JudulPemanfaatan Energi Surya Pada Mesin Kapal Nelayan |
Nama: YORISMAN |
Tahun: 2025 |
Abstrak [10/5, 19.27] IBU Wadek 1 Fatek: ABSTRAK INDONESIA : Penelitian ini bertujuan untuk merancang dan menganalisis pemanfaatan energi surya sebagai sumber energi alternatif pada sistem penerangan kapal bagan nelayan di Desa Ambesia Selatan. Berdasarkan hasil perhitungan, total kebutuhan energi untuk sistem penerangan kapal nelayan mencapai 4.407 Wh per hari. Sistem pembangkit tenaga surya yang dirancang terdiri dari dua unit panel surya (PV) berkapasitas 580 WP, MPPT berkapasitas 60A, inverter low frequency 2000W, dua unit baterai lithium LiFePO4 48V 100Ah, serta MCB 48VDC (16A, 32A, 40A) dan MCB 220VAC 10A. Sistem ini mampu menyuplai kebutuhan beban penerangan kapal secara optimal, dengan tegangan maksimum baterai mencapai 50,2 volt dan waktu penggunaan maksimal selama 11,3 jam per hari. Hasil penelitian menunjukkan bahwa sistem tenaga surya ini layak digunakan sebagai alternatif sumber energi penerangan, menggantikan sumber energi konvensional pada kapal nelayan di Desa Ambesia Selatan. Pemanfaatan energi surya ini diharapkan dapat meningkatkan efisiensi operasional serta mengurangi ketergantungan terhadap bahan bakar fosil dalam aktivitas perikanan masyarakat setempat. Kata Kunci: energi surya, kapal nelayan, sistem penerangan, LiFePO4, desa pesisir [10/5, 19.32] IBU Wadek 1 Fatek: This study aims to design and analyze solar energy as an alternative energy source in the lighting system of fishing boat lifts in South Ambesia Village. The designed solar power generation system, which includes two solar panels (PV) with a capacity of 580Wp, a 60A MPPT, a 2000W low frequency inverter, two 48V 100Ah LiFePO4 lithium batteries, and a 48VDC MCB (16A, 32A, 40A) and a 220VAC 10A MCB, is projected to meet the total energy requirement for the fishing boat lighting system, which reaches 4,407 Wh per day. This system can supply the lighting load needs of the ship optimally, with a maximum battery voltage of 50.2 volts and a maximum usage time of 11.3 hours per day. The results of the study indicate that this solar power system is not only feasible but also promising, as it can replace conventional energy sources on fishing boats in South Ambesia Village. The use of solar energy is expected to significantly increase operational efficiency and reduce dependence on fossil fuels in the fishing activities of the local community, offering a brighter and more sustainable future. Keywords: solar energy, fishing boats, lighting systems, LiFePO4, coastal villages |