A Variational Approach to Nonsmooth Dynamics

Applications in Unilateral Mechanics and Electronics

Nonfiction, Science & Nature, Science, Other Sciences, System Theory, Mathematics, Calculus
Cover of the book A Variational Approach to Nonsmooth Dynamics by Samir Adly, Springer International Publishing
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Author: Samir Adly ISBN: 9783319686585
Publisher: Springer International Publishing Publication: February 19, 2018
Imprint: Springer Language: English
Author: Samir Adly
ISBN: 9783319686585
Publisher: Springer International Publishing
Publication: February 19, 2018
Imprint: Springer
Language: English

This brief examines mathematical models in nonsmooth mechanics and nonregular electrical circuits, including evolution variational inequalities, complementarity systems, differential inclusions, second-order dynamics, Lur'e systems and Moreau's sweeping process.

The field of nonsmooth dynamics is of great interest to mathematicians, mechanicians, automatic controllers and engineers. The present volume acknowledges this transversality and provides a multidisciplinary view as it outlines fundamental results in nonsmooth dynamics and explains how to use them to study various problems in engineering. In particular, the author explores the question of how to redefine the notion of dynamical systems in light of modern variational and nonsmooth analysis.

With the aim of bridging between the communities of applied mathematicians, engineers and researchers in control theory and nonlinear systems, this brief outlines both relevant mathematical proofs and models in unilateral mechanics and electronics.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This brief examines mathematical models in nonsmooth mechanics and nonregular electrical circuits, including evolution variational inequalities, complementarity systems, differential inclusions, second-order dynamics, Lur'e systems and Moreau's sweeping process.

The field of nonsmooth dynamics is of great interest to mathematicians, mechanicians, automatic controllers and engineers. The present volume acknowledges this transversality and provides a multidisciplinary view as it outlines fundamental results in nonsmooth dynamics and explains how to use them to study various problems in engineering. In particular, the author explores the question of how to redefine the notion of dynamical systems in light of modern variational and nonsmooth analysis.

With the aim of bridging between the communities of applied mathematicians, engineers and researchers in control theory and nonlinear systems, this brief outlines both relevant mathematical proofs and models in unilateral mechanics and electronics.

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