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Design Dan Analisis Solar Battery Charger Berbasis Push-Pull Converter

机译:基于推挽式转换器的太阳能充电器设计与分析

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摘要

This research presents a design of push-pull converter used on battery charging system that is the source of her energy comes from solar pv. Solar pv was used in this research had a 150 watt maximum power with an open circuit voltage of 21.67 volts. The battery is a type of sealed lead acid (SLA) which has a capacity of 24 Ah with a nominal voltage of 12 volts. Solar pv battery fill through chargers controller is a DC-DC converter. DC-DC converter circuit type of push-pull is used to ensure the process of charging the battery so that it takes place on a secure condition even though the solar pv output voltage fluctuates with how to limit the voltage on the battery is charging of 14.1 volt. The system was designed using of Matlab-Simulink software. The results of the simulation shows the automatic setting of duty cycle which is conducted by electronic switches that triggered by the input signal as a part of PI controller. Therefore, a series of push-pull converter able to maintain the output voltage at value of 14,1 volt.
机译:这项研究提出了一种用于电池充电系统的推挽转换器的设计,该电池的能量来源来自太阳能光伏。这项研究中使用的太阳能光伏最大功率为150瓦,开路电压为21.67伏。电池是一种密封铅酸(SLA),其容量为24 Ah,标称电压为12伏。通过充电器控制器填充的太阳能光伏电池是一个DC-DC转换器。 DC-DC转换器电路类型的推挽用于确保对电池充电的过程,从而即使在太阳能光伏输出电压随如何限制14.1充电电压而波动时,也能在安全条件下进行充电伏特。该系统是使用Matlab-Simulink软件设计的。仿真结果显示了占空比的自动设置,该占空比是由电子开关进行的,这些电子开关由作为PI控制器一部分的输入信号触发。因此,一系列推挽转换器能够将输出电压保持在14.1伏特的值。

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