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Design of electromagnetic force driving actuator (EMFA) and linkage for molded case circuit breaker

机译:塑壳断路器电磁驱动致动器(EMFA)和连杆的设计

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With the recent increase in social demand for 'Power IT', a dire need for electrical equipment capable of remote control, such as measuring, communication, etc., has arisen. Therefore, this paper shows that molded case circuit breaker (MCCB), which is a typical electrical equipment widely used in low-voltage circuits, can be miniaturized and remotely controlled by adapting electromagnetic force driving actuator (EMFA). EMFA is a driving device operated by electromagnetic force generated from permanent magnets and electric current. The 2-D finite element method (FEM) and the time difference method (TDM) were employed in analysis of magnetic field and dynamic characteristics during the design process of EMFA. In order to adapt EMFA into MCCB, linkage system connecting each other was devised considering the load of interrupter portion and the holding force of actuator.
机译:随着近来社会对“电力IT”的需求增加,迫切需要能够进行远程控制的电气设备,例如测量,通信等。因此,本文表明,通过适应电磁力驱动致动器(EMFA),可以广泛使用小型外壳断路器(MCCB),它是低压电路中广泛使用的典型电气设备。 EMFA是一种驱动装置,通过永磁体和电流产生的电磁力进行操作。在EMFA的设计过程中,采用二维有限元法(FEM)和时差法(TDM)对磁场和动力特性进行了分析。为了使EMFA适应于MCCB,设计了相互连接的连杆系统,其中考虑了中断器部分的负载和执行器的保持力。

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