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An Advanced Harmonic Compensation Strategy for Dual Three-Phase Permanent Magnet Synchronous Machines Considering Different Angle Displacements

机译:考虑不同角度位移的双三相永磁同步机的先进谐波补偿策略

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Dual three-phase permanent magnet synchronous machines (dual 3-ph PMSMs) have been used in industrial applications, due to high reliability, high torque density and other advantages. This paper proposes a current harmonics compensation strategy for dual 3-ph PMSMs with 0°, 30° and 60° angle displacement (AD) based on the developed generalized decomposition model. Firstly, a decomposition matrix of dual 3-ph PMSMs with 60° AD is extended to dual 3-ph PMSMs with 0° AD, together with a comparison with double d-q reference frame. A generalized decomposition model for dual 3-ph PMSM with 0°, 30° and 60° AD is then formed. Based on this generalized model, an advanced current harmonic compensation strategy is developed, in which dominant order current harmonics are selected without introducing a phase delay (by means of the generalized integrator), and a model-based control approach is introduced to mitigate the selected harmonics. Finally, simulation and experimental results validate the performance of the proposed harmonic compensation strategy.
机译:由于高可靠性,高扭矩密度和其他优点,双三相永磁同步机(双3-PH PMSMS)已被用于工业应用中。本文提出了一种基于开发的广义分解模型的0°,30°和60°角位移(AD)的双3-pH PMSM的电流谐波补偿策略。首先,具有60°AD的双3-pH pmsms的分解矩阵与0°AD的双3-pH pmsms延伸,与双D-Q参考帧的比较。然后形成具有0°,30°和60°AD的双3-pH PMSM的广义分解模型。基于该广义模型,开发了先进的电流谐波补偿策略,其中选择了主导顺序的谐波,而不引入相位延迟(通过广义积分器),并引入基于模型的控制方法来减轻所选择的谐波。最后,仿真和实验结果验证了提出的谐波补偿策略的性能。

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