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A PWM Strategy Based on State Transition for Cascaded H-Bridge Inverter Under Unbalanced DC Sources

机译:基于USCADED H桥逆变器在不平衡DC源下的PWM策略

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摘要

A cascaded H-bridge (CHB) converter has been widely used and researched in industry since it is suitable for the operation under both normal and fault conditions. This paper proposes a novel pulsewidth modulation strategy based on state transition for CHB inverter with unbalanced dc sources to achieve high-quality line-to-line output voltages and maximize the linear modulation range. In this modulation strategy, the duration time of each switching state will be modified directly through the correction value. Ranges of correction value are derived by analyzing the modulation index limitation. Then, a proper correction value is added into duration times to transform the switching states and extend modulation index to the maximum value. Meanwhile, balanced ac currents can be obtained under unbalanced dc sources condition, even under larger unbalanced coefficients. Furthermore, a three-phase power control algorithm is introduced to achieve the balanced distribution of three-phase power. Compared with the traditional zero-sequence voltage injection method, the proposed strategy is more convenient and effective theoretically, and it can be applied to the higher level CHB converter. The advantage and effectiveness of the proposed strategy are verified by simulation and experimental results.
机译:级联H桥(CHB)转换器已被广泛使用和研入工业,因为它适用于正常和故障条件下的操作。本文提出了一种基于CHB逆变器具有不平衡DC源的CHB逆变器的新型脉冲宽调制策略,以实现高质量的线路输出电压并最大化线性调制范围。在该调制策略中,每个开关状态的持续时间将直接通过校正值进行修改。通过分析调制索引限制来导出校正值范围。然后,将适当的校正值添加到持续时间次数以转换切换状态并将调制索引扩展到最大值。同时,即使在较大的不平衡系数下,也可以在不平衡的DC源条件下获得平衡的交流电流。此外,引入了一种三相功率控制算法以实现三相功率的平衡分布。与传统的零序电压注入方法相比,理论上,所提出的策略更方便,有效,它可以应用于更高级别的CHB转换器。通过模拟和实验结果验证了所提出的策略的优势和有效性。

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