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Active Power Decoupling Method for Single-Phase Current-Source Rectifier With No Additional Active Switches

机译:无附加有源开关的单相电流源整流器的有功功率去耦方法

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摘要

This paper proposes an active power decoupling method without adding additional active switches for single-phase current source rectifiers. Two identical decoupling capacitors connected across the two bridge arms operate alternatively to buffer the ripple power at twice the line frequency. First the operational principle of the proposed circuit is presented. Thereafter, a hybrid modulation method, in which input current synthesis and ripple power buffering can be carried out simultaneously, is developed. Moreover, a new effective closed-control strategy is presented, in which the decoupling control is responsive for regulating dc-link current and the rectification control is in charge of power factor correction as well as maintaining the dc component of the decoupling capacitor voltages at a given level. Consequently, complete ripple power decoupling is achieved and sine input current is obtained. Finally, the theoretical analysis is favorably verified by the simulations and experimental results.
机译:本文提出了一种有功功率去耦方法,而无需为单相电流源整流器增加额外的有源开关。连接在两个桥臂上的两个相同的去耦电容器交替工作,以两倍于线路频率的速度缓冲纹波功率。首先介绍了所建议电路的工作原理。此后,开发了一种混合调制方法,其中可以同时执行输入电流合成和纹波功率缓冲。此外,提出了一种新的有效的闭环控制策略,其中,去耦控制用于调节直流母线电流,整流控制负责功率因数校正,并将去耦电容器电压的直流分量保持在一个交流电。给定的水平。因此,可以实现完全的纹波功率去耦,并获得正弦输入电流。最后,通过仿真和实验结果验证了理论分析的正确性。

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