Implementasi Kendali Tegangan Lup Tertutup Buck Converter dengan ArduinoMega

Masramdhani Saputra, Saddani Djulihenanto, Irham Fadlika
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Abstract

One type of power converter that is widely applied in the field of renewable energy is DC-DC Converter. In variousapplication cases, voltage control features are often required. One of the challenges is how to build a closed loop controller to control the output voltage of the DC-DC Converter. In this journal, an Arduino Mega based output voltage controller will be implemented. The type of voltage controller implemented is the PI controller with the consideration that the controller has been well-known tested and mathematically proven. The PI controller is set based on closed loop block diagram calculations with the Buck Converter as the main plant. The implementation of the PI controller on the Arduino Mega is based on the expected transient response settings. PI controller was successfully implemented in this study. The experimental results show that, the controller can maintain its voltage along with changes, both source and load voltage. Thus, it can be concluded that the Arduino Mega board can work well in closed loop applications for power converter control.
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用 ArduinoMega 实现降压转换器的闭环升压控制
在可再生能源领域得到广泛应用的一种功率变换器是DC-DC变换器。在各种应用情况下,通常需要电压控制功能。如何建立一个闭环控制器来控制DC-DC变换器的输出电压是一个挑战。在本期刊中,将实现一个基于Arduino Mega的输出电压控制器。所实现的电压控制器类型是PI控制器,考虑到该控制器已经过众所周知的测试和数学证明。PI控制器是基于闭环方框图计算,以Buck变换器为主要装置。PI控制器在Arduino Mega上的实现基于预期的瞬态响应设置。本研究成功实现了PI控制器。实验结果表明,该控制器可以随源电压和负载电压的变化而保持其电压。由此可以得出结论,Arduino Mega板可以很好地用于闭环应用中进行功率转换器的控制。
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