SEPIC Converter for Lead Acid Battery Charger Using Fuzzy Logic type-2 Controller

Moh. Ifaldi Akbar, M. Z. Efendi, Syechu Dwitya Nugraha
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引用次数: 1

Abstract

Over time, the earth where we live is getting warmer every year, this is due to the excessive use of fossil energy which is not environmentally friendly and also the greenhouse effect. Of course, this is not very good for the sustainability of our environment, with the depletion of the ozone layer on our earth, especially since Indonesia is known as a country with a tropical climate, of course, with the resulting impact, our country will be increasingly affected by the impact. In this battery charging using vrla battery and the system has a working system by utilizing a source of lighting from the sun which will be processed into a source of electricity with a solar panel, the system is designed with an output voltage of 14 vdc with an input voltage of 36 vdc from the solar panel, the voltage will be lowered through the SEPIC converter according to the value The duty cycle is set on the mosfet to charge the battery according to the calculation of load requirements. This system focuses on how to maximize battery charging using the CC-CV (constant current-constant voltage) method with a type-2 fuzzy logic algorithm and how the battery lifetime can last a relatively long time and condition switch on cc to cv on soc 99.60%. 
基于模糊逻辑2型控制器的铅酸蓄电池充电器SEPIC变换器
随着时间的推移,我们生活的地球每年都在变暖,这是由于过度使用不环保的化石能源和温室效应。当然,这对于我们环境的可持续性来说不是很好,随着我们地球上臭氧层的消耗,特别是因为印度尼西亚是一个众所周知的热带气候国家,当然,随着由此产生的影响,我国将越来越受到影响。阀控式密封铅酸蓄电池在这个电池充电使用,系统有一个工作系统利用照明从太阳的来源将被加工成一个与太阳能电池板的电力来源,系统设计14 vdc的输出电压与输入电压的36 vdc的太阳能电池板,电压会降低通过SEPIC转换器根据价值mosfet的工作周期设置充电电池根据负载的计算需求。该系统重点研究了如何利用2型模糊逻辑算法的cc - cv(恒流-恒压)方法最大限度地实现电池充电,以及如何使电池寿命持续较长时间,并在soc上99.60%的情况下将cc切换到cv。
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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