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首页> 外文期刊>Electric Power Applications, IET >Rotor position tolerant detection method for SRM drive system with misaligned position sensors
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Rotor position tolerant detection method for SRM drive system with misaligned position sensors

机译:位置传感器未对准的srm驱动系统转子位置公差检测方法

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摘要

Accurate rotor position is necessary for the control of switched reluctance motors (SRMs). Generally, three position sensors are ideally installed 120 electrical degrees apart for three-phase SRMs. However, the placement of position sensors may be inaccurate, particularly in small-size SRMs, and there is no method reported to deal with this problem up to now. Firstly, the position signals and the influence of the misaligned sensors on the detected rotor position are investigated. Then a novel method is developed to identify the misaligned position sensors with dynamic time warping (DTW) algorithm. The DTW distance versus the misaligned angle is calculated, and the relationship between them is described with linear regression analysis algorithm. Then the rotor position tolerant detection method is realised by compensating the misaligned angle in real time. Finally, comparative experiments are carried out on a three-phase 12/8 SRM drive system, and it can be found that the proposed strategy is capable of providing an accurate rotor position for the SRM drive system. The presented method is easy for online implementation and can be integrated into the control system conveniently.
机译:精确的转子位置对于控制开关磁阻电机(SRM)是必需的。通常,对于三相SRM,最好将三个位置传感器安装在相距120电角度的位置。但是,位置传感器的放置可能不准确,尤其是在小型SRM中,并且到目前为止,还没有报告解决此问题的方法。首先,研究位置信号以及传感器未对准对检测到的转子位置的影响。然后,开发了一种利用动态时间规整(DTW)算法识别未对准位置传感器的新方法。计算了DTW距离与未对准角度的关系,并使用线性回归分析算法描述了它们之间的关系。然后通过实时补偿偏心角实现转子位置公差检测方法。最后,在三相12/8 SRM驱动系统上进行了比较实验,可以发现所提出的策略能够为SRM驱动系统提供准确的转子位置。该方法易于在线实现,可以方便地集成到控制系统中。

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