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The book shows how the operation of renewable-energy microgrids can
be facilitated by the use of model predictive control (MPC). It
gives readers a wide overview of control methods for microgrid
operation at all levels, ranging from quality of service, to
integration in the electricity market. MPC-based solutions are
provided for the main control issues related to energy management
and optimal operation of microgrids. The authors present MPC
techniques for case studies that include different renewable
sources - mainly photovoltaic and wind - as well as hybrid storage
using batteries, hydrogen and supercapacitors. Experimental results
for a pilot-scale microgrid are also presented, as well as
simulations of scheduling in the electricity market and integration
of electric and hybrid vehicles into the microgrid. in order to
replicate the examples provided in the book and to develop and
validate control algorithms on existing or projected microgrids.
Model Predictive Control of Microgrids will interest researchers
and practitioners, enabling them to keep abreast of a rapidly
developing field. The text will also help to guide graduate
students through processes from the conception and initial design
of a microgrid through its implementation to the optimization of
microgrid management. Advances in Industrial Control reports and
encourages the transfer of technology in control engineering. The
rapid development of control technology has an impact on all areas
of the control discipline. The series offers an opportunity for
researchers to present an extended exposition of new work in all
aspects of industrial control.
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