研究[J].西安交通大学学报,1994,28(4):33-38.Jia Changshen,Xiao Kemin,Liu Haixia,et al.Study on the current density of direct current TIG welding arc [J].Journal of Xi’an Jiaotong University,1994,28(4):33-38(in Chinese).
[22]  Kabanikhin S I.Definitions and examples of inverse and ill-posed problems[J].Journal of Inverse and Ill-posed Problems,2008,16(4):317-357.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133