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An Analytical Approach for the Design of Class-E Resonant DC–DC Converters

机译:E类谐振DC-DC转换器设计的分析方法

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摘要

We present a new approach to design resonant dc-dc converters, that allows us to achieve both a more accurate implementation and a simpler architecture, by reducing the number of required passive components. The approach is applied to a class-E topology, and it is based on the analytic solution of the system of differential equations regulating the converter evolution. Our technique is also capable of taking into account the most important circuit nonidealities. This represents an important breakthrough with respect to the state of the art, where class-E circuit analysis is based on strong simplifying assumptions, and the final circuit design is achieved by means of numerical simulations after many time-consuming parametric sweeps. The developed methodology is dimensionless, and the achieved design curves can be denormalized to easily get the desired circuit design. Measurements on two different prototypes confirm an extremely high adherence to the developed mathematical approach.
机译:我们提出了一种设计谐振DC-DC转换器的新方法,使我们能够通过减少所需无源组件的数量来实现更准确的实现和更简单的架构。该方法应用于C类拓扑,它基于调节转换器演化的微分方程系统的分析解决方案。我们的技术也能考虑到最重要的电路非实验性。这代表了关于现有技术的重要突破,其中-E电路分析基于强的简化假设,并且通过数值模拟在许多耗时的参数扫描之后实现最终电路设计。开发的方法是无量纲的,并且实现的设计曲线可以是单独的,以便容易地获得所需的电路设计。两种不同原型的测量确认了对开发的数学方法非常高的依从性。

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