Modeling analysis and simulation of motor parameter variation in vector controlled electrical drives

G. Rafajlovski, E. Ratz, D. Manov
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引用次数: 5

Abstract

The aim of this paper is to compare the influence of parameter uncertainties on the performance of two vector oriented control schemes of an an induction motor drive. In the first one the field oriented control method is used to control the speed of the induction motor. In this system the spatial vector of the stator current is transformed into a i/sub 1q/ component which creates the torque, and into a i/sub 1d/ component which creates the flux. If d-axis component of the stator current is of constant value, the motor drives with a constant flux and the torque can be altered rapidly by means of the q-axis component of the stator current i/sub 1q/. Two components U/sub 1d/, U/sub 1q/ of stator voltages in d-q coordinate system which must be applied to the stator d-q equivalent windings, are generated by two PI regulators controlling the two components: flux-generating and torque generating stator current. In the second one the stator flux oriented control method is used to control the torque of the induction motor. By using instantaneous voltage space vectors with selection of optimum inverter switching modes employing vector modulation technique, the direct control of torque and stator flux is achieved.
矢量控制电机参数变化的建模分析与仿真
本文的目的是比较参数不确定性对异步电动机驱动两种矢量定向控制方案性能的影响。在第一种方法中,采用磁场定向控制方法来控制异步电动机的速度。在该系统中,定子电流的空间矢量被转换成产生转矩的i/sub 1q/分量和产生磁通的i/sub 1d/分量。如果定子电流的d轴分量恒定,则电机以恒定的磁链驱动,通过定子电流的q轴分量i/sub 1q/可以快速改变转矩。定子电压在d-q坐标系中U/sub 1d/、U/sub 1q/两个分量必须加到定子d-q等效绕组上,由两个PI稳压器控制产生磁通和产生转矩的定子电流两个分量产生。第二种方法是采用定子磁链定向控制方法来控制异步电动机的转矩。利用瞬时电压空间矢量和矢量调制技术选择逆变器的最佳开关方式,实现了转矩和定子磁链的直接控制。
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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