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Initial rotor position and magnet polarity identification of PM synchronous machines based on numerical simulation

机译:基于数值模拟的永磁同步电机初始转子位置和磁铁极性识别

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In this paper a comprehensive nonlinear model of surface mounted permanent magnet (PM) synchronous machine (SPMSM) is developed considering both the structural and saturation saliencies. After experimentally identifying all the parameters, a nonlinear mathematic model of SPMSM is built, in which the rotor position and stator current are taken as the variables to calculate the inductances. A pulse injection based scheme is proposed to detect the initial rotor position and magnet polarity. A rotor vibration analysis is carried out to finalize the injected signal. The saturation saliency embedded in the nonlinear model is utilized to identify the rotor polarity, which is essential for starting the SPMSM. Simulations are taken for several different rotor initial positions and the result shows that the proposed method is suitable for the SPMSM drive.
机译:在本文中,考虑到结构和饱和显着性,建立了表面安装式永磁同步电机(SPMSM)的综合非线性模型。在对所有参数进行实验识别之后,建立了SPMSM的非线性数学模型,其中以转子位置和定子电流为变量来计算电感。提出了一种基于脉冲注入的方案来检测初始转子位置和磁体极性。进行转子振动分析以最终确定注入的信号。非线性模型中嵌入的饱和显着性用于识别转子极性,这对于启动SPMSM是必不可少的。对几种不同的转子初始位置进行了仿真,结果表明所提出的方法适用于SPMSM驱动。

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