带电压倍增器和开关电容器的非隔离式高增益交错直流-直流转换器,用于可再生能源系统

IF 0.9 4区 工程技术 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
R. Subbulakshmy, R. Palanisamy
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引用次数: 0

摘要

本文介绍并分析了一种用于绿色能源应用的新型非隔离式高增益直流-直流转换器。拟议的转换器由开关电容器单元、无源钳位电路、耦合电感器和电压倍增器单元组成。一个交错升压转换器(IBC)被置于所提设计的输入侧。带有耦合电感器次级绕组的电压倍增器单元(VMU)位于负载侧。它用于实现交错功率存储。耦合电感器的泄漏能量被再循环到负载侧,二极管的反向恢复问题被有效抑制。因此,采用了额定电压较低的低导通电阻功率开关,并将传导损耗降至最低。所提出的拓扑结构工作占空比低、电压转换率高、效率高,适用于可持续能源应用。输出电压对半导体开关和无源元件造成的电压应力很小。本文涉及仿真、参数选择、实验设计、结果和讨论。仿真使用 MATLAB/Simulink 进行验证,直流电压为 30-517V。为了验证设计分析,设计了一个 1.5 千瓦的实验原型,开关频率为 10kHz,效率达到 96.07%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-Isolated High Gain Interleaved DC–DC Converter with Voltage Multiplier and Switched Capacitor for Renewable Energy Systems

A novel non-isolated high-gain DC–DC converter for green energy employment is presented and analyzed. The proposed converter comprises a switched capacitor cell, passive clamp circuit, coupled inductors, and voltage multiplier unit. An interleaved boost converter (IBC) is placed on the input side of the proposed design. The voltage multiplier unit (VMU) with the secondary windings of the coupled inductors is located on the load side. It is used to accomplish interleaved power storage. The leakage energy of coupled inductor is recirculated to the load side, and the reverse recovery problem of diodes is effectively suppressed. As a result, a low-on-state resistance power switch with a low voltage rating is employed and minimizing conduction losses. The presented topology is suitable for sustainable energy applications due to its low operating duty cycle, high voltage conversion ratio, and higher efficiency. The output voltage causes substantially low voltage stress on semiconductor switches and passive elements. This proposed paper deals with simulation, parameter selection, experimental design, results and discussion. The simulation is verified using MATLAB/Simulink with a DC voltage of 30–517V. To validate the design analysis, a 1.5-kW experimental prototype is designed with a switching frequency of 10kHz and attained an efficiency of 96.07%.

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来源期刊
Journal of Circuits Systems and Computers
Journal of Circuits Systems and Computers 工程技术-工程:电子与电气
CiteScore
2.80
自引率
26.70%
发文量
350
审稿时长
5.4 months
期刊介绍: Journal of Circuits, Systems, and Computers covers a wide scope, ranging from mathematical foundations to practical engineering design in the general areas of circuits, systems, and computers with focus on their circuit aspects. Although primary emphasis will be on research papers, survey, expository and tutorial papers are also welcome. The journal consists of two sections: Papers - Contributions in this section may be of a research or tutorial nature. Research papers must be original and must not duplicate descriptions or derivations available elsewhere. The author should limit paper length whenever this can be done without impairing quality. Letters - This section provides a vehicle for speedy publication of new results and information of current interest in circuits, systems, and computers. Focus will be directed to practical design- and applications-oriented contributions, but publication in this section will not be restricted to this material. These letters are to concentrate on reporting the results obtained, their significance and the conclusions, while including only the minimum of supporting details required to understand the contribution. Publication of a manuscript in this manner does not preclude a later publication with a fully developed version.
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