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A Minimum Switch Five-Level Unidirectional Rectifier Without Any Voltage Balancing and Pre-Charging Circuitry

机译:最小开关五级单向整流器,无需任何电压平衡和预充电电路

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This paper proposes a three-phase, five-level, non-regenerative pulsewidth modulated rectifier using only two active switches (minimum required) per phase, which drastically reduces gate driver requirement and hardware complexity. It draws sinusoidal input current at close to unity power factor. All the semiconductor devices are rated at only one fourth of the dc-link voltage, and none of them requires any transient voltage balancing snubber. A total of 8 out of the 14 diodes per phase undergo soft switching transition under all operating conditions, which increases its efficiency. No extra hardware circuitry for balancing the flying capacitors (FCs) or the dc-link mid-point voltage are required, which further reduces hardware complexity and increases the conversion efficiency. The proposed topology does not need any sophisticated startup procedure for charging the FCs either, which solves the problem of semiconductor overvoltage during starting. A 3-kW laboratory prototype is built to experimentally verify the proposed topology. The maximum efficiency obtained from the prototype is 98.7%, and it is always more than 96% for the load range from 15% to its rated.
机译:本文采用三相,五级非再生脉冲宽度调制整流器,仅使用每个阶段的两个有源开关(最小所需),这大大降低了栅极驱动器要求和硬件复杂性。它在接近unity功率因数附近绘制正弦输入电流。所有半导体器件只均以仅在DC-Link电压中的四分之一额定值,并且它们都不需要任何瞬态电压平衡缓冲器。在所有运行条件下,每相的14个二极管中总共8个在柔软的切换过渡,这增加了其效率。不需要额外的硬件电路,用于平衡飞行电容器(FCS)或直流链路中点电压,这进一步降低了硬件复杂性并提高了转换效率。所提出的拓扑不需要任何用于对FCS充电的复杂启动过程,它解决了开始期间半导体过电压的问题。建立了3千瓦实验室原型,以实验验证所提出的拓扑。从原型获得的最大效率为98.7%,而且载荷范围始终超过96%到其额定值。

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