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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Active power decoupling with reduced converter stress for single-phase power conversion and interfacing
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Active power decoupling with reduced converter stress for single-phase power conversion and interfacing

机译:具有降低转换器应力的主动功率去耦,用于单相电源转换和接口

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Single-phase DC-AC power electronic converters suffer from pulsating power at double the line frequency. The commonest practice to handle the issue is to provide a huge electrolytic capacitor for smoothening out the ripple. However, the electrolytic capacitors having short end of lifetime limit the overall lifetime of the converter. Another way of handling the ripple power is by active power decoupling (APD) using the storage devices and a set of semiconductor switches. Here, a novel topology has been proposed in implementing APD. The topology claims the benefit of (1) reduced stress on converter switches and (2) using smaller capacitance value, thus alleviating the use of electrolytic capacitor and in turn improving the lifetime of the converter. The circuit consists of a third leg, a storage capacitor and a storage inductor. The analysis and the simulation results are shown to prove the effectiveness of the topology.
机译:单相DC-AC电力电子转换器在线频率的加倍遭受脉动功率。 处理问题的最常用的做法是提供一种巨大的电解电容,用于平滑纹波。 然而,具有短端的电解电容器限制转换器的总寿命。 使用存储设备和一组半导体开关来实现纹波功率的另一种处理方式是通过有源电力去耦(APD)。 这里,在实施APD时已经提出了一种新颖的拓扑。 拓扑声称(1)使用较小电容值的(1)对转换器开关的应力降低的益处,从而减轻了电解电容器的使用,然后改善了转换器的寿命。 电路由第三腿,存储电容器和存储电感器组成。 分析和仿真结果显示证明拓扑的有效性。

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