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Comparative Study Of Back EMF Based Sensorless Control Methods For Dual Three-Phase PMSM

机译:基于反电动势的双三相PMSM无传感器控制方法的比较研究

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Multiphase electrical machines have gained increased attentions recently due to its fault tolerance capability which is of great importance for more-electric aircraft application. This paper studies sensorless control of a high-speed dual three-phase electrical machine for turboprop aircraft green taxiing motor and engine generator applications. After introduction of a detailed mathematical model of a dual three-phase permanent magnet machine, two different types of back EMF based sensorless control are compared in this paper. The first method uses a phase-locked-loop (PLL) type speed and rotor position estimator and the other uses a Luenberger observer estimator. The effectiveness of these two different methods is demonstrated using simulations in the Matlab/Simulink environment. The comparison studies show that Luenberger type estimator has better dynamic performance but suffers high frequency noise in the estimated speed error and requires the use of machinal parameters. In contrast, PLL type estimator has inferior but acceptable performance. Its low-pass characteristics frees it from the high frequency noise. Moreover, it does not require the use of mechanical parameters.
机译:多相电机由于其容错能力而在最近引起了越来越多的关注,这对于更多电动飞机的应用而言非常重要。本文研究了用于涡轮螺旋桨飞机绿色滑行电动机和发动机发电机应用的高速双三相电机的无传感器控制。在介绍了双三相永磁电机的详细数学模型之后,本文对两种不同类型的基于反电动势的无传感器控制进行了比较。第一种方法使用锁相环(PLL)型速度和转子位置估计器,另一种方法使用Luenberger观测器估计器。通过在Matlab / Simulink环境中进行仿真,证明了这两种不同方法的有效性。比较研究表明,Luenberger型估计器具有更好的动态性能,但在估计的速度误差中遭受了高频噪声的影响,因此需要使用机械参数。相反,PLL类型估计器的性能较差,但可以接受。它的低通特性使它摆脱了高频噪声。而且,它不需要使用机械参数。

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