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These 22 papers on control of nonlinear partial differential
equations highlight the area from a wide variety of viewpoints.
They comprise theoretical considerations such as optimality
conditions, relaxation, or stabilizability theorems, as well as the
development and evaluation of new algorithms. A significant part of
the volume is devoted to applications in engineering, continuum
mechanics and population biology.
Consisting of 23 refereed contributions, this volume offers a broad
and diverse view of current research in control and estimation of
partial differential equations. Topics addressed include, but are
not limited to - control and stability of hyperbolic systems
related to elasticity, linear and nonlinear; - control and
identification of nonlinear parabolic systems; - exact and
approximate controllability, and observability; - Pontryagin's
maximum principle and dynamic programming in PDE; and - numerics
pertinent to optimal and suboptimal control problems. This volume
is primarily geared toward control theorists seeking information on
the latest developments in their area of expertise. It may also
serve as a stimulating reader to any researcher who wants to gain
an impression of activities at the forefront of a vigorously
expanding area in applied mathematics.
Consisting of 23 refereed contributions, this volume offers a broad
and diverse view of current research in control and estimation of
partial differential equations. Topics addressed include, but are
not limited to - control and stability of hyperbolic systems
related to elasticity, linear and nonlinear; - control and
identification of nonlinear parabolic systems; - exact and
approximate controllability, and observability; - Pontryagin's
maximum principle and dynamic programming in PDE; and - numerics
pertinent to optimal and suboptimal control problems. This volume
is primarily geared toward control theorists seeking information on
the latest developments in their area of expertise. It may also
serve as a stimulating reader to any researcher who wants to gain
an impression of activities at the forefront of a vigorously
expanding area in applied mathematics.
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