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首页> 外文期刊>Mathematical Problems in Engineering >Comment on 'Storage and Dissipation Limits in Resonant Switched-Capacitor Converters'
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Comment on 'Storage and Dissipation Limits in Resonant Switched-Capacitor Converters'

机译:评论“谐振开关电容转换器中的存储和耗散限制”

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摘要

The purpose of this manuscript is twofold, first we introduce an energy-based modeling framework for the analysis of resonant switched-capacitor (SC) converters and second we demonstrate that energy storage and dissipation in resonant SC with ideal switches are bounded by a fundamental physical limit that, up until now, has been only associated with the special case of pure SC topologies. For instance, we show that the maximum energy stored in the small size inductors in resonant SC converters is equal to the energy that would be dissipated by their purely SC counterpart. The presented analysis permits the computation of resonant inductances in terms of maximum current peak values, which is experimentally validated. Furthermore, we introduce a relative loss factor that permits determining the efficiency of a design for a general case in the presence of parasitic resistances. These results corroborate that migrating to resonant SC technologies is one of the most compelling alternatives to overcome well-known disadvantages in pure SC topologies.
机译:该手稿的目的是双重的,首先,我们介绍了一个基于能量的建模框架来分析谐振开关电容器(SC)转换器,其次,我们证明了具有理想开关的谐振SC中的能量存储和耗散受基本物理约束的限制。限制到现在为止,仅与纯SC拓扑的特殊情况相关。例如,我们表明,谐振SC转换器中存储在小尺寸电感中的最大能量等于纯SC对应的能量所消耗的能量。提出的分析允许根据最大电流峰值计算谐振电感,这已通过实验验证。此外,我们引入了一个相对损耗因子,该损耗因子允许在存在寄生电阻的情况下确定一般情况下设计的效率。这些结果证实,迁移到谐振SC技术是克服纯SC拓扑中众所周知的缺点的最引人注目的替代方案之一。

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