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Current-sensorless control of an SPWM H-Bridge-based PFC rectifier designed considering voltage sag condition

机译:考虑电压跌落条件设计的基于SPWM H桥的PFC整流器的无电流传感器控制

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This paper presents and details the H-Bridge PFC rectifier control scheme. This control is a step forward in sensorless current control schemes for performance improvements of single-phase bidirectional rectifiers. The H-Bridge PFC rectifier is designed based on a single PI controller loop fed by DC reference signals. Regarding dynamic operating conditions, the proposed control can maintain a regulated DC voltage under varying conditions at input (voltage sags) and output (load step changes) ports while maintaining an unitary power factor (PF) and constant THD current input at any of these conditions. Different to other investigations, this control proposal uses SPWM, does not require a variable transformation into the dq0 reference frame, and the complex compensators accompanying to the PI controller stage are no longer needed. Therefore, this proposal is aimed to reduce the complexity of the control scheme and to improve the overall dynamic response of the PFC rectifier. The experimental results obtained from the scaled-down prototype setup, which was built for research purposes, validate the control law, mathematical model and quantitative comparison between simulation and experiment, both considering the parasitic resistances of the inductor and semiconductor switches. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文介绍并详细介绍了H桥PFC整流器控制方案。这种控制是无传感器电流控制方案中的一项进步,旨在提高单相双向整流器的性能。 H桥PFC整流器基于直流参考信号馈入的单个PI控制器环路而设计。关于动态工作条件,建议的控制可以在输入(电压骤降)和输出(负载阶跃变化)端口的变化条件下维持稳定的直流电压,同时在任何这些条件下保持单位功率因数(PF)和恒定THD电流输入。与其他研究不同,此控制建议使用SPWM,不需要将变量转换为dq0参考框架,并且不再需要PI控制器级随附的复杂补偿器。因此,该建议旨在降低控制方案的复杂性并改善PFC整流器的整体动态响应。从缩小的原型设置中获得的实验结果是为研究目的而构建的,在考虑了电感器和半导体开关的寄生电阻的情况下,验证了控制规律,数学模型以及仿真和实验之间的定量比较。 (C)2015 Elsevier B.V.保留所有权利。

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