CC-CV Controlled Fast Charging Using Fuzzy Type-2 for Battery Lithium-Ion

Ahmad Zidan Falih, M. Z. Efendi, F. Murdianto
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引用次数: 4

Abstract

Energy dependency is increasing along with the increase in population growth rate, while the fossil energy is decreasing. Alternative energy such as solar energy is one solution to provide renewable energy, but solar energy cannot provide an intense supply of energy. Therefore, the equipment needs an energy storage. The battery has important role in energy storage with the performance of the battery that need an attention. The method and type of battery used  must be considered to maintain battery lifetime and  reduce overcharging. The purpose of this research is to understand the process of fast charging the CC-CV (Constant Current Constant Voltage) method on Lithium-Ion battery which is expected to reduce battery overcharging. In this method, the current is maintained constant until certain conditions then followed by constant voltage to prevent overcharging. The voltage from the solar panel is very high, voltage reduction is needed as the charging voltage for the battery. The DC-DC Converter used is Buck Converter which is given Fuzzy Type-2 algorithm to maintain a current of 10 Ampere during CC conditions and  a voltage of 14.4 Volt during CV conditions with switch of CC conditions to CV conditions on SoC 99.25%.Keywords: battery charging, buck converter, CC-CV, lithium-ion, type-2 fuzzy.
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基于模糊2型的锂离子电池CC-CV控制快速充电
随着人口增长率的提高,能源依存度也在增加,而化石能源在减少。太阳能等替代能源是提供可再生能源的一种解决方案,但太阳能不能提供大量的能源供应。因此,该设备需要一个储能系统。电池在储能中具有重要的作用,其性能需要引起人们的重视。必须考虑使用电池的方法和类型,以保持电池寿命并减少过度充电。本研究的目的是了解CC-CV(恒流恒压)方法对锂离子电池进行快速充电的过程,以期减少电池的过充。在这种方法中,电流保持恒定,直到一定条件,然后是恒定的电压,以防止过充电。来自太阳能电池板的电压非常高,需要降低电压作为电池的充电电压。使用的DC-DC变换器是Buck变换器,该变换器采用模糊Type-2算法,在CC条件下保持10安培的电流,在CV条件下保持14.4伏的电压,在SoC 99.25%的情况下切换CC条件到CV条件。关键词:电池充电,降压变换器,CC-CV,锂离子,2型模糊
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10
审稿时长
24 weeks
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