Rancangan Sistem Pembangkit Listrik Tenaga Surya (PLTS) Berkapasitas 100 WP dengan Inverter 1000 Watt

Authors

  • Dwi Liestyowati Universitas Faletehan
  • Iksal Rachman Universitas Faletehan
  • Eliyana Firmansyah Universitas Faletehan
  • Mujiburrohman Mujiburrohman Universitas Faletehan

DOI:

https://doi.org/10.55123/insologi.v1i5.1027

Keywords:

Solar energy, PLTS 100 Wp, Inverter 1000 Watt, MCB 1 Phase, Single Axis Solar Tracker

Abstract

Solar energy is a renewable energy source that is abundantly available in Indonesia. One way to utilize solar energy is to convert it into electrical energy using photovoltaic modules or solar panels, which are called solar power plants (PLTS). The construction of PLTS can accelerate the electrification ratio and reduce fossil materials. In this study, the author will design a 100 Wp solar power plant (PLTS) using a 1000watt inverter, while the research uses the Research and Development method, with stages covering system analysis, design, implementation and testing. The manufacture of PLTS is done by identifying components such as solar panels, DC wattmeter, SCC (Solar Charge Controller), battery, 1 Phase MCB, and AC Wattmeter. It can be concluded that to obtain electrical energy, weather conditions greatly affect the working system of solar panels. The maximum voltage from a 100wp solar panel that was designed and tested for 3 days in the worst month conditions was produced on the second and third days with a voltage value of 17.08 Volts at 12:00 noon and a minimum voltage was generated on the second day of testing, namely with a voltage value of 12.00 Volts at 12.00 Volts. 07:00 am. Furthermore, the 100 wp solar panel can only produce a maximum power of 256.01watt which was obtained on the second day of testing with an average voltage and current obtained of 14.19volt and 1.58 Ampere. The condition of the battery takes 5.47 hours or 328 minutes to fully charge energy to 100%. To maximize power gain and get the intensity of sunlight throughout the morning to evening, the use of the Single Axis solar tracker system is very effective.

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References

Gunoto, Pamor, Sofyan, Sofan, “Perancangan Pembangkit Listrik Tenaga Surya 100 Wp Untuk Penerangan Lampu Di Ruang Selasar Fakultas Teknik Universitas Riau Kepulauan”. 2020. Jurnal Sigma Teknika volume 3 No. 2, (Hal 96-106). Kepulauan Riau: Fakultas Teknik, Universitas Riau.

Guti Bagus Ardina, “Rancang Bangun Dual Axis Solar Tracker Pembangkit Listrik Tenaga Surya Berbasis Mikrokontroler Arduino Uno” Juli 2019. Jurnal seminar ITN Malang,

Jeneiro Rezkyanzah, Lasman P, Purba, Chrystia Aji Putra, “Perancangan Solar Tracker Berbasis Arduino Sebagai Penunjang Sistem Kerja Solar Cell Dalam Penyerapan Energi Matahari” Juni 2016. e-journal UPN Veteran, SCAN Vol. XI Nomor 2

Julisman Andi, Sara Devi Ira, Siregar Halid Ramadhan. “Prototipe pemanfaatn Panel Surya Sebagai Sumber Energi Pada sistem Otomasi Atap Stadion Bola” 2017. KITEKTRO: Jurnal Online Teknik Elektro Vol.2 No.1 (Hal 35-42). Banda Aceh: Fakultas Teknik Universitas Syiah Kuala,

Menteri Energi Dan Sumber Daya Mineral Republik Indonesia. “Penggunaan Sistem Pembangkit Listrik Tenaga Surya Atap Oleh Konsumen PT. Perusahaan Listrik Negara (Persero)” 2018. Peraturan Menteri Energi Dan Sumber Daya Mineral Republik Indonesia No.49.

Pakpahan Robinzon, “Rancang Bangun Dan Implementasi Automatic Transfer Switch (Ats) Menggunakan Arduino Uno Dan Relai” 2016. Jurnal Elektro Telekomunikasi Terapan. Fakultas Ilmu Terapan, Universitas Telkom.

Siswanto, Doni. ”Pengujian Panel Surya 100 WP Skala Laboratorium” 2021. Jurnal Energi dan Inovasi Teknologi (ENOTEK), Vol 1, No. 1, (Hal. 1– 5). Kabubaten Rokan Hulu: Fakultas Teknik, Universitas Pasir Pengaraian,

Sukisno, Wuni Frantika Winda. “Analisa Perancangan Sistem Informasi Tracking Acuan Quality Departemen Brushing Berbasis web” 2017. JUTIS Journal of Informatics Engineering Vol.5 No.1.

B. Petter Jelle, A. Hynd, A. Gustavsen, D. Arasteh, H. Goudey, R. Hart, Fenestration of today and tomorrow, (2012): A state-of-the-art review and future research opportunities, Solar Energy Materials and Solar Cells 96.

V. Haines and V. Mitchell, A persona-based approach to domestic energy retrofit, (2014), Building Research & Infortmation 42.

C. Zehui, L. Jianye, L. Wenlong, H. Jing, Z. Hongfei, Analysis of thermal performance of trough-type compound parabolic concentrator in solar drying equipment, (2019), Transactions of the Chinese Society of Agricultural Engineering.

N. Fraidenraich, C. Tiba, B. B. Brandão, O. C. Vilela, Analytic solutions for the geometric and optical properties of stationary compound parabolic concentrators with fully illuminated inverted V receiver, (2007), Solar Energy 82.

A. A. Najib, R. Munadi, and N. B. A. Karna, “Security system with RFID control using E-KTP and internet of things,” Bull. Electr. Eng. Informatics, vol. 10, no. 3, pp. 1436–1445, 2021, doi: 10.11591/eei.v10i3.2834.

A. T. Mahesa, H. Rahmawan, A. Rinharsah, and S. Arifin, “Sistem Keamanan Brankas Berbasis Kartu Rfid E-Ktp,” J. Teknol. dan Manaj. Inform., vol. 5, no. 1, 2019, doi: 10.26905/jtmi.v5i1.3105.

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Published

2022-10-29

How to Cite

Liestyowati, D., Rachman, I., Firmansyah, E., & Mujiburrohman, M. (2022). Rancangan Sistem Pembangkit Listrik Tenaga Surya (PLTS) Berkapasitas 100 WP dengan Inverter 1000 Watt. INSOLOGI: Jurnal Sains Dan Teknologi, 1(5), 623–634. https://doi.org/10.55123/insologi.v1i5.1027