Field-Circuit Coupled Simulation With an Equivalent Circuit Model for High-Voltage Spark Gaps

被引:0
|
作者
Lee, Kern [1 ]
Hong, Sunghoon [1 ]
机构
[1] Agcy Def Dev, Daejeon 34186, South Korea
关键词
Spark gaps; Integrated circuit modeling; Capacitors; SPICE; Mathematical models; Switches; Discharges (electric); Breakdown (BD); field-circuit coupled simulation; high-voltage (HV) switch; lumped element model; pulsed power; spark gap;
D O I
10.1109/TPS.2024.3349550
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
This study addresses the complexities of designing and implementing high-performance, high-voltage (HV) switches for large-scale, high-energy-density physics (HEDP) research facilities. While spark gap switches are a conventional choice in pulsed power systems such as Marx generators and linear transformer drivers (LTDs), meeting criteria such as low jitter, a low prefire rate, low inductance, and low cost remain challenging. This article emphasizes that HV spark gap switches in a large system can interact electrically, leading to operational issues such as prefire, delayed-fire, or no-fire events. To mitigate these challenges, this study aims to develop a modeling and simulation (M&S) workflow that is extendable to a multiswitch system, focusing on a 3-D electromagnetic field interacting with spark gap switches. Drawing inspiration from previous work that employed the SPICE algorithm for spark gap modeling, this article introduces a dynamic model for pulsed breakdown (BD) in spark gaps using nonlinear circuit elements. A novel algorithm based on the energy absorbed by the streamer channel is proposed for the accurate prediction of BD delay. The commercial software CST Studio Suite is employed for 3-D field-circuit coupled simulations. This study also outlines the implementation of SPICE elements in CST and validates the model using a simple capacitor discharge circuit.
引用
收藏
页码:111 / 119
页数:9
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