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首页> 外文期刊>Electric Power Applications, IET >Online maximum torque per power losses strategy for indirect rotor flux-oriented control-based induction motor drives
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Online maximum torque per power losses strategy for indirect rotor flux-oriented control-based induction motor drives

机译:间接基于转子磁链的基于控制的感应电动机驱动器的在线最大功率损耗功率策略

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摘要

Among the conventional loss minimisation algorithms (LMAs), the model-based approaches have the advantages of fast response and high accuracy. Here, a novel online model-based power losses minimisation approach is presented for indirect field-oriented control (IFOC) of induction motor (IM) drives. The proposed method is introduced as maximum torque per power losses (MTPPL) in which the power losses for a given torque are minimised. The results demonstrate that the proposed approach preserves the LMA merits, while the criterion for the MTPPL scheme is achieved. The mentioned criterion is investigated by a gradient approach so that while the gradient vectors of the torque and power losses are parallel, the MTPPL strategy is realised. The closed-loop IFOC of the MTPPL approach is implemented in real time for a laboratory 2.2kW three-phase IM drive. The experimental results show the capability and validity of the proposed control scheme.
机译:在传统的损耗最小化算法(LMA)中,基于模型的方法具有响应速度快和精度高的优点。在这里,提出了一种新颖的基于在线模型的功率损耗最小化方法,用于感应电动机(IM)驱动器的间接磁场定向控制(IFOC)。所提出的方法被引入为每单位功率损失的最大转矩(MTPPL),其中给定转矩的功率损失最小。结果表明,该方法保留了LMA的优点,同时实现了MTPPL方案的标准。通过梯度方法研究上述标准,以便在转矩和功率损耗的梯度矢量平行的同时,实现MTPPL策略。 MTPPL方法的闭环IFOC是针对实验室2.2kW三相IM驱动器实时实施的。实验结果表明了该控制方案的能力和有效性。

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