High Power Laser and Particle Beams, Volume. 34, Issue 7, 075001(2022)
Review of high power compact pulse forming network-Marx generators
[1] Schamiloglu E, Barker R J, Gundersen M, et al. Modern pulsed power: Charlie Martin and beyond[J]. Proceedings of the IEEE, 92, 1014-1020(2004).
[2] [2] Bluhm H. Pulsed power systems: principles applications[M]. Berlin: Springer, 2006.
[3] [3] Kekez M M. A 480 joule, 650 kV, 3 ns risetime, 500 ns pulse width compact pulse generat[C]Digest of Technical Papers. 11th IEEE International Pulsed Power Conference. IEEE, 1997: 15241529.
[4] [4] Phelps D A. High density compact tunable PFNMarx modulats[C]Nieenth IEEE Symposium on Power Modulats. IEEE, 1990: 507510.
[5] [5] Gao Jingming. Research on a wave erection Marx generat its applications[D]. Changsha: National University of Defense Technology, 2009
[6] [6] Zhang Haan. Technique research on the PFNMarx generat based on mica capacits[D]. Changsha: National University of Defense Technology, 2016
[7] [7] Hammon J, Lam S K, Drury D, et al. Compact 1 MV, 10 Hz pulser[C]Digest of Technical Papers. 11th IEEE International Pulsed Power Conference. 1997: 147152.
[8] Li H T, Ryoo H J, Kim J S, et al. Development of rectangle-pulse Marx generator based on PFN[J]. IEEE Transactions on Plasma Science, 37, 190-194(2009).
[9] Han Kehua, Ren Xi, Zhou Mi, . Study on the characteristics parameters optimization experiment with measurement method for high voltage pulsed power capacitor[J]. Explosive Materials, 40, 22-25(2011).
[10] [10] Chen Y J. Compact, repetitive Marx generat HPM generation with the vircat[D]. Lubbock: Texas Tech University, 2005.
[11] [11] Kekez M M. A compact square wavefm 15 kJ generat: 15 ns risetime, 7.5 load impedance 100500 ns pulse width[C]PPPS2001 Pulsed Power Plasma Science 2001. 28th IEEE International Conference on Plasma Science 13th IEEE International Pulsed Power Conference. Digest of Papers. 2001: 10271030.
[12] [12] Hammon J, Lam S K, Pomeroy S. A transptable 500 kV, high average power modulat with pulse length adjustable from 100 ns to 500 ns[C]Proceedings of 1996 International Power Modulat Symposium. IEEE, 1996: 157160.
[13] Su Jiancang, Zhang Xibo, Liu Guozhi, et al. A long-pulse generator based on tesla transformer and pulse-forming network[J]. IEEE Transactions on Plasma Science, 37, 1954-1958(2009).
[14] Zhang Xibo, Su Jiancang, Wang Limin, . Theoretical and experimental study of PFN based on capacitor-loaded plate transmission line[J]. High Power Laser and Particle Beams, 21, 591-594(2009).
[15] [15] Turnbull S M, Koutsoubis J M, MacGreg S J. Development of a high voltage, high PRF PFN Marx generat[C]Conference Recd of the TwentyThird International Power Modulat Symposium. Rancho Mirage: IEEE, 1998: 213216.
[16] Turnbull S M, MacGregor S J, Harrower J A. A PFN Marx generator based on high-voltage transmission lines[J]. Measurement Science and Technology, 11, N51-N55(2000).
[17] [17] McDonald K F, Slenes K. Compact modulat f high power microwave systems[C]Conference Recd of the 2006 TwentySeventh International Power Modulat Symposium. 2006: 397400.
[18] [18] Heffernan L K. A fast, 3 MV Marx generat f megavolt oil switch testing integrated Abramyan wk design[D]. University of MissouriColumbia, 2005.
[19] [19] Abramyan E A, Altercop B A, Kuleshov G D. Microsecond intensive Ebeams[C]1977 2nd International Topical Conference on Electron Beam Research & Technology. IEEE, 1977: 743754.
[20] [20] Abramyan E A, Efimov E N, Kuleshov G D. Energy recovery power stabilization of pulsed electron beams in Marx generat circuits[C]1977 2nd International Topical Conference on Electron Beam Research & Technology. IEEE, 1977:755760.
[21] [21] Zhang Jianghua. Research of rectangular pulse Marx generat triggeredgap switch[D]. Changsha: National University of Defense Technology, 2011
[22] [22] Neuber A A, Chen Y J, Dickens J C, et al. A compact, repetitive, 500 kV, 500 J, Marx generat[C]2005 IEEE Pulsed Power Conference. IEEE, 2005: 12031206.
[23] [23] Adler R J, Gilbrech J A, Price D T. A modular PFN Marx with a unique ging system feedthrough[C]2009 IEEE Pulsed Power Conference. IEEE, 2009: 12011206.
[24] [24] Gundersen M, Dickens J, Nunnally W. Compact, ptable pulsed power: physics applications[C]Digest of Technical Papers. PPC2003. 14th IEEE International Pulsed Power Conference. IEEE, 2003: 912.
[25] [25] Mankowski J, Chen Y, Dickens J, et al. A lowcost metallic cathode f a vircat HPM source[C]2005 IEEE Pulsed Power Conference. IEEE, 2005: 6669.
[26] [26] Giesselmann M, McHale B. Rapid capacit ger f 10 Hz operation of a lowinductance compact Marx generat[C]2005 IEEE Pulsed Power Conference. IEEE, 2005: 11841187.
[27] [27] Walter J, Dickens J, Kristiansen M. Perfmance of a compact triode vircat Marx generat system[C]2009 IEEE Pulsed Power Conference. IEEE, 2009: 133137.
[28] [28] Walterx J, Dickens J, Kristiansen M. An “energy efficient” vircatbased HPM system[C]2011 IEEE Pulsed Power Conference. IEEE, 2011: 658661.
[29] [29] Tayl M B, Kelly P M, Parson J M, et al. Operation of a 500 kV, 4 kA Marx generat at 500 Hz reprate[C]2014 IEEE International Power Modulat High Voltage Conference (IPMHVC). IEEE, 2014: 377379.
[30] [30] Parson J M, Lynn C F, Bragg J W B, et al. Reprate operation of a 300 kV, highpower microwave sealedtube vircat[C]2014 IEEE International Power Modulat High Voltage Conference (IPMHVC). IEEE, 2014: 326328.
[31] [31] Bart D H, Rainwater K, Dickens J C, et al. 160 J, 100 HZ repetition rate, compact Marx generat high power microwave system[C]2017 IEEE 21st International Conference on Pulsed Power (PPC). IEEE, 2017: 13.
[32] Barnett D H, Rainwater K, Dickens J C, et al. A reflex triode system with multicavity adjustment[J]. IEEE Transactions on Plasma Science, 47, 1472-1476(2019).
[33] [33] Park S S, Heo H, Choi O L, et al. Repetitive test of PFN Marx f pulse generat[C]28th IEEE Power Modulat Symposium, Las Vegas. 2008.
[34] [34] Mayes J R, Mayes M G, Lara M B. A novel Marx generat topology design f low source impedance[C]2005 IEEE Pulsed Power Conference. IEEE, 2005: 684687.
[35] [35] Mayes J R, Hatfield C W. Development of a sequentially switched Marx generat f HPM loads[C]2009 IEEE Pulsed Power Conference. IEEE, 2009: 934937.
[36] [36] Nunnally C, Mayes J R, Hatfield C W, et al. Design perfmance of an ultracompact 1.8kJ, 600kV pulsed power system[C]2009 IEEE Pulsed Power Conference. IEEE, 2009: 930933.
[37] [37] Nunnally C, Lara M, Mayes J R, et al. A compact 700kV erected pulse fming wk f HPM applications[C]2011 IEEE Pulsed Power Conference. IEEE, 2011: 13721376.
[38] Song Falun, Li Fei, Gong Haitao, . Research progress on miniaturization of high power repetition frequency Marx type pulse power source[J]. High Power Laser and Particle Beams, 30, 020201(2018).
[39] Qin Feng, Song Falun, Gan Yanqing, . Compact low-impedance Marx generator[J]. High Power Laser and Particle Beams, 24, 907-911(2012).
[40] Song Falun, Jin Xiao, Li Fei, . Progress on 20 GW compact repetitive Marx generator development[J]. High Power Laser and Particle Beams, 29, 020101(2017).
[41] Tewari S V, Umbarkar S B, Agarwal R, et al. Development and analysis of PFN based compact Marx generator using finite integration technique for an antenna load[J]. IEEE Transactions on Plasma Science, 41, 2684-2690(2013).
[42] Lassalle F, Morell A, Loyen A, et al. Development and test of a 400-kV PFN Marx with compactness and rise time optimization[J]. IEEE Transactions on Plasma Science, 46, 3313-3319(2018).
[43] [43] Liu Hongwei. Investigation of a compact low impedance Marx generat with quasi rectangular pulse output[D]. Beijing: China Academy of Engineering Physics, 2017
[44] Li Zhiqiang, Yang Jianhua, Zhang Jiande, . Solid state pulsed forming network Marx generator[J]. High Power Laser and Particle Beams, 26, 065004(2014).
[45] Li Zhiqiang, Yang Jianhua, Zhang Jiande, . A compact repetitive PFN-Marx generator[J]. High Power Laser and Particle Beams, 28, 015013(2016).
[46] Zhang Haoran, Li Zhiqiang, Zhang Zicheng, et al. Investigation on the generation of high voltage quasi-square pulses with a specific two-node PFN-Marx circuit[J]. Review of Scientific Instruments, 91, 024702(2020).
[47] Zhang Haoran, Shu Ting, Liu Shifei, et al. A compact modular 5 GW pulse PFN-Marx generator for driving HPM source[J]. Electronics, 10, 545(2021).
Get Citation
Copy Citation Text
Shifei Liu, Jiande Zhang, Zicheng Zhang. Review of high power compact pulse forming network-Marx generators[J]. High Power Laser and Particle Beams, 2022, 34(7): 075001
Category:
Received: Nov. 10, 2021
Accepted: --
Published Online: Jul. 5, 2022
The Author Email: Zhang Jiande (zhangjiande@nudt.edu.cn)