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Desain dan Implementasi Data Logger untuk Pengukuran Daya Keluaran Panel Surya dan Iradiasi Matahari APIP PUDIN; IGNATIUS RIYADI MARDIYANTO
ELKOMIKA: Jurnal Teknik Energi Elektrik, Teknik Telekomunikasi, & Teknik Elektronika Vol 8, No 2 (2020): ELKOMIKA: Jurnal Teknik Energi Elektrik, Teknik Telekomunikasi, & Teknik Elektro
Publisher : Institut Teknologi Nasional, Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26760/elkomika.v8i2.240

Abstract

ABSTRAKInformasi mengenai daya keluaran panel surya dan intensitas radiasi matahari diperlukan dalam sistem PLTS guna mengetahui karakteristik potensi daya yang dibangkitkan panel dan estimasi besarnya beban yang terpasang. Dalam penelitian ini, telah dirancang perangkat data logger berbasis Arduino Uno dengan media penyimpan data berupa kartu MicroSD dan format data MS Excel. Parameter daya diperoleh menggunakan modul sensor tegangan dengan prinsip pembagi tegangan dan sensor arus dengan resistor shunt. Intensitas radiasi diperoleh dari sensor Solar Power Meter menggunakan interface kabel RS232 to TTL. Hasil menunjukan nilai rata-rata error tegangan sebesar 36 mV atau inakurasi 0,41% untuk rentang pengukuran dari 0,7 V sampai 24 V, sedangkan rata-rata error arus sebesar 10 mA atau inakurasi 0,42% untuk pengukuran dari 0,3 A sampai 7,5 A. Nilai inakurasi ini masih dibawah nilai rata-rata alat ukur standar yang ada di pasaran sekitar 1%, sehingga hasil rancangan ini bisa digunakan untuk keperluan pengukuran.Kata kunci: tegangan, arus, daya, iradiasi matahari, Arduino ABSTRACTInformation about the output power of solar panels and the intensity of solar radiation are needed in the PV system to determine the characteristics of the power generated by the panel and the estimated amount of installed load. In this research, an Arduino-based data logger has been designed with a MicroSD card data storage media and a MS Excel data format. Power parameters are obtained using a voltage sensor module with the principle of a voltage divider and a current sensor with a shunt resistor. The radiation intensity is obtained from the Solar Power Meter sensor using a RS232 to TTL cable interface. The results show the average of voltage error is 36 mV or inaccuracy is 0.41% for the measurement range from 0.7 V to 24 V, while the average of current error is 10 mA or inaccuracy is 0.42% for the measurement from 0.3 A to 7.5 A. This inaccuracy value is still below the average value of standard measurement tools on the market about 1%, so the results of this design can be used for the purpose of measurements.Keywords: voltage, current, power, solar irradiation, Arduino
Rancangan Optimalisasi Kendali Aliran Sistem Pendingin Air untuk Meningkatkan Efektivitas Heat Exchanger M. Arief Rafianto; Ignatius Riyadi Mardiyanto; Sapto Prajogo
Prosiding Industrial Research Workshop and National Seminar Vol 12 (2021): Prosiding 12th Industrial Research Workshop and National Seminar (IRWNS)
Publisher : Politeknik Negeri Bandung

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (620.783 KB)

Abstract

Rancangan Optimalisasi Kendali Aliran Sistem Pendingin Air untuk Meningkatkan Efektivitas Heat Exchanger
WORKSHOP PENGENALAN KOMPETENSI INSTALASI PEMBANGKIT LISTRIK TENAGA SURYA Sri Utami; Ignatius Riyadi Mardiyanto; Sri Paryanto Mursid; Wahyu Budi Mursanto; Agoeng Harjatmo Rahardjo; Sri Widarti; Apip Pudin
Qardhul Hasan: Media Pengabdian kepada Masyarakat Vol. 8 No. 2 (2022): AGUSTUS
Publisher : Universitas Djuanda Bogor

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (356.197 KB) | DOI: 10.30997/qh.v8i2.4699

Abstract

The use of abundant solar energy in Indonesia is a concern for the government, especially for areas that are still not electrified by the PLN cable network. The conversion of solar energy to electrical energy is carried out using PV solar panels to form a solar power plant (PLTS). The existence of this PLTS is increasing throughout Indonesia so that it takes human resources who have these competencies to manage it. With this awareness, the Community Service Activity (PKM) program of the Department of Energy Conversion Engineering at the Bandung State Polytechnic invites a partner at SMKN 1 Cimahi to jointly equip its students to get a PLTS competency briefing. One of the competencies developed is about the installation of the solar power plant electrical system. This activity was held during the very dangerous Covid-19 virus pandemic which forced people to work at home (WFH). However, instead of being an obstacle, it provides an appreciable result, namely the gain of experience to develop learning modules that can be delivered online. The analysis of the results of the PKM implementation proved that one way of providing knowledge on the aspect of knowledge can be held online.