强激光与粒子束, 2014, 26 (4): 045044, 网络出版: 2014-04-24   

小型高压重复频率微秒脉冲电源及其放电应用

A compact high voltage microsecond pulse power supply and its discharge application
黄伟民 1,2,*邵涛 1,3张东东 1,3马浩 1,2严萍 1,3,4周亦骁 1周杨 1,2
作者单位
1 中国科学院 电工研究所, 北京 100190
2 中国科学院大学, 北京 100039
3 中国科学院 电力电子与电气驱动重点实验室, 北京 100190
4 电力设备电气绝缘国家重点实验室 (西安交通大学), 西安 710049
摘要
针对实验产生等离子体的需求,研制了一种高压微秒脉冲电源,输出电压最大值为30 kV,上升沿最小为300 ns、脉宽0.5 μs。测试结果表明电源的输出特性由负载决定,同时调节输入电压、触发脉宽可以改变电源的输出脉冲。研究了针-针放电负载时,电源重复频率以及针针间隙对于放电模式的影响,并通过研究电源输出随负载的变化来区别不同的放电模式,最后把电源成功应用于介质阻挡放电。
Abstract
To meet the requirement of some actual application experiments, a kind of high voltage microsecond pulse generator is developed. The output voltage amplitude is up to 30 kV with a minimum rise time of 300 ns and a pulse duration of 0.5 μs. Some tests show that the output characteristics of the generator are determined by the load, and the input voltage and trigger pulse width can change the output pulse. Experiments by a point-to-point gas discharge are used to show the characteristics, the discharge modes can be changed by adjusting the pulse frequency and gap spacing. Different discharge modes can be distinguished by studying the variation of the pulse output with the load. Finally, the generator is successfully used for the excitation of atmospheric-pressure dielectric barrier discharge.
参考文献

[1] 赵如金,储金宇,王瑞静,等.低温等离子体催化处理汽车尾气[J].高电压技术, 2007, 33(2): 174-177.(Zhao Rujin, Chu Jinyu, Wang Ruijing, et al. Purification of automotive exhaust by catalysis-assisted low temperature plasma. High Voltage Engineering, 2007, 33(2): 174-177)

[2] Lu Xinpei, Ye Tao, Cao Yingguang, et al. The roles of the various plasma agents in the inactivation of bacteria[J]. Journal of Applied Physics, 2008, 104: 053309.

[3] Kogelschatz U.Dielectric-barrier discharge: their history, discharge physics, and industrial application[J]. Plasma Chemistry and Plasma Processing, 2003, 23(1): 1-46.

[4] 郑博睿,高超,李一滨,等.微秒脉冲电源的研制及其流动控制性能分析[J].电源技术, 2011, 35(11): 1399-1402.(Zheng Borui, Gao Chao, Li Yibin, et al. Research on micro-second pulse plasma generator and its flow control effectiveness. Source Technology, 2011, 35(11): 1399-1402)

[5] 姜慧,邵涛,于洋,等.不同介质下纳秒脉冲介质阻挡放电特性对比[J].高电压技术, 2011, 37(6): 1529-1535.(Jiang Hui, Shao Tao, Yu Yang, et al. Comparison of the characteristics in nanosecond-pulsed dielectric barrier discharge using different dielectric materials. High Voltage Engineering, 2011, 37(6): 1529-1535)

[6] 牛铮,邵涛,章程,等.空气中纳秒脉冲均匀DBD增加聚合物表面亲水性研究[J].高电压技术, 2011, 37(6): 1536-1541.(Niu Zheng, Shao Tao, Zhang Cheng, et al. Hydrophilic improvement of polymers treated by homogeneous nanosecond pulse dielectric barrier discharge in atmospheric air. High Voltage Engineering, 2011, 37(6): 1536-1541)

[7] 卢新培,严萍,任春生,等.大气压脉冲放电等离子体的研究现状与展望[J].中国科学: 物理学 力学 天文学, 2011, 41(7): 801-815.(Lu Xinpei, Yan Ping, Ren Chunsheng, et al. Review on atmospheric pressure pulsed DC discharge. Science Sinica: Physica Mechanica Astronomica, 2011,41(7): 801-815)

[8] 邵涛,章程,于洋,等.空气中纳秒脉冲均匀介质阻挡放电研究[J].高电压技术, 2012, 38(5): 1545-1550.(Shao Tao, Zhang Cheng, Yu Yang, et al. Study on homogeneous nanosecond-pulse dielectric barrier discharge in atmospheric air. High Voltage Engineering, 2012, 38(5): 1545-1550)

[9] 章程,邵涛,龙凯华,等.大气压空气中纳秒脉冲介质阻挡放电特性分析[J].中国电机工程学报, 2010, 30(7): 111-117.(Zhang Cheng, Shao Tao, Long Kaihua, et al. Uniform of unipolar nanosecond pulse DBD in atmospheric air. Transactions of China Electrotechnical Society, 2010, 30(7): 111-117)

[10] 章程,邵涛,于洋,等.重复频率纳秒脉冲介质阻挡放电对聚对苯二甲酸乙二酯表面改性[J].强激光与粒子束, 2010, 22(3): 539-544.(Zhang Cheng, Shao Tao, Yu Yang, et al. Surface modification of polyethylene terephthalate films using dielectric barrier discharge driven by repetitive nanosecond pulses. High Power Laser and Particle Beams, 2010, 22(3): 539-544)

[11] 章程,邵涛,许家雨,等.120 kV下常压空气纳秒脉冲电晕放电特性[J].强激光与粒子束, 2012, 24(3): 597-601.(Zhang Cheng, Shao Tao, Xu Jiayu, et al. Characteristic of nanosecond-pulsed corona discharge at 120 kV in atmospheric-pressure air. High Power Laser and Particle Beams, 2012, 24(3): 597-601)

[12] Zhang C, Shao T, Xu J, et al. A gliding discharge in open air sustained by high-voltage resonant ac power supply[J]. IEEE Trans on Plasma Science, 2012, 40(11): 2843-2849.

[13] Shao T, Zhang C, Yu Y, et al. Temporal evolution of nanosecond-pulse dielectric barrier discharges in open air[J]. Europhysics Letter, 2012, 97(5): 55005.

[14] 姜慧,章程,邵涛,等.纳秒脉冲表面介质阻挡放电特性实验研究[J].强激光与粒子束, 2012, 24(3): 592-596.(Jiang Hui, Zhang Cheng, Shao Tao, et al. Experimental study on characteristics of nanosecond-pulse surface dielectric barrier discharge. High Power Laser and Particle Beams, 2012, 24(3): 592-596)

[15] 邵涛,章程,李文峰,等.空气中纳秒脉冲介质阻挡放电高速摄影[J].强激光与粒子束, 2012, 24(3): 612-616.(Shao Tao, Zhang Cheng, Li Wenfeng, et al. High speed imaging of nanosecond-pulse dielectric barrier discharge in atmospheric air. High Power Laser and Particle Beams, 2012, 24(3): 612-616)

[16] 邵涛,孙广生,严萍,等.基于TDS示波器的高压ns脉冲信号的测量[J].电气应用, 2005, 23(11): 84-87.(Shao Tao, Sun Guangsheng, Yan Ping, et al. Measurement of HV nanosecond-pulse signals based on TDS oscillograph. Electrotechnical Application, 2005, 23(11): 84-87)

[17] Shao T, Zhang C, Niu Z, et al. Diffuse discharge, runaway electron, and X-ray in atmospheric pressure air in an inhomogeneous electrical field in repetitive pulsed modes[J]. Applied Physics Letters, 2011, 98: 021503.

[18] Lu X, Xiong Q, Xiong Z. Effect of nano-to-millisecond pulse on dielectric barrier discharges[J]. IEEE Trans on Plasma Science, 2009, 37(5): 647-652.

[19] Vizir V A, Zorin V B, Ivanov S V, et al. High-voltage microsecond pulse generator for plasma immersion ion implantation[J]. Pulsed Power Plasma Science, 2001, 1(8): 721-722.

[20] Shao T, Zhang D, Yu Y, et al. A compact repetitive unipolar nanosecond-pulse generator for dielectric barrier discharge application[J]. IEEE Trans on Plasma Science, 2010, 38(7): 1651-1655.

黄伟民, 邵涛, 张东东, 马浩, 严萍, 周亦骁, 周杨. 小型高压重复频率微秒脉冲电源及其放电应用[J]. 强激光与粒子束, 2014, 26(4): 045044. Huang Weimin, Shao Tao, Zhang Dongdong, Ma Hao, Yan Ping, Zhou Yixiao, Zhou Yang. A compact high voltage microsecond pulse power supply and its discharge application[J]. High Power Laser and Particle Beams, 2014, 26(4): 045044.

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