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Position Self-Sensing Evaluation of a FI-IPMSM based on High Frequency Signal Injection Methods

机译:基于高频信号注入方法的FI-IPMSM的位置自感应评估

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The flux intensified, interior permanent magnet synchronous machine, FI-IPMSM, lends itself to designing for good self-sensing properties. This paper begins by evaluating the self-sensing position estimation performance of a suitably designed FI-IPMSM machine using different high frequency injection methods. The paper then proposes a new rotor position estimation method for square wave injection. The experiment results show that the estimation accuracy and system robustness is greatly improved by the proposed method. It is known that secondary saliencies and saliency offset caused by the saturation of the machine can degrade the estimation accuracy. This paper also includes modeling, measurement, and decoupling methods that mitigate these undesirable effects, which are also implemented using an experimental FI-IPMSM. Estimation accuracy and torque ripple caused by the injection current are examined for this FI-IPMSM. Comparisons of the methods are presented.
机译:磁共振导为,内部永磁同步机Fi-IPMSM,为设计提供了良好的自感特性。本文首先使用不同的高频注入方法评估适当设计的FI-IPMSM机的自感应位置估计性能。然后,该文件提出了一种用于方波注射的新转子位置估计方法。实验结果表明,通过所提出的方法大大提高了估计精度和系统鲁棒性。众所周知,由机器饱和引起的二次炼水和显着偏移可以降低估计精度。本文还包括减轻这些不期望的效果的建模,测量和去耦方法,这些方法也使用实验FI-IPMSM实现。对本发明的估计精度和由喷射电流引起的扭矩脉动进行了检查。提出了这些方法的比较。

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