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Design and analysis of Interleaved Boost Converter for renewable energy source

机译:可再生能源交错升压转换器的设计与分析

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Renewable energy is derived from natural resources that are replenished constantly. The commonly used renewable energy systems include photovoltaic cells and fuel cells. A suitable DC-DC converter is proposed for highly efficient renewable energy systems. Interleaved Boost Converter (TBC) topology is discussed in this paper for renewable energy applications. The advantages of interleaved boost converter compared to the classical boost converter are low input current ripple, high efficiency, faster transient response, reduced electromagnetic emission and improved reliability. Three cases of interleaved boost converter have been considered and analysed. Two-phase IBC's with (i) the front end inductors magnetically coupled (ii) uncoupled inductors and (iii) inversely coupled inductors performance have been analyzed and compared. The output voltage ripple, input current ripple and inductor current ripple of the three types of converters are compared. The waveforms of input, inductor current ripple and output voltage ripple are obtained using MATLAB/SIMULINK. The design equations for IBC have been presented. Using the results obtained from simulation the best of the three IBC is inferred.
机译:可再生能源来自不断补充的自然资源。常用的可再生能源系统包括光伏电池和燃料电池。提出了一种适用于高效可再生能源系统的DC-DC转换器。本文讨论了交错升压转换器(TBC)拓扑,用于可再生能源应用。与经典升压转换器相比,交错升压转换器的优点是低输入电流纹波,高效率,更快的瞬态响应,降低电磁发射和提高的可靠性。已经考虑并分析了三种交错升压转换器。两相IBC的具有(i)前端电感器磁耦合(ii)未耦合电感器和(III)反向耦合电感器性能并进行比较。比较了三种转换器的输出电压纹波,输入电流纹波和电感器电流纹波。使用MATLAB / SIMULINK获得输入,电感器电流纹波和输出电压纹波的波形。已介绍IBC的设计方程。使用从模拟中获得的结果是推断出三个IBC中最好的结果。

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