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Position Sensorless Control of Switched Reluctance Motor under Magnetic Field Saturation

机译:磁场饱和下开关磁阻电动机的位置无传感器控制

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When the switched reluctance motor is running, as the motor phase current increases, the magnetic circuit of the motor will gradually saturate, which affects the estimation of the special position of the motor rotor. Aiming at the above problems, this paper proposes a positionless control method for switched reluctance motors under the condition of magnetic field saturation. Firstly, the Fourier phase inductance function of switched reluctance motor is established, and then the component of Fourier phase inductance function affected by magnetic field saturation is eliminated mathematically. Research the method of estimating the position and angle of the rotor based on the inductance positioning point. This paper takes a 128 motor as an example to verify the effectiveness of the method by simulation.
机译:当开关磁阻电动机运行时,随着电动机相电流的增加,电动机的磁路将逐渐饱和,这会影响电动机转子的特殊位置的估计。 针对上述问题,本文提出了在磁场饱和条件下的开关磁阻电动机的无置控制方法。 首先,建立开关磁阻电动机的傅立叶相电感功能,然后在数学上消除受磁场饱和度影响的傅立叶相电感功能的分量。 基于电感定位点研究估计转子的位置和角度的方法。 本文采用12 8电机作为示例,以通过模拟验证该方法的有效性。

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