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An improved predictive control for three-phase PWM AC/DC converter with low sampling frequency

机译:具有低采样频率的三相PWM AC / DC转换器的改进预测控制

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In this paper an improved predictive current-controlled three-phase PWM AC/DC converter is described. An analysis is given to explain the phase shift caused by the predictive current control for PWM AC/DC converter which, at low sampling frequency, results in a failure of the converter for power factor control. A compensation circuit is then applied to correct the phase shift to ensure the predictive control with high power factor. The space vector PWM strategy is employed to obtain small current and DC voltage ripples as well as high performance. Moreover, an investigation result shows the possibility to apply small filter capacitance in DC link of the designed PWM converter. The simulation results verify a satisfactory performance of the system with nearly unity power factor both in rectifying and regenerating operations at low sampling frequency, small current ripple and fast dynamic responses in the condition of comparatively small DC link capacitance.
机译:本文描述了一种改进的预测电流控制的三相PWM AC / DC转换器。给出了分析来解释由PWM AC / DC转换器的预测电流控制引起的相移,其在低采样频率下导致转换器的功率因数控制失败。然后应用补偿电路以校正相移,以确保具有高功率因数的预测控制。空间矢量PWM策略用于获得小电流和直流电压纹波以及高性能。此外,调查结果表明,在设计的PWM转换器的DC链路中应用小滤波器电容的可能性。仿真结果验证了系统的令人满意的性能,具有在低采样频率下整流和再生操作中的近乎统一的功率因数,在比较小的DC链路电容的条件下的小电流纹波和快速动态响应。

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