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The zero-voltage-switching parallel-resonant DC link (PRDCL) inverter with minimized conduction loss

机译:零电压开关并联谐振直流母线(PRDCL)逆变器,传导损耗最小

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This work presents a parallel-resonant DC link (PRDCL) circuit for soft switching main power devices with a single auxiliary power device for low conduction loss in single or three-phase inverter and converter applications. The proposed resonant network with one auxiliary power device is activated whenever it is needed to change the status of power devices connected to a DC link. The proposed resonant network is designed to force the DC link voltage to drop to zero before any power devices in the DC link are turned on. The auxiliary switch in the proposed resonant network is also turned on in a zero-voltage-switching (ZVS) condition. Therefore, the switching losses caused in all power devices in a full-bridge converter and resonant circuit can be effectively eliminated. In addition, there is no conduction loss in the auxiliary power device because the resonant circuit is not activated if there is no status change in the power devices connected in the DC link. Furthermore, the resonant swing voltage in the DC link is well restricted within a predefined voltage level so that the required voltage rating of all power devices in the DC link is nicely constrained. The detailed modes of operation and experimental results are provided to verify the operation.
机译:这项工作提出了一种并联谐振直流链路(PRDCL)电路,用于软开关主功率设备和单个辅助功率设备,以降低单相或三相逆变器和转换器应用中的传导损耗。每当需要改变连接到直流母线的功率设备的状态时,所提议的带有一个辅助功率设备的谐振网络就会被激活。提出的谐振网络旨在在直流母线中的任何功率设备开启之前,将直流母线电压降至零。所提出的谐振网络中的辅助开关也会在零电压开关(ZVS)条件下导通。因此,可以有效地消除在全桥转换器和谐振电路中的所有功率器件中引起的开关损耗。另外,在辅助功率设备中没有传导损耗,因为如果在直流母线中连接的功率设备中没有状态变化,则谐振电路不会激活。此外,DC链路中的谐振摆幅电压被很好地限制在预定义的电压水平内,从而很好地限制了DC链路中所有功率设备的所需额定电压。提供了详细的操作模式和实验结果以验证操作。

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