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Circuit Model of Magnetically-Insulated Induction Voltage Adders Based on the Transmission Line Code

机译:基于传输线代码的磁绝缘感应电压加法器的电路模型

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摘要

Based on the transmission line code (TLCODE), a 1-D circuit model used for the analysis of magnetically-insulated induction voltage adders (MIVAs) was developed. Using cells improved from those of the JianGuang-I facility, a 10-stage MIVA was conceptually designed, and its equivalent TLCODE circuit model was described in detail with consideration of the magnetic insulation. To verify the effectiveness of this model, simulation results were compared with those of a PSPICE model (with no electron emission) under both synchronously triggering mode and ideal time-sequence triggering mode. The comparisons show that calculation results of these two models are accord with each other perfectly (within 0.1%). In addition, features of the calculation results were particularly analyzed and verified by the existent literatures. Considering the magnetic-insulation process, the inner stalk of the 10-stage MIVA was designed, and its output parameters were simulated with various electron emission thresholds (150, 200, and 250 kV/cm). Furthermore, qualitative analysis was done to present the model’s abilities of the magnetic-insulation treatment.
机译:基于传输线代码(TLCODE),开发了用于分析磁绝缘感应电压加法器(MIVA)的一维电路模型。使用从JianGuang-I设施改进而来的单元,从概念上设计了10级MIVA,并在考虑了磁绝缘的情况下详细描述了其等效TLCODE电路模型。为了验证该模型的有效性,在同步触发模式和理想时序触发模式下,将仿真结果与PSPICE模型(无电子发射)进行了比较。比较表明,这两个模型的计算结果彼此完全吻合(在0.1%以内)。另外,现有文献对计算结果的特征进行了特别的分析和验证。考虑到磁绝缘过程,设计了10级MIVA的内茎,并使用各种电子发射阈值(150、200和250 kV / cm)模拟了其输出参数。此外,进行了定性分析,以表明模型的磁绝缘处理能力。

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