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Design and Analysis of Variable-Reluctance Stepping Motor as Actuator Element of New Type Automatic Transfer Switch

机译:可变磁阻步进电机的设计与分析新型自动转移开关的执行器元件

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The method of designing a single-stack variable-reluctance (VR) stepping motor for use as an actuator of the transition mechanism of the new type of automatic transfer switch is presented in this paper. The design procedure is explained and supported with several equations derived from electromechanical conversion theory. The golden ratio is introduced in design equation which relates the axial length of the stator core to the stator bore diameter. The flux density inside all parts of the machine is investigated using finite-element analysis based software package MagNet Infolytica in order to ensure the machine is operated at linear region of the core magnetization curve. The software also generates the torque profile which graphically figures the electromagnetic torque produced by the machine versus the rotor position. The material for stator and rotor cores uses high permeability magnetic material such as Carpenter silicon steel. The stepping motor will have 6 poles at the stator and 4 teeth at the rotor and will produce maximum torque of 0.3 Nm at 1 A excitation current. Based on the simulation results, the dimensions of the stator and rotor cores of VR stepping motor are as follows, motor axial length 80 mm, stator outer diameter 122 mm, stator bore diameter 72 mm, rotor outer diameter 71 mm and rotor shaft diameter 20 mm, and also the coil of each stator poles will have 800 turns.
机译:本文介绍了设计用于新型自动转移开关的转换机构的致动器的单堆叠可变磁阻(VR)踩踏电动机的方法。利用来自机电转换理论的若干方程来解释和支持设计过程。金色比例在设计方程中引入,其涉及定子芯的轴向长度与定子孔径。机器的所有部分内的磁通量密度是使用有限元分析基于软件包磁体Infolytica公司,以确保机器调查在芯磁化曲线的线性区域中进行操作。该软件还产生扭矩轮廓,图形方式图示由机器与转子位置产生的电磁扭矩。定子和转子芯的材料使用高磁导率磁性材料,例如木匠硅钢。步进电机将在定子处具有6个极,在转子处具有4个齿,并且在1个激励电流下将产生0.3nm的最大扭矩。基于仿真结果,VR步进电机的定子和转子芯的尺寸如下,电动机轴向长度80mm,定子外径122mm,定子孔径72mm,转子外径71mm和转子轴直径20 MM,并且每个定子杆的线圈也将有800圈。

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