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Current Transmission Efficiency for Conical Magnetically Insulated Transmission Line on a 1.0-MV Linear Transformer Driver System

机译:1.0 MV线性变压器驱动器系统上的锥形电磁绝缘传输线的电流传输效率

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Current transmission efficiency in a conical transition magnetically insulated transmission line (MITL) has been studied experimentally on a 1.0-MV linear transformer driver system, which has 10 identical cavities connected in series with MITL. Transmission efficiencies of anode current as high as 98.4% and 93.1% could be achieved when the MITL operates at load-limited and self-limited flows, respectively. As for the cathode current, because of the sufficient length of conical transition MITL, cathode current is also able to sustain high transmission efficiency. But as long as the diode gap is too large, many of the electrons will be launched into the anode–cathode gap and the cathode current near the diode drastically decreases. Particle-in-cell simulations were conducted to validate the conclusions. The simulation results agree with experiments.
机译:已经在1.0-MV线性变压器驱动器系统上实验研究了锥形过渡磁绝缘传输线(MITL)中的电流传输效率,该系统具有10个与MITL串联的相同空腔。当MITL在负载限制和自限流量下运行时,阳极电流的传输效率分别可以达到98.4%和93.1%。对于阴极电流,由于圆锥形过渡MITL的长度足够长,因此阴极电流也能够维持高传输效率。但是,只要二极管间隙过大,许多电子就会被发射到阳极-阴极间隙中,并且二极管附近的阴极电流会急剧下降。进行了细胞内颗粒模拟以验证结论。仿真结果与实验吻合。

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