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Three-Phase Two-Phase-Clamped Boost-Buck Unity Power Factor Rectifier Employing Novel Variable DC Link Voltage Input Current Control

机译:采用新型可变直流母线电压输入电流控制的三相两相钳位升压-降压型单位功率因数整流器

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Battery chargers supplied from the three-phase mains are typically realized as two-stage systems consisting of a three-phase PFC boost-type rectifier with an output DC link capacitor followed by a DC/DC buck converter if boost and buck functionality is required. In this paper, a new modulation scheme for this topology is presented, where always only one out of three rectifier half-bridges is pulse width modulated, while the remaining two phases are clamped and therefore a higher efficiency is achieved. This modulation concept with a minimum number of active half-bridges, denoted as 1/3 rectifier, becomes possible if in contrast to other modulation schemes the intermediate DC link voltage is varied in a six-pulse voltage fashion, while still sinusoidal grid currents in phase with their corresponding phase voltages and a constant battery output voltage are obtained. In this paper, a detailed description of the novel 1/3 rectifier's operating principle and the corresponding control structure are presented and the proper closed loop operation is verified by means of a circuit simulation. Finally, the performance gain of the 1/3 rectifier control scheme compared to conventional modulation schemes is evaluated by means of a virtual prototype system.
机译:由三相主电源提供的电池充电器通常实现为两级系统,该系统由三相PFC升压型整流器和输出DC链路电容器组成,如果需要升压和降压功能,则需要一个DC / DC降压转换器。在本文中,提出了一种针对该拓扑的新调制方案,其中,始终只有三个整流器半桥中的一个被脉宽调制,而其余两个相位被钳位,因此实现了更高的效率。如果与其他调制方案相比,中间直流母线电压以六脉冲电压的方式变化,而仍以正弦波形式的电网电流通过,则这种具有最小活动半桥数量(称为1/3整流器)的调制方案将成为可能。获得具有它们相应的相电压的相位和恒定的电池输出电压。在本文中,对新型1/3整流器的工作原理和相应的控制结构进行了详细说明,并通过电路仿真验证了正确的闭环操作。最后,通过虚拟原型系统评估了与传统调制方案相比的1/3整流器控制方案的性能增益。

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