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Electromagnetic Actuators for Ultra-fast Air Switches to Increase Arc Voltage by Increasing Contact Speed

机译:用于超快空气开关的电磁执行器,通过提高接触速度来增加电弧电压

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In this article, the previously known Thomson coil has been used as an actuator for open-close of a prototype power switch instead of a conventional spring mechanism that can be used in future vacuum circuit breakers, HVDC breakers and hybrid fault current limiters. Feasibility of increasing the opening speed to 80 m/s and its momentum control is discussed through finite element method simulations. Dynamics of Thomson drive is simulated, and speed dependencies to the frequency and stored energy are extracted in few diagrams to facilitate actuator tune-up to reach this considerable speed for a rather heavy disk. The contact speed in an experimental prototype switch is increased up to 22.5 m/s, and the dependencies of the arc voltage generated in ultra-fast air switches to the opening speed are investigated. Measured arc voltages and high-speed recordings of arc cores are presented. It is shown that by increasing the contact speed, the arc voltage rises rapidly. Thus, the number of required series arcs and the total resistance is reduced, so lower commutation time for higher fault currents are possible in hybrid FCLs or HVDC breakers.
机译:在本文中,先前已知的Thomson线圈已被用作用于原型电源开关开合的致动器,而不是可以在未来的真空断路器,HVDC断路器和混合故障限流器中使用的常规弹簧机构。通过有限元方法模拟,讨论了将打开速度提高到80 m / s及其动量控制的可行性。模拟了Thomson驱动器的动力学特性,并在几张图中提取了速度与频率和存储能量的相关性,以方便执行器调整,以使相当重的磁盘达到此相当高的速度。实验原型开关中的接触速度提高到22.5 m / s,并且研究了超快速空气开关中产生的电弧电压与断开速度的关系。给出了测得的电弧电压和电弧芯的高速记录。结果表明,通过提高接触速度,电弧电压迅速上升。因此,减少了所需的串联电弧数量和总电阻,因此在混合FCL或HVDC断路器中,对于较高的故障电流,可能需要较短的换向时间。

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