Automatic transfer switch for DC system application

Mohammad Noor Hidayat, Wildan Surya Wijaya, Ratna Ika Putri
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Abstract

Automatic transfer switches (ATS) have the potential to be important in ensuring uninterruptible power supply across a wide range of sectors, enabling smooth transitions between utility and emergency RES power sources, generators, and more. Utilizing DC electricity provides a cost advantage and is suitable for short-distance transmission. The author proposes a 12-volt DC backup system that corresponds to a minimum input voltage of more than 10 Vdc and can be applied in various DC load applications. The ATS design incorporates multiple inputs and uses algorithms to prevent simultaneous operation of all sources and reduce feedback. These developments in backup system technology, coupled with the shift to renewable energy, are contributing to the creation of a sustainable and resilient electricity grid. In experiments, the ATS system demonstrated its ability to provide 24 hours of backup power with a specified load (lighting bulbs, light-emitting diodes (LEDs), motors, and fans) discharging 0.27–2.25 Amperes. Using the millis programming language, it supports the performance of a constant switch transition speed of around 0.6453 seconds for a switch from buck to SCC. 0.658 seconds for solar charge controller (SCC) to power supply (PSU), 0.656 seconds for PSU to CC PSU, and 0.61 seconds for PSU to OFF.
用于直流系统的自动转换开关
自动转换开关 (ATS) 在确保各行各业的不间断供电方面具有重要潜力,可实现市电和应急 RES 电源、发电机等之间的平稳过渡。利用直流电具有成本优势,适合短距离传输。作者提出了一种 12 伏直流备用系统,对应的最低输入电压超过 10 伏直流,可应用于各种直流负载。自动变送系统的设计包含多个输入,并采用算法防止所有信号源同时工作,减少反馈。后备系统技术的这些发展,再加上向可再生能源的转变,都有助于建立一个可持续的、有弹性的电网。在实验中,ATS 系统展示了在指定负载(照明灯泡、发光二极管 (LED)、电机和风扇)放电 0.27-2.25 安培的情况下提供 24 小时备用电源的能力。使用 millis 编程语言,它支持从降压到 SCC 转换时约 0.6453 秒的恒定开关转换速度。太阳能充电控制器 (SCC) 到电源 (PSU) 的转换速度为 0.658 秒,PSU 到 CC PSU 的转换速度为 0.656 秒,PSU 到 OFF 的转换速度为 0.61 秒。
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