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Journal : Jurnal Fortech

Penggunaan NRF24L01 Untuk Monitoring Data Pada PLTS Kapasitas 309 WP Berliano Budiono; Irrine B Sulistiawati; Ni Putu Agustini
Jurnal FORTECH Vol. 4 No. 1 (2023): Jurnal FORTECH
Publisher : FORTEI (Forum Pendidikan Tinggi Teknik Elektro Indonesia)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56795/fortech.v4i1.4101

Abstract

To obtain renewable energy, there are obtaining electricity supply it can be done by utilizing solar energy radiation power. With using solar cells to convert solar energy into electrical energy, or we call as Solar Power Plants (PLTS). This research will develop previous research, there are the design of output monitoring systems and data recording on Arduino microcontroller-based solar panels where tools designed to monitor current, voltage and light intensity use the NRF24l01 module remotely to facilitate analysis of solar cells using the Arduino Uno microcontroller system. Data processing taken in seconds and minutes is displayed on a PC or smartphone screen using Blynk software and the data is stored on the PLX-DAQ in real time. so that researchers do not need to observe PLTS in place for data collection because the tool can cover it automatically with an error rate of sensor testing used less than 5%.
Monitoring Pengaruh Suhu Pada Panel Surya Terhadap Performa Keluaran Pembangkit Listrik Tenaga Surya Jaya Indra Bayu; Irrine Budi Sulistiyawati; Ni Putu Agustini
Jurnal FORTECH Vol. 4 No. 1 (2023): Jurnal FORTECH
Publisher : FORTEI (Forum Pendidikan Tinggi Teknik Elektro Indonesia)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56795/fortech.v4i1.4104

Abstract

The sun is an alternative energy source that is currently being utilized, by using solar panels to capture light and process it into the electrical power we need. The performance of solar panels is strongly influenced by several parameters including panel surface temperature, ambient temperature, and solar irradiance. This research makes a solar irradiation sensor using solar panels as a substitute for a pyranometer and adds temperature and wind speed sensors to determine the effect on PLTS performance. To find out the temperature, the PV surface temperature uses the DS18B20 sensor and the ambient temperature sensor uses the DHT11 sensor. Anemometer sensors use wind speed to find out, then each sensor is configured with an Arduino microcontroller so that it can operate and display the required data. The test results obtained the effect of wind speed on the performance of solar panels.