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Replacement of Marx Generator by Tesla Transformer for Pulsed Power System Reliability Improvement

机译:用特斯拉变压器代替马克思发电机,以提高脉冲电源系统的可靠性

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A technology scheme that replaces Marx generator with Tesla transformer was put forward to improve the reliability of the pulsed power system. In order to validate the technology scheme, a Tesla transformer was designed and tested. The excitation of the primary consists of two 4-mu F polypropylene film capacitors which are separated by a three-electrode field distortion gas switch. A deionized water dielectric pulse forming line (PFL), with 13-nF equivalent capacitance, acts as the secondary capacitor. The actual transformation ratio is 9.7 approximately, and the PFL voltage is as high as 1.2 MV when two capacitors are charged to +/- 62 kV by the bipolar high-voltage direct current. The prefire probability of switch is described by the Weibull distribution and the working ratio of the switch is elaborately chosen so as to balance the prefire probability and the trigger jitter. For +/- 62 kV charge voltage and 0.2-MPa pressured air dielectric, the prefire probability of switch is only 1 x 10(-7) and the jitter of that is 5 ns. When confidence is 0.90, the failure probability of pulsed power machine is 2.8 x 10(-4) according to the Binomial distribution correspondingly.
机译:提出了用特斯拉变压器代替马克思发电机的技术方案,以提高脉冲电源系统的可靠性。为了验证该技术方案,设计并测试了Tesla变压器。初级线圈的励磁由两个4-μF F聚丙烯薄膜电容器组成,该电容器由一个三电极场失真气体开关隔开。具有13nF等效电容的去离子水电介质脉冲形成线(PFL)用作次级电容器。实际的变压比约为9.7,当两个电容器通过双极高压直流电充电至+/- 62 kV时,PFL电压高达1.2 MV。通过威布尔分布描述开关的预点火概率,并精心选择开关的工作比,以平衡预点火概率和触发抖动。对于+/- 62 kV充电电压和0.2 MPa的高压空气电介质,开关的预点火概率仅为1 x 10(-7),抖动为5 ns。当置信度为0.90时,根据二项式分布,脉冲功率机的故障概率为2.8 x 10(-4)。

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