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An Improved Phase-Shifted Carrier Pulse Width Modulation Based on the Artificial Bee Colony Algorithm for Cascaded H-Bridge Multilevel Inverters

机译:级联H桥多电平逆变器的基于人工蜂群算法的改进相移载波脉宽调制

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摘要

Cascaded H-bridge multilevel (CHBML) inverters usually include a large number of isolated dc-voltage sources. Some faults in the dc-voltage sources result in unequal cell dc voltages. Unfortunately, the conventional phase-shifted carrier (PSC) PWM method that is widely used for CHBML inverters cannot eliminate low frequency sideband harmonics when the cell dc voltages are not equal. This paper analyzes the principle of sideband harmonic elimination, and proposes an improved PSCPWM that can eliminate low frequency sideband harmonics under the condition of unequal dc voltages. In order to calculate the carrier phases, it is necessary to solve transcendental equations for low frequency sideband harmonic elimination. Therefore, an approach based on the artificial bee colony (ABC) algorithm is presented in this paper. The proposed PSCPWM method enhances the reliability of CHBML inverters. The proposed PSCPWM is not limited to CHBML inverters. It can also be applied to other types of multilevel inverters. Simulation and experimental result obtained from a prototype CHBML inverter verify the theoretical analysis and the achievements made in this paper.
机译:级联H桥多电平(CHBML)逆变器通常包括大量隔离的dc电压源。直流电压源中的某些故障会导致电池直流电压不相等。不幸的是,当电池直流电压不相等时,广泛用于CHBML逆变器的传统相移载波(PSC)PWM方法无法消除低频边带谐波。本文分析了边带谐波消除的原理,并提出了一种改进的PSCPWM,它可以在不相等的直流电压条件下消除低频边带谐波。为了计算载波相位,有必要求解用于消除低频边带谐波的超越方程。因此,本文提出了一种基于人工蜂群算法的方法。提出的PSCPWM方法提高了CHBML逆变器的可靠性。提出的PSCPWM不限于CHBML逆变器。它也可以应用于其他类型的多电平逆变器。从原型CHBML逆变器获得的仿真和实验结果验证了理论分析和本文所取得的成就。

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