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Swift Automatic Transfer Switch based on Arduino Mega 2560,Triacs Bluetooth and GSM

机译:Swift基于Arduino Mega 2560,Triacs蓝牙和GSM的Swift自动转换开关

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A ceaseless supply of electricity is essential for all developmental sectors and even more important nowadays, as the globe evolves through a call for artificially intelligent systems in the fourth industrial revolution. Power interruptions lead to unpleasant human situations as well as great losses within all health, education, and industrial facilities requiring constant electricity. For this reason, we propose the design of an automatic transfer switch (ATS) for power transfer applications to maximize uptime. The ATS ensures the transfer of power between two power sources, hydroelectric and solar, during blackouts or power failures. The design is principally based on an Arduino Mega 2560, triacs, LEDs, as well as an LCD, SD card, Bluetooth, and GSM modules. The Arduino is powerful enough to support all the ATS modules and sustain the combined system processes required for the ATS’s automatic operation. Triacs, which are semiconductor switching devices, were utilized for high-speed switching between the two power supplies. The LEDs and LCD played a signalization role, indicating the state of the ATS at all times. Also, the SD card stores the system’s generated data whilst the Bluetooth modules ensure wireless connectivity between the ATS and a mobile device. The GSM module is for short messages (SMS). The results prove the functioning of the designed ATS, which ensures the transfer of power between two power sources with switching speeds less than 2.58 msec during blackouts or power failures. Furthermore, the ATS is a reliable, fast, and automatic system capable of protecting its internal components from surges. The proposed ATS is validated based on simulations, and the results show that the proposed ATS is promising.
机译:随着全球在第四工业革命中的人工智能系统的呼吁,全球也是如此不可禁的电力供应对所有发展部门甚至更重要的电力供给至关重要。电力中断导致不愉快的人类情况以及需要恒定电力的健康,教育和工业设施内的巨大损失。因此,我们提出了用于电源传输应用程序的自动转移开关(ATS)的设计,以最大化正常运行时间。 ATS确保在停电或电源故障期间在两个电源,水力发电和太阳能之间转移功率。该设计主要基于Arduino Mega 2560,TRCS,LED以及LCD,SD卡,蓝牙和GSM模块。 Arduino足够强大,可以支持所有ATS模块,并维持ATS自动操作所需的组合系统流程。是半导体开关装置的三端双向可控硅用于两个电源之间的高速切换。 LED和LCD播放了信号传导角色,始终表示ATS的状态。此外,SD卡存储系统的生成数据,同时蓝牙模块确保ATS和移动设备之间的无线连接。 GSM模块用于短消息(SMS)。结果证明了设计的ATS的功能,这确保了在停电或电源故障期间具有小于2.58毫秒的两个电源之间的电力转移。此外,ATS是一种可靠,快速,自动的系统,能够保护其内部部件免受浪涌。建议的ATS基于模拟验证,结果表明拟议的ATS是有前途的。

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