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Optimized Design of Azimuthal Transmission Lines for the Cell Driven by Two PFLs in Induction Voltage Adders

机译:感应电压加法器中由两个PFL驱动的电池的方位角传输线的优化设计

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In this paper, a full-size 3-D electromagnetic model (without electrons) and an equivalent circuit model of a single cell in magnetically insulated induction voltage adders has been established. The simulation results of these two models agree well with each other. On the basis of these two models, azimuthal transmission lines for a cell driven by two pulse forming lines (PFLs) have been optimized. The optimization process aims at matching the impedance to the feed PFLs, ensuring uniform potential distribution along the insulator-stack, maximizing the symmetric current flow around the bore, and minimizing the waveform distortion of the injected pulse. A formula is presented to estimate the azimuthal impedance and an asymmetric coefficient is also defined to quantify the asymmetric extent of the feed pulses. The profiles of the total four candidate azimuthal lines have been simulated and analyzed. The simulation results indicate a relatively low feed asymmetry for all the four profiles. However, considering the waveform quality of the cell output voltage, the azimuthal line profiles with four points connected or wholly connected to the cathode plate are the most suitable for induction cells with two PFL feeding. And the corresponding coefficients $delta$ are 3.1% and 7.6%, respectively. It is concluded that, when optimizing azimuthal lines for cells with two PFL feeding, the principal consideration should be matching the impedance instead of symmetrizing the current flow.
机译:在本文中,建立了全尺寸的3-D电磁模型(无电子)和磁绝缘感应电压加法器中单个单元的等效电路模型。这两个模型的仿真结果相互吻合。在这两个模型的基础上,对由两个脉冲形成线(PFL)驱动的单元的方位角传输线进行了优化。优化过程旨在使阻抗与馈电PFL匹配,确保沿绝缘体堆栈的均匀电势分布,使孔周围的对称电流最大化,并使注入脉冲的波形失真最小。给出了一个公式来估计方位阻抗,并且还定义了一个不对称系数来量化馈电脉冲的不对称范围。已经模拟和分析了全部四个候选方位线的轮廓。仿真结果表明所有四个轮廓的进给不对称性都较低。但是,考虑到电池输出电压的波形质量,具有四个连接或完全连接到阴极板的点的方位线轮廓最适合具有两个PFL馈电的感应电池。相应的系数 $ delta $ 分别为3.1%和7.6%。结论是,当优化带有两个PFL馈电的电池的方位线时,主要考虑因素应该是匹配阻抗而不是对称电流。

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