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Floating Offshore Wind Farm Control via Turbine Repositioning: Unlocking the Potential Unique to Floating Offshore Wind
IEEE Control Systems ( IF 3.9 ) Pub Date : 2024-09-19 , DOI: 10.1109/mcs.2024.3432342 Yue Niu, Arpit Dwivedi, Joel Sathiaraj, Parth P. Lathi, Ryozo Nagamune
IEEE Control Systems ( IF 3.9 ) Pub Date : 2024-09-19 , DOI: 10.1109/mcs.2024.3432342 Yue Niu, Arpit Dwivedi, Joel Sathiaraj, Parth P. Lathi, Ryozo Nagamune
Driven by the urgent need to displace fossil fuels for carbon emission reduction and climate change mitigation, offshore wind energy has emerged as a highly promising renewable energy source. By harnessing the power of strong and consistent wind across the vast expanse of the open sea, offshore wind turbines offer extraordinary potential for generating enormous amounts of electricity, supplying abundant clean energy to coastal regions and beyond. Situated at sea, offshore turbines can capitalize on stronger and steadier wind, resulting in higher energy production compared to their onshore counterparts. Furthermore, offshore wind turbines offer the additional advantage of minimizing visual impacts and noise pollution on human beings, making them particularly suitable for densely populated areas near coastlines.
中文翻译:
通过涡轮机重新定位进行浮动式海上风电场控制:释放浮动式海上风电的独特潜力
由于迫切需要取代化石燃料以减少碳排放和减缓气候变化,海上风能已成为一种极具前景的可再生能源。通过利用广阔的公海强劲而持续的风能,海上风力涡轮机具有产生大量电力的巨大潜力,为沿海地区及其他地区提供丰富的清洁能源。海上涡轮机位于海上,可以利用更强、更稳定的风力,从而比陆上涡轮机产生更高的能源产量。此外,海上风力涡轮机还具有最大程度地减少对人类的视觉影响和噪音污染的额外优势,使其特别适合海岸线附近人口稠密的地区。
更新日期:2024-09-19
中文翻译:
通过涡轮机重新定位进行浮动式海上风电场控制:释放浮动式海上风电的独特潜力
由于迫切需要取代化石燃料以减少碳排放和减缓气候变化,海上风能已成为一种极具前景的可再生能源。通过利用广阔的公海强劲而持续的风能,海上风力涡轮机具有产生大量电力的巨大潜力,为沿海地区及其他地区提供丰富的清洁能源。海上涡轮机位于海上,可以利用更强、更稳定的风力,从而比陆上涡轮机产生更高的能源产量。此外,海上风力涡轮机还具有最大程度地减少对人类的视觉影响和噪音污染的额外优势,使其特别适合海岸线附近人口稠密的地区。