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        • Universidad Tecnológica de Bolivar UTB (Colombia)
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        Controller design for VSCs in distributed generation applications: An IDA-PBC approach

        Fecha
        2019
        Registro en:
        2018 IEEE International Autumn Meeting on Power, Electronics and Computing, ROPEC 2018
        9781538659359
        https://hdl.handle.net/20.500.12585/9161
        10.1109/ROPEC.2018.8661360
        Universidad Tecnológica de Bolívar
        Repositorio UTB
        56919564100
        57208126635
        57191493648
        36449223500
        55791991200
        Autor
        Montoya O.D.
        Garrido Arévalo, Víctor Manuel
        Gil-González, Walter
        Garces A.
        Grisales-Noreña L.F.
        Institución
        • Universidad Tecnológica de Bolivar UTB (Colombia)
        Resumen
        This paper presents an asymptotically stable global controller design for distributed energy integration in electrical distribution networks using a three-phase voltage source converter (VSC). An invariant Park's transformation is used to obtain the mathematical representation of the VSC in dq0 reference frame. To design of the proposed controller, interconection and damping assignment passivity-based control (IDA-PBC) theory is applied via a Hamiltonian representation for the open-loop dynamic as well as the desired closed-loop dynamic of the system. The control law obtained allows guaranteeing asymptotic stability properties in the sense of Lyapunov for closed-loop operation. To verify the robustness and effectiveness of the proposed controller a classic connection of a distributed generator with a VSC converter using an ideal voltage source in its DC side is employed. Simulation results show the capability of the proposed controller to support active and reactive power independently under unbalance voltage conditions and harmonic distortion as well as the possibility of using the VSC as a dynamic power factor corrector. Additionally, all simulation scenarios are compared to classic PI controllers to show the good dynamic performance of the proposed controller using IDA-PBC theory. MATLAB/SIMULINK software is employed as simulation environment. © 2018 IEEE.
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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
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        • Argentina
        • Brasil
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        • México
        Dirección de Servicios de Información y Bibliotecas (SISIB)
        Universidad de Chile
        Red de Repositorios Latinoamericanos | 2006-2018