Power Measurement System Prototype Design Used in Household Loads with The Arduino

Authors

  • Noorly Evalina Universitas Muhammadiyah Sumatera Utara
  • Dewi Sholeha Universitas Dharma Agung
  • Faisal Irsan Pasaribu Universitas Muhammadiyah Sumatera Utara

DOI:

https://doi.org/10.20122/etaps.v1i2.3221

Keywords:

Arduino, Prototype Design, Power Measurement, Household Loads

Abstract

Modernization is indeed very influential in people's lives today, with the existence of this modern era everything is always related to technology.  Apart from that, the use of household appliances and electricity also follows in accordance with existing developments, as seen by the development of  prepaid electricity meters, which are all digital. However, with this existence, the community has not been able to control and monitor the use of electric power in detail. From the description of the problem above, the researcher found an idea to make a prototype Electric Power Monitoring tool that can work automatically. This tool uses an Arduino microcontroller coupled with a PZEM-004T Current, sensor, and along with an LCD. The way this tool works is to detect incoming electrical arcs, input from a load of electrical equipment on the PZEM 004T sensor, then systemically the sensor will receive the incoming arcs then the anus is directed to the
microcontroller module. Arduino to convert systemically with the calculation of the power formula (Wh) Wh = Ixt (Ares x time) so that it will get the results of the electric power used during use in the form of current, days, voltage, cosphi, and KWH costs.

Author Biographies

Noorly Evalina, Universitas Muhammadiyah Sumatera Utara

Department of Electrical Engineering

Dewi Sholeha, Universitas Dharma Agung

Department of Electrical Engineering

Faisal Irsan Pasaribu, Universitas Muhammadiyah Sumatera Utara

Department of Electrical Engineering

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Downloads

Published

2023-08-23

How to Cite

Evalina, N., Sholeha, D., & Pasaribu, F. I. (2023). Power Measurement System Prototype Design Used in Household Loads with The Arduino. Journal of Electronics, Telecommunication, Electrical, and Physics Science, 1(2), 56-60. https://doi.org/10.20122/etaps.v1i2.3221