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Investigations on control tactics of phasing vacuum switches when synchronized closing capacitor banks

机译:同步闭合电容器组时定相真空开关控制策略的研究

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Capacitor banks are usually used for reactive power compensation in power system energized by a vacuum switch which often results in a surge current and overvoltage in the system. The phasing vacuum switch is an intelligent switch with electronic driver system based on permanent magnetic actuators, that means their interrupter closing at the voltage zero point and energizing the capacitor banks synchronized with the AC system. Interaction of the phasing switch with the system when energizing the capacitor banks was discussed first. Based on an ungrounded neutral capacitor bank system, the optimal closing opportunity was proposed. Simulation gives the allowed control scattering. Based on a separated-phase vacuum switch with permanent magnetic actuators, experimental results showed the effectiveness of the control tactics, and also proved the system can energize the capacitor banks synchronized with AC system.
机译:电容器组通常用于由真空开关供电的电力系统中的无功功率补偿,这通常会导致系统中出现浪涌电流和过电压。调相真空开关是带有基于永磁致动器的电子驱动器系统的智能开关,这意味着它们的断流器在零电压点处闭合,并为与交流系统同步的电容器组供电。首先讨论了在电容器组通电时移相开关与系统的相互作用。基于不接地的中性电容器组系统,提出了最佳的闭合机会。仿真给出了允许的控制散射。实验结果表明,采用带有永磁致动器的分相真空开关,该控制策略是有效的,并且证明了该系统可以为与交流系统同步的电容器组供电。

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