$n$ -level three-leg semiconductor-clamped dc–ac converters in t'/> Overmodulation of <formula formulatype='inline'><tex Notation='TeX'>$n$</tex></formula>-Level Three-Leg DC–AC Diode-Clamped Converters With Comprehensive Capacitor Voltage Balance
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Overmodulation of $n$-Level Three-Leg DC–AC Diode-Clamped Converters With Comprehensive Capacitor Voltage Balance

机译:具有完全电容器电压平衡的 $ n $ 级三腿DC-AC二极管钳位转换器的过调制

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摘要

This paper presents a novel pulsewidth modulation (PWM) strategy for $n$ -level three-leg semiconductor-clamped dc–ac converters in the overmodulation region, with dc-link capacitor voltage balance in every switching cycle. The strategy is based on the virtual-vector concept. Suitable reference vector trajectories are selected to obtain low weighted total harmonic distortion and a simple algorithm. A hexagonal-boundary compression factor is introduced to guarantee, at any operating point, dc-link capacitor voltage regulation capabilities in every switching cycle and avoid narrow gate pulses. The detailed PWM algorithm for an easy implementation in a digital control platform is also presented. The good performance of the strategy is verified through both simulation and experiments in a three-level three-phase neutral-point clamped converter.
机译:本文为 $ n $ 级三脚半导体钳位dc-ac提供了一种新颖的脉宽调制(PWM)策略。处于过调制区域的转换器,在每个开关周期内均具有直流链路电容器电压平衡。该策略基于虚拟矢量概念。选择合适的参考矢量轨迹以获得低加权总谐波失真和简单算法。引入了六边形边界压缩系数,以确保在任何工作点的每个开关周期中的直流母线电容器电压调节能力,并避免窄栅极脉冲。还介绍了用于在数字控制平台中轻松实现的详细PWM算法。通过在三电平三相中性点钳位转换器中的仿真和实验,验证了该策略的良好性能。

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