PEMANFAATAN MEJA PAYUNG PANEL SURYA UNTUK KEBUTUHAN LISTRIK DAN PENINGKATAN PRODUKTIVITAS KOLAM PANCING DI DESA SIDOPEKSO
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Abstract
Sidopekso Village, Kraksaan District, Probolinggo Regency, has potential in the fisheries sector, one of which is through the Podho Joyo Fishing Pond business. However, this business faces constraints such as limited electricity, high operational costs, and suboptimal business management. To address these challenges, the Nurul Jadid University community service team implemented a program using the Solar Panel Umbrella Table as a renewable energy source and supporting technology for fishing pond management. The program implementation method includes five stages: (1) outreach to partners regarding the benefits of renewable energy and digital technology; (2) training on solar power plant (PLTS) use, water quality monitoring, and digital marketing; (3) technology implementation through the installation of the Solar Panel Umbrella Table, installation of water quality sensors, and implementation of digital marketing strategies; (4) mentoring and evaluation of implementation effectiveness; and (5) a sustainability program through continued training and the development of standard operating procedures. The program results show that the Solar Panel Umbrella Table can supply daily electricity needs for lighting, aeration, and water filtration with operational cost savings of approximately 40%. Water quality sensors help managers monitor pond conditions in real time, ensuring fish health. Management has begun using digital record-keeping and social media promotions, resulting in a 20% increase in visitor numbers within the first month. In conclusion, the implementation of renewable energy technology and digitalization of business management has successfully improved Podho Joyo Fishing Pond's energy efficiency, productivity, and competitiveness. This program can serve as a model for developing fisheries businesses based on clean energy and appropriate technology, supporting the achievement of the Sustainable Development Goals (SDGs) in the areas of energy, economics, and innovation.
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References
Altieri, M. A., Nicholls, C. I., Henao, A., & Lana, M. A. (2015). Agroecology and the design of
climate change-resilient farming systems. Agronomy for Sustainable Development, 35(3),
869–890. https://doi.org/10.1007/s13593-015-0285-2
Badan Pusat Statistik Kabupaten Probolinggo. (2022). Kabupaten Probolinggo dalam angka
2022. Probolinggo: BPS.
Dinas Pertanian Kabupaten Probolinggo. (2022). Profil pertanian Kabupaten Probolinggo.
Probolinggo: Dinas Pertanian.
Fauzi, R., & Hakim, M. (2021). Sistem informasi manajemen pertanian berbasis data. Jurnal
Teknologi Informasi, 13(2), 112–120.
Firmansyah, A., & Jannah, R. (2020). Keterbatasan sarana produksi dalam meningkatkan hasil
pertanian. Jurnal Sosial Humaniora, 7(1), 33–41.
Handoko, B., & Prasetyo, A. (2019). Analisis biaya operasional pertanian berbasis genset di daerah
pedesaan. Jurnal Energi Terbarukan, 5(2), 110–118.
Kementerian Pendidikan, Kebudayaan, Riset, dan Teknologi. (2021). Panduan penelitian dan
pengabdian kepada masyarakat. Jakarta: Kemendikbudristek.
Kementerian Riset dan Teknologi/BRIN. (2020). Rencana Induk Riset Nasional 2020–2045.
Jakarta: Kemenristek/BRIN.
Kurniawan, A., & Lestari, D. (2021). Dampak keterlambatan irigasi terhadap kualitas hasil
pertanian hortikultura. Jurnal Ketahanan Pangan, 9(3), 134–142.
Liakos, K. G., Busato, P., Moshou, D., Pearson, S., & Bochtis, D. (2018). Machine learning in
agriculture: A review. Sensors, 18(8), 2674. https://doi.org/10.3390/s18082674
Nugroho, T. W., & Setiawan, D. (2021). Transformasi pertanian menuju digital farming. Jurnal
Pertanian Berkelanjutan, 15(2), 201–212.
Putra, R. Y., & Rahmawati, N. (2021). Efisiensi penggunaan air pada sistem irigasi konvensional
di daerah pedesaan. Jurnal Irigasi Indonesia, 12(2), 87–95.
Rachman, F., & Sari, M. (2020). Monitoring kelembaban tanah menggunakan sensor berbasis IoT
untuk mendukung pertanian presisi. Jurnal Teknologi Pertanian, 21(1), 55–63.
280
Jurnal Bakti Masyarakat Indonesia
Vol. 8, No. 2, Agustus 2025, Hal. 273-281
ISSN 2620-7710 (Versi Cetak)
ISSN 2621-0398 (Versi Elektronik)
Santosa, A., & Wibowo, S. (2019). Teknologi pengelolaan air sederhana untuk petani desa. Jurnal
Pengabdian Kepada Masyarakat, 4(2), 75–83.
Saputra, R., & Hidayati, S. (2022). Implementasi IoT untuk monitoring lahan pertanian. Jurnal
Internet of Things dan Aplikasinya, 3(1), 12–22.
Sulistiyanto, S., Imaduddin, I., Nadhiroh, A. Y., Widoretno, S., Fahmi, M. H., Mukhlison, M., ...
& Pawening, R. E. (2025). IoT-based model for real-time monitoring of new and renewable
energy systems. EUREKA: Physics and Engineering, (3), 36-48.
Sulistiyanto, S., Najihuddin, A., Riyanto, A., Hidayatullah, T., & Basri, M. (2021). Pelatihan
Pembuatan Payung Solar Cell. Jurnal Abdimas Berdaya: Jurnal Pembelajaran,
Pemberdayaan dan Pengabdian Masyarakat, 4(02), 120-127..
Sulistiyanto, S., Nuruzzaman, A. F., & Riyanto, N. A. (2024). Pelatihan Pembuatan Tempat Pakan
Ikan Terapung Otomatis Berbasis Mikrokontroler Di Desa Suboh Kecamatan Suboh
Kabupaten Situbondo. Gotong Royong, 1(3), 88-96..
Suprapto, H., & Purnomo, D. (2020). Analisis potensi pertanian lahan dataran tinggi. Jurnal
Agroteknologi, 14(1), 45–56.
Suryana, A., & Hakim, R. (2021). Model smart agriculture berbasis IoT dan energi terbarukan di
desa. Jurnal Pemberdayaan Masyarakat, 5(2), 190–205.
Widodo, D., & Prabowo, A. (2019). Penerapan pompa air tenaga surya untuk mendukung
pertanian pedesaan. Jurnal Energi Baru dan Terbarukan, 10(2), 145–152.

