A Model based Voltage Phase Controller in Six-step Mode for IPMSM with an Extending Operation Region

Bo Guan, Xiong Du
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Abstract

As a key method to realize a high-performance control of IPMSM in six-step mode, which is of benefit to reduce the switching frequency and increase the output voltage, the conventional voltage phase controller can adjust the output torque by amending the voltage phase through an integrator. However, the assumption that the relationship between the torque and voltage phase is monotonically increasing, is not always correct. In fact, motor parameters may change the relationship, which results in the failure of driving the motor for the conventional voltage phase controller. In this paper, we analyze the effect of motor parameters on the monotonicity. Then, point out that the assumption in the conventional way is a critical limit for the voltage phase control of some motors. It limits the operation region seriously. After achieving the condition that can judge which case the relationship between the torque and voltage phase is in, a model based voltage phase controller in six-step mode for IPMSM is proposed. The operation region, which is not suitable for some conventional ways, can be approached well for the proposed method. Finally, some simulation results are also given to prove the correctness and feasibility of the proposed method.
基于模型的扩展工作区域IPMSM六步电压相位控制器
传统的电压相位控制器通过积分器修改电压相位来调节输出转矩,是实现六步调速模式下IPMSM高性能控制的关键方法,有利于降低开关频率和提高输出电压。然而,假设转矩与电压相位之间的关系是单调递增的,并不总是正确的。实际上,电机参数之间的关系可能会发生改变,从而导致传统的电压相位控制器无法驱动电机。本文分析了电机参数对单调性的影响。然后,指出传统方法的假设是某些电机电压相位控制的关键限制。严重限制了操作区域。在满足判断转矩与电压相位关系的条件后,提出了一种基于模型的IPMSM六步电压相位控制器。该方法可以很好地逼近一些常规方法不适合的操作区域。最后给出了仿真结果,验证了所提方法的正确性和可行性。
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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