Initial rotor position detection in synchronous machines using low frequency pulses

Simon Feuersanger, M. Pacas
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引用次数: 6

Abstract

It is well-known that in the area of encoderless control methods for AC-drives a single approach is not capable to cover all speed ranges and all types of machines. Therefore, a combination of several methods is necessary. Especially in the case of electrically excited synchronous machines, the methods proposed for the low speed region and for the detection of the initial rotor position fail for many types of machines and demand for new solutions. In this paper, a method for the identification of the initial rotor position by injecting low frequency pulses is proposed. After the identification of the initial position, the drive is directly started with the help of a conventional high-speed method and rides through the critical speed region without any difficulties. The new method is designed for a reliable operation in a large group of electrically excited synchronous machines. Measurement results as well as a concept for the parameterization of the model are included in this paper.
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同步电机低频脉冲初始转子位置检测
众所周知,在交流驱动的无编码器控制方法领域,单一方法无法覆盖所有速度范围和所有类型的机器。因此,几种方法的结合是必要的。特别是在电励磁同步电机中,针对低速区和转子初始位置的检测方法在许多类型的电机中都不适用,需要新的解决方案。提出了一种通过注入低频脉冲识别转子初始位置的方法。在确定初始位置后,借助常规高速方法直接启动驱动器,无任何困难地通过临界速度区域。这种新方法是为保证大型电激同步电机的可靠运行而设计的。文中给出了测量结果和模型参数化的概念。
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