TY - JOUR
T1 - Electrical energy conversion system design with single-phase inverter and H5 transformerless topology
AU - González-Morales, Luis Gerardo
AU - Colina-Morles, Eliezer
AU - Vanegas-Peralta, Pablo
AU - Sempertegui-Álvarez, Rodrigo Efraín
PY - 2014
Y1 - 2014
N2 - This paper presents the design of an electrical energy conversion system (EECS) for the use of solar energy and its conditioning for injection of energy to the commercial power grid. A single-phase full-bridge inverter with transformerless H5 topology coupled to an LCL filter is used. The system is identified using an averaged small-signal state space model; while the used cascade control scheme is tuned by pole placement and includes a maximum power disturb-observe tracking type algorithm of that increases efficiency by operating the system at the optimum operating point of the solar panel. This design describes essential technical aspects in the components sizing and selection for experimental development, as well as the control structure design for a good performance to face systems perturbations.
AB - This paper presents the design of an electrical energy conversion system (EECS) for the use of solar energy and its conditioning for injection of energy to the commercial power grid. A single-phase full-bridge inverter with transformerless H5 topology coupled to an LCL filter is used. The system is identified using an averaged small-signal state space model; while the used cascade control scheme is tuned by pole placement and includes a maximum power disturb-observe tracking type algorithm of that increases efficiency by operating the system at the optimum operating point of the solar panel. This design describes essential technical aspects in the components sizing and selection for experimental development, as well as the control structure design for a good performance to face systems perturbations.
KW - Control systems
KW - Single-phase inverter H5
KW - Solar energy
KW - Unipolar PWM
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U2 - 10.17533/udea.redin.18758
DO - 10.17533/udea.redin.18758
M3 - Article
AN - SCOPUS:84911474294
SN - 0120-6230
VL - 1
SP - 79
EP - 89
JO - Revista Facultad de Ingenieria
JF - Revista Facultad de Ingenieria
IS - 73
ER -