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A novel single stage high step Up AC-DC converter with switched capacitor technique

机译:具有开关电容技术的新型单级高升压AC-DC转换器

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A novel single stage high step up full bridge AC-DC converter, based on the concept of switched capacitor topology existing in high step up DC-DC converter, is proposed in this work. In switched capacitor technique, capacitors on secondary side are charged in parallel during the switch-off period, by the energy stored in the coupled inductor, and are discharged in series during the switch-on period to achieve a high step-up voltage gain. The switched capacitor technique meant for high voltage gain is discussed in many conventional DC-DC converters. The proposed AC-DC full bridge converter converts the input AC voltage into DC and boost with a high voltage gain in a single stage. For high voltage gain AC-DC converters many techniques are proposed in literature. In this work, switched capacitor technique is used in AC-DC converter is a novel method for attaining high voltage gain. Open loop control of the proposed converter is done by using PWM control. The closed-loop control methodology is utilized in the proposed scheme to overcome the voltage-drift problem of power source under the variation of loads. The operating principle, steady state analysis and design of proposed single stage high step up AC-DC converter is carried out. Simulation results, using MATLAB, are carried out for proposed AC-DC converter for validation.
机译:在这项工作中提出了一种新颖的单级高压全桥AC-DC转换器,基于高步骤直流转换器中存在的开关电容拓扑概念。在开关电容技术中,通过存储在耦合电感器中的能量在接开时段期间,次级侧的电容器在接开时段中并联充电,并且在接通时段期间串联放电以实现高升压电压增益。在许多传统的DC-DC转换器中讨论了用于高压增益的开关电容技术。所提出的AC-DC全桥转换器将输入交流电压转换为DC,并在单个级中具有高电压增益。对于高压增益,在文献中提出了许多技术的功率。在这项工作中,交换电容技术用于AC-DC转换器是一种用于获得高压增益的新方法。通过使用PWM控制完成所提出的转换器的开环控制。在所提出的方案中利用闭环控制方法来克服负载变化下电源的电压漂移问题。建议单级高步骤上升AC-DC转换器的操作原理,稳态分析和设计。采用MATLAB的仿真结果是为提出的AC-DC转换器进行验证。

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