SISTEM KONTROL DAN MONITORING ALIRAN DAYA LISTRIK PADA JARINGAN DISTRIBUSI TEGANGAN RENDAH MENGGUNAKAN MIKROKONTROLER BERBASIS IOT

S. Hariyadi, H. Hartono, Rifdian I.S, Setiyo Setiyo, Siti Julaihah
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Abstract

To meet the needs of small or large scale electricity supply, the use of electrical energy generally uses 1 phase electricity and 3 phase electricity which is used to operate electrical equipment. To be able to find out the voltage, current, and electrical power of the low-voltage distribution network, manual checks are carried out on each R, S, T phase which is on the low-voltage distribution panel. When a 3-phase power failure occurs, it is often difficult to identify which phase is failingSo that in this case it is considered less efficient, for this research is expected to overcome the problems that have been identified. So a tool is made that can monitor failures in the R, S, and T phases which functions as safety when a failure occurs and can display a notification in which phase a failure occurs.In this study, the PZEM-004T sensor, Wemos D1 mini-module, and Android Studio are used which can allow for remote monitoring using electronic devices that have installed applications that have been created. when an error occurs, the "reset" button on the monitoring application is used to reset the protection to restore the device. The current difference in the avometer is 1.48A and the sensor is 1.46A and the current flowing to the load is written 1.88A. The contactor works when the relay receives a command from the Arduino nano with a fast time: 1.60 seconds on the first try, 1.72 seconds on the second experiment, and 1.68 seconds on the third experiment.
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控制系统和监测低电压分布网络的电流量,使用大型微控制器
为了满足小型或大型电力供应的需要,电能的使用一般采用1相电和3相电,用于操作电气设备。为了能够了解低压配电网的电压、电流和用电功率,对低压配电板上的R、S、T相进行人工检查。当三相电源故障发生时,通常很难确定是哪个相位发生故障,因此在这种情况下,它被认为效率较低,因为本研究预计将克服已经确定的问题。因此,开发了一种工具,可以监视R、S和T阶段的故障,当故障发生时,它可以作为安全工具,并可以在发生故障的阶段显示通知。在本研究中,使用了pzm - 004t传感器,Wemos D1迷你模块和Android Studio,可以使用安装了已创建的应用程序的电子设备进行远程监控。当发生错误时,使用监控应用程序上的“重置”按钮重置保护以恢复设备。电压计的电流差为1.48A,传感器的电流差为1.46A,流向负载的电流写为1.88A。当继电器接收到Arduino nano的命令时,接触器工作,时间很快:第一次1.60秒,第二次1.72秒,第三次1.68秒。
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审稿时长
24 weeks
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