Controllability Of Partial Differential Equations Governed By Multiplicative Controls


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Controllability of Partial Differential Equations Governed by Multiplicative Controls


Controllability of Partial Differential Equations Governed by Multiplicative Controls

Author: Alexander Y. Khapalov

language: en

Publisher: Springer

Release Date: 2010-05-19


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This monograph addresses the global controllability of partial differential equations in the context of multiplicative (or bilinear) controls, which enter the model equations as coefficients. The methodology is illustrated with a variety of model equations.

Trends in Control Theory and Partial Differential Equations


Trends in Control Theory and Partial Differential Equations

Author: Fatiha Alabau-Boussouira

language: en

Publisher: Springer

Release Date: 2019-07-04


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This book presents cutting-edge contributions in the areas of control theory and partial differential equations. Over the decades, control theory has had deep and fruitful interactions with the theory of partial differential equations (PDEs). Well-known examples are the study of the generalized solutions of Hamilton-Jacobi-Bellman equations arising in deterministic and stochastic optimal control and the development of modern analytical tools to study the controllability of infinite dimensional systems governed by PDEs. In the present volume, leading experts provide an up-to-date overview of the connections between these two vast fields of mathematics. Topics addressed include regularity of the value function associated to finite dimensional control systems, controllability and observability for PDEs, and asymptotic analysis of multiagent systems. The book will be of interest for both researchers and graduate students working in these areas.

Controllability of Dynamic Systems


Controllability of Dynamic Systems

Author: Ara S. Avetisyan

language: en

Publisher: Cambridge Scholars Publishing

Release Date: 2018-04-03


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The book is about the possibilities of involvement of the well-known Green’s function method in exact or approximate controllability analysis for dynamic systems. Due to existing extensions of the Green’s function notion to nonlinear systems, the approach developed here is valid for systems with both linear and nonlinear dynamics. The book offers a number of particular examples, covering specific issues that make the controllability analysis sophisticated, such as coordinate dependent characteristics, point sources, unbounded domains, higher dimensions, and specific nonlinearities. It also offers extensive numerical analysis, which reveals both advantages and drawbacks of the approach. As such, the book will be of interest to researchers interested in the theory and practice of control, as well as PhD and Master’s students.