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A comparison of stator flux linkage estimators for a direct torque controlled PMSM drive

机译:直接转矩控制pmsm驱动的定子磁链估算器的比较

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摘要

In an increasing number of applications highly dynamic electrical drives, characterized by high quality torque control, are demanded. Direct torque control (DTC) for AC machines, permanent magnet synchronous motors (PMSM) or induction machines, can provide this accurate and fast torque control. When applying DTC the change of the stator flux linkage vector is controlled, based on torque and flux errors. As such the estimation of the stator flux linkage is essential for a DTC drive. Furthermore the quality of the estimation directly determines the capability of the drive. In the literature several possible solutions for the estimation of the stator flux linkage are proposed. However, a comprehensive comparison between these solutions is not present. This paper gives an overview of several techniques for the estimation of the stator flux linkage for DTC in PMSMs. The theoretical advantages and disadvantages of the methods are outlined. After a short discussion on the effects of erroneous estimations the results from simulations for the different methods are reviewed. It is shown that, despite their simplicity stabilized voltage model methods can offer good performance. Still they can not reach the performance of an extended Kalman filter implementation of a current model. Aspects of the practical implementation on FPGA are discussed.
机译:在越来越多的应用中,需要以高质量转矩控制为特征的高动态电驱动器。用于交流电机,永磁同步电动机(PMSM)或感应电机的直接转矩控制(DTC)可以提供这种精确,快速的转矩控制。应用DTC时,基于转矩和磁通误差控制定子磁链矢量的变化。因此,定子磁链的估算对于DTC驱动至关重要。此外,估算的质量直接决定了驱动器的能力。在文献中,提出了几种估计定子磁链的可能解决方案。但是,这些解决方案之间没有全面的比较。本文概述了几种估计PMSM中DTC定子磁链的技术。概述了该方法的理论优点和缺点。在简短讨论了错误估计的影响之后,对不同方法的仿真结果进行了回顾。结果表明,尽管稳定电压模型方法简单易行,但仍可以提供良好的性能。它们仍然无法达到当前模型的扩展卡尔曼滤波器实现的性能。讨论了在FPGA上实际实现的方面。

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