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Adaptation of Predictive Acoustic Noise Control of IM Drive to Variable Operating Conditions

机译:适应IM驱动器的预测声学噪声控制到可变操作条件

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Finite control set MPC of IM drive is known to produce a spread spectrum of the stator currents. Spectrum of the acoustic noise also exhibits higher spread than that of the PWM which may be perceived as more pleasant sound by humans. Predictive acoustic noise control has been recently proposed using FCS-MPC with additive term maximizing spectrum flatness of the emitted acoustic noise. It has been shown that the acoustic noise generated by this control has better properties than the conventional random PWM. In this contribution, we study variability of the acoustic model with respect to operating conditions. We show that constant penalization factors are not optimal. We design a measure of performance of the acoustic noise controller and propose a scheduling mechanism for adjustment of the penalization coefficient to optimize this measure. Since we require noise measurements, the procedure is expected to be used during commissioning of the drive.
机译:已知IM驱动器的有限控制集MPC产生定子电流的扩频。声噪声的光谱也表现出比PWM的频率更高,这可能被人类视为更令人愉快的声音。最近使用FCS-MPC提出了预测声学噪声控制,其具有添加术语最大化发射声噪声的光谱平坦度。已经表明,该控制产生的声学噪声具有比传统随机PWM更好的性质。在这一贡献中,我们研究了关于操作条件的声学模型的可变性。我们表明持续的惩罚因素不是最佳的。我们设计了声学噪声控制器的性能度量,并提出了调整惩罚系数的调度机制以优化该措施。由于我们需要噪声测量,因此期望在驱动器调试期间使用该过程。

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