Chen Rong, Yang Jianhua, Cheng Xinbing, Pan Zilong
College of Optoelectronic Science and Engineering, National University of Defense Technology, Changsha, Hunan 410073, People's Republic of China.
Rev Sci Instrum. 2017 Mar;88(3):034701. doi: 10.1063/1.4977219.
High voltage pulse generators are widely applied in a number of fields. Defense and industrial applications stimulated intense interests in the area of pulsed power technology towards the system with high power, high repetition rate, solid state characteristics, and compact structure. An all-solid-state microsecond-range quasi-square pulse generator based on a fractional-turn ratio saturable pulse transformer and anti-resonance network is proposed in this paper. This generator consists of a charging system, a step-up system, and a modulating system. In this generator, the fractional-turn ratio saturable pulse transformer is the key component since it acts as a step-up transformer and a main switch during the working process. Demonstrative experiments show that if the primary storage capacitors are charged to 400 V, a quasi-square pulse with amplitude of about 29 kV can be achieved on a 3500 Ω resistive load, as well as the pulse duration (full width at half maximum) of about 1.3 μs. Preliminary repetition rate experiments are also carried out, which indicate that this pulse generator could work stably with the repetition rates of 30 Hz and 50 Hz. It can be concluded that this kind of all-solid-state microsecond-range quasi-square pulse generator can not only lower both the operating voltage of the primary windings and the saturable inductance of the secondary windings, thus ideally realizing the magnetic switch function of the fractional-turn ratio saturable pulse transformer, but also achieve a quasi-square pulse with high quality and fixed flat top after the modulation of a two-section anti-resonance network. This generator can be applied in areas of large power microwave sources, sterilization, disinfection, and wastewater treatment.
高压脉冲发生器在许多领域都有广泛应用。国防和工业应用激发了脉冲功率技术领域对具有高功率、高重复率、固态特性和紧凑结构的系统的浓厚兴趣。本文提出了一种基于分数匝数比饱和脉冲变压器和反谐振网络的全固态微秒级准方波脉冲发生器。该发生器由充电系统、升压系统和调制系统组成。在该发生器中,分数匝数比饱和脉冲变压器是关键部件,因为它在工作过程中既充当升压变压器又充当主开关。演示实验表明,如果初级储能电容器充电至400V,在3500Ω电阻负载上可获得幅度约为29kV的准方波脉冲,以及脉宽(半高全宽)约为1.3μs的脉冲。还进行了初步的重复率实验,结果表明该脉冲发生器在30Hz和50Hz的重复率下能够稳定工作。可以得出结论,这种全固态微秒级准方波脉冲发生器不仅可以降低初级绕组的工作电压和次级绕组的饱和电感,从而理想地实现分数匝数比饱和脉冲变压器的磁开关功能,而且在经过两段式反谐振网络调制后,还能获得高质量且平顶固定的准方波脉冲。该发生器可应用于大功率微波源、杀菌、消毒和废水处理等领域。