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Current-Ripple Prediction for Three-Phase PWM Converters

机译:三相PWM转换器的电流纹波预测

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The three-phase pulsewidth-modulation (PWM) converter is one of the most widely used topologies for power conversion. In order to design PWM methods, the influence of PWM methods on the current ripple is needed. This paper studies the current ripple of a three-phase PWM converter with general PWM methods for the design and control of this kind of converter. The current ripple is analyzed with eight different Thevenin equivalent circuits for the eight different voltage vectors. Then, the current-ripple slope and effective time could be achieved for every period. The current ripple could be predicted with both peak and rms values. Analytical predicted results show that discontinuous PWM could generate obviously bigger current ripples than space vector PMW for both peak and rms values with the same conditions. Simulation and experiments are built to verify the analytical results, proving that the theoretical prediction is valid. This analysis provides the basis for the design and control of the PWM method for converters.
机译:三相脉冲宽度调制(PWM)转换器是功率转换中使用最广泛的拓扑之一。为了设计PWM方法,需要PWM方法对电流纹波的影响。本文采用通用PWM方法研究了三相PWM转换器的电流纹波,以设计和控制此类转换器。针对八个不同的电压矢量,使用八个不同的戴维宁等效电路分析了电流纹波。然后,可以在每个周期获得电流纹波斜率和有效时间。可以使用峰值和均方根值预测电流纹波。分析预测结果表明,对于相同条件下的峰值和均方根值,不连续PWM产生的电流纹波明显大于空间矢量PMW。通过仿真和实验验证了分析结果,证明了理论预测是正确的。该分析为转换器的PWM方法的设计和控制提供了基础。

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