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Real-Time Speed and Position Estimation Using Rotor Slot Harmonics

机译:使用转子槽谐波的实时速度和位置估计

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摘要

It is well known that slotting harmonics exist in most of the electrical machines. So far, these harmonics are mainly identified using spectral estimation techniques. However, this approach requires long sampling and computation periods. In this study, a novel speed and position estimation method based on identification of rotor slot harmonics (RSH) that does not require any kind of spectral analysis is proposed. The required information is extracted by demodulating the information available in an external search coil (or in phase current). The algorithm used for this purpose is fast and can be applied within a typical control cycle of a vector controlled drive algorithm. In the application of the method here, higher order RSH have been utilized. In this manner, the position estimation resolution increases and also possible effect of harmonics stemming from other sources are avoided. The approach is explained in the paper and illustrated with experimental results.
机译:众所周知,开槽谐波存在于大多数电机中。到目前为止,这些谐波主要是使用频谱估计技术来识别的。但是,这种方法需要较长的采样和计算周期。在这项研究中,提出了一种新颖的基于转子齿槽谐波(RSH)识别的速度和位置估计方法,该方法不需要任何频谱分析。通过解调外部搜索线圈(或相电流)中可用的信息来提取所需的信息。用于该目的的算法是快速的,并且可以在矢量控制驱动算法的典型控制周期内应用。在此方法的应用中,已经使用了更高阶的RSH。以这种方式,位置估计分辨率增加,并且还避免了源于其他来源的谐波的可能影响。本文对此方法进行了说明,并通过实验结果进行了说明。

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