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Simulation on the high current interruption principle for hybrid circuit breaker of vacuum interrupter and CO2 gas interrupter

机译:真空灭弧室和二氧化碳气体灭弧室混合断路器大电流中断原理的仿真

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摘要

CO2 gas is a possible substitute for SF6 gas in circuit breaker with relatively superior arc interruption performance. To enhance the interruption capacity of the circuit breaker which employs CO2 gas as its arc interruption dielectric, the interruption principle of the hybrid circuit breaker composed of vacuum interrupter and CO2 gas interrupter is studied. Based on the black-box arc models of hybrid circuit breaker built in ATP-EMTP, the interactions characteristics of vacuum interrupter and CO2 gas interrupter and the transient recovery voltage distribution between two interrupters during the interruption process are analyzed. The influence of voltage-dividing capacitors on transient recovery voltage distribution is discussed. The interruption capacity of hybrid circuit breaker and CO2 gas circuit breaker are compared. The results of simulation demonstrate that preferable transient recovery voltage distribution can be obtained under suitable control strategy while interrupters paralleled with voltage-dividing capacitors. The vacuum interrupter series connected with CO2 gas interrupter can assist in enhancing the high current interruption capacity of gas interrupter.
机译:CO2气体可能是断路器中SF6气体的替代者,具有相对优越的灭弧性能。为了提高以CO2气体为灭弧介质的断路器的中断能力,研究了由真空灭弧室和CO2气体灭弧室组成的混合断路器的中断原理。基于ATP-EMTP内置的混合断路器的黑匣子电弧模型,分析了真空灭弧室与CO2气体灭弧室的相互作用特性,以及两个灭弧室在中断过程中的瞬时恢复电压分布。讨论了分压电容器对瞬态恢复电压分布的影响。比较了混合断路器和二氧化碳气体断路器的中断能力。仿真结果表明,在适当的控制策略下,将灭弧室与分压电容器并联时,可以获得较好的瞬态恢复电压分布。与CO2气体灭弧室相连的真空灭弧室可以帮助提高气体灭弧室的高电流遮断能力。

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