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Design and implementation of a new high step-up DC-DC converter for renewable applications

机译:用于可再生应用的新型新型高升压DC-DC转换器的设计与实现

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In this paper, a new structure for a DC-DC boost converter is proposed. The presented converter provides a high voltage transfer gain with lower duty cycle. Low current and low voltage stress on the switch, enlarged area of operating in continuous conduction mode (CCM), reduced size of the inductors, and the input filter are the main advantages of the proposed converter. The high voltage transfer gain with low number of elements has made it suitable to implement. Hence, using only one switch has made the control of the proposed converter easy. Besides, decreased switching losses and higher efficiency are obtained. The proposed structure is a combination of the Luo converter and a booster unit, which its analysis is studied in three modes, CCM, boundary conduction mode (BCM), and discontinuous conduction mode (DCM). Furthermore, in order to validate the analysis and feasibility of the proposed converter, the experimental results are developed on a low power prototype.
机译:本文提出了一种用于DC-DC升压转换器的新结构。提出的转换器以较低的占空比提供了高电压传输增益。开关上的低电流和低压应力,在连续导通模式(CCM)下工作的面积增大,电感器的尺寸减小以及输入滤波器是所提出转换器的主要优点。元件数量少的高电压传输增益使其适合实施。因此,仅使用一个开关就使得对所提出的转换器的控制变得容易。此外,获得了降低的开关损耗和更高的效率。所提出的结构是Luo转换器和升压器单元的组合,并以CCM,边界传导模式(BCM)和不连续传导模式(DCM)三种模式进行分析。此外,为了验证所提出的转换器的分析和可行性,在低功率原型上开发了实验结果。

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