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Hybrid Seven-Level Converter Based on T-Type Converter and H-Bridge Cascaded Under SPWM and SVM

机译:在SPWM和SVM下级联的基于T型转换器和H桥的混合七电平转换器

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This paper presents a hybrid seven-level converter based on T-type converter and H-bridge cascaded suitable for low-voltage and high-power-density applications. The operation principles and conduction paths are analyzed comprehensively. Voltage balance control of the floating capacitors is the key point of this paper. Mathematical expressions of capacitor voltage balance conditions are deduced based on sinusoidal pulse width modulation (SPWM). The results show that floating capacitor voltages are only balanced when the modulation index is below 0.82 under SPWM. In order to enlarge the modulation index ensuring the capacitor voltage balance, space vector modulation (SVM) is also applied to regulate floating capacitor voltages taking advantage of redundant switching vectors. Meanwhile, in SVM, there are no additional control requirements for the capacitor voltage. Taken both SPWM and SVM into consideration, the limit to the range of operation for this seven-level converter is presented, which is a function of the modulation index and the power factor. The merit of dc voltage utilization improvement in this topology is also analyzed based on simulation results. Simulations and experimental results under different modulation index and RL load are presented to verify the modulation strategies illustrated in this paper.
机译:本文提出了一种基于T型转换器和H桥级联的混合式七电平转换器,适用于低压和高功率密度应用。全面分析了工作原理和传导路径。浮动电容器的电压平衡控制是本文的重点。基于正弦脉冲宽度调制(SPWM)推导电容器电压平衡条件的数学表达式。结果表明,只有在SPWM下调制指数低于0.82时,浮动电容器电压才平衡。为了扩大调制指数以确保电容器电压平衡,还利用空间矢量调制(SVM)来利用冗余开关矢量来调节浮动电容器电压。同时,在SVM中,电容器电压没有其他控制要求。考虑到SPWM和SVM,提出了该七电平转换器的工作范围限制,它是调制指数和功率因数的函数。根据仿真结果,还分析了这种拓扑结构中直流电压利用率提高的优点。给出了在不同调制指数和RL负载下的仿真和实验结果,以验证本文阐述的调制策略。

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