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Improved Pulse-Width Modulation Strategies for Diode-Assisted Buck–Boost Voltage Source Inverter

机译:二极管辅助降压-升压电压源逆变器的改进的脉冲宽度调制策略

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摘要

The recently proposed diode-assisted buck–boost voltage source inverter (VSI) enhances the voltage boost capability greatly without extreme large boost duty ratio, which is more suitable for wide range voltage regulation in dc/ac power conversion. This paper mainly explores pulse-width modulation (PWM) strategies for diode-assisted buck–boost VSI and their relationship of voltage gain versus voltage boost duty ratio. In view of variable intermediate dc-link voltage, two kinds of improved PWM strategies with high dc-link voltage utilization are presented to obtain the maximum linear voltage gain in theory, as well as to minimize the voltage stress of switching devices. The operation principle, and the relationship of voltage gain versus voltage boost duty ratio and switching device voltage stress versus voltage gain are analyzed in detail. The related simulation and experiments are implemented to verify the theoretical analysis. Compared with existing counterparts, diode-assisted buck–boost VSI with improved PWM strategies demonstrates good performances: less switching device requirement and higher efficiency at high voltage gain. Owing to improved performance, diode-assisted buck–boost VSI is more promising and competitive topology for wide range dc/ac power conversion in a renewable energy application. Furthermore, the idea of improved modulation strategies can also be extended to the control of diode-assisted buck–boost current source inverter.
机译:最近提出的二极管辅助降压-升压电压源逆变器(VSI)极大地增强了升压能力,而没有非常大的升压占空比,这更适合于DC / AC电源转换中的宽范围电压调节。本文主要探讨二极管辅助降压-升压VSI的脉冲宽度调制(PWM)策略及其电压增益与升压占空比的关系。针对可变的中间直流环节电压,提出了两种提高直流环节电压利用率的改进PWM策略,以在理论上获得最大的线性电压增益,并最大程度地降低开关器件的电压应力。详细分析了工作原理,以及电压增益与升压占空比和开关器件电压应力与电压增益之间的关系。进行了相关的仿真和实验以验证理论分析。与现有同类产品相比,具有改进的PWM策略的二极管辅助降压-升压VSI具有良好的性能:对开关器件的需求减少,在高电压增益下效率更高。由于性能的提高,二极管辅助的降压-升压VSI在可再生能源应用中对于大范围的DC / AC电源转换来说是更有希望的竞争拓扑。此外,改进调制策略的思想也可以扩展到二极管辅助降压-升压电流源逆变器的控制。

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