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Phase-Shifted Carrier-Based Synchronized Sinusoidal PWM Techniques for a Cascaded H-Bridge Multilevel Inverter

机译:级联H桥多电平逆变器的基于相移载波的同步正弦PWM技术

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This paper analyzes synchronization strategy for cascaded H-bridge multilevel inverter (CHBMLI) topologies with a carrier-based sinusoidal phase-shifted pulse width modulation (PSPWM) technique. In the PSPWM technique, a separate carrier is used for each H-bridge (HB). The carriers are generally phase shifted from each other by π /x rad (x = No. of HBs) for unipolar PWM. With the carrier frequency being an integer (odd/even) multiple of the fundamental frequency, it is observed that the positions of zero crossings of the carriers with respect to the zero crossings of voltage references play an important role for maintaining quarter-wave symmetry among multilevel inverter pole voltage waveforms. This paper analytically shows the conditions for half-wave symmetry and quarter-wave symmetry and experimentally verifies those conditions for the PSPWM technique with a five-level CHBMLI laboratory prototype.
机译:本文利用基于载波的正弦相移脉宽调制(PSPWM)技术分析了级联H桥多电平逆变器(CHBMLI)拓扑的同步策略。在PSPWM技术中,每个H桥(HB)使用单独的载波。对于单极性PWM,载波通常彼此相移π/ x rad(x = HBs数)。载波频率是基本频率的整数倍(奇数/偶数),可以观察到,载波零交叉点相对于参考电压零交叉点的位置在维持四分之一波对称性方面起着重要作用。多电平逆变器极电压波形。本文分析性地显示了半波对称性和四分之一波对称性的条件,并通过五级CHBMLI实验室原型通过实验验证了PSPWM技术的条件。

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