Integration of PV Arrays in DC Power Grids via Unidirectional Boost Converters: A PBC Approach
Fecha
2018Registro en:
2018 IEEE 9th Power, Instrumentation and Measurement Meeting, EPIM 2018
9781538678428
10.1109/EPIM.2018.8756428
Universidad Tecnológica de Bolívar
Repositorio UTB
56919564100
55609096600
57191493648
36449223500
Autor
Montoya O.D.
Campillo Jiménez, Javier Eduardo
Gil-González W.
Garces A.
Resumen
This paper presents a general control design for photovoltaic systems integrated with Direct-Current power grids by using an unidirectional boost converter. Passivity-based control (PBC) theory is used as a control technique since the dynamical model of the boost converter has an intrinsically port-Hamiltonian structure, where PBC theory is based upon, to design stable controllers via Lyapunov stability theory. To control the photovoltaic solar system, a current control mode is used, since photovoltaic cells are mathematically modelled as current sources, where the photo-current determined by the solar irradiance and the cell's temperature. Proportional and proportional-integral passivity-based controllers are developed to operate the boost converter under current control mode to extract the maximum power available in the PV array. Simulation results are conducted via MATLAB/ODE-package software. © 2018 IEEE.