Control of Direct Current (DC) Output Voltage for Two Level DC/DC Boost Converter by Sliding Mode Controller in Application of Fuel Cell

Muhammad Izaaz Rozan, Moch. Rusli, M. A. Muslim
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Abstract

This paper presents a Sliding Mode Controller (SMC) applied in Two Level DC/DC Boost Converter (TLBC) for Fuel Cell (FC) application. The purpose of this paper is to control the output voltage generated by TLBC with the input voltage supplied from FC. In its implementation, the SMC method is used because it is adaptive and nonlinear so it can produce a constant voltage output even though there is a varying voltage from FC. In general, the variation of output voltage from FC caused by V-I characteristics is that the output voltage value will decrease if the output current value increases. Besides that, SMC can also overcome the nonlinear nature of TLBC where the TLBC system works based on switching, so it has different equations with different conditions (on and off). The FC output voltage specification used as the TLBC input voltage is 250V, while the TLBC output voltage is 600V. Research conducted in this paper uses a simulation system with MATLAB/Simulink software in designing the entire system and displays research results in graphic form.
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滑模控制器控制二电平DC/DC升压变换器直流输出电压在燃料电池中的应用
提出了一种应用于燃料电池(FC)用二电平DC/DC升压变换器(TLBC)的滑模控制器(SMC)。本文的目的是利用FC提供的输入电压控制TLBC产生的输出电压。在其实现中,采用SMC方法,因为它是自适应的和非线性的,所以即使有来自FC的变化电压,它也可以产生恒定的电压输出。一般情况下,由V-I特性引起的FC输出电压变化是输出电流值增大,输出电压值减小。除此之外,SMC还可以克服TLBC的非线性特性,TLBC系统是基于开关工作的,所以在不同的条件下(开、关)有不同的方程。作为TLBC输入电压的FC输出电压规格为250V, TLBC输出电压规格为600V。本文的研究使用了MATLAB/Simulink软件的仿真系统进行整个系统的设计,并以图形的形式展示研究成果。
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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