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This book acquaints readers with recent developments in dynamical
systems theory and its applications, with a strong focus on the
control and estimation of nonlinear systems. Several algorithms are
proposed and worked out for a set of model systems, in particular
so-called input-affine or bilinear systems, which can serve to
approximate a wide class of nonlinear control systems. These can
either take the form of state space models or be represented by an
input-output equation. The approach taken here further highlights
the role of modern mathematical and conceptual tools, including
differential algebraic theory, observer design for nonlinear
systems and generalized canonical forms.
This book acquaints readers with recent developments in dynamical
systems theory and its applications, with a strong focus on the
control and estimation of nonlinear systems. Several algorithms are
proposed and worked out for a set of model systems, in particular
so-called input-affine or bilinear systems, which can serve to
approximate a wide class of nonlinear control systems. These can
either take the form of state space models or be represented by an
input-output equation. The approach taken here further highlights
the role of modern mathematical and conceptual tools, including
differential algebraic theory, observer design for nonlinear
systems and generalized canonical forms.
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