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Control of an Electric Machine Integrated With the Trans-Rotary Magnetic Gear in a Motor Drive Train

机译:电机传动系统中集成了横向旋转电磁齿轮的电机的控制

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This paper studies the dynamic performance of an electric machine integrated with the transrotary magnetic gear (MITROMAG) in a motoring mode of operation. MITROMAG is formed by mechanically coupling a rotary electric machine to the rotor of a trans-rotary magnetic gear (TROMAG). TROMAG is a magnetic device that, through magnetic fields, converts a low-torque, high-speed rotation of its rotor to a high-force, low-speed linear motion of its translator, and vice versa. In a motoring mode of operation, the rotor of the TROMAG is driven by a rotary electric motor, and as a result, its translator drives a reciprocating load. A nonlinear dynamic model is developed for the TROMAG. Oscillation tests are presented as examples of how the model can be used to predict the dynamic behavior of the device. The model is then linearized to derive system transfer functions and study the dynamic response of the MITROMAG to speed commands. Experimental results confirm the analysis.
机译:本文研究了在电动操作模式下集成了横向旋转磁齿轮(MITROMAG)的电机的动态性能。 MITROMAG是通过将旋转电机机械连接至跨转磁齿轮(TROMAG)的转子而形成的。 TROMAG是一种磁性设备,可通过磁场将其转子的低扭矩高速旋转转换为其转换器的高力低速线性运动,反之亦然。在电动操作模式下,TROMAG的转子由旋转电动机驱动,因此,其转换器驱动往复负载。为TROMAG开发了非线性动力学模型。振荡测试是作为如何使用模型来预测设备动态行为的示例。然后将模型线性化,以导出系统传递函数,并研究MITROMAG对速度命令的动态响应。实验结果证实了该分析。

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