Interleave isolated boost converter as a frontend converter for fuel cell applications

K. Senthilkumar, M. K. Reddy, D. Elangovan, R. Saravanakumar
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引用次数: 6

Abstract

With rising fuel costs, increasing concerns for global climate change, and a growing worldwide demand for electricity, utilizing renewable energy sources such as solar/Fuel power becomes a necessity rather than a luxury. The conversion of renewable energy sources into useful DC or AC power for residential and industrial applications is becoming more popular. But renewable energy re-sources comes with low output voltage (20V to 60V) range, so, in order to utilize this energy effectively, it has to be boosted to high DC voltage by using high efficient power converters & then convert High DC to AC using Voltage fed-Inverter. Isolated boost converter is desirable in the low-to-high dc/dc application where isolation is required or a large step up is in a need. The challenge of designing such a converter for high power applications is how to handle the high current at the input and high voltage at the output. An effective way is to parallel the inputs and series the outputs of the isolated boost converters. Based on this concept, a new interleaved and isolated boost converter is proposed in this paper that has two inductors in parallel at the input to share the current and two capacitors in series at the output to share the voltage. The two Boost converter cells realize demagnetizing by helping each other, which simplifies the transformer structures. With interleaved operation, the current ripple is smaller; therefore, it is possible to use smaller capacitors at the input and output of the converter. All these features make the new interleaved isolated boost converter desirable for high power low-to-high dc/dc applications. At last, a 300 W prototype with 48 V-to-400 V is simulated and tested to verify the theoretical analysis in this paper.
交错隔离升压变换器作为燃料电池应用的前端变换器
随着燃料成本的上升,对全球气候变化的日益关注,以及全球对电力需求的不断增长,利用太阳能/燃料等可再生能源成为一种必需品,而不是奢侈品。将可再生能源转换成有用的直流或交流电源用于住宅和工业应用正变得越来越流行。但是可再生能源具有低输出电压(20V至60V)范围,因此,为了有效地利用这些能量,必须使用高效的电源转换器将其提升到高直流电压,然后使用电压馈电逆变器将高直流转换为交流。隔离升压转换器在需要隔离或需要大升压的低到高dc/dc应用中是理想的。设计这种大功率变换器的挑战在于如何处理输入端的大电流和输出端的高电压。一种有效的方法是将隔离型升压变换器的输入并联,输出串联。基于这一概念,本文提出了一种新的交错隔离升压变换器,该变换器在输入端并联两个电感分担电流,在输出端串联两个电容分担电压。两个升压变换器单元相互帮助实现退磁,简化了变压器结构。采用交错操作,电流纹波较小;因此,可以在转换器的输入和输出端使用较小的电容器。所有这些特点使新的交错隔离升压变换器成为高功率低到高dc/dc应用的理想选择。最后,对一台功率为300w、功率为48v ~ 400v的样机进行了仿真和测试,验证了本文的理论分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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