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Theory of hybrid systems = determini...
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SpringerLink (Online service)
Theory of hybrid systems = deterministic and stochastic /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Theory of hybrid systems/ by Mohamad S. Alwan, Xinzhi Liu.
Reminder of title:
deterministic and stochastic /
Author:
Alwan, Mohamad S.
other author:
Liu, Xinzhi.
Published:
Singapore :Springer Singapore : : 2018.,
Description:
xvi, 241 p. :ill. (some col.), digital ; : 24 cm.;
Contained By:
Springer eBooks
Subject:
Hybrid systems. -
Online resource:
https://doi.org/10.1007/978-981-10-8046-3
ISBN:
9789811080463
Theory of hybrid systems = deterministic and stochastic /
Alwan, Mohamad S.
Theory of hybrid systems
deterministic and stochastic /[electronic resource] :by Mohamad S. Alwan, Xinzhi Liu. - Singapore :Springer Singapore :2018. - xvi, 241 p. :ill. (some col.), digital ;24 cm. - Nonlinear physical science,1867-8440. - Nonlinear physical science..
Introduction -- Analysis of Hybrid Systems -- Singularly Perturbed Systems (SPSs) -- Systems of Dierential Equations with Piecewise Continuous Arguments (EPCA): A Hybrid System Approach -- Reliable Control and State Estimation for Uncertain Impulsive Large-Scale Systems -- Stochastic Hybrid (Impulsive) Systems -- Stochastic Systems with EPCA -- Input-to-State Stability (ISS) for Stochastic Hybrid Systems -- Stability in Terms of Two Measures.
This book is the first to present the application of the hybrid system theory to systems with EPCA (equations with piecewise continuous arguments) The hybrid system paradigm is a valuable modeling tool for describing a wide range of real-world applications. Moreover, although new technology has produced, and continues to produce highly hierarchical sophisticated machinery that cannot be analyzed as a whole system, hybrid system representation can be used to reduce the structural complexity of these systems. That is to say, hybrid systems have become a modeling priority, which in turn has led to the creation of a promising research field with several application areas. As such, the book explores recent developments in the area of deterministic and stochastic hybrid systems using the Lyapunov and Razumikhin-Lyapunov methods to investigate the systems' properties. It also describes properties such as stability, stabilization, reliable control, H-infinity optimal control, input-to-state stability (ISS)/stabilization, state estimation, and large-scale singularly perturbed systems.
ISBN: 9789811080463
Standard No.: 10.1007/978-981-10-8046-3doiSubjects--Topical Terms:
720764
Hybrid systems.
LC Class. No.: QA76.38 / .A493 2018
Dewey Class. No.: 003
Theory of hybrid systems = deterministic and stochastic /
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Introduction -- Analysis of Hybrid Systems -- Singularly Perturbed Systems (SPSs) -- Systems of Dierential Equations with Piecewise Continuous Arguments (EPCA): A Hybrid System Approach -- Reliable Control and State Estimation for Uncertain Impulsive Large-Scale Systems -- Stochastic Hybrid (Impulsive) Systems -- Stochastic Systems with EPCA -- Input-to-State Stability (ISS) for Stochastic Hybrid Systems -- Stability in Terms of Two Measures.
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This book is the first to present the application of the hybrid system theory to systems with EPCA (equations with piecewise continuous arguments) The hybrid system paradigm is a valuable modeling tool for describing a wide range of real-world applications. Moreover, although new technology has produced, and continues to produce highly hierarchical sophisticated machinery that cannot be analyzed as a whole system, hybrid system representation can be used to reduce the structural complexity of these systems. That is to say, hybrid systems have become a modeling priority, which in turn has led to the creation of a promising research field with several application areas. As such, the book explores recent developments in the area of deterministic and stochastic hybrid systems using the Lyapunov and Razumikhin-Lyapunov methods to investigate the systems' properties. It also describes properties such as stability, stabilization, reliable control, H-infinity optimal control, input-to-state stability (ISS)/stabilization, state estimation, and large-scale singularly perturbed systems.
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