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Modeling of photovoltaic sources and their emulation by means of
power electronic converters are challenging issues. The former is
tied to the knowledge of the electrical behavior of the PV
generator; the latter consists in its realization by a suitable
power amplifier. This extensive introduction to the modeling of PV
generators and their emulation by means of power electronic
converters will aid in understanding and improving design and set
up of new PV plants. The main benefit of reading Photovoltaic
Sources is the ability to face the emulation of photovoltaic
generators obtained by the design of a suitable equipment in which
voltage and current are the same as in a real source. This is
achieved according to the following steps: the source electrical
behavior modeling, the power converter design, including its
control, for the laboratory emulator. This approach allows the
reader to cope with the creation of an indoor virtual photovoltaic
plant, in which the environmental conditions can be imposed by the
user, for testing real operation including maximum power point
tracking, partial shading, control for the grid or load
interfacing, etc. Photovoltaic Sources is intended to meet the
demands of postgraduate level students, and should prove useful to
professional engineers and researchers dealing with the problems
associated with modeling and emulation of photovoltaic sources.
Modeling of photovoltaic sources and their emulation by means of
power electronic converters are challenging issues. The former is
tied to the knowledge of the electrical behavior of the PV
generator; the latter consists in its realization by a suitable
power amplifier. This extensive introduction to the modeling of PV
generators and their emulation by means of power electronic
converters will aid in understanding and improving design and set
up of new PV plants. The main benefit of reading Photovoltaic
Sources is the ability to face the emulation of photovoltaic
generators obtained by the design of a suitable equipment in which
voltage and current are the same as in a real source. This is
achieved according to the following steps: the source electrical
behavior modeling, the power converter design, including its
control, for the laboratory emulator. This approach allows the
reader to cope with the creation of an indoor virtual photovoltaic
plant, in which the environmental conditions can be imposed by the
user, for testing real operation including maximum power point
tracking, partial shading, control for the grid or load
interfacing, etc. Photovoltaic Sources is intended to meet the
demands of postgraduate level students, and should prove useful to
professional engineers and researchers dealing with the problems
associated with modeling and emulation of photovoltaic sources.
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