磁悬浮驱动磁阻同步电机的设计与无传感器控制

M. Hofer, Richard SpieBberger, M. Schrodl
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引用次数: 6

摘要

磁悬浮驱动器通常用于高速应用和/或特殊环境条件,例如涡轮泵。本文讨论了一种无传感器控制磁阻同步电机(RSM)的原型装置,该电机配备无传感器控制主动磁轴承(AMB),用于此类目标应用。将无传感器控制方法应用于AMB和RSM,大大简化了系统架构,降低了硬件成本。此外,通过使用三相AMB拓扑,可以将相同的三相电压源逆变器用于RSM和AMB。在这项工作中,重点放在RSM的无传感器控制上。研究了两种无传感器位置检测方法在高转速磁悬浮RSM样机中的基本原理。在无传感器操作的实验中进行,并通过结果确定了具有大气隙的RSM机器的设计标准,因为这是磁悬浮所必需的。为此,介绍了一种改进的机构设计,并给出了仿真结果,以证实改进的机构设计适用于这种磁悬浮高速应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and sensorless control of a reluctance synchronous machine for a magnetically levitated drive
Magnetically levitated drives are usually used in high speed applications and/or for special environmental conditions, e.g in turbo pumps. This paper discusses a prototype setup of a sensorless controlled reluctance synchronous machine (RSM) equipped with sensorless controlled active magnetic bearings (AMB) for such target applications. The utilization of sensorless control methods to the AMB and also to the RSM results in a significant simplification of the system architecture and a hardware cost reduction. Additionally by using a three phase AMB topology the same three phase voltage source inverters can be used for the RSM as well as for the AMBs. In this work the focus is set to the sensorless control of the RSM. The basic principle of the two sensorless position detection methods applied to a magnetically levitated RSM prototype for high rotational speeds are investigated. Experiments in the sensorless operation are performed and by the results design criteria for RSM machines with big airgaps are identified, because this is required for the magnetic levitation. Thus, an improved machine design is introduced and simulation results are presented to confirm the improved machine design for such magnetically levitated high speed applications.
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