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Carrier-based PWM control strategy for

机译:基于载波的PWM控制策略

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In the Z-source two-stage matrix converter (ZSTSMC), the unique shoot-through state of the Z-source network can increase the voltage transfer ratio. Its maximum value can reach 4.33. In order to solve the complexity of space vector pulse width modulation (SVPWM) for ZSTSMC, a carrier-based PWM (CBPWM) control strategy is proposed. The duty ratios of the rectifier stage and inverter stage are calculated by the SVPWM method. A carrier is constructed and combined with duty ratios to produce regular modulation waves of rectifier stage and inverter stage. Then, the inserted mode of the shoot-through state is optimised by analysing. The position of its insertion is adjusted so that the expressions of the shoot-through modulation wave is simple and regular. And the number of modulation waves is reduced from 5 to 4. Next, the modulation waves are compared with a carrier to obtain pulse signals which are used to produce driving signals through logic operation. The ZSTSMC is controlled by this strategy to obtain three-phase symmetrical sinusoidal input and output waveforms. The proposed method is identical in output to the SVPWM method. Finally, the experimental results are provided to verify the feasibility and validity of the proposed method.
机译:在Z源两级矩阵转换器(ZSTSMC)中,Z源网络的独特直通状态可以提高电压传输比。其最大值可以达到4.33。为了解决ZSTSMC的空间矢量脉宽调制(SVPWM)的复杂性,提出了一种基于载波的PWM(CBPWM)控制策略。整流器级和逆变器级的占空比通过SVPWM方法计算。构造一个载波并将其与占空比组合以产生整流器级和逆变器级的规则调制波。然后,通过分析来优化直通状态的插入模式。调整其插入位置,以使直通调制波的表达简单而规则。并且调制波的数量从5减少到4。接下来,将调制波与载波进行比较,以获得用于通过逻辑运算产生驱动信号的脉冲信号。通过此策略控制ZSTSMC,以获得三相对称正弦输入和输出波形。所提出的方法在输出方面与SVPWM方法相同。最后,通过实验结果验证了该方法的可行性和有效性。

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