Increasing the energy of the initiating spark discharge in order to reduce and stabilize the delay time in a compact vacuum breaker

S. Davydov, A. Dolgov, A. Kozlov, R. Yakubov
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Abstract

The similarity of the switching mechanisms of compact vacuum spark breakers and spark breakers with laser ignition is established at a comparable level of energy flux density in the ignition node–ionization of the residual gas by a stream of short-wave radiation and fast electrons from the cathode spot plasma or laser plasma. This mechanism allows you to effectively reduce the delay in triggering the spark gap by increasing the ignition energy. An experimental study of the advantages of using an ignition circuit with increased energy for controlling small-sized vacuum spark breakers is carried out. There is a steady decrease in the delay time of the spark gap and an increase in the level of delay stability. From the point of view of minimization and stability of the delay time of the spark gap, the energy investment in the formation of the initiating plasma occurs most effectively at the spark stage of the auxiliary discharge along the surface of the dielectric in the ignition node.
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提高启动火花放电的能量,以减少和稳定真空断路器的延迟时间
在阴极光斑等离子体或激光等离子体的短波辐射和快速电子流对残余气体的点火节点电离过程中,在相当的能量通量密度水平上,建立了紧凑真空火花断路器和火花断路器与激光点火开关机制的相似性。这种机制可以让你通过增加点火能量有效地减少触发火花间隙的延迟。对小型真空火花断路器采用增能点火电路控制的优越性进行了实验研究。在火花间隙的延迟时间有一个稳定的减少和延迟稳定性水平的增加。从火花间隙延迟时间的最小化和稳定性的角度来看,在点火节点沿介质表面辅助放电的火花阶段,初始等离子体形成的能量投入是最有效的。
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