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Harmonic Current Reduction Control Based on Model Predictive Direct Current Control of IPMSM and Input Grid Circuit

机译:基于IPMSM模型预测直流电和输入电网电路的谐波电流减小控制。

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This paper proposes a new inverter control method to reduce the input current harmonics and switching frequency of electrolytic capacitorless inverters for interior permanent magnet synchronous motor (IPMSM) drives. In an electrolytic capacitorless inverter system, the input current oscillates due to a resonance between the grid inductance and DC-link capacitor. Due to the oscillation in the input current caused by the LC resonance, the regulations for input current harmonics are sometimes not satisfied. The proposed method, which adopts a model predictive direct current control (MPDCC) method, reduces the switching frequency and satisfies the input current harmonics regulations IEC61000-3-2. MPDCC predicts the motor and input currents and evaluates them using a cost function to select a voltage vector. The cost function reduces the number of switching times and results in a current response that follows the current reference. The prediction model for input current is constructed using the state equations of the input LC resonance circuit and IPMSM. The effectiveness of the proposed method is confirmed experimentally. Further, the experimental results confirm that the proposed method satisfies the input current harmonics regulation IEC61000-3-2.
机译:本文提出一种新的逆变器控制方法,以减少用于内部永磁同步电动机(IPMSM)驱动器的无电解电容器逆变器的输入电流谐波和开关频率。在无电解电容器的逆变器系统中,输入电流由于电网电感和直流母线电容器之间的谐振而振荡。由于LC谐振导致输入电流发生振荡,因此有时无法满足输入电流谐波的规定。该方法采用模型预测直流控制(MPDCC)方法,降低了开关频率并满足输入电流谐波法规IEC61000-3-2。 MPDCC预测电动机和输入电流,并使用成本函数选择电压矢量来评估它们。成本函数减少了开关次数,并导致电流响应遵循电流基准。使用输入LC谐振电路和IPMSM的状态方程构建输入电流的预测模型。实验证明了该方法的有效性。此外,实验结果证实,所提出的方法满足输入电流谐波规定IEC61000-3-2。

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