Distributed Parameter Control Systems Theory and Application 1st Edition by Spyros G. Tzafestas- Ebook PDF Instant Download/Delivery: 9781483114965, 1483114961
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Product details:
ISBN 10:1483114961
ISBN 13: 9781483114965
Author: Spyros G. Tzafestas
Distributed Parameter Control Systems: Theory and Application is a two-part book consisting of 10 theoretical and five application-oriented chapters contributed by well-known workers in the distributed-parameter systems. The book covers topics of distributed parameter control systems in the areas of simulation, identification, state estimation, stability, control (optimal, stochastic, and coordinated), numerical approximation methods, optimal sensor, and actuator positioning. Five applications works include chemical reactors, heat exchangers, petroleum reservoirs/aquifers, and nuclear reactors. The text will be a useful reference for both graduate students and professional researchers working in the field.
Table of contents:
Part I. Theory
Chapter 1. Hybrid Simulation of Distributed Parameter Systems
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Introduction
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Distributed-Parameter Models
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Hybrid Distributed-Parameter Simulation Methods
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General Implementation Aspects
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Stability Analysis of Hybrid Simulation Methods
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Experimental Results
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Conclusions
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References
Chapter 2. Identification of Distributed-Parameter Systems
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Introduction
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Exhibition of Mathematical Models
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Specific Results for Identification in Stochastic-Distributed-Parameter Systems
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Conclusions
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Acknowledgments
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References
Chapter 3. Filtering, Smoothing, and Prediction of Distributed Parameter Systems: Survey of Rigorous Approach
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Introduction
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Formal Approach Based on the Wiener-Hopf Theory
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Rigorous Approaches to Optimal Estimation Problems
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References
Chapter 4. Some Methods for Analyzing the Stability and the Hyperstability of Distributed Parameter Systems
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Foreword
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Introduction
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Stability and Hyperstability
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Definition of Distributed Parameter Systems
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A General Result on the Stability of DPS
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Space Mean Square Stability Criteria for a Class of Distributed Systems with Constant Coefficients
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Stability of Distributed Systems with Variable Coefficients by Reducing to Distributed Systems with Constant Coefficients
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Stability Criteria for Nonlinear Distributed Systems Defined by Laplace-Green Functions
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Hyperstability of Nonlinear Distributed Systems
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Space Sampling Effect
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Stability of DPS in the Presence of Random Disturbances
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Conclusions
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References
Chapter 5. Stability and Optimal Control of Stochastic Evolution Equations
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Introduction
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Semigroup Theory
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Quadratic Cost Control Problem
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Stochastic Evolution Equations
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Stochastic Stability
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Stochastic Quadratic Control
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References
Chapter 6. Adaptive and Robustness Properties of Certain Bilinear Distributed Parameter Control Systems
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Introduction
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State Equations of a Class of Bilinear Distributed Parameter Systems
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A Summary of Available Results in the Control of Bilinear Distributed Parameter Systems
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Bilinear Control: A Tool for the Design of Adaptive and Robust Distributed Parameter Systems
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Concluding Comments
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References
Chapter 7. Coordinated Control of Distributed Parameter Systems
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Introduction
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Decomposition
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Coordinated Control
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Conclusion
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References
Chapter 8. The Finite Element Method in Distributed Parameter Control Systems
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Introduction
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Construction of Finite Element (f.e.) Spaces
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The Finite Element Method for Elliptic Boundary Value Problems
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Finite Element Approximation for Initial Value Problems
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Finite Element Applications to Control Systems
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Acknowledgments
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Notations for the Function Spaces Used
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References
Chapter 9. Approximation Methods for Distributed Parameter Systems
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Introduction
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General Remarks
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Some Examples
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Further Examples
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Concluding Remarks
Chapter 10. Selection of Measurement and Control Locations in Distributed Parameter Systems
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Introduction
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Control Location Problem
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Sensor Location Problem
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Sensor and Control Location Problem
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Conclusion
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References
Part II. Applications
Chapter 11. Experimental Application of Distributed Parameter Control Theory
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Introduction
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A One-Dimensional Linear Example
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A Two-Dimensional Linear Example
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A Moving Boundary Problem
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Discussion of Practical Problems
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Summary and Outlook
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References
Chapter 12. Distributed Parameter Identification in Geophysics – Petroleum Reservoirs and Aquifers
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Introduction
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Survey of Literature in Reservoir and Aquifer Identification
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Methods for Solution of the Identification Problem
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Regularization Methods for the Solution of Ill-Posed Problems
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Regularization Approach to the Identification Problem
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References
Chapter 13. Identification for Distributed Parameter Chemical Engineering Systems – Fixed-Bed Tubular Reactors
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Introduction
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Scope of Chemical Engineering Applications
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Fixed-Bed Catalytic Reactors
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Steady-State Sequential Distributed Filtering
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References
Chapter 14. Distributed Parameter Heat Exchangers – Modeling, Dynamics and Control
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Introduction
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History of Research on Modeling and Dynamics of Heat Exchangers
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Modeling of Heat Exchangers
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Analysis of Dynamic Behavior of Heat Exchangers
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Properties of Dynamics of Heat Exchangers
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Lumped Parameter Simulation of Heat Exchangers by Method of Weighted Residuals
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A Survey of Research in Control Problems of Heat Exchangers
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References
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Bibliography of Dynamics and Control of Heat Exchangers
Chapter 15. Modeling and Control of Distributed Parameter Nuclear Reactors
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Introduction
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Nuclear Reactor Distributed State Equations
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The Linear Stochastic Model with Control
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Examples I–IV
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Non-Interacting Modal Expansions
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The Modal Approach to Filtering and Control
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Filtering of a Liquid Metal Fast Breeder Reactor
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Tags: Spyros Tzafestas, Distributed Parameter, Theory and Application


