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Effect of the Trigger Circuit on Delay Characteristics of a Triggered Vacuum Switch With a Six-Gap Rod Electrode System

机译:触发电路对带六间隙棒状电极系统的触发式真空开关的延迟特性的影响

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Nowadays, the triggered vacuum switch (TVS) is widely used in electromagnetic launcher systems. An important performance of TVS with the six-gap rod electrode system, which has long operating life and maximal switching capacity, has been used in experimental research. The delay time is an important feature of TVS. Therefore, this paper focuses on the effect of trigger circuit and trigger current on the delay characteristics of the TVS. The result shows that, in an indirect trigger circuit, by changing the parameters of the pulse transformer and capacitance $Chbox{1}$, the trigger current can be increased, and the delay time can be decreased simultaneously. In a freewheeling circuit, the rate of the trigger current rise can reach 150 $hbox{A}/muhbox{s}$, and the delay time is 2–4 $muhbox{s}$. Yet, in the trigger circuit, in which the capacitor $Chbox{2}$ is in parallel between the second side of the pulse transformer and the trigger electrode, the rate of the trigger current rise can reach 20 $ hbox{kA}/muhbox{s}$, and the delay time is 2 $muhbox{s}$ . In a direct trigger circuit without the pulse transformer, the rate of the trigger current rise is greater than 4 $hbox{kA}/muhbox{s}$, and the delay time shortens to 500 ns, which is the minimum. The delay time can be shortened obviously by changing the trigger circuit.
机译:如今,触发式真空开关(TVS)广泛用于电磁发射器系统。具有六间隙杆状电极系统的TVS的重要性能具有较长的使用寿命和最大的开关容量,已用于实验研究中。延迟时间是TVS的重要功能。因此,本文重点研究触发电路和触发电流对TVS延迟特性的影响。结果表明,在间接触发电路中,通过改变脉冲变压器和电容$ Chbox {1} $的参数,可以增加触发电流,同时减少延迟时间。在续流电路中,触发电流上升的速率可以达到150 $ hbox {A} / muhbox {s} $,延迟时间为2–4 $ muhbox {s} $。然而,在触发电路中,电容器$ Chbox {2} $在脉冲变压器的第二侧和触发电极之间并联,触发电流上升的速率可以达到20 $ hbox {kA} / muhbox {s} $,延迟时间为2 $ muhbox {s} $。在没有脉冲变压器的直接触发电路中,触发电流上升的速率大于4 $ hbox {kA} / muhbox {s} $,并且延迟时间缩短至500 ns,这是最小的。通过更换触发电路,可以明显缩短延迟时间。

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