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The Sensorless Rotor Position Identification and Low Speed Operation of the Axial Flux Permanent Magnet Motor Controlled by the Novel PIPCRM Method.

机译:无传感器转子位置识别和由新型PIPCRM方法控制的轴向磁通永磁电机的低速操作。

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This paper presents a novel simple sensorless method, which can be used at standstill and at low speed of the permanent magnet machine. The method is used to determine initial position of the rotor of the permanent magnet axial flux motor. Therefore method is applied to provide sensorless startup of axial flux permanent magnet motor. Low speed operations, including changing direction is developed and described. A single voltage step is applied to stator windings connected parallel and current responses, in each phase, are measured. Identification of rotor position is provided due to current response differences and it analysis. Described sensorless method is called as PIPCRM that means Position Identification by Parallel Current Rate Measurement. This paper deals with theory of the PIPCRM method confirmed by laboratory results on experimental set with 40 kVA/16 poles/3000 rpm axial flux permanent magnet motor. The torque and speed control of the shaftless and bearingless permanent magnet motor is presented using the developed sensorless method.
机译:本文介绍了一种新颖的简单无传感器方法,可在静止和永磁机的低速处使用。该方法用于确定永磁轴向通量电动机的转子的初始位置。因此,应用方法以提供轴向磁通永磁电动机的无传感器启动。开发和描述了低速操作,包括改变方向。测量单个电压步骤施加到平行连接的定子绕组,并在每个相中施加电流响应。由于电流响应差异和分析,提供了转子位置的识别。描述的无传感器方法称为PIPCRM,表示通过并行电流速率测量的位置识别。本文涉及通过实验室结果证实的PIPCRM方法的理论,并用40 kVA / 16极/ 3000rpm轴向通量永磁电机进行实验组。使用显影的无传感器方法提出了无轴和无轴承永磁电动机的扭矩和速度控制。

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