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Single-stage input current shaping technique with voltage-doubler rectifier front-end

机译:具有倍压整流器前端的单级输入电流整形技术

摘要

A single-stage input-current-shaping (S.sup.2 ICS) converter of the present invention integrates a voltage-doubler-rectifier front-end with a DC/DC output stage. Two families of voltage-doubler S.sup.2 ICS converters are disclosed. In one family, a 2-terminal dither source is provided between a boost inductor and a common input terminal of a storage capacitor and the DC/DC output stage. The 2-terminal dither source includes two paths connected in parallel: a first path for charging and a second path for discharging the boost inductor at a high frequency (HF). In the other family, a 3-terminal dither source includes a third terminal coupled to a pulsating node of the DC/DC output stage. In the 3-terminal dither source, the HF charging path of the boost inductor is coupled between the boost inductor and the pulsating node of the DC/DC output stage, while the HF discharging path of the boost inductor is coupled between the boost inductor and the common input terminal of the storage capacitor and the DC/DC output stage. Due to the voltage-doubler-rectifier front-end, reduction of line-current harmonics can be achieved with a higher conversion efficiency, as compared to a corresponding S.sup.2 ICS converter with a conventional full-bridge rectifier. In addition, a converter of the present invention requires storage capacitors of a lower voltage rating and a smaller total capacitance than the conventional S.sup.2 ICS counterpart. The present invention thereby reduces the size and the cost of the power supply.
机译:本发明的单级输入电流整形(S.sup.2 ICS)转换器将倍压整流器前端与DC / DC输出级集成在一起。公开了两个系列的倍压器S.sup.2 ICS转换器。在一个系列中,在升压电感器和存储电容器的公共输入端子与DC / DC输出级之间提供2端子抖动源。 2端子抖动源包括两个并联连接的路径:用于充电的第一路径和用于以高频(HF)放电升压电感器的第二路径。在另一个系列中,三端抖动源包括一个第三端,该第三端耦合到DC / DC输出级的脉动节点。在3端抖动源中,升压电感器的HF充电路径耦合在升压电感器和DC / DC输出级的脉动节点之间,而升压电感器的HF放电路径耦合在升压电感器和DC / DC输出级之间。存储电容器的公共输入端子和DC / DC输出级。由于具有倍压整流器前端,与具有常规全桥整流器的相应S.sup.2 ICS转换器相比,可以以更高的转换效率实现线电流谐波的减少。另外,本发明的转换器需要比常规的S.sup.2 ICS对应物更低的额定电压和更小的总电容的存储电容器。因此,本发明减小了电源的尺寸和成本。

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