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Current Self-balance Mechanism in Multiphase Buck Converter

机译:多相降压转换器中的电流自平衡机制

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摘要

Some of the recent applications in the field of the power supplies use multiphase converters to achieve fast dynamic response, smaller input/output filters or better packaging. Typically, these converters have several paralleled power stages with a current loop in each phase and an unique voltage loop. The presence of the current loops is necessary to increase dynamic response (by using current mode control) and to avoid current unbalance among phases. The purpose of this paper is to demonstrate that in CCM, with a proper design, there is an intrinsic mechanism of self-balance that helps a lot in avoiding the current unbalance. Thus, in the buck converter, if natural ZVS is achieved in both transitions, the instantaneous inductor current compensates partially the different dc current through the phases. The need for using n current-loops will be finally determined by the application but not by the converter itself. Using the buck converter as a base, a multiphase converter has been developed. Several tests have been carried out in the lab and the results show clearly that, when the conditions are met, the phase currents are very good balanced even during transient conditions.
机译:电源领域的一些最新应用使用多相转换器来实现快速动态响应,更小的输入/输出滤波器或更好的封装。通常,这些转换器具有几个并联的功率级,在每个相中都有一个电流环路和一个独特的电压环路。电流环路的存在对于提高动态响应(通过使用电流模式控制)和避免各相之间的电流不平衡是必不可少的。本文的目的是证明在CCM中,通过适当的设计,存在着一种内在的自我平衡机制,可以极大地避免电流不平衡。因此,在降压转换器中,如果在两个转换中都实现了自然ZVS,则瞬时电感器电流将部分补偿通过相的不同dc电流。使用n个电流环的需求最终将由应用程序决定,而不是由转换器本身决定。以降压转换器为基础,已经开发了一种多相转换器。在实验室中进行了几次测试,结果清楚地表明,当满足条件时,即使在瞬态条件下,相电流也可以很好地平衡。

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