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On-line efficiency optimization in flyback dc-dc converters over wide ranges of operating conditions

机译:在广泛的工作条件下,反激式dc-dc转换器的在线效率优化

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This paper presents a look-up table based digital control approach to on-line efficiency optimization over wide ranges of operating conditions. The proposed digital controller allows programmable modes of operation based on off-line efficiency characterization and optimization. Applied to a flyback dc-dc converter, the controller adopts valley switching in discontinuous conduction mode (DCM), which significantly reduces the MOSFET turn-on switching loss. Furthermore, solutions to the problem related to undesirable frequency hopping, commonly observed in other valley-switching control schemes, are presented. Dynamic operation of the controller demonstrates smooth mode transitions and consistent transient responses over various operating conditions. Experimental results show that efficiency of a low-cost 65-W flyback prototype exceeds 92% at all operating points over approximately 3:1 range of input voltages and 10:1 range of loads.
机译:本文提出了一种基于查找表的数字控制方法,可以在各种工作条件下进行在线效率优化。所提出的数字控制器允许基于离线效率表征和优化的可编程操作模式。应用于反激式DC-DC转换器时,该控制器采用不连续传导模式(DCM)的谷底开关,可显着降低MOSFET的导通开关损耗。此外,提出了与在其他谷值切换控制方案中通常观察到的与不希望的跳频有关的问题的解决方案。控制器的动态操作演示了各种操作条件下的平稳模式转换和一致的瞬态响应。实验结果表明,在大约3:1的输入电压范围和10:1的负载范围内,低成本65W反激式原型的效率在所有工作点均超过92%。

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