Abstract :
Fish Light is an innovation that uses solar panel lights with fishing techniques that have advantageous properties where fish are drawn to optical light stimulation in aids like lighting from lamps with electricity produced by Fish Light products so that fish catch fish more readily. reach out, gather, and seize. The goal of the project is to provide fishermen with the technology and catch maps they need to capture fish at a reasonable cost. Another objective of this research is to foster an entrepreneurial spirit to provide independent revenue for the University of Jember. It is envisaged that this would enable fishermen to replace energy sources from lights, which have an effect on boosting the income and profits of fishermen. Utilizing cutting-edge research and development techniques, the Horseshoe Area uses interviews, documentation, and light fish production to meet fishermen’s demands. Fish Light is produced using cutting-edge research and development techniques for fisherman in the Horseshoe Area, with interviews, documentation, and manufacturing tailored to their needs. Applying the findings of the Fish Light innovation research is quite doable. They can provide for the demands of fishermen in a sustainable and ecologically responsible way. The Fish Light device has undergone successful testing for its utility on fishermen in Muncar Village. The product is prepared for widespread usage and commercialization. Through a product resonance program that goes straight to fishermen in the Horseshoe Area and digital commercialization via a marketplace, the light fish product commercialization scheme is carried out. Using the right technology to raise the value of natural resources and boost the livelihood of fisherman Fish Light promotes SDG 7: Providing everyone with access to cheap, ecologically sustainable energy.
Keywords :
Fish Light, Fisherman, Floating Chart, Solar Panels.References :
- Jäger-Waldau, I. Kougias, N. Taylor, and C. Thiel, “How photovoltaics can contribute to GHG emission reductions of 55% in the EU by 2030,” Renew. Sustain. Energy Rev., vol. 126, p. 109836, 2020,
doi: https://doi.org/10.1016/j.rser.2020.109836.
- Susanto, R. Irnawati, Mustahal, and M. A. Syabana, “Fishing Efficiency of LED Lamps for Fixed Lift Net Fisheries in Banten Bay Indonesia,” Turkish J. Fish. Aquat. Sci., vol. 17, no. 1, pp. 51–60, 2017, doi: 10.4194/1303-2712-v17.
- L. Rantererung, A. Salim, and Y. Songli, “Electric Generator With Solar Power on Fishing Boat,” vol. 12, no. 12, pp. 49–53, 2021.
- F. Silalahi, A. Blakers, M. Stocks, B. Lu, C. Cheng, and L. Hayes, “Indonesia’s Vast Solar Energy Potential,” Energies, vol. 14, no. 17. 2021. doi: 10.3390/en14175424.
- Megwalu, E. Asare, A. Tchoundi, and M. Rahman, “Environmentally friendly fishing technologies: An adaptation tactic to climate change to the inland fisheries of developing countries,” Oct. 2018.
- Mgana et al., “Adoption and consequences of new light-fishing technology (LEDs) on Lake Tanganyika, East Africa,” PLoS One, vol. 14, no. 10, pp. 1–12, 2019, doi: 10.1371/journal.pone.0216580.
- M. A. Nugraha, F. Luthfiani, G. Sotyaramadhani, A. Widagdo, and I. G. M. N. Desnanjaya, “Technical-economical assessment of solar PV systems on small-scale fishing vessels,” Int. J. Power Electron. Drive Syst., vol. 13, no. 2, pp. 1150–1157, 2022, doi: 10.11591/ijpeds.v13.i2.pp1150-1157.
- M. A. Nugraha, F. Luthfiani, I. G. M. Ngurah Desnanjaya, J. S. Mourisdo Siregar, and L. I. Boikh, “Potential of using photovoltaic systems to power underwater fishing lights in small-scale fishing vessel in Indonesia,” Int. J. Electr. Comput. Eng., vol. 13, no. 4, pp. 3686–3694, 2023, doi: 10.11591/ijece.v13i4.pp3686-3694.
- Q. Nguyen and P. D. Winger, “Artificial Light in Commercial Industrialized Fishing Applications: A Review,” Rev. Fish. Sci. Aquac., vol. 27, no. 1, pp. 106–126, 2019, doi: 10.1080/23308249.2018.1496065.
- Hua and J. Xing, “Research on LED fishing light,” Res. J. Appl. Sci. Eng. Technol., vol. 5, pp. 4138–4141, Apr. 2013, doi: 10.19026/rjaset.5.4639.
- Marchesan, M. Spoto, L. Verginella, and E. Ferrero, “Behavioural effects of artifical light on fish species of commercial interest,” Fish. Res., vol. 73, pp. 171–185, Jun. 2005, doi: 10.1016/j.fishres.2004.12.009.
- Mahmud, A. Dewi Bau Sinrang, and A. Nur Apung Massiseng, “Prospects of fisheries industry development in indonesia through online publication media,” Int. J. Appl. Biol., vol. 5, no. 2, pp. 117–129, 2021.
- J. G. Henriksson et al., “Interventions for improving the productivity and environmental performance of global aquaculture for future food security,” One Earth, vol. 4, no. 9, pp. 1220–1232, 2021, doi: https://doi.org/10.1016/j.oneear.2021.08.009.
- Khadka, “The ocean and the blue economy are fundamental to addressing the triple planetary crisis—says UNDP,” UNDP Bureau for Policy and Programme Support, 2022. https://www.undp.org/press-releases/ocean-and-blue-economy-are-fundamental-addressing-triple-planetary-crisis—says-undp (accessed Jul. 05, 2023).
- Uddin, H. Shareef, A. Mohamed, M. A. Hannan, and K. Mohamed, “LEDs as energy efficient lighting systems: A detail review,” Proc. – 2011 IEEE Student Conf. Res. Dev. SCOReD 2011, Dec. 2011, doi: 10.1109/SCOReD.2011.6148785.
- SHIKATA, K. YAMASHITA, M. SHIRATA, and Y. MACHIDA, “Performance evaluation of fishing lamp using oval-shaped blue LEDs for squid jigging fishery in offshore fishing grounds in the Sea of Japan,” Nippon Suisan Gakkaishi (Japanese Ed., vol. 78, pp. 1104–1111, Nov. 2012, doi: 10.2331/suisan.78.1104.
- N. D. of E. and S. Affairs, “The Sustainable Development Goals Report 2019,” United Nations Publ. issued by Dep. Econ. Soc. Aff., p. 64, 2019, [Online]. Available: https://unstats.un.org/sdgs/report/2022/%0Ahttps://www.un-ilibrary.org/content/books/9789210018098%0Ahttps://www.un-ilibrary.org/content/books/9789210478878
- Norhisyam et al., “Development and Experimental Study of Emergency Power Pack for Fisherman,” vol. 10, pp. 81–85, Jul. 2018.