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Fast Initial Position Estimation of IPMSMs Using Comb Filters

机译:使用梳状滤波器快速估计IPMSM的初始位置

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This paper proposes a method for the fast initial position estimation of IPMSMs (interior permanent magnet synchronous motors) which is based on intentional pulse voltage injection and comb filters. Generally, the rotor position can be estimated by detecting the high-frequency current caused by the injected high-frequency voltage because its response includes inductance information due to saliency. In general, the sinusoidal current, sinusoidal voltage, and pulse voltage are utilized for saliency excitation. Methods based on the sinusoidal current and voltage, however, would require a shorter control period for precise signal injection so that methods based on pulse voltage injection would be desirable. The methods based on pulse voltage injection generally utilize the amplitude or differential value of the high-frequency current. These algorithms to calculate the saliency with its amplitude or differential value, however, appear to be complicated and unsuitable to improve the response of the position estimation. In particular, algorithms for calculating the amplitude values require some low-pass filters (LPFs) with a low cut-off frequency for the amplitude calculation, which degrades the response of the initial position estimation. In order to overcome this problem, this paper proposes a new algorithm using comb filters that can rapidly calculate the amplitude values of the high-frequency current and improve the initial position estimation performance.
机译:本文提出了一种基于有意脉冲电压注入和梳状滤波器的IPMSM(内部永磁同步电动机)快速初始位置估计方法。通常,转子位置可以通过检测由注入的高频电压引起的高频电流来估计,因为其响应包括由于显着性引起的电感信息。通常,将正弦电流,正弦电压和脉冲电压用于显着激励。然而,基于正弦电流和电压的方法将需要较短的控制周期以进行精确的信号注入,因此基于脉冲电压注入的方法将是理想的。基于脉冲电压注入的方法通常利用高频电流的幅度或微分值。但是,这些用于计算其幅度或微分值的显着性的算法似乎很复杂,不适合提高位置估计的响应。特别地,用于计算幅度值的算法需要一些具有低截止频率的低通滤波器(LPF)用于幅度计算,这降低了初始位置估计的响应。为了克服这个问题,本文提出了一种使用梳状滤波器的新算法,该算法可以快速计算出高频电流的幅值并提高初始位置估计性能。

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