家用电网与太阳能板自动转换开关的能量监测与控制

J. S. Saputro, H. Maghfiroh, F. Adriyanto, Muhammad Renaldy Darmawan, M. H. Ibrahim, S. Pramono
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引用次数: 0

摘要

在这个数字时代,生活的大多数方面都需要电力供应。在各种应用中,电力的可用性对于保持系统的连续性至关重要。为了保证系统的连续性,提出了电网与太阳能板之间自动转换开关(ATS)的能量监测与控制。该系统由自动转换开关、家用太阳能发电厂和自动充电组成。监控系统的功能是监控设备的电压、电流、功率,ATS的工作模式,以及电池的SoC (State of Charge)状态。控制系统是根据用户在物联网(IoT)界面上选择的能源来控制ATS的运行方式。结果表明,该系统可以通过Blynk物联网成功监测太阳能电池板的状态、交流输出和电池的充电状态。ATS自动工作时,开关延时为20ms ~ 26ms,而在用户指令下,启动继电器的平均开关延时为303.33ms,关闭继电器的平均开关延时为185ms。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy Monitoring and Control of Automatic Transfer Switch between Grid and Solar Panel for Home System
In this digital age, most aspects of life require an electric supply. The availability of electrical power is very critical to maintaining the continuity of the system in various applications. To maintain system continuity, the Energy Monitoring and Control of an Automatic Transfer Switch (ATS) between the Grid and Solar Panel is proposed. The system consists of an Automatic Transfer Switch, Home Solar Power Plant, and Automatic Charging. The function of the monitoring system is to monitor the voltage, current, and power across the device, the operation mode of the ATS, and the State of Charge (SoC) of the battery. The control system is to control the operation mode of ATS according to the energy source selected by the user on the Internet of Things (IoT) interface. The results show that the system can successfully monitor solar panel conditions, AC output, and battery's State of Charge through Blynk IoT. The ATS works automatically with a switching delay of 20ms to 26ms, while on the user's command, the average switching delay is 303.33ms to activate the relay and 185ms to deactivate the relay.
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