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首页> 外文期刊>IEE proceedings. Part C, Generation, Transmission, and Distribution >Dynamic simulation of operating mechanism in low-voltage moulded-case circuit breaker
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Dynamic simulation of operating mechanism in low-voltage moulded-case circuit breaker

机译:低压塑壳断路器动作机理的动态仿真

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摘要

A novel dynamic model of low-voltage moulded-case circuit breaker operating mechanism is created using the multibody software package ADAMS (automatic dynamic analysis of mechanical system). The model is proved by experiment. To analyse the influence of electrodynamic repulsion forces on the breaking process of the circuit breaker, the real-time repulsion force values are calculated by a binary-cubic interpolation method. The circuit, electromagnetic field and mechanism coupling equations are solved by a self-programming routine of the ADAMS secondary development to simulate the breaking process. All simulation results show that the repulsion forces accelerate the breaking of the circuit breaker. Under the condition of a prospective current of 10 kA the breaking time is shortened by about 1 ms.
机译:使用多体软件包ADAMS(机械系统的自动动态分析)创建了一种新型的低压塑壳断路器操作机构动态模型。通过实验证明了该模型。为了分析电动排斥力对断路器断开过程的影响,通过二进制三次插值法计算了实时排斥力值。通过ADAMS二次开发的自编程例程求解电路,电磁场和机构耦合方程,以模拟断裂过程。所有仿真结果表明,排斥力会加速断路器的断裂。在预期电流为10 kA的条件下,断开时间缩短了约1 ms。

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