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Sensorless method for the compensation of cogging torque in PM synchronous machines

机译:永磁同步电机无齿槽转矩补偿的无传感器方法

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The cogging torque in PM syncrhonous machines can be reduced by taking measures in the design of the machine or by means of the control system of the drive. For compensating the cogging torque through control, it is required to accurately know the position of the rotor. Consequently, the implementation of such a method using a sensorless estimated position is very difficult. In the present paper, an encoderless method is proposed, which determines the compensating torque signal directly without resolving the estimated position. The proposal is developed for machines with concentrated windings and fractional slot pitch, where the cogging torque is of special concern. The compensating signal is synthesized from the inverse inductance matrix, which has components with 2 and 4 times the fundamental electric angular frequency. The proposed method is tested by using a simulation model. The parameters, including the position dependent inductance matrix, where obtained by the finite elements method.
机译:永磁同步电机中的齿槽转矩可通过在电机设计中采取措施或通过驱动器的控制系统来降低。为了通过控制来补偿齿槽转矩,需要准确地知道转子的位置。因此,使用无传感器的估计位置来实施这种方法非常困难。在本文中,提出了一种无编码器方法,该方法无需确定估计位置就可以直接确定补偿扭矩信号。该提案是针对具有集中绕组和小槽节距的电机而开发的,其中特别需要考虑齿槽转矩。补偿信号由反电感矩阵合成,该矩阵的分量是基本电角频率的2倍和4倍。通过使用仿真模型对提出的方法进行了测试。通过有限元方法获得的参数,包括与位置相关的电感矩阵。

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