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Voltage Distribution Mechanism and Voltage Balancing Measure of SF6 AC Filter Circuit Breaker with four Interrupters

机译:SF6交流滤波器断路器的电压分布机理和电压平衡测量四个中断器

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In high voltage DC (HVDC) convector station, AC filter circuit breakers with four interrupters switch frequently. When the breakers open, the voltages across the four interrupters are uneven. To seek voltage distribution mechanism, the equivalent capacitance and stray capacitance across each interrupter of quadruple-break porcelain column SF6 circuit breaker were calculated by using Ansoft. The dynamic opening model of quadruple-break SF6 circuit breaker and the transient recovery voltage model were set up based on the Alternative Transients Program (ATP). The voltage distribution under different voltage-sharing measures (paralleling resistance and capacitance, paralleling resistance, paralleling capacitance) were analyzed. The results show that voltage-sharing effect of paralleling resistance and capacitance is better than the others. Besides, the resistance and capacitance of this measure must match each other. At last, experimental system was built based on Weil synthesis circuit to verify the availability of paralleling resistance and capacitance measure. In experimental condition, the effect is the best when the resistance is 24MΩ and the capacitance is 600pF.
机译:在高压DC(HVDC)对流电台中,AC滤波器断路器具有四个中断器经常切换。当断路器打开时,四个中断器的电压不均匀。为了寻找电压分布机构,通过使用ANSoft计算各个断路器柱SF6断路器的每个断路器的等效电容和杂散电容。基于替代瞬态程序(ATP)建立了四级断开SF6断路器和瞬态恢复电压模型的动态开启模型。分析了不同电压共用措施(平行电阻和电容,平行电阻,平行电容)下的电压分布。结果表明,平行电阻和电容的电压共用效果优于其他电压。此外,该措施的电阻和电容必须彼此匹配。最后,基于Weil合成电路建立了实验系统,以验证平行电阻和电容测量的可用性。在实验条件下,当电阻为24MΩ时,效果是最佳,电容为600pf。

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