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Soft-switching three-phase PWM Inverter Architecture utilizing Coupling Switches between Input and Output Stage

机译:使用输入和输出级之间的耦合开关软切换三相PWM逆变器架构

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Power converters for renewable energy systems are expected to have a high lifetime, low costs and a very high efficiency over a wide input power and voltage range (e.g. for photovoltaic and fuel cells). Although very high efficiencies can be achieved with hard-switched power converters operating with state of the art semiconductors, hard-switching results in several disadvantages such as conducted emissions. In addition, the switching frequency is limited to maintain a high efficiency, although a low switching frequency results in a higher required energy storage. In this paper, a three-phase PWM inverter architecture for photovoltaic or fuel cell inverter is presented, which has a wide input voltage range and achieves Zero Voltage Switching (ZVS) for all inverter switches at all operation points. This has been obtained by introducing coupling switches between input and output stage, which also reduce conduction losses. It is shown that, auxiliary passive components are not required.
机译:可再生能源系统的功率转换器预计将在宽的输入功率和电压范围内具有高寿命,低成本和非常高的效率(例如,用于光伏和燃料电池)。尽管通过用艺术半导体的状态运行的硬开关功率转换器可以实现非常高的效率,但是硬切换导致诸如进行排放的若干缺点。另外,开关频率限于保持高效率,尽管低开关频率导致更高的所需能量存储器。本文介绍了一种用于光伏或燃料电池逆变器的三相PWM逆变器架构,其具有宽的输入电压范围,并为所有操作点处的所有逆变器开关实现零电压切换(ZVS)。这是通过在输入和输出级之间引入耦合开关而获得的,这也降低了导通损耗。结果表明,不需要辅助无源部件。

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