Desarrollo de software para el modelado y simulación de IFV bajo afecciones por sombreado
Fecha
2024-04-04
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Jaén: Universidad de Jaén
Resumen
El presente Trabajo de Fin de Máster versa sobre el desarrollo de un software para el modelado y simulación de instalaciones fotovoltaicas conectadas a red, con capacidad para la cuantificación de las pérdidas energéticas por sombreados parciales. A lo largo de este documento, se expondrán las metodologías empleadas para modelar y simular el desempeño energético del sistema, de manera en la que puedan reflejarse las principales variables de las que éste depende: recurso solar, disposición de los módulos fotovoltaicos en el espacio, presencia de obstáculos cercanos, topología eléctrica del generador fotovoltaico y las características de los componentes que integran al sistema. Este documento finalizará con la exposición de varios casos de estudio, abordados a través del software desarrollado, y con una declaración de trabajos futuros relacionados con él.
This Master's Thesis deals with the development of software for the modeling and simulation of photovoltaic installations connected to the grid, with the capacity to quantify energy losses due to partial shading. Throughout this document, the methodologies used to model and simulate the energy performance of the system will be presented, so that the main variables on which it depends can be reflected: solar resource, arrangement of the photovoltaic modules in space, presence of nearby obstacles, electrical topology of the photovoltaic generator and the characteristics of the components that make up the system. This document will end with the presentation of several case studies, addressed through the developed software, and with a statement of future work related to it.
This Master's Thesis deals with the development of software for the modeling and simulation of photovoltaic installations connected to the grid, with the capacity to quantify energy losses due to partial shading. Throughout this document, the methodologies used to model and simulate the energy performance of the system will be presented, so that the main variables on which it depends can be reflected: solar resource, arrangement of the photovoltaic modules in space, presence of nearby obstacles, electrical topology of the photovoltaic generator and the characteristics of the components that make up the system. This document will end with the presentation of several case studies, addressed through the developed software, and with a statement of future work related to it.