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Initial Rotor Polarity Detection of Single-phase PMSM Based on Nonlinear Permeability of Permanent Magnet

机译:基于永磁体非线性磁导率的单相永磁同步电动机初始转子极性检测

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This paper proposes a novel rotor polarity estimation algorithm for single-phase permanent magnet synchronous motor (SP-PMSM) with asymmetric air-gap. In general, the back-EMF or flux estimation models are used to operate the sensorless control of permanent magnet synchronous machines. However, when motor is at standstill or low speed, the back-EMF is too small to detect rotor position. Thereby, high frequency injection methods are widely used in the standstill or low speed region. In case of the SP-PMSM, when high frequency signal is injected to asymmetric air-gap single-phase PMSM motors, flux saturation phenomenon may be different unlike 3-phase machines. Due to alternating magnetic field at the air-gap, initial rotor magnetic polarity of the SP-PMSM is not easy to be estimated. As a result, the high frequency voltage signal is only injected at SP-PMSM and the current offset can be obtained by the LPF. The effectiveness and usefulness of the proposed algorithm is verified through the several experimental results.
机译:针对非对称气隙的单相永磁同步电动机(SP-PMSM),提出了一种新颖的转子极性估计算法。通常,反电动势或磁通估算模型用于操作永磁同步电机的无传感器控制。但是,当电动机处于静止或低速时,反电动势过小而无法检测转子位置。因此,高频注入方法被广泛用于静止或低速区域。对于SP-PMSM,当将高频信号注入非对称气隙单相PMSM电动机时,磁通饱和现象可能与三相电机不同。由于气隙处的交变磁场,很难估计SP-PMSM的初始转子磁极性。结果,仅在SP-PMSM处注入了高频电压信号,并且可以通过LPF获得电流偏移。通过几个实验结果验证了所提算法的有效性和实用性。

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