用于PEM燃料电池汽车动力系统的单输入双输出DC-DC转换器

IF 0.7 4区 材料科学 Q4 ELECTROCHEMISTRY Journal of New Materials For Electrochemical Systems Pub Date : 2022-08-31 DOI:10.14447/jnmes.v25i3.a02
M. Dhananjaya, Devendra Potnuru, B. Krishna Chaitnya, N. Patnana, J. K. Bokam
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引用次数: 1

摘要

多输出转换器在便携式电子和电动汽车(EV)应用中发挥着至关重要的作用。为此,本文提出了一种新的单输入双输出(SIDO)转换器。由多输出转换器领域的各种研究人员提出的大多数单输入双输出转换器配置在关于工作占空比和电感器电流的特定假设下发挥作用。此外,在许多SIDO转换器中操作负载时,交叉调节的问题仍然普遍存在。所提出的配置在升压和降压-升压模式下产生两个输出电压,而对占空比或电感器电流没有任何约束。此外,它没有遇到交叉监管问题;输出电压V01(V02)不受i02(i01)中的负载变化的影响。为了验证所提出配置的可行性和有效性,开发了一个200W的原型电路;仿真和实验结果得到了验证。
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A Single-Input Dual-Output DC-DC Converter for Powertrain of PEM Fuel Cell Vehicle
Multi-output converter plays a vital role in portable electronic and electric vehicle (EV) applications. In this regard, a new single-input dual output (SIDO) converter is proposed in this paper. Most of the single-input dual-output converter configurations presented by various researchers in the domain of multi-output converters function under particular assumptions about operational duty cycle and inductor current.Also, the issue of crossregulation is still prevalent while operating the loads in many SIDO converters.The proposed configuration generates two output voltages in boost and buck-boost modes without any constraints on the duty ratioor inductor currents. In addition, it doesn't encounter cross-regulation problems; subsequently, the output voltage V01 (V02) is not influenced by load changes in i02 (i01). To verify the feasibility and effectiveness of the proposed configuration, a 200 W prototype circuit is developed; simulation and experimental results are validated.
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来源期刊
Journal of New Materials For Electrochemical Systems
Journal of New Materials For Electrochemical Systems ELECTROCHEMISTRY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
1.90
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: This international Journal is intended for the publication of original work, both analytical and experimental, and of reviews and commercial aspects related to the field of New Materials for Electrochemical Systems. The emphasis will be on research both of a fundamental and an applied nature in various aspects of the development of new materials in electrochemical systems.
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