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        Optimal location and sizing of distributed generators in dc networks using a hybrid method based on parallel pbil and pso

        Fecha
        2020-11-01
        Registro en:
        Grisales-Noreña, Luis F.; Montoya, Oscar D.; Ramos-Paja, Carlos A.; Hernandez-Escobedo, Quetzalcoatl; Perea-Moreno, Alberto-Jesus. 2020. "Optimal Location and Sizing of Distributed Generators in DC Networks Using a Hybrid Method Based on Parallel PBIL and PSO" Electronics 9, no. 11: 1808. https://doi.org/10.3390/electronics9111808
        https://hdl.handle.net/20.500.12585/9996
        https://www.mdpi.com/2079-9292/9/11/1808
        10.3390/electronics9111808
        2079-9292
        Universidad Tecnológica de Bolívar
        Repositorio Universidad Tecnológica de Bolívar
        http://repositorioslatinoamericanos.uchile.cl/handle/2250/3723137
        Autor
        Grisales-Noreña, Luis Fernando
        Montoya, Oscar Danilo
        Ramos-Paja, Carlos Andrés
        Hernandez-Escobedo, Quetzalcoatl
        Perea-Moreno, Alberto-Jesus
        Institución
        • Universidad Tecnológica de Bolivar UTB (Colombia)
        Resumen
        This paper addresses the problem of the locating and sizing of distributed generators (DGs) in direct current (DC) grids and proposes a hybrid methodology based on a parallel version of the Population-Based Incremental Learning (PPBIL) algorithm and the Particle Swarm Optimization (PSO) method. The objective function of the method is based on the reduction of the power loss by using a master-slave structure and the consideration of the set of restrictions associated with DC grids in a distributed generation environment. In such a structure, the master stage (PPBIL) finds the location of the generators and the slave stage (PSO) finds the corresponding sizes. For the purpose of comparison, eight additional hybrid methods were formed by using two additional location methods and two additional sizing methods, and this helped in the evaluation of the effectiveness of the proposed solution. Such an evaluation is illustrated with the electrical test systems composed of 10, 21 and 69 buses and simulated on the software, MATLAB. Finally, the results of the simulation demonstrated that the PPBIL–PSO method obtains the best balance between the reduction of power loss and the processing time.
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        Red de Repositorios Latinoamericanos
        + de 8.000.000 publicaciones disponibles
        500 instituciones participantes
        Dirección de Servicios de Información y Bibliotecas (SISIB)
        Universidad de Chile
        Ingreso Administradores
        Colecciones destacadas
        • Tesis latinoamericanas
        • Tesis argentinas
        • Tesis chilenas
        • Tesis peruanas
        Nuevas incorporaciones
        • Argentina
        • Brasil
        • Colombia
        • México
        Dirección de Servicios de Información y Bibliotecas (SISIB)
        Universidad de Chile
        Red de Repositorios Latinoamericanos | 2006-2018