基于添加磁链弱化策略的正弦PWM vsi馈电异步电机转子磁链定向控制

F. Yusivar, T. Kihara, M. Sato, S. Wakao, T. Yamamura
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引用次数: 5

摘要

在传统的感应电机磁场定向控制中,假设转子磁链恒定,因此仅通过控制q轴电流来控制转矩。在磁场减弱区,转子磁链减小以达到很高的转子转速,从而使可用转矩减小。另一方面,为了产生最大转矩,转子磁链应尽可能多地产生。本文提出了一种新颖、简单的磁场减弱策略,该策略为正弦PWM vsi馈电感应电机驱动器提供了最大转矩能力。该策略的目的是将绝对q轴电流添加到d轴电流基准中,从而自动产生任意给定的产生转矩电流基准的合适磁通和转矩。在需要时,无需使用电机参数或特殊控制策略即可获得整个弱磁场区域的最大转矩。饱和正弦脉宽调制被用来限制逆变器电压基准的幅值。作为一个优势,有效输出电压,如看到的电机是提高。仿真和实验结果验证了该方法的有效性。
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|Iq| added flux weakening strategy for the rotor flux oriented control of a sinusoidal PWM VSI-fed induction motor
In a conventional field oriented control of an induction motor the rotor flux is assumed to be constant so that the torque is controlled by controlling the q-axis current only. In field-weakening region the rotor flux is decreased to achieve a very high rotor speed, as a consequence the available torque is reduced. On the other hand, to produce a maximum torque the rotor flux should be generated as much as possible. In this paper, a novel, simple field-weakening strategy, which provides a maximum torque capability for a sinusoidal PWM VSI-fed induction motor drive, is presented. The purpose of the proposed strategy is to add the absolute q-axis current to d-axis current reference so that proper flux and torque for any given torque-producing current reference are produced automatically. The maximum torque when it is required can be obtained over the entire field-weakening region without using machine parameters or special control strategy. A saturated sinusoidal PWM is used which limits the amplitude of the inverter voltage references. As an advantage, the effective output voltage as seen by the motor is boosted. Simulation and experimental results verify the performance of the proposed method.
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