Development of a five-phase synchronous motor with permanent magnets

A. Bannikov, Y. Nikitin
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引用次数: 0

Abstract

In this paper the design, mathematical and simulation models of a five-phase synchronous motor with permanent magnets and a simulation model of a control device have been developed. A mathematical model of electromagnetic processes in a five-phase motor and control system with three feedback loops has been developed in Matlab Simulink environment. The inner fast loop provides control of currents along d and q axes by means of PI controllers, which allows keeping the total stator current vector perpendicular to the rotor current-circuit vector and providing the highest torque. The middle circuit provides control of angular speed of shaft rotation by means of PI-controllers. The outer circuit provides control of the angular position of the motor rotor by means of the P controller. The parameters of the regulators are optimized. The transient process has no overshoot and the control time is 2.6 seconds. A prototype of the motor has been developed and manufactured.
永磁五相同步电动机的研制
本文建立了永磁五相同步电动机的设计模型、数学模型和仿真模型以及控制装置的仿真模型。在Matlab Simulink环境下,建立了三相电机控制系统电磁过程的数学模型。内部快速环路通过PI控制器提供沿d和q轴的电流控制,这允许保持总定子电流矢量垂直于转子电流电路矢量并提供最高转矩。中间电路通过pi控制器提供轴旋转角速度的控制。外电路通过P控制器对电机转子的角度位置进行控制。对调节器的参数进行了优化。暂态过程无超调,控制时间为2.6 s。这种电动机的原型已经研制出来了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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