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Research Article

Design and feasibility analysis of an off-grid hybrid energy system to fulfill electricity and freshwater demand: a case study

Pages 5925-5950 | Received 16 Oct 2023, Accepted 09 Apr 2024, Published online: 19 Apr 2024

References

  • Abdul-Wahab, S. A., Y. Charabi, A. M. Al-Mahruqi, and I. Osman. 2020. Design and evaluation of a hybrid energy system for Masirah Island in Oman. International Journal of Sustainable Engineering 13 (4):288–97. doi:10.1080/19397038.2020.1790057.
  • Ali, A., K. Mahmoud, D. Raisz, and M. Lehtonen. 2020. Optimal allocation of inverter-based WTGS complying with their DSTATCOM functionality and PEV requirements. IEEE Transactions on Vehicular Technology 69 (5):4763–72. doi:10.1109/TVT.2020.2980971.
  • Alizadeh, R. H., G. H. Shakouri, M. S. Amalnick, and P. Taghipour. 2016. Economic sizing of a hybrid (PV–WT–FC) renewable energy system (HRES) for stand-alone usages by an optimization-simulation model: Case study of Iran. Renewable and Sustainable Energy Reviews 54:139–50. doi:10.1016/j.rser.2015.09.046.
  • Ashraf, I., A. Chandra, and M. S. Sodha. 2004. Techno-economic and environmental analysis for grid interactive solar photovoltaic power system of Lakshadweep islands. International Journal of Energy Research 28 (12):1033–42. doi:10.1002/er.1009.
  • Ashraf, M. A., Z. Liu, A. Alizadeh, S. Nojavan, K. Jermsittiparsert, and D. Zhang. 2020. Designing an optimized configuration for a hybrid PV/Diesel/Battery energy system based on metaheuristics: A case study on Gobi Desert. Journal of Cleaner Production 270:112467. doi:10.1016/j.jclepro.2020.122467.
  • Atawi, I. E., A. Abuelrub, A. Q. Al-Shetwi, and O. H. Albalawi. 2024. Design of a wind-PV system integrated with a hybrid energy storage system considering economic and reliability assessment. Journal of Energy Storage 81:110405. doi:10.1016/j.est.2023.110405.
  • Atia, R., and N. Yamada. 2016. Sizing and analysis of renewable energy and battery systems in residential microgrids. IEEE Transactions on Smart Grid 7 (3):1204–13. doi:10.1109/TSG.2016.2519541.
  • Ayeda, Y., R. Al-Afif, P. Fortes, and C. Pfeifer. 2024. Optimal design and techno-economic analysis of hybrid renewable energy systems: A case study of Thala city, Tunisia. Energy Sources, Part B: Economics, Planning, & Policy 19 (1):2308843. doi:10.1080/15567249.2024.2308843.
  • Bouchekara, H. R. E., M. S. Javaid, Y. A. Shaaban, M. S. Shahriar, M. A. M. Ramli, and Y. Latreche. 2021. Decomposition based multiobjective evolutionary algorithm for PV/Wind/diesel hybrid microgrid system design considering load uncertainty. Energy Reports 7:52–69. doi:10.1016/j.egyr.2020.11.102.
  • Cai, W., X. Li, A. Maleki, F. Pourfayaz, M. A. Rosen, M. A. Nazari, and D. T. Bui. 2020. Optimal sizing and location based on economic parameters for an off-grid application of a hybrid system with photovoltaic, battery and diesel technology. Energy 201:117480. doi:10.1016/j.energy.2020.117480.
  • Das, P., B. K. Das, M. S. Islam, M. Rahman, R. Hassan, and K. A. Shuvo. 2023. Investigation of a reliable and sustainable stand-alone hybrid energy system for freshwater supply: A case study. International Journal of Sustainable Energy 42 (1):236–67. doi:10.1080/14786451.2023.2185866.
  • Das, P., B. K. Das, M. Rahman, and R. Hassan. 2022. Evaluating the prospect of utilizing excess energy and creating employments from a hybrid energy system meeting electricity and freshwater demands using multi-objective evolutionary algorithms. Energy 238:121860. doi:10.1016/j.energy.2021.121860.
  • DRTL. 2023. Department of road transport under UT administration of Lakshadweep. https://lakshadweep.gov.in/department-of-road-transport/
  • Eihab, E. E., A. A. Demirci, and S. M. Tercan. 2023. Optimal sizing and techno-enviro-economic feasibility assessment of solar tracker-based hybrid energy systems for rural electrification in Sudan. Renewable Energy 205:1057–70. doi:10.1016/j.renene.2023.02.022.
  • Girish, G., T. R. Resmi, and P. Seralathan. 2013. Assessment of groundwater quality in Kavaratti Island in the Lakshadweep Archipelagos, India. Chemistry and Ecology 29 (4):309–19. doi:10.1080/02757540.2012.760546.
  • Guo, Z., B. Li, G. Taylor, and X. Zhang. 2023. Infrastructure planning for airport microgrid integrated with electric aircraft and parking lot electric vehicles. eTransportation 17:100257. doi:10.1016/j.etran.2023.100257.
  • Hamida, I. B., S. B. Salah, F. Msahli, and M. F. Mimouni. 2018. Optimal network reconfiguration and renewable DG integration considering time sequence variation in load and DGs. Renewable Energy 121:66–80. doi:10.1016/j.renene.2017.12.106.
  • Hemeida, A. M., A. S. Omer, A. M. Bahaa-Eldin, S. Alkhalaf, M. Ahmed, T. Senjyu, and G. El-Saady. 2022. Multi-objective multi-verse optimization of renewable energy sources-based micro-grid system: Real case. Ain Shams Engineering Journal 13 (1):101543. doi:10.1016/j.asej.2021.06.028.
  • Ibrahim, M. M., N. H. Mostafa, A. H. Osman, and A. Hesham. 2020. Performance analysis of a stand-alone hybrid energy system for desalination unit in Egypt. Energy Conversation and Management 215:112941. doi:10.1016/j.enconman.2020.112941.
  • Kaur, R., V. Krishnasamy, N. K. Kandasamy, and S. Kumar. 2020. Discrete multiobjective grey wolf algorithm based optimal sizing and sensitivity analysis of pv-wind-battery system for rural telecom towers. IEEE System Journal 14 (1):729–37. doi:10.1109/JSYST.2019.2912899.
  • Kumar, P., N. Pal, and H. Sharma. 2021. Techno-economic analysis of solar photo-voltaic/diesel generator hybrid system using different energy storage technologies for isolated islands of India. Journal of Energy Storage 41:102965. doi:10.1016/j.est.2021.102965.
  • Menesy, A. S., S. Almomin, H. M. Sultan, I. O. Habiballah, M. M. Gulzar, M. Alqahtani, and M. Khalid. 2024. Techno-economic optimization framework of renewable hybrid photovoltaic/wind turbine/fuel cell energy system using artificial rabbits algorithm. IET Renewable Power Generation 1–18. doi:10.1049/rpg2.12938.
  • Murillo, S., J. L. Mı´guez, J. Porteiro, E. Granada, and J. C. Mora´n. 2007. Performance and exhaust emissions in the use of biodiesel in outboard diesel engines. Fuel 86 (12–13):1765–71. doi:10.1016/j.fuel.2006.11.031.
  • Nazari, M. H., A. Khodadadi, A. Lorestani, S. H. Hosseinian, and G. B. Gharehpetian. 2018. Optimal multi-objective D-STATCOM placement using MOGA for THD mitigation and cost minimization. Journal of Intelligent & Fuzzy Systems 35 (2):2339–48. doi:10.3233/JIFS-17698.
  • PowerLak. 2023. Portal and official website Cum E-Governance repository of Lakshadweep consumer-population. https://powerlak.gov.in/Default.aspx.
  • Roy, D. 2023. Modelling an off-grid hybrid renewable energy system to deliver electricity to a remote Indian island. Energy Conversion and Management 281:116839. doi:10.1016/j.enconman.2023.116839.
  • Saboori, H., and H. Mehrjerdi. 2022. Techno-economic-environmental modeling, joint optimization, and sensitivity analysis of a combined water desalination-hybrid renewable supply system. International Journal of Energy Research 46 (9):1–18. doi:10.1002/er.7998.
  • Sadeghi, D., A. H. Naghshbandy, and S. Bahramara. 2020. Optimal sizing of hybrid renewable energy systems in presence of electric vehicles using multi-objective particle swarm optimization. Energy 209:118471. doi:10.1016/j.energy.2020.118471.
  • Sakib, N., M. E. Hoque, F. Rashid, M. Aziz, M. S. Uddin, and M. T. Islam. 2024. Effects of dispatch algorithms and fuel variation on techno-economic performance of hybrid energy system in remote island. Journal of Energy Storage 78:109919. doi:10.1016/j.est.2023.109919.
  • Salameh, T., M. A. Abdelkareem, A. G. Olabi, E. T. Sayed, M. Al-Chaderchi, and H. Rezk. 2021. Integrated standalone hybrid solar PV, fuel cell and diesel generator power system for battery or supercapacitor storage systems in Khorfakkan, United Arab Emirates. International Journal of Hydrogen Energy 46 (8):6014–27. doi:10.1016/j.ijhydene.2020.08.153.
  • Sannigrahi, S., S. R. Ghatak, and P. Acharjee. 2019. Multi-objective optimisation-based active distribution system planning with reconfiguration, intermittent RES, and DSTATCOM. IET Renewable Power Generation 13 (13):2418–29. doi:10.1049/iet-rpg.2018.6060.
  • Singha, G., P. Baredar, A. Singh, and D. Kurup. 2017. Optimal sizing and location of PV, wind and battery storage for electrification to an island: A case study of Kavaratti, Lakshadweep. Journal of Energy Storage 12:78–86. doi:10.1016/j.est.2017.04.003.
  • Sun, H., A. G. Ebad, M. Toughani, S. A. Nowdeh, A. Naderipour, and A. Abdullah. 2022. Designing framework of hybrid photovoltaic-biowaste energy system with hydrogen storage considering economic and technical indices using whale optimization algorithm. Energy 238:121555. doi:10.1016/j.energy.2021.121555.
  • Sunny, M. R., T. Ali, K. Aghaloo, and K. Wang. 2024. Techno-economic feasibility of stand-alone hybrid energy system with battery storage in educational buildings: A case study of uttara university. Energy and Buildings 304:113852. doi:10.1016/j.enbuild.2023.113852.
  • TERI-Report. 2011. Strategy plan for 100% RET utilization in Lakshadweep Island. http://www.globalislands.net/userfiles/_india_lakshadweep1.pdf
  • Yu, H., P. Ong, and H. A. Wahab. 2024. Intelligent optimization of a hybrid renewable energy system using an improved flower pollination algorithm. International Journal of Environmental Science and Technology 21 (5):5105–26. doi:10.1007/s13762-023-05354-1.

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