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Diseño y simulación de un control supervisorio para la gestión eficiente de un sistema de energía hibrido solar batería.

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dc.contributor.advisor Ortiz Villalba, Diego Edmundo
dc.contributor.author Moya Quishpe, Alexander Paul
dc.contributor.author Pazmiño Barbosa, Polo Josue
dc.date.accessioned 2022-12-02T23:51:27Z
dc.date.available 2022-12-02T23:51:27Z
dc.date.issued 2022-12-02
dc.identifier.citation Moya Quishpe, Alexander Paul. Pazmiño Barbosa, Polo Josue (2022). Diseño y simulación de un control supervisorio para la gestión eficiente de un sistema de energía hibrido solar batería. Carrera de Ingeniería Electrónica e Instrumentación. Departamento de Eléctrica y Electrónica. Universidad de las Fuerzas Armadas ESPE. Extensión Latacunga. es_ES
dc.identifier.other ENI-0493
dc.identifier.uri http://repositorio.espe.edu.ec/handle/21000/34501
dc.description.abstract This research presents the design and simulation of a distributed secondary control based on a consensus algorithm for the efficient management of an isolated DC microgrid (MG-DC) that secures the distribution of active power according to the capacities of each storage unit, reducing duty cycles and extending its life cycle. The balance of powers is fulfilled through a photovoltaic (PV) generation unit and an energy storage system (ESS) based on batteries. The PV Boost converter has a maximum power point tracking (MPPT) controller based on the perturb and observe (P & O) method. In contrast, a Buck-Boost converter is integrated into each battery, which is bidirectionally controlled through a local controller and a primary droop control that balances the required power at the loads. It produces a voltage deviation on the DC bus. To compensate for this deviation, a distributed secondary control strategy based on consensus is proposed to restore the voltage while managing the power sharing according to the capacities of each battery. It allows for the improvement of its life cycle, which is shown in the state of charge (SOC) index, thus extending its life cycle. The controllers are evaluated for solar re-source changes, load changes, and different storage capacities. es_ES
dc.description.sponsorship ESPEL es_ES
dc.language.iso spa es_ES
dc.publisher Universidad de las Fuerzas Armadas ESPE. Extensión Latacunga. Carrera de Ingeniería en Electrónica e Instrumentación. es_ES
dc.rights openAccess es_ES
dc.subject MICRORRED DE CC AISLADA es_ES
dc.subject CONTROL DE CAÍDAS es_ES
dc.subject RESTAURADOR DE VOLTAJE es_ES
dc.subject CONTROL SECUNDARIO DISTRIBUIDO es_ES
dc.subject ALGORITMO DE CONSENSO es_ES
dc.title Diseño y simulación de un control supervisorio para la gestión eficiente de un sistema de energía hibrido solar batería. es_ES
dc.type bachelorThesis es_ES


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