FY75 - Futur energy

Eólica | Wind Power cadores económicos - que son responsables de estimar la extensión de vida útil del aerogenerador. Unificar el análisis de todos estos algoritmos desarrollados permite una mayor estimación de fiabilidad, precisión y reducción de la incertidumbre, destacando que actualmente no existe una herramienta en el mercado enfocada a los activos eólicos que permita el análisis múltiple de los aerogeneradores como lo hace LIFEX, por lo que se podría concluir que se trata de una metodología completamente innovadora. considering its impact on the OPEX and LCOE. Despite the associated latent technological uncertainty during project development, three configurations of the life extension methodology for different wind turbine outputs (275 kW, 2 MW and 5 MW) were in fact developed. These have enabled the integration of highly complex post-processing algorithms – the wear analysis of multiple structural elements, wear and tear, component failure prediction, a scaling law and the economic indicator tool - that are responsible for calculating the life extension of the wind turbine. Bringing together the analysis of all these algorithms results in an enhanced estimate of reliability and accuracy, as well as reducing uncertainty. No tool currently exists on the market specifically designed for wind power assets such as LIFEX that allows for the multiple analysis of wind turbines, which leads us to conclude that it does indeed represent a completely innovative methodology. Selección de la red neuronal | Selecting the neural network Estimación de cargas aplicando el método de escalado | Load estimation applying the scaling method Diego Cugat Consultor Experto en Eólica, Altran España Wind Power Expert Consultant, Altran España FuturEnergy | Noviembre/Diciembre November/December 2020 www.futurenergyweb.es 55

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