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A new cascaded asymmetrical multilevel inverter based on switched dc voltage sources

机译:一种基于开关直流电压源的新型级联不对称多级逆变器

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摘要

Multilevel inverters are now becoming an important element for medium-voltage high-power applications. A low switch count multilevel inverters are currently attracting more attention due to its high efficiency, low cost, and easy control. This paper proposes a new single-phase cascade asymmetrical multilevel inverter topology based on switched dc voltage sources which is capable of achieving a higher number of output levels using fewer number of switches, driver circuits, and dc voltage sources. Other advantages include the inherent generation of negative voltage levels and lower voltage stress across the switches. Three different approaches in selecting the magnitude of the sources for the cascade connection has been included to produce a higher number of voltage levels. Furthermore, the power loss and fault-tolerant analysis of the proposed basic module has also been discussed. To set the benchmark of the proposed multilevel inverter structure, a comparison with several recently proposed topologies is carried out. The comparison has been carried out for the basic module, generalized structure, and cascade connection. The proposed topology gave improved parameters for all three categories. Fundamental switching frequency modulation technique is used to achieve high-quality output voltage waveforms with lower harmonic contents and reduced switching losses. Finally, the operation and performance of the proposed basic module and its cascade connection for two modules are presented together with experimental results in several steady-state and dynamic operating conditions.
机译:多级逆变器现在正在成为中电压大功率应用的重要元素。低开关数多级逆变器目前由于其高效率,低成本和控制而受到更多的关注。本文提出了一种基于开关DC电压源的新的单相级联不对称多级逆变器拓扑,其能够使用较少数量的开关,驱动电路和直流电压源实现较高数量的输出电平。其他优点包括在开关上的固有产生负电压电平和较低的电压应力。已经包括三种不同的方法来选择级联连接的源极幅度以产生更高数量的电压电平。此外,还讨论了所提出的基本模块的功率损耗和容错分析。为了设定所提出的多级逆变器结构的基准,执行与最近提出的拓扑的比较。已经为基本模块,广义结构和级联连接进行了比较。所提出的拓扑为所有三个类别提供了改进的参数。基本开关频率调制技术用于实现具有较低谐波内容和降低开关损耗的高质量输出电压波形。最后,建议的基本模块及其级联连接的操作和性能与两个模块一起呈现在几个稳态和动态操作条件下的实验结果。

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