Rancang Bangun Alat Praktek Simulasi Monotoring Keseimbangan Beban Listrik 3 Fasa Berbasis Iot

Deitje Pongoh(1*), Marson Budiman(2),

(1) Politeknik Negeri Manado
(2) Politeknik Negeri Manado
(*) Corresponding Author

Abstract


The 3 phase system was developed because it has the advantage that the transmitted power can be greater than a 1 phase system with the same conductor size and electric current. This 3-phase electricity monitoring is carried out to determine the condition of the 3-phase electric current leading to the load whether it is balanced or not. The purpose of making this tool is to design a balance load monitoring tool via a smartphone remotely. Internet of Things (IoT) is a concept that aims to expand the benefits of continuously connected internet connectivity. PZEM-004T is a hardware that functions to measure parameters of voltage, current, active power, and power consumption (wh). NodeMCU is an open source IoT platform and an electronic board based on the esp8266 chip with the ability to run microcontroller functions and also an internet connection. The method used in this research is the design, manufacture of tools and testing. In software testing aims to assess the functions of the application running well and to test the relationship between hardware and software as a program. The test steps include testing from NodeMCU 8266 to the PZEM 004T sensor where this sensor is a current, voltage and power measuring sensor. This test uses the Internet of Things for monitoring from the web. The results of the study are a monitoring tool where the measured load in the R S T phase can be seen from the LCD screen and monitored remotely via a smartphone

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References


F. S. Jaya, “Rancang Bangun Aplikasi E-Commerce,” J. Inform. Dan Rekayasa Perangkat Lunak, vol. 1, no. 1, pp. 68–75, 2019.

M. Hosoz and H. M. Ertunc, “Artificial Neural Network Analysis of an Automobile Air Conditioning System” Energy Conv. Man., Vol. 47, pp. 1574-1587, July 2006.

Panduardi, F., & Haq, E. S.. Wireless Smart Home System Menggunakan Raspberry Pi. Jurnal Teknologi Informasi Dan Terapan, 3(1), 320–325, 2016.

Kurniawan. Purwarupa IoT (Internet Of Things) Kendali Lampu Gedung (Studi Kasus Pada Gedung Perpustakaan Universitas Lampung), 57, 2016.

Arafat, M. K, Sistem Pengamanan Pintu Rumah Berbasis Internet Of Things ( IoT ) Dengan ESP8266. Jurnal Ilmiah Fakultas Teknik “Technologia,” 7(4), 262–268, 2016.

A. Furqon, A. B. Prasetijo, and E. D. Widianto, “Rancang Bangun Sistem Monitoring dan Kendali Daya Listrik pada Rumah Kos Menggunakan NodeMCU dan Firebase Berbasis Android,” Ilm. Elektron., vol. 18, no. 2, pp. 93–104, 2019.

T. Nusa, S. R. U. A. Sompie, and E. M. Rumbayan, “Sistem Monitoring Konsumsi Energi Listrik Secara Real Time Berbasis Mikrokontroler,” E-Journal Tek. Elektro Dan Komput., vol. 4, no. 5, pp. 19–26, 2015.

B. G. Melipurbowo, “Pengukuran Daya Listrik Real Time Dengan Menggunakan Sensor Arus ACS712,” Orbith, vol. 12, no. 1, pp. 17–23, 2016.

Y. Huang, Y. Li, F. Chen, X. Zheng, and J. Tang, “A Modified Back / Forward Sweep Method Based on the Electricity Consumption Data,” Energy Power Eng., vol. 9, pp. 176–182, 2017.

E. B. Prasetya, “Aplikasi Kontrol dan Monitoring Pembatas Daya Listrik Berbasis Mikokontroler ATMEGA328,” J. UMJ, no. 10510, pp. 53–56, 2017.

A. Ansori, “Studi Pemanfaatan Internet of Things dan Data Mining untuk Pengawasan Bahan Bakar Minyak (Studi Kasus: Perusahaan Pelayaran Penumpang Nasional),” Wave J. Ilm. Teknol. Marit., vol. 12, no. 1, p. 31, 2018.

D. Setiadi and M. N. A. Muhaemin, “Penerapan Internet Of Things (Iot) Pada Sistem Monitoring Irigasi (Smart Irigasi),” J. Infotronik, vol. 3, no.2, pp. 95–102, 2018.




DOI: http://dx.doi.org/10.30645/j-sakti.v6i2.531

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