基于脉冲形成网络和线性变压器的大功率脉冲发生器

IF 1.1 4区 物理与天体物理 Q4 PHYSICS, APPLIED Laser and Particle Beams Pub Date : 2021-01-28 DOI:10.1155/2021/6686530
Mingjia Li, Qiang Kang, Jie Tan, Min Luo, Fei Xiang
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引用次数: 1

摘要

随着大功率微波技术的发展,对脉冲发生器的输出功率要求越来越高。本文通过增加模块的输出功率,而模块的输出阻抗变化不大来实现。发电机模块是基于脉冲形成网络(PFN)和线性变压器(LT)。将4个具有弧型结构和24个Ω特性阻抗的Blumlein pfn对称连接在LTD的初级线圈上,由两个相同的激光触发火花开关驱动,以保证4个Blumlein pfn同步工作。在此基础上,研制了基于PFN-LT的两级大功率脉冲发生器。发电机的以下技术参数是在一个12 Ω大功率固体电阻上实现的:在5 Hz的重复频率下,输出电压幅值为~ 250 kV,输出功率为~ 5.2 GW。
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A High-Power Pulse Generator Based on Pulse Forming Network and Linear Transformer
With the development of high-power microwave technology, the output power of the pulse generator is required more and more higher. In this paper, it is realized by increasing the output power of the module while the output impedance of the module changes little. The module of the generator is based on pulse forming network (PFN) and linear transformer (LT). Four Blumlein PFNs with arc-type configuration and 24 Ω characteristic impedance were connected symmetrically to the primary coil of the LTD and driven by two identical laser triggered spark switches to ensure four Blumlein PFNs synchronizing operation. On this basis, a two-stage high-power pulse generator based on PFN-LT is developed. The following technical parameters of the generator were achieved on a 12 Ω high-power solid resistor: output voltage amplitude of ∼250 kV and output power of ∼5.2 GW at a repetition rate of 5 Hz.
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来源期刊
Laser and Particle Beams
Laser and Particle Beams PHYSICS, APPLIED-
CiteScore
1.90
自引率
11.10%
发文量
25
审稿时长
1 months
期刊介绍: Laser and Particle Beams is an international journal which deals with basic physics issues of intense laser and particle beams, and the interaction of these beams with matter. Research on pulse power technology associated with beam generation is also of strong interest. Subjects covered include the physics of high energy densities; non-LTE phenomena; hot dense matter and related atomic, plasma and hydrodynamic physics and astrophysics; intense sources of coherent radiation; high current particle accelerators; beam-wave interaction; and pulsed power technology.
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