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This monograph presents a novel method of sliding mode control for
switch-regulated nonlinear systems. The Delta Sigma modulation
approach allows one to implement a continuous control scheme using
one or multiple, independent switches, thus effectively merging the
available linear and nonlinear controller design techniques with
sliding mode control. Sliding Mode Control: The Delta-Sigma
Modulation Approach, combines rigorous mathematical derivation of
the unique features of Sliding Mode Control and Delta-Sigma
modulation with numerous illustrative examples from diverse areas
of engineering. In addition, engineering case studies demonstrate
the applicability of the technique and the ease with which one can
implement the exposed results. This book will appeal to researchers
in control engineering and can be used as graduate-level textbook
for a first course on sliding mode control.
Illustrating the power, simplicity, and generality of the concept
of flatness, this reference explains how to identify, utilize, and
apply flatness in system planning and design. The book includes a
large assortment of exercises and models that range from elementary
to complex classes of systems. Leading students and professionals
through a vast array of designs, simulations, and analytical
studies on the traditional uses of flatness, Differentially Flat
Systems contains an extensive amount of examples that showcase the
value of flatness in system design, demonstrate how flatness can be
assessed in the context of perturbed systems and apply static and
dynamic feedback controller design techniques.
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