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Comprehensive analysis of power loss in the output diode of flyback switching converter operating in DCM and CCM

机译:在DCM和CCM中运行的反激式转换器输出二极管输出二极管综合分析

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This paper analyzes the maximal power loss in the output diode of flyback switching converter operating in both continuous conducting mode (CCM) and discontinuous conducting mode (DCM). Comparing with the previous work, this paper extends the condition, under which the maximal power loss of the output diode occurs, from the CCM to the DCM. Three correlative tasks are included. Firstly, through an analytical analysis, the condition under which the maximal power is consumed by the output diode is obtained. Secondly, to verify the analytical analysis and acquire more accurate results, based on nonlinear finite element analysis, a detailed field-circuit indirect coupling model of flyback switching AC to DC converter is built, where several nonlinear factors such as the saturation of magnetic ferrite core, control delay and switching characteristic are included. Finally, the above analysis results are applied to control the maximal power loss in the output diode of flyback switching AC-DC converter to be an approximate minimum; this would improve the converter reliability and power efficiency.
机译:本文分析在连续导通模式(CCM)和不连续导通模式(DCM)中的回扫转换器的开关操作的输出二极管的最大功率损耗。与以前的工作相比,该纸延伸的状态下,在其下输出二极管的最大功率损失发生时,从CCM到DCM中。三个相关的任务也包括在内。首先,通过一个分析分析时,获得在其下的最大功率是由输出二极管所消耗的条件。其次,为了验证该分析的分析和获取更准确的结果,基于非线性有限元分析,反激式开关AC-DC转换器的详细的场路间接耦合模型建立,其中几个非线性因素,诸如磁性铁氧体磁芯的饱和,控制延迟和开关特性都包括在内。最后,上面的分析结果被施加到控制反激式开关AC-DC转换器是一个大致的最小的输出二极管的最大的功率损耗;这将提高转换器可靠性和功率效率。

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