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Trigger Method Based on Secondary Induced Overvoltage for Linear Transformer Drivers

机译:基于二次感应过电压的线性变压器驱动器触发方法

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In this paper, a triggering method based on secondary induced overvoltage for a linear transformer driver (LTD) is proposed and investigated by simulation. A detailed circuit model established for the LTD is chosen to study the effect of some factors on the feasibility of this triggering method. The considered factors include the permeability, equivalent resistance of energy loss, saturation of magnetic cores, and the delay of gas switches in LTD cavities. Simulation results indicate that high equivalent resistance and high permeability of magnetic cores are helpful in realizing this trigger method. However, the resistance plays a leading role. An equivalent resistance of more than 1.5 $Omega$ favors the realization of this trigger. However, a relative permeability of even 25 has not produced a fatal menace to this triggering method. The feasibility of this triggering necessitates the available volt–second product of the present magnetic cores to be expanded twice. As for gas switches, the interval given by secondary induced overvoltage would likely be long enough to complete their breakdown. From simulation results, it is shown that LTD switches could be rapidly closed under the action of such an overvoltage pulse with a rise time of less than 10 ns.
机译:本文提出了一种基于二次感应过电压的线性变压器驱动器(LTD)触发方法,并进行了仿真研究。选择为LTD建立的详细电路模型,以研究某些因素对该触发方法的可行性的影响。考虑的因素包括磁导率,能量损耗的等效电阻,磁芯的饱和度以及LTD腔中气体开关的延迟。仿真结果表明,磁芯的高等效电阻和高磁导率有助于实现这种触发方法。但是,抵抗起主要作用。等效电阻大于1.5 $ Omega $ 有助于实现此触发器。但是,即使是25的相对磁导率也不会对该触发方法产生致命的威胁。这种触发的可行性使得现有磁芯的伏秒乘积必须扩大两倍。对于气体开关,二次感应过电压给出的间隔可能足够长以完成其击穿。从仿真结果可以看出,LTD开关可以在这种过电压脉冲的作用下迅速闭合,上升时间小于10 ns。

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