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Sensorless control of a reluctance synchronous machine in the whole speed range without voltage pulse injections

机译:无传感器控制在整个速度范围内的磁阻同步机没有电压脉冲喷射

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In this paper a position sensorless control applied to a synchronous reluctance machine for an industrial drive application is discussed. For a given stator of an induction machine a synchronous reluctance rotor with flux barriers is designed by finite element methods and a prototype machine is built up. In this application the synchronous reluctance machine drive has already replaced the induction machine. The synchronous reluctance machine saliency can be used to determine the rotor position during a modified PWM pattern without voltage pulse injections by current slope measurement at standstill and low operational speeds. For the high speed range including flux weakening operation a Back-EMF model is presented and applied to the machine. Finally, a sensorless field oriented control of the synchronous reluctance drive in the whole speed range is reached. The sensorless drive combines a high efficiency with a low cost drive architecture. With the investigations in this work the additional benefit of sensorless control in this application shall be demonstrated. The basic principles of both sensorless methods are discussed and experimental results are presented.
机译:在本文中,讨论了应用于用于工业驱动应用的同步磁阻机的位置无传感器控制。对于感应机器的给定定子,通过有限元方法设计具有通量屏障的同步磁阻转子,并建立了原型机。在本申请中,同步磁阻机驱动器已经取代了感应机器。同步磁阻机显着性可用于在改进的PWM图案期间确定转子位置,无电压脉冲喷射通过电流斜率测量以静止和低操作速度。对于包括磁通弱化操作的高速范围,给出并施加了对机器的反EMF模型。最后,达到了整个速度范围内的同步磁阻驱动的无传感器场对控制。无传感器驱动器将高效率与低成本驱动架构相结合。随着该工作的调查,应当证明在本申请中无传感器控制的额外优势。讨论了无传感器方法的基本原理,并提出了实验结果。

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