2022
DOI: 10.1016/j.heliyon.2022.e11458
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Development of a wind turbine for a hybrid solar-wind power system

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Cited by 8 publications
(3 citation statements)
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“…With that in mind, a possible solution that several authors have proposed is hybridization, i.e., combining multiple concepts in one. Some examples include combining wave and wind energy [128][129][130], wind and solar [131,132], fuel cells, wave and solar [133], as well as combining wave-energy harvesting concepts [134,135]. Within the existing hybrid WECs, the h-WEC stands out as a promising solution for integration into rubble-mound breakwaters [18] that has higher efficiencies for a broader range of wave conditions when compared to standalone solutions [136], which reduces overtopping rates of the structure by about 50% [26].…”
Section: Hybrid Devicesmentioning
confidence: 99%
“…With that in mind, a possible solution that several authors have proposed is hybridization, i.e., combining multiple concepts in one. Some examples include combining wave and wind energy [128][129][130], wind and solar [131,132], fuel cells, wave and solar [133], as well as combining wave-energy harvesting concepts [134,135]. Within the existing hybrid WECs, the h-WEC stands out as a promising solution for integration into rubble-mound breakwaters [18] that has higher efficiencies for a broader range of wave conditions when compared to standalone solutions [136], which reduces overtopping rates of the structure by about 50% [26].…”
Section: Hybrid Devicesmentioning
confidence: 99%
“…Trials were carried out with a capacity of 200 Wp (solar panel) and 2kW (wind turbine) with an electricity production of ±290 kWh/year. Wind turbines are not yet optimal in their development because they are related to wind resources, appropriate systems/methods, and appropriate infrastructure [12]. Hybrid solar power and pilot-scale wind power are used for utilization for lighting and aesthetics above the Jakabaring Campus rectorate building.…”
Section: Spp Developmentmentioning
confidence: 99%
“…Potensi energi angin di Indonesia dengan kecepatan angin rata-rata sekitar 3 s.d 5 m/s dan total daya yang dapat dibangkitkan sebesar 9.290 MW, ini merupakan salah satu potensi energi yang cukup besar, mengingat di Indonesia hanya memanfaatkannya sekitar 1% dari potensinya (Bachtiar & Hayyatul, 2018). Tantangan yang dihadapi tenaga angin sebagai sumber energi alternatif adalah ketidakpastian sumber daya dalam ketersediaannya (Adetunla et al, 2022).…”
Section: A Pendahuluanunclassified