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Azimuthal Transmission Lines for Inductive Voltage Adders With Four PFLs Driving Simultaneously or Separately

机译:带有四个同时或分开驱动的PFL的感应式加法器的方位角传输线

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摘要

In this paper, an inductive cell driven by four pulse forming lines (PFLs), capable of operating at two modes to create a single pulse or four separate pulses, is proposed. A single hardware configuration of azimuthal lines must meet the different requirements of the two operating modes. The optimizations and tradeoffs of azimuthal lines for these two modes are presented. Four candidate azimuthal line configurations that are compatible with either mode are proposed. The cell output voltage and azimuthal uniformity of feed currents are simulated, respectively. The simulation results indicate that the cylinder azimuthal line with four equidistant tabs connected to the cathode palates is the most suitable configuration. As the input pulses are 1000 kV and 25-ns rise time, at the mode with four PFLs driving simultaneously, the cell would produce a pulse with a peak of 865 kV and a rise time of 46 ns into 1.5- load. Meanwhile, it could create four separate pulses of 980 kV and 32-ns rise time into 5- load with each PFL driving separately. In this case, the azimuthally asymmetric coefficient is calculated to be 25.6%. In addition, the voltage of undriven ports, i.e., the voltage applied across the separating switches, is estimated to be about 1150 kV.
机译:在本文中,提出了一种由四个脉冲形成线(PFL)驱动的感应单元,该单元可以在两种模式下运行以创建单个脉冲或四个单独的脉冲。方位线的单个硬件配置必须满足两种操作模式的不同要求。给出了这两种模式的方位线的优化和权衡。提出了与任一模式兼容的四个候选方位线配置。分别模拟了电池的输出电压和馈电电流的方位均匀性。仿真结果表明,具有四个等距接片的圆柱体方位线连接到阴极味ates是最合适的配置。当输入脉冲为1000 kV,上升时间为25 ns时,在同时驱动四个PFL的模式下,单元将产生一个脉冲,峰值为865 kV,上升时间为46 ns,进入1.5负载。同时,它可以产生四个单独的980 kV脉冲,并在32个ns上升时间变为5个负载,每个PFL分别驱动。在这种情况下,方位不对称系数计算为25.6%。另外,未驱动端口的电压,即,施加在分离开关上的电压估计约为1150kV。

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