安装具有物联网控制和监控的双向DC-DC转换器的实现

Darjat, A. Triwiyatno, Hanif Fadhlurrahman
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引用次数: 2

摘要

可再生能源发电,如太阳能,产生电压波动的电能。光强是引起电压波动的原因之一。产生的电压与光的强度成正比。为了提高太阳能电池板系统的效率,有必要实施转换系统。该转换器采用插入式降压-升压拓扑结构,用于调节电池输入和输出的方向。为了提高太阳能电池板系统的效率,设定能量流动的方向被认为是重要的。本文主要研究在线插入式双向DC-DC变换器的设计与实现。转换器的功能是连接存储介质和直流总线,并使PWM信号相移180°,使输出电流平滑。相移特性是使用ATMEGA328P最小系统设置的。除了作为降压(充电)和升压(放电)电池,还有一个在线监测功能。在线监测功能用于显示直流母线电压值和电池电压,而在线控制功能允许用户手动改变转换器模式,从降压到升压或反之亦然。测试结果表明,插入式双向DC-DC变换器在给定的占空比下能够产生稳定的电压。降压模式的平均效率为88%,升压模式的平均效率为92%。在眨眼应用中,它可以显示直流母线电压和电池电压,用户可以手动改变转换器模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of Installation Two-way DC-DC Converter with IoT Control and Monitoring
Renewable energy generation, such as solar energy, produces electrical energy with fluctuating voltages. Light intensity is one of the causes of this fluctuating voltage. The resulting voltage is directly proportional to the intensity of the light. It is necessary to implement a converter system to increase efficiency in the solar panel system. The converter with an insert buck-boost topology is designed to regulate the direction of power in and out of the battery. Setting the direction of the flow of power is considered important in order to increase the efficiency of the solar panel system. This research focuses on the design and implementation of the Online Insertion TwoWay DC-DC Converter. The converter functions to connect the storage media and the DC Bus and smoothes the output current with a phase shift of the PWM signal by 180°. The phase shift feature is set using the ATMEGA328P minimum system. In addition to functioning as a buck (charging) and boost (discharging) battery, there is also an online monitoring function. The online monitoring feature is designed to display the DC Bus voltage value and battery voltage, while the online controlling feature allows users to manually change the converter mode from buck to boost or vice versa. The test results show that the Insertion Bidirectional DC-DC Converter can produce a stable voltage according to the given duty cycle. The average efficiency is 88% for buck mode and 92% for boost mode. In the blynk application, it can display the DC Bus voltage and battery voltage and the user can change the converter mode manually.
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