Non Monotonic Approach To Robust H Control Of Multi Model Systems
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Non monotonic Approach to Robust H Control of Multi model Systems
Author | : Jiwei Wen,Alireza Nasiri,Sing Kiong Nguang,Dhafer J. Almakhles |
Publsiher | : Academic Press |
Total Pages | : 222 |
Release | : 2019-06-06 |
Genre | : Technology & Engineering |
ISBN | : 9780128148693 |
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Non-monotonic Approach to Robust H∞ Control of Multi-model Systems focuses on robust analysis and synthesis problems for multi-model systems based on the non-monotonic Lyapunov Functionals (LFs) approach that enlarges the stability region and improves control performance. By fully considering the diversity of switching laws, the multi-step time difference, the multi-step prediction, and the expansion of system dimension, the non-monotonic LF can be properly constructed. The focus of this book is placed on the H∞ state feedback control, H∞ filtering and H∞ output feedback control for multi-model systems via a non-monotonic LF approach. The book's authors provide illustrative examples to show the feasibility and efficiency of the proposed methods, along with practical examples that demonstrate the effectiveness and potential of theoretical results. Offers tools for the analysis and design of control processes where the process can be represented by multi-models Presents a comprehensive explanation of recent developments in non-monotonic approaches to robust H-infinity control of multi-model systems Gives numerical examples and simulation results in each chapter to demonstrate engineering potential
Robust Control
Author | : Andrzej Bartoszewicz |
Publsiher | : BoD – Books on Demand |
Total Pages | : 696 |
Release | : 2011-04-11 |
Genre | : Science |
ISBN | : 9789533072296 |
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The main objective of this monograph is to present a broad range of well worked out, recent theoretical and application studies in the field of robust control system analysis and design. The contributions presented here include but are not limited to robust PID, H-infinity, sliding mode, fault tolerant, fuzzy and QFT based control systems. They advance the current progress in the field, and motivate and encourage new ideas and solutions in the robust control area.
Robust Industrial Control Systems
Author | : Michael J. Grimble |
Publsiher | : John Wiley & Sons |
Total Pages | : 698 |
Release | : 2006-05-01 |
Genre | : Science |
ISBN | : 9780470020746 |
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Robust Industrial Control Systems: Optimal Design Approach for Polynomial Systems presents a comprehensive introduction to the use of frequency domain and polynomial system design techniques for a range of industrial control and signal processing applications. The solution of stochastic and robust optimal control problems is considered, building up from single-input problems and gradually developing the results for multivariable design of the later chapters. In addition to cataloguing many of the results in polynomial systems needed to calculate industrial controllers and filters, basic design procedures are also introduced which enable cost functions and system descriptions to be specified in order to satisfy industrial requirements. Providing a range of solutions to control and signal processing problems, this book: * Presents a comprehensive introduction to the polynomial systems approach for the solution of H_2 and H_infinity optimal control problems. * Develops robust control design procedures using frequency domain methods. * Demonstrates design examples for gas turbines, marine systems, metal processing, flight control, wind turbines, process control and manufacturing systems. * Includes the analysis of multi-degrees of freedom controllers and the computation of restricted structure controllers that are simple to implement. * Considers time-varying control and signal processing problems. * Addresses the control of non-linear processes using both multiple model concepts and new optimal control solutions. Robust Industrial Control Systems: Optimal Design Approach for Polynomial Systems is essential reading for professional engineers requiring an introduction to optimal control theory and insights into its use in the design of real industrial processes. Students and researchers in the field will also find it an excellent reference tool.
Multi model Jumping Systems Robust Filtering and Fault Detection
Author | : Shuping He,Xiaoli Luan |
Publsiher | : Springer Nature |
Total Pages | : 188 |
Release | : 2021-03-01 |
Genre | : Technology & Engineering |
ISBN | : 9789813364745 |
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This book focuses on multi-model systems, describing how to apply intelligent technologies to model complex multi-model systems by combining stochastic jumping system, neural network and fuzzy models. It focuses on robust filtering, including finite-time robust filtering, finite-frequency robust filtering and higher order moment robust filtering schemes, as well as fault detection problems for multi-model jump systems, such as observer-based robust fault detection, filtering-based robust fault detection and neural network-based robust fault detection methods. The book also demonstrates the validity and practicability of the theoretical results using simulation and practical examples, like circuit systems, robot systems and power systems. Further, it introduces readers to methods such as finite-time filtering, finite-frequency robust filtering, as well as higher order moment and neural network-based fault detection methods for multi-model jumping systems, allowing them to grasp the modeling, analysis and design of the multi-model systems presented and implement filtering and fault detection analysis for various systems, including circuit, network and mechanical systems.
A New Approach for Robust Internal Model Control of Nonlinear Systems
Author | : Basil Hamed,Walid Issa |
Publsiher | : Unknown |
Total Pages | : 72 |
Release | : 2011-11 |
Genre | : Electronic Book |
ISBN | : 3846556904 |
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Robust Control Systems with Genetic Algorithms
Author | : Mo Jamshidi,Renato A. Krohling,Leandro dos S. Coelho,Peter J. Fleming |
Publsiher | : CRC Press |
Total Pages | : 234 |
Release | : 2002-10-14 |
Genre | : Technology & Engineering |
ISBN | : 0849312515 |
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In recent years, new paradigms have emerged to replace-or augment-the traditional, mathematically based approaches to optimization. The most powerful of these are genetic algorithms (GA), inspired by natural selection, and genetic programming, an extension of GAs based on the optimization of symbolic codes. Robust Control Systems with Genetic Algorithms builds a bridge between genetic algorithms and the design of robust control systems. After laying a foundation in the basics of GAs and genetic programming, it demonstrates the power of these new tools for developing optimal robust controllers for linear control systems, optimal disturbance rejection controllers, and predictive and variable structure control. It also explores the application of hybrid approaches: how to enhance genetic algorithms and programming with fuzzy logic to design intelligent control systems. The authors consider a variety of applications, such as the optimal control of robotic manipulators, flexible links and jet engines, and illustrate a multi-objective, genetic algorithm approach to the design of robust controllers with a gasification plant case study. The authors are all masters in the field and clearly show the effectiveness of GA techniques. Their presentation is your first opportunity to fully explore this cutting-edge approach to robust optimal control system design and exploit its methods for your own applications.
Mathematical Reviews
Author | : Anonim |
Publsiher | : Unknown |
Total Pages | : 784 |
Release | : 2006 |
Genre | : Mathematics |
ISBN | : UOM:39015065183546 |
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Stability Analysis and Robust Control of Time Delay Systems
Author | : Min Wu,Yong He,Jin-Hua She |
Publsiher | : Springer Science & Business Media |
Total Pages | : 343 |
Release | : 2010-11-04 |
Genre | : Science |
ISBN | : 9783642030376 |
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"Stability Analysis and Robust Control of Time-Delay Systems" focuses on essential aspects of this field, including the stability analysis, stabilization, control design, and filtering of various time-delay systems. Primarily based on the most recent research, this monograph presents all the above areas using a free-weighting matrix approach first developed by the authors. The effectiveness of this method and its advantages over other existing ones are proven theoretically and illustrated by means of various examples. The book will give readers an overview of the latest advances in this active research area and equip them with a pioneering method for studying time-delay systems. It will be of significant interest to researchers and practitioners engaged in automatic control engineering. Prof. Min Wu, senior member of the IEEE, works at the Central South University, China.