Analisis Perencanaan Sistem Tenaga Listrik Untuk Keandalan Operasional CCTV Berbasis Energi Terbarukan

Penulis

  • M Rizki Liano Universitas Pembangunan Panca Budi
  • Pristisal Wibowo Universitas Pembangunan Panca Budi
  • Muhammad Erpandi Dalimunthe Universitas Pembangunan Panca Budi

Kata Kunci:

Solar Charge Controller, Off-Grid, CCTV, Solar Panels, HOMER

Abstrak

Solar energy is a renewable energy source that can be effectively utilized to generate electricity through photovoltaic cells. This research aims to plan an off-grid Solar Power Plant (PLTS) at the Sejahtera Islamic Boarding School Multipurpose Building. The system is designed as an alternative energy source to ensure the continuous operation of a 24-hour CCTV security system. The methodology included literature studies, field observations, and data collection to design a reliable power system. Implementing a PLTS is highly recommended due to its minimal emissions and eco-friendly nature.

Based on the planning and analysis, implementing this off-grid PLTS to support the operational reliability of the CCTV system is highly feasible. The research location possesses adequate solar potential, with an average sunlight duration of approximately 4.5 hours per day. This capacity is sufficient to meet the 24-hour electrical energy needs of the CCTV and its supporting devices. System planning demonstrates that the daily load requirement of 432 Wh can be fulfilled using one 100 Wp solar panel module, two 12 V 33 Ah batteries, a 500 W inverter, and a 20 A Solar Charge Controller (SCC).

Ultimately, this off-grid PLTS ensures an uninterrupted electricity supply during PLN network outages. It serves as an environmentally friendly, economical, and sustainable solution to enhance CCTV-based security systems in Islamic boarding schools and similar facilities.

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Referensi

Z. Taro, “JESCE (Journal of Electrical and System Control Engineering) Analisis Biaya Pembangkit Listrik Tenaga Surya (PLTS) Atap Skala Rumah Tangga Analysis of Household Scale Solar Power Plant Roof Costs,” Jesce, vol. 3, no. 2, p. 2020, 2020, [Online]. Available: http://ojs.uma.ac.id/index.php/jesce

R. Rahmaniar, A. Junaidi, and R. F. Wijaya, “Renewable Energy Education through Virtual Reality Tours,” vol. 14, no. 2, pp. 1642–1649, 2025, doi: 10.18421/TEM142.

D. Y. Wibowo and R. , Dino Erivianto, “Analisis Efisiensi Pembangkit Listrik Tenaga Surya Sebagai Sumber Energi Alternatif CCTV Terintegrasi Dengan Smartphone,” J. Electr. Syst. Control Eng., pp. 167–186, 2025.

S. Anisah, Z. Tharo, and A. Kenedy Butar Butar, “Optimization Analysis of Solar and Wind Power Hybrid Power Plant Systems,” Proc. 1st Annu. Dharmawangsa Int. Conf., pp. 614–624, 2024.

A. D. Tarigan, P. Wibowo, A. S. Tarigan, U. P. Pancabudi, J. G. Subroto, and S. S. Medan, “Perancangan Otoped Listrik Menggunakan Panel Surya Sebagai Media Transportasi,” vol. 2, no. 2, pp. 2–5, 2022.

S. Aryza, Z. Tharo, and S. Anisah, “Design and Build a Sun Tracking System Using a Fuzzy Logic Controller to Optimize the Output Power of the Solar Cell Module,” Budapest Int. Res. Critics Institute-Journal, pp. 5142–5154, 2021.

A. ramadhani et al., “Perencanaan Pembangunan PLTS Off-Grid di Bengkel Teknik Mesin Politeknik Negeri Jakarta,” pp. 627–636, 2023, [Online]. Available: http://prosiding.pnj.ac.id

F. Husni, Syukri, Muliadi, and T. M. Asyadi, “Perencanaan Sistem Pembangkit Listrik Tenaga Surya (PLTS) Di Gedung Pasca Sarjana Universitas Iskandar Muda,” Aceh J. Electr. Eng. Technol., vol. 2, no. 1, pp. 19–24, 2022.

E. S. Hasibuan, “PERENCANAAN PLTS ATAP SISTEM ON GRID,” 2025.

E. Susilo and R. Santoso, “Dinamika Sosial dan Partisipasi Masyarakat dalam Proyek Infrastruktur Energi Terbarukan,” J. Sosiol. Perkota., vol. 9, no. 1, pp. 60–75, 2023.

W. Ridwan, Z. Tharo, and Rahmaniar, “Perencanaan Pembangkit Listrik Tenaga Surya,” J. Rekayasa Elektr., vol. 9, no. 2, pp. 77–80, 2024, doi: 10.31289/jesce.v6i2.12618.

B. Suryadi and R. Pratama, “Pentingnya Penerangan Jalan Umum dalam Peningkatan Keamanan Kota,” J. Urban. dan Pembang., vol. 5, no. 2, pp. 112–125, 2023.

A. Andi, Z. Tharo, and D. Lesmana, “Analysis of Solar Panel Design as a Power Source For CCTV at PT. Link NET, TBK,” J. Sci., pp. 167–186, 2024.

M. E. Dalimunthe, Hamdani, and F. A. D. Silaban, “Analysis of Design of Double Layer Biquad Microstrip Antenna for WLAN Application Fernanda,” international, pp. 421–428, 2024.

P. Wibowo, Z. Tharo, and B. Handoko, “RANCANG BANGUN PEMBANGKIT LISTRIK TENAGA PIKO HIDRO DENGAN MEMANFAATKAN ALIRAN IRIGASI DI DESA PADANG CERMIN KABUPATEN LANGKAT,” 2021.

D. Herliyanso and O. A. Rozak, “Perencanaan Sistem Pembangkit Listrik Tenaga Surya Off-grid Sebagai Suplai Daya Listrik Perpustakaan Universitas Pamulang,” Electrices, vol. 5, no. 1, pp. 20–29, 2023, doi: 10.32722/ees.v5i1.5612.

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Diterbitkan

27-04-2026

Cara Mengutip

M Rizki Liano, Pristisal Wibowo, & Muhammad Erpandi Dalimunthe. (2026). Analisis Perencanaan Sistem Tenaga Listrik Untuk Keandalan Operasional CCTV Berbasis Energi Terbarukan. Jurnal Nasional Teknologi Komputer, 6(2), 549–558. Diambil dari https://publikasi.hawari.id/index.php/jnastek/article/view/393

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