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Hysteresis-based DIFC in SRM: Eliminating switching harmonics while improving inverter efficiency

机译:SRM中基于磁滞的DIFC:消除开关谐波,同时提高逆变器效率

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Recently, it has been proposed to overcome the well-known acoustic problem of switched reluctance machines (SRM) by Direct Instantaneous Force Control (DIFC). By now, DIFC has employed a PWM-based dead-beat controller which causes strong modulation-related harmonics in the spectrum and does not adapt to the non-constant dynamics of the SRM. This paper aims to overcome both problems by hysteresis-based DIFC. A control scheme was developed and compared to the PWM-based approach by simulation. The presented spectrograms show that hysteresis-based DIFC makes modulation-related harmonics effectively vanish from the acoustic spectrum. Moreover, it requires lower switching frequency at equal acoustic performance such that the inverter efficiency increases. The paper shows that hysteresis-based DIFC improves acoustics as well as efficiency only coming along with more stringent demands to sensor technology - for what a solution is presented in this paper.
机译:最近,已经提出了通过直接瞬时力控制(DIFC)来克服开关磁阻电机(SRM)的众所周知的声学问题。到目前为止,DIFC已经采用了基于PWM的无差拍控制器,该控制器在频谱中产生了与调制相关的强谐波,并且不适应SRM的非恒定动态。本文旨在通过基于磁滞的DIFC来克服这两个问题。开发了一种控制方案,并通过仿真将其与基于PWM的方法进行了比较。所呈现的频谱图显示,基于磁滞的DIFC使得与调制相关的谐波有效地从声谱中消失了。而且,它要求在相同的声学性能下具有较低的开关频率,从而提高了逆变器效率。本文表明,基于磁滞的DIFC只能在对传感器技术提出更严格的要求的同时改善声学和效率,因此本文提出了解决方案。

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