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A sliding-mode observer for high-performance sensorless control of PMSM with initial rotor position detection

机译:具有初始转子位置检测的PMSM高性能无传感器控制的滑模观测器

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摘要

This paper proposes a new method to detect the initial rotor position at standstill of permanent magnet synchronous motor (PMSM). To estimate rotor position and rotor speed from the back electromotive force (EMF) voltage, we apply sensorless speed control based on sliding-mode observer (SMO). The initial rotor position is detected by using a suitable high-frequency sequence of voltage pulses intermittently applied to the stator windings at standstill. With this approach, wemanaged to minimise the error on the estimated position to 3.75 degrees electrical degrees without additional materials and uncomplicated calculations. The stability of the proposed SMO was verified using the Lyapunov method. Numerical simulations and experiments demonstrate that the novel SMOmethod can effectively estimate rotor position and speed with achievement of good static and dynamic performance. The experimental implementation is carried out on powerful dSpace DS1103 controller board based on the digital signal processor (DSP) TMS320F240.
机译:本文提出了一种在永磁同步电动机(PMSM)静止处检测初始转子位置的新方法。为了估计来自背部电动势(EMF)电压的转子位置和转子速度,我们基于滑动模式观察器(SMO)应用无传感器速度控制。通过使用间歇地施加到静止的定子绕组的合适的高频电压脉冲序列来检测初始转子位置。通过这种方法,Wemanaged以最小化估计位置的误差,而无需额外的材料和简单的计算。使用Lyapunov方法验证了所提出的SMO的稳定性。数值模拟和实验表明,新颖的Smomethod可以有效地估计转子位置和速度,实现良好的静态和动态性能。基于数字信号处理器(DSP)TMS320F240,在强大的DSPACE DS1103控制器板上进行实验实现。

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