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Advanced Digital Controller for Improving Input Current Quality of Integrated Active Virtual Ground-Bridgeless PFC

机译:先进的数字控制器,用于改善集成式有源虚拟无桥PFC的输入电流质量

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摘要

This paper presents a new digital control scheme for active virtual ground-bridgeless PFC (AVG-BPFC), which is able to obtain an optimized solution between the system efficiency and electromagnetic interference performance in the PFC stage. However, a resonant characteristic is generated from the input LCL filter structure of the converter. In addition, there is a phase difference between two inductor currents which also leads the controller design in the AVG-BPFC to become challenging, especially on the system stability and current quality. Thus, a triple loop control's architecture together with an integrated state machine is proposed as the control methodology of the AVG-BPFC. Under the simple control structure in the digital platform, a stable system is achieved together with a precise grid current tracking function. Such control scheme was implemented digitally on a 1.5 kW prototype. In this paper, theoretical models of the whole system were analyzed and the system performance was successfully verified in both steady state and transient state conditions. The experimental results show a good agreement with the theoretical knowledge.
机译:本文提出了一种新的有源虚拟无桥无源PFC(AVG-BPFC)数字控制方案,该方案能够在PFC阶段获得系统效率和电磁干扰性能之间的优化解决方案。然而,从转换器的输入LCL滤波器结构产生谐振特性。此外,两个电感器电流之间存在相位差,这也导致AVG-BPFC中的控制器设计变得具有挑战性,尤其是在系统稳定性和电流质量方面。因此,提出了三重回路控制的体系结构以及集成状态机作为AVG-BPFC的控制方法。在数字平台的简单控制结构下,可以实现稳定的系统以及精确的电网电流跟踪功能。这种控制方案在1.5 kW的原型机上以数字方式实现。本文分析了整个系统的理论模型,并在稳态和瞬态条件下成功验证了系统性能。实验结果与理论知识吻合良好。

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