Linear Controller Design

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Linear Controller Design

Author : Stephen P. Boyd,Craig H. Barratt
Publisher : Unknown
Page : 440 pages
File Size : 41,5 Mb
Release : 1991
Category : Science
ISBN : UOM:39076001005680

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Linear Controller Design by Stephen P. Boyd,Craig H. Barratt Pdf

Quantitative Feedback Design of Linear and Nonlinear Control Systems

Author : Oded Yaniv
Publisher : Springer Science & Business Media
Page : 382 pages
File Size : 44,6 Mb
Release : 2013-04-17
Category : Technology & Engineering
ISBN : 9781475763317

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Quantitative Feedback Design of Linear and Nonlinear Control Systems by Oded Yaniv Pdf

Quantitative Feedback Design of Linear and Nonlinear Control Systems is a self-contained book dealing with the theory and practice of Quantitative Feedback Theory (QFT). The author presents feedback synthesis techniques for single-input single-output, multi-input multi-output linear time-invariant and nonlinear plants based on the QFT method. Included are design details and graphs which do not appear in the literature, which will enable engineers and researchers to understand QFT in greater depth. Engineers will be able to apply QFT and the design techniques to many applications, such as flight and chemical plant control, robotics, space, vehicle and military industries, and numerous other uses. All of the examples were implemented using Matlab® Version 5.3; the script file can be found at the author's Web site. QFT results in efficient designs because it synthesizes a controller for the exact amount of plant uncertainty, disturbances and required specifications. Quantitative Feedback Design of Linear and Nonlinear Control Systems is a pioneering work that illuminates QFT, making the theory - and practice - come alive.

Modern Linear Control Design

Author : Paolo Caravani
Publisher : Springer Science & Business Media
Page : 122 pages
File Size : 45,7 Mb
Release : 2013-04-16
Category : Technology & Engineering
ISBN : 9781461469438

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Modern Linear Control Design by Paolo Caravani Pdf

This book offers a compact introduction to modern linear control design. The simplified overview presented of linear time-domain methodology paves the road for the study of more advanced non-linear techniques. Only rudimentary knowledge of linear systems theory is assumed - no use of Laplace transforms or frequency design tools is required. Emphasis is placed on assumptions and logical implications, rather than abstract completeness; on interpretation and physical meaning, rather than theoretical formalism; on results and solutions, rather than derivation or solvability. The topics covered include transient performance and stabilization via state or output feedback; disturbance attenuation and robust control; regional eigenvalue assignment and constraints on input or output variables; asymptotic regulation and disturbance rejection. Lyapunov theory and Linear Matrix Inequalities (LMI) are discussed as key design methods. All methods are demonstrated with MATLAB to promote practical use and comprehension.

Linear Feedback Control

Author : Dingyu Xue,YangQuan Chen,Derek P. Atherton
Publisher : SIAM
Page : 366 pages
File Size : 46,5 Mb
Release : 2007-01-01
Category : Mathematics
ISBN : 0898718627

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Linear Feedback Control by Dingyu Xue,YangQuan Chen,Derek P. Atherton Pdf

This book discusses analysis and design techniques for linear feedback control systems using MATLAB® software. By reducing the mathematics, increasing MATLAB working examples, and inserting short scripts and plots within the text, the authors have created a resource suitable for almost any type of user. The book begins with a summary of the properties of linear systems and addresses modeling and model reduction issues. In the subsequent chapters on analysis, the authors introduce time domain, complex plane, and frequency domain techniques. Their coverage of design includes discussions on model-based controller designs, PID controllers, and robust control designs. A unique aspect of the book is its inclusion of a chapter on fractional-order controllers, which are useful in control engineering practice.

Switched Linear Systems

Author : Zhendong Sun
Publisher : Springer Science & Business Media
Page : 303 pages
File Size : 41,9 Mb
Release : 2006-03-30
Category : Technology & Engineering
ISBN : 9781846281310

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Switched Linear Systems by Zhendong Sun Pdf

Switched linear systems have enjoyed a particular growth in interest since the 1990s. The large amount of data and ideas thus generated have, until now, lacked a co-ordinating framework to focus them effectively on some of the fundamental issues such as the problems of robust stabilizing switching design, feedback stabilization and optimal switching. This deficiency is resolved by this book which features: nucleus of constructive design approaches based on canonical decomposition and forming a sound basis for the systematic treatment of secondary results; theoretical exploration and logical association of several independent but pivotal concerns in control design as they pertain to switched linear systems: controllability and observability, feedback stabilization, optimization and periodic switching; a reliable foundation for further theoretical research as well as design guidance for real life engineering applications through the integration of novel ideas, fresh insights and rigorous results.

Optimal Linear Controller Design for Periodic Inputs

Author : Goele Pipeleers,Bram Demeulenaere,Jan Swevers
Publisher : Springer Science & Business Media
Page : 187 pages
File Size : 42,9 Mb
Release : 2009-11-03
Category : Technology & Engineering
ISBN : 9781848829749

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Optimal Linear Controller Design for Periodic Inputs by Goele Pipeleers,Bram Demeulenaere,Jan Swevers Pdf

Optimal Linear Controller Design for Periodic Inputs proposes a general design methodology for linear controllers facing periodic inputs which applies to all feedforward control, estimated disturbance feedback control, repetitive control and feedback control. The design methodology proposed is able to reproduce and outperform the major current design approaches, where this superior performance stems from the following properties: uncertainty on the input period is explicitly accounted for, periodic performance being traded-off against conflicting design objectives and controller design being translated into a convex optimization problem, guaranteeing the efficient computation of its global optimum. The potential of the design methodology is illustrated by both numerical and experimental results.

Linear Control System Analysis and Design

Author : Constantine H. Houpis,Stuart N. Sheldon,John J. D'Azzo
Publisher : CRC Press
Page : 859 pages
File Size : 43,6 Mb
Release : 2003-08-14
Category : Technology & Engineering
ISBN : 9780203911426

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Linear Control System Analysis and Design by Constantine H. Houpis,Stuart N. Sheldon,John J. D'Azzo Pdf

Thoroughly classroom-tested and proven to be a valuable self-study companion, Linear Control System Analysis and Design: Fifth Edition uses in-depth explanations, diagrams, calculations, and tables, to provide an intensive overview of modern control theory and conventional control system design. The authors keep the mathematics to a minimum while stressing real-world engineering challenges. Completely updated and packed with student-friendly features, the Fifth Edition presents a wide range of examples using MATLAB® and TOTAL-PC, as well as an appendix listing MATLAB functions for optimizing control system analysis and design. Eighty percent of the problems presented in the previous edition have been revised to further reinforce concepts necessary for current electrical, aeronautical, astronautical, and mechanical applications.

Linear Control Systems

Author : Branislav Kisacanin,Gyan C. Agarwal
Publisher : Springer Science & Business Media
Page : 385 pages
File Size : 46,5 Mb
Release : 2012-12-06
Category : Technology & Engineering
ISBN : 9781461505532

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Linear Control Systems by Branislav Kisacanin,Gyan C. Agarwal Pdf

Anyone seeking a gentle introduction to the methods of modern control theory and engineering, written at the level of a first-year graduate course, should consider this book seriously. It contains: A generous historical overview of automatic control, from Ancient Greece to the 1970s, when this discipline matured into an essential field for electrical, mechanical, aerospace, chemical, and biomedical engineers, as well as mathematicians, and more recently, computer scientists; A balanced presentation of the relevant theory: the main state-space methods for description, analysis, and design of linear control systems are derived, without overwhelming theoretical arguments; Over 250 solved and exercise problems for both continuous- and discrete-time systems, often including MATLAB simulations; and Appendixes on MATLAB, advanced matrix theory, and the history of mathematical tools such as differential calculus, transform methods, and linear algebra. Another noteworthy feature is the frequent use of an inverted pendulum on a cart to illustrate the most important concepts of automatic control, such as: Linearization and discretization; Stability, controllability, and observability; State feedback, controller design, and optimal control; and Observer design, reduced order observers, and Kalman filtering. Most of the problems are given with solutions or MATLAB simulations. Whether the book is used as a textbook or as a self-study guide, the knowledge gained from it will be an excellent platform for students and practising engineers to explore further the recent developments and applications of control theory.

Numerical Methods for Linear Control Systems

Author : Biswa Datta
Publisher : Elsevier
Page : 736 pages
File Size : 44,5 Mb
Release : 2004-02-24
Category : Mathematics
ISBN : 9780080537887

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Numerical Methods for Linear Control Systems by Biswa Datta Pdf

Numerical Methods for Linear Control Systems Design and Analysis is an interdisciplinary textbook aimed at systematic descriptions and implementations of numerically-viable algorithms based on well-established, efficient and stable modern numerical linear techniques for mathematical problems arising in the design and analysis of linear control systems both for the first- and second-order models. Unique coverage of modern mathematical concepts such as parallel computations, second-order systems, and large-scale solutions Background material in linear algebra, numerical linear algebra, and control theory included in text Step-by-step explanations of the algorithms and examples

Designing Control Loops for Linear and Switching Power Supplies

Author : Christophe P. Basso
Publisher : Artech House
Page : 614 pages
File Size : 47,6 Mb
Release : 2012
Category : Technology & Engineering
ISBN : 9781608075577

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Designing Control Loops for Linear and Switching Power Supplies by Christophe P. Basso Pdf

Loop control is an essential area of electronics engineering that todays professionals need to master. Rather than delving into extensive theory, this practical book focuses on what you really need to know for compensating or stabilizing a given control system. You can turn instantly to practical sections with numerous design examples and ready-made formulas to help you with your projects in the field. You also find coverage of the underpinnings and principles of control loops so you can gain a more complete understanding of the material. This authoritative volume explains how to conduct analysis of control systems and provides extensive details on practical compensators. It helps you measure your system, showing how to verify if a prototype is stable and features enough design margin. Moreover, you learn how to secure high-volume production by bench-verified safety margins.

Linear Algebra Based Controllers

Author : Gustavo Scaglia,Mario Emanuel Serrano,Pedro Albertos
Publisher : Springer Nature
Page : 158 pages
File Size : 47,8 Mb
Release : 2020-06-01
Category : Technology & Engineering
ISBN : 9783030428181

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Linear Algebra Based Controllers by Gustavo Scaglia,Mario Emanuel Serrano,Pedro Albertos Pdf

This book summarizes the application of linear algebra-based controllers (LABC) for trajectory tracking for practitioners and students across a range of engineering disciplines. It clarifies the necessary steps to apply this straight-forward technique to a non-linear multivariable system, dealing with continuous or discrete time models, and outlines the steps to implement such controllers. In this book, the authors present an approach of the trajectory tracking problem in systems with dead time and in the presence of additive uncertainties and environmental disturbances. Examples of applications of LABC to systems in real operating conditions (mobile robots, marine vessels, quadrotor and pvtol aircraft, chemical reactors and First Order Plus Dead Time systems) illustrate the controller design in such a way that the reader attains an understanding of LABC.

Introduction to Linear Control Systems

Author : Yazdan Bavafa-Toosi
Publisher : Academic Press
Page : 1135 pages
File Size : 51,9 Mb
Release : 2017-09-19
Category : Technology & Engineering
ISBN : 9780128127490

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Introduction to Linear Control Systems by Yazdan Bavafa-Toosi Pdf

Introduction to Linear Control Systems is designed as a standard introduction to linear control systems for all those who one way or another deal with control systems. It can be used as a comprehensive up-to-date textbook for a one-semester 3-credit undergraduate course on linear control systems as the first course on this topic at university. This includes the faculties of electrical engineering, mechanical engineering, aerospace engineering, chemical and petroleum engineering, industrial engineering, civil engineering, bio-engineering, economics, mathematics, physics, management and social sciences, etc. The book covers foundations of linear control systems, their raison detre, different types, modelling, representations, computations, stability concepts, tools for time-domain and frequency-domain analysis and synthesis, and fundamental limitations, with an emphasis on frequency-domain methods. Every chapter includes a part on further readings where more advanced topics and pertinent references are introduced for further studies. The presentation is theoretically firm, contemporary, and self-contained. Appendices cover Laplace transform and differential equations, dynamics, MATLAB and SIMULINK, treatise on stability concepts and tools, treatise on Routh-Hurwitz method, random optimization techniques as well as convex and non-convex problems, and sample midterm and endterm exams. The book is divided to the sequel 3 parts plus appendices. PART I: In this part of the book, chapters 1-5, we present foundations of linear control systems. This includes: the introduction to control systems, their raison detre, their different types, modelling of control systems, different methods for their representation and fundamental computations, basic stability concepts and tools for both analysis and design, basic time domain analysis and design details, and the root locus as a stability analysis and synthesis tool. PART II: In this part of the book, Chapters 6-9, we present what is generally referred to as the frequency domain methods. This refers to the experiment of applying a sinusoidal input to the system and studying its output. There are basically three different methods for representation and studying of the data of the aforementioned frequency response experiment: these are the Nyquist plot, the Bode diagram, and the Krohn-Manger-Nichols chart. We study these methods in details. We learn that the output is also a sinusoid with the same frequency but generally with different phase and magnitude. By dividing the output by the input we obtain the so-called sinusoidal or frequency transfer function of the system which is the same as the transfer function when the Laplace variable s is substituted with . Finally we use the Bode diagram for the design process. PART III: In this part, Chapter 10, we introduce some miscellaneous advanced topics under the theme fundamental limitations which should be included in this undergraduate course at least in an introductory level. We make bridges between some seemingly disparate aspects of a control system and theoretically complement the previously studied subjects. Appendices: The book contains seven appendices. Appendix A is on the Laplace transform and differential equations. Appendix B is an introduction to dynamics. Appendix C is an introduction to MATLAB, including SIMULINK. Appendix D is a survey on stability concepts and tools. A glossary and road map of the available stability concepts and tests is provided which is missing even in the research literature. Appendix E is a survey on the Routh-Hurwitz method, also missing in the literature. Appendix F is an introduction to random optimization techniques and convex and non-convex problems. Finally, appendix G presents sample midterm and endterm exams, which are class-tested several times.

Optimal Linear Controller Design for Periodic Inputs

Author : Goele Pipeleers,Bram Demeulenaere,Jan Swevers
Publisher : Springer
Page : 180 pages
File Size : 46,5 Mb
Release : 2009-12-07
Category : Technology & Engineering
ISBN : 9781848829756

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Optimal Linear Controller Design for Periodic Inputs by Goele Pipeleers,Bram Demeulenaere,Jan Swevers Pdf

Optimal Linear Controller Design for Periodic Inputs proposes a general design methodology for linear controllers facing periodic inputs which applies to all feedforward control, estimated disturbance feedback control, repetitive control and feedback control. The design methodology proposed is able to reproduce and outperform the major current design approaches, where this superior performance stems from the following properties: uncertainty on the input period is explicitly accounted for, periodic performance being traded-off against conflicting design objectives and controller design being translated into a convex optimization problem, guaranteeing the efficient computation of its global optimum. The potential of the design methodology is illustrated by both numerical and experimental results.

Linear Control System Analysis and Design with MATLAB®, Sixth Edition

Author : Constantine H. Houpis,Stuart N. Sheldon
Publisher : CRC Press
Page : 732 pages
File Size : 51,9 Mb
Release : 2013-10-30
Category : Technology & Engineering
ISBN : 9781466504264

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Linear Control System Analysis and Design with MATLAB®, Sixth Edition by Constantine H. Houpis,Stuart N. Sheldon Pdf

Thoroughly classroom-tested and proven to be a valuable self-study companion, Linear Control System Analysis and Design: Sixth Edition provides an intensive overview of modern control theory and conventional control system design using in-depth explanations, diagrams, calculations, and tables. Keeping mathematics to a minimum, the book is designed with the undergraduate in mind, first building a foundation, then bridging the gap between control theory and its real-world application. Computer-aided design accuracy checks (CADAC) are used throughout the text to enhance computer literacy. Each CADAC uses fundamental concepts to ensure the viability of a computer solution. Completely updated and packed with student-friendly features, the sixth edition presents a range of updated examples using MATLAB®, as well as an appendix listing MATLAB functions for optimizing control system analysis and design. Over 75 percent of the problems presented in the previous edition have been revised or replaced.

Fundamentals of Linear Control

Author : Maurício C. de Oliveira
Publisher : Cambridge University Press
Page : 317 pages
File Size : 48,5 Mb
Release : 2017-05-04
Category : Computers
ISBN : 9781107187528

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Fundamentals of Linear Control by Maurício C. de Oliveira Pdf

The must-have textbook introducing the analysis and design of feedback control systems in less than 400 pages.