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A novel sensorless control method of IPMSM using dual PLL structure

机译:使用双PLL结构的IPMSM一种新型无传感器控制方法

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Harmonics in back electromotive force (EMF) would greatly affect the accuracy of traditional sensorless control methods, and some of them may even fail. Phase locked loop (PLL) is a useful tool for phase detection in multiple-harmonic system, and is suitable for the control system of Interior Permanent Magnet Synchronous Motor (IPMSM) as it is often filled with harmonics when the motor is not carefully designed. In this paper, Dual-PLL structure is proposed to obtain the fundamental harmonic of the quantities of the motor, which are used in the speed and position estimation. The first PLL is the main path of the estimation and the phase of αβ-axes voltage is determined, while the second PLL focuses on speed estimation with low ripples. Extra measurement of the terminal voltage of the motor is not necessary and only the q-axis inductance is needed when the motor is run at id=0. The delay caused by the digital control and the IGBT-composed inverter is also considered. Experiments are finished on an inverter fed IPMSM control system, which demonstrates the correctness of both proposed strategies with good steady performance.
机译:背部电动势(EMF)的谐波将极大地影响传统无传感器控制方法的准确性,其中一些甚至可能会失败。锁相环(PLL)是多谐波系统中的相位检测的有用工具,适用于内部永磁体同步电动机(IPMSM)的控制系统,因为当电动机没有仔细设计时,它通常填充谐波。在本文中,提出了双PLL结构,以获得电动机数量的基本谐波,其用于速度和位置估计。第一PLL是估计的主路径,并且确定αβ轴电压的相位,而第二PLL侧重于具有低纹波的速度估计。不需要额外的电动机端电压测量,并且当电动机在ID = 0处运行时,仅需要Q轴电感。也考虑了由数字控制和IGBT组合的逆变器引起的延迟。在逆变器供给IPMSM控制系统上完成实验,该系统展示了两种策略的正确性,具有良好的稳定性能。

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