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Two flux weakening schemes for surface-mounted permanent-magnet synchronous drives - design and transient response considerations

机译:表面安装永磁同步驱动器的两个磁通弱化方案 - 设计和瞬态响应考虑

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Two recently published flux weakening schemes for surface-mounted permanent-magnet synchronous (SMPMS) drives have offered estimable advantages over previous solutions. The first scheme uses values of the voltage reference to generate an adequateflux weakening component of the stator current, whereas the second method detects an increase of the tracking error in torque-producing current component and uses the error signal for the flux weakening control. The viability of the algorithms has beendemonstrated and the schemes have been compared and analyzed in steady state operation. The transient behavior is very important for electric vehicles and other high-performance applications. Here, we analyze the transient response characteristics of both schemes when a sudden change in the torque reference is received. The paper also describes an approach to practical regulator design and parameter selection for the flux weakening control section.
机译:用于表面安装的永磁同步(SMPMS)驱动器的两种最近公布的磁通弱化方案已经提供了以前的解决方案的可比优势。第一方案使用电压参考值来产生定子电流的AdequateFlux弱化分量,而第二种方法检测扭矩产生电流分量中的跟踪误差的增加,并使用磁通量弱化控制的误差信号。算法的可行性已经迷失了,并在稳态操作中进行了比较和分析方案。瞬态行为对于电动汽车和其他高性能应用非常重要。这里,当接收到扭矩参考的突然变化时,我们分析了两种方案的瞬态响应特性。本文还介绍了对磁通弱化控制部分的实用调节器设计和参数选择的方法。

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