Anisotropy-based position estimation approach for symmetrical dual three-phase permanent magnet synchronous machines

M. Roetzer, U. Vollmer, Lei Chen, R. Kennel
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引用次数: 3

Abstract

This paper describes a position estimation approach based on high-frequency voltage injections for dual three-phase permanent magnet synchronous machines (DTP-PMSM) whose sets of windings are spatially shifted by 360 electrical degrees. Fail-operational drives gain more and more importance in automotive applications. Typically, multiphase machines are used to realize fail-operational properties. Besides the machine, also the sensing of the phase currents and the rotor position has to be fault-tolerant. It is therefore obvious to reduce the overall system cost by using sensorless control methods as a monitoring and fallback solution in fail-operational drives. In this paper, the sensorless capability of the symmetrical dual three-phase machine at zero and low speed is investigated. It is shown that, compared to an ordinary three phase machine, this type of machine enables a significant reduction of both the torque and battery current ripples produced by high-frequency voltage injections. Moreover, it is shown that, under certain conditions, the proposed injection method reduces the acoustic noise produced by voltage injections. The proposed injection method is furthermore implemented in a “slowly-sampled” control system, in which the sample rate of the controller is chosen several times lower than the PWM frequency. For this purpose, a suitable position estimation approach is developed. Experimental results show the effectiveness of this method.
基于各向异性的对称双三相永磁同步电机位置估计方法
本文介绍了一种基于高频电压注入的双三相永磁同步电机(DTP-PMSM)的位置估计方法,该电机的绕组组空间位移为360度。故障驱动在汽车应用中变得越来越重要。通常,多相电机用于实现故障运行特性。除了机器之外,对相电流和转子位置的传感也必须具有容错性。因此,通过使用无传感器控制方法作为故障操作驱动器的监测和回退解决方案,显然可以降低整体系统成本。本文研究了对称双三相电机在零、低速时的无传感器性能。研究表明,与普通的三相电机相比,这种类型的电机可以显著减少由高频电压注入产生的扭矩和电池电流波动。此外,在一定条件下,所提出的注入方法降低了电压注入产生的噪声。在“慢采样”控制系统中进一步实现了所提出的注入方法,其中控制器的采样率选择比PWM频率低几倍。为此,提出了一种合适的位置估计方法。实验结果表明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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