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Influence factors on the azimuthally uniform feed in single-point feed induction voltage adder

机译:单点进给感应电压加法器中方位均匀进给的影响因素

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Achieving an azimuthally uniform feed is of greatly significance for induction cells in magnetically insulated induction voltage adder (MIVA). The azimuthal uniformity of feed currents around cell bores is affected by various factors. In this paper, the effects of several factors, such as adder impedances of the inner stalk, cell locations in multi-stage MIVA systems, and time spreads between parallel driving pulses, on the feed uniformity are simulated and analyzed. The single-point feed MIVA version is chosen as the basis of analysis. A 3D fully electromagnetic model without particle features is developed for a single cell and an adder with three cells in series, respectively. Simulation results demonstrate that, as adder impedances of the inner stalk and load impedances increase, the azimuthal uniformity is improved slightly, i.e., a higher MITL impedance is a bit helpful for current symmetrization. Simulation results also indicate that, the non-uniformity within the first cell is little worse than other cells downstream, however, the effects of cell locations could be negligible. The time spreads between driving pulses for single-point feed MIVA systems nearly not affect the distribution tendency and azimuthal uniformity of feed currents, while badly changing the waveforms and the numerical values of feed currents and cell output voltage.
机译:对于磁绝缘感应电压加法器(MIVA)中的感应电池,实现方位角均匀的进给非常重要。电池孔周围的馈电电流的方位均匀性受各种因素影响。在本文中,模拟和分析了多个因素(例如,内茎的加法器阻抗,多级MIVA系统中的单元位置以及并行驱动脉冲之间的时间扩展)对进料均匀性的影响。选择单点进料MIVA版本作为分析的基础。分别为单个电池和三个电池串联的加法器开发了没有粒子特征的3D全电磁模型。仿真结果表明,随着内柄的加法器阻抗和负载阻抗的增加,方位均匀性会略有提高,即,较高的MITL阻抗对电流对称性有所帮助。仿真结果还表明,第一个单元内的不均匀性比下游的其他单元稍差,但是,单元位置的影响可以忽略不计。单点馈电MIVA系统的驱动脉冲之间的时间间隔几乎不影响馈电电流的分布趋势和方位均匀性,同时严重改变了馈电电流和电池输出电压的波形和数值。

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