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Determination of Magnetically Insulated Transmission Line Cathode Current of a 1.0-MV Pulsed Power Generator

机译:1.0 MV脉冲发电机的电磁绝缘传输线阴极电流的确定

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We have employed B-dot monitors to measure the magnetically insulated transmission line (MITL) cathode current on a 1.0-MV pulsed power machine, whose MITL anode and cathode electrodes are separated completely by the insulation stack. The MITL anode and cathode conductors are connected together by the B-dot sensors' signal transmission cables, when transmitting the outputs of the B-dot probes out of the MITL anode-cathode (A-K) gap. It provides a leakage current path and disturbs the MITL power flow unavoidably. During our experiment, the impedance of the leakage current path is increased by winding the signal transmission cables along one helical isolated inductor frame. The leakage current flowing along the outer conductors of the cables is significantly reduced, and the outputs of B-dot sensors could be delivered out of the MITL, A-K gap effectively. The experiment results suggest that the B-dot sensors are able to diagnose the MITL cathode current successfully, even though the performance of the B-dot probes on this generator is not as perfect as that of the monitors employed on an induction voltage adder. Finally, particle-in-cell simulation is performed to check the accurateness of the measured MITL cathode current. It demonstrates that the peak value of the cathode current given by the B-dot monitors agrees with the simulation result very well.
机译:我们已经使用B点监视器在1.0 MV脉冲功率机器上测量了磁绝缘传输线(MITL)阴极电流,该机器的MITL阳极和阴极电极被绝缘叠层完全隔开。当将B点探针的输出传输到MITL阳极-阴极(A-K)间隙之外时,MITL阳极和阴极导体通过B点传感器的信号传输电缆连接在一起。它提供了泄漏电流路径,并不可避免地干扰了MITL功率流。在我们的实验中,通过沿着一个螺旋形隔离电感器框架缠绕信号传输电缆来增加泄漏电流路径的阻抗。沿电缆外导体流动的泄漏电流大大降低,B点传感器的输出可以有效地从MITL,A-K间隙输出。实验结果表明,即使该发生器上的B点探针的性能不如感应电压加法器上使用的监视器的性能那样,B点传感器也能够成功诊断MITL阴极电流。最后,进行粒子模拟以检查测得的MITL阴极电流的准确性。结果表明,B点监视器给出的阴极电流峰值与仿真结果非常吻合。

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