[1] |
王建华, 耿英三, 刘志远. 输电等级单断口真空断路器理论及其技术[M]. 北京: 机械工业出版社, 2017
Wang J H, Geng Y S, Liu Z Y. The theory and technology on technical transmission voltage level single break vacuum interrupter[M]. Bei Jing: China Machine Press, 2017
|
[2] |
Ge G W,Cheng X,Xie W,at all. Review on basic theory and technology of multi-break VCBs[J]. Power System Technology,2019,43(12):4582−4590 (葛国伟,程显,谢伟,等. 多断口真空开关基础理论及技术综述[J]. 电网技术,2019,43(12):4582−4590(in chinese)
Ge G W, Cheng X, Xie W, at all. Review on basic theory and technology of multi-break VCBs[J]. Power System Technology, 2019, 43 (12): 4582− 4590
|
[3] |
Liao M F,Duan X Y,Zou J Y. Dynamic dielectric recovery characteristics of vacuum circuit-breakers with double-break[J]. Chinese Journal of Vacuum Science and Technology,2007,27(03):190−194 (廖敏夫,段雄英,邹积岩. 双断口真空开关的动态介质恢复特性分析[J]. 真空科学与技术学报,2007,27(03):190−194(in chinese)
Liao M F, Duan X Y, Zou J Y, Dynamic dielectric recovery characteristics of vacuum circuit-breakers with double-break[J]. Chinese Journal of Vacuum Science and Technology, 2007, 27 (03): 190− 194
|
[4] |
Wang H Y,Cheng X,Ge G W,at all. Investigation on dielectric recovery performance of short vacuum gap in medium-voltage hybrid DC circuit breakers[J]. Power System Technology,2020,44(01):377−384 (王华清,程显,葛国伟,等. 中压混合式直流断路器真空短间隙介质恢复特性[J]. 电网技术,2020,44(01):377−384(in chinese)
Wang H Y, Cheng X, Ge G W, at all. Investigation on Dielectric Recovery Performance of Short Vacuum Gap in Medium-voltage Hybrid DC Circuit Breakers [J]. Power System Technology, 2020, 44 (01): 377− 384 .
|
[5] |
Li X B,Leng S,Hu Z H. Post-arc sheath of vacuum circuit breaker: a simulation study in PIC-MCC method[J]. Chinese Journal of Vacuum Science and Technology,2019,39(11):1033−1038 (李旭彬,冷爽,黄智慧. 基于PIC-MCC模型的真空开关弧后鞘层仿真研究[J]. 真空科学与技术学报,2019,39(11):1033−1038(in chinese)
Li X B, Leng S, Hu Z H. Post-Arc Sheath of Vacuum Circuit Breaker: A Simulation Study in PIC-MCC Method [J]. Chinese Journal of Vacuum Science and Technology, 2019 , 39 (11): 1033−1038.
|
[6] |
Sarrailh P,Garrigues L,Hagelaar G J M,et al. Expanding sheath in a bounded plasma in the context of the post-arc phase of a vacuum arc[J]. Journal of Physics D-Applied Physics,2008,41(1):015203 doi: 10.1088/0022-3727/41/1/015203
|
[7] |
Geng Y X,Liu X M,Chen H,et al. Simulation analysis of the post-arc sheath development process for the vacuum circuit breaker[J]. Chinese Journal of vacuum Science and Technology,2021,41(07):626−631 (耿钰翔,刘晓明,陈海,等. 真空断路器弧后鞘层发展过程仿真分析[J]. 真空科学与技术学报,2021,41(07):626−631(in chinese)
Geng Y X, Liu X M, Chen H, et al. Simulation Analysis of the Post-Arc Sheath Development Process for the Vacuum Circuit Breaker [J]. Chinese Journal of vacuum Science and Technology, 2021 , 41 (07): 626-631 .
|
[8] |
Yingyao Z,Xinye X,Lijun J,et al. Fractal-based electric field enhancement modeling of vacuum gap electrodes[J]. IEEE Transactions on Dielectrics and Electrical Insulation,2017,24(3):1957−1964 doi: 10.1109/TDEI.2017.006364
|
[9] |
Dan W,Lijun W,Jie L,et al. 2D particle-in-cell/monte carlo collisional simulation of the plasma initiation in the vacuum breakdown stage[J]. Journal of Physics D-Applied Physics,2020,53(3):035210
|
[10] |
Dan W,Lijun W,Zhiwei W,et al. 2-D particle simulation on the influence of transverse magnetic field on the plasma decay in postarc stage of vacuum circuit breakers[J]. IEEE Transactions on Plasma Science,2020,48(11):3975−3981 doi: 10.1109/TPS.2020.3028646
|
[11] |
Yongpeng M,Zongqian S,Shenli J,et al. One-dimensional particle-in-cell simulation on the influence of electron and ion temperature on the sheath expansion process in the post-arc stage of vacuum circuit breaker[J]. Physics of Plasmas,2015,22(2):023511 doi: 10.1063/1.4913677
|
[12] |
Anders,A. Breakdown of the high-voltage sheath in metal plasma immersion ion implantation[J]. Applied Physics Letters,2000,76(1):28−30 doi: 10.1063/1.125645
|
[13] |
Dong H J,Liao M F,Zou J Y,et al. Methods of diagnosing the plasma parameters in vacuum switching arcs based on CCD[J]. Transactions of China Electrotechnical Society,2007,22(6):65−68+81 (董华军,廖敏夫,邹积岩,等. 基于CCD真空开关电弧等离子体参数诊断方法[J]. 电工技术学报,2007,22(6):65−68+81(in chinese)
Dong H J, Liao M F, Zou J Y, et al. Methods of Diagnosing the Plasma Parameters in Vacuum Switching Arcs Based on CCD [J]. Transactions of China Electrotechnical Society, 2007, 22 (6): 65− 68+81
|
[14] |
Zhang J,Yuan Z,Chen L X,et al. Vacuum arc plasma emission spectroscopy diagnosis[J]. High Power Laser and Particle Beams,2021,33(06):120−125 (张晋,袁召,陈立学,等. 真空电弧等离子体发射光谱诊断[J]. 强激光与粒子束,2021,33(06):120−125(in chinese)
Zhang J, Yuan Z, Chen L X, et al. Vacuum arc plasma emission spectroscopy diagnosis [J]. High Power Laser and Particle Beams, 2021, 33 (06): 120− 125.
|
[15] |
Tomita K,Gojima D,Nagai K,et al. Thomson scattering diagnostics of decay processes of Ar/SF6 gas-blast arcs confined by a nozzle[J]. Journal of Physics D Applied Physics,2013,46(38):4629−4638
|
[16] |
Tomita K,Nagai K,Shimizu T,et al. Thomson scattering diagnostics of atmospheric plasmas in contact with ionic liquids[J]. Applied Physics Express,2014,7(6):066101 doi: 10.7567/APEX.7.066101
|
[17] |
Inada Y,Kamiya T,Matsuoka S,et al. Gap length dependence of two-dimensional electron and copper vapour density distribution over vacuum plasma[J]. Journal of Instrumentation,2015,10(12):C12007 doi: 10.1088/1748-0221/10/12/C12007
|
[18] |
Haoran W,Zhiyuan L,Jiankun L,et al. Investigation of vacuum arc extinction process by planar laser-induced fluorescence// international symposium on discharges and electrical insulation in vacuum[J]. Greifswald, Germany:IEEE,2018:313−315
|
[19] |
Zhenxing W,Jiankun L,Yuecheng L,et al. Two-dimensional observation of copper atoms after forced extinction of vacuum arcs by laser-induced fluorescence[J]. IEEE Transactions on Plasma Science,2020,48(8):2777−2789 doi: 10.1109/TPS.2020.3008277
|
[20] |
Schneider A,Popov S,Dubrovskaya E. et al. Study of the cathode sheath dynamicsafter arc current zero crossing using a two-dimensional langmuir probe system[J]. Russian Physics Journal,2019,62(7):1103−1108 doi: 10.1007/s11182-019-01823-8
|
[21] |
Popov S, Schneider A, Dubrovskaya E, et al. 2-D langmuir probe set for diagnostics of plasma density distribution and cathode sheath expansion after current zero in a vacuum interrupter[C]// 2018 28th International Symposium on Discharges and Electrical Insulation in Vacuum (ISDEIV), Greifswald, Germany: IEEE, 2018: 205-208
|
[22] |
Schneider A,Popov S,Batrakov A,et al. Diagnostics of the cathode sheath expansion after current zero in a vacuum circuit breaker[J]. IEEE Transactions on Plasma Science,2011,39(6):1349−1353 doi: 10.1109/TPS.2011.2134849
|
[23] |
Klajn A. Langmuir probes in switching vacuum arc measurements[J]. IEEE Transactions on Plasma Science,2004,33(5):1611−1617
|
[24] |
Klajn A. Plasma parameters after forced switching-off of the current in vacuum[J]. Przeglad Elektrotechniczny,2013,89(9):17−19
|
[25] |
Cheng Z Y,Zou J Y,Yang L,et al. Langmuir probe as a diagnostic tool for plasma in vacuum arc coating (VAC) processes[J]. Journal of Applied Sciences,1996,(04):475−480 (程仲元,邹积岩,杨磊,等. 朗谬尔探针用于VAC等离子体诊断的初步研究[J]. 应用科学学报,1996,(04):475−480(in chinese)
Cheng Z Y, Zou J Y, Yang L, et al. Langmuir Probe as a Diagnostic Tool for Plasma in Vacuum Arc Coating (VAC) Processes [J]. Journal of Applied Sciences, 1996, 14(4): 475-480Popov S.
|
[26] |
Gortschakow S. Optical diagnostics of vacuum arc discharage for switching applications[C]// 2020 7th International Congress on Energy Fluxes and Radiation Effects (EFRE), Tomsk, Russia: 2020: 6-13
|
[27] |
Popov S. Influence of external synchronous AMF on the characteristics of vacuum arc with butt electrodes[C]// 2018 28th International Symposium on Discharges and Electrical Insulation in Vacuum (ISDEIV), Greifswald, Germany: IEEE, 2018: 259-262
|