Control Strategy for Time-Delay Systems Part I, Mohammad Hassan Khooban; Tomislav Dragicievic
Автор: Bavafa-toosi Yazdan Название: Introduction to linear control systems ISBN: 0128127481 ISBN-13(EAN): 9780128127483 Издательство: Elsevier Science Рейтинг: Цена: 105330.00 T Наличие на складе: Есть Описание:
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 bookcontains 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.
Автор: Marcio S. de Queiroz; Darren M. Dawson; Siddharth Название: Lyapunov-Based Control of Mechanical Systems ISBN: 081764086X ISBN-13(EAN): 9780817640866 Издательство: Springer Рейтинг: Цена: 139310.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: This volume contains topics and features including applications orientation covering both theory and experimental perspectives. It covers both ODE and PDE-based mechanical systems in unified framework, boundary control of PDE systems and computer simulations of experimental results.
Автор: Stanislav V. Emel`yanov; P.S. Ivanov; Isaak A. Bur Название: Control of Indefinite Nonlinear Dynamic Systems ISBN: 3540762450 ISBN-13(EAN): 9783540762454 Издательство: Springer Рейтинг: Цена: 87070.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: This work on the control of indefinite nonlinear dynamic systems has an emphasis on induced internal feedback. Topics addressed include: mathematical tools; synthesis of induction control; correctness of the closed system; trajectories; construction of tracking systems; and termwise induction.
Автор: Nader Jalili Название: Piezoelectric-Based Vibration-Control Systems ISBN: 1441900691 ISBN-13(EAN): 9781441900692 Издательство: Springer Рейтинг: Цена: 174150.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: "Piezoelectric-Based Vibration-control Systems: Applications in Micro/Nano Sensors and Actuators" covers: Fundamental concepts in smart (active) materials including piezoelectric and piezoceramics, magnetostrictive, shape-memory materials, and electro/magneto-rheological fluids;
Автор: Gao, Qingbin Название: Stability, Control and Application of Time-delay Systems ISBN: 0128149280 ISBN-13(EAN): 9780128149287 Издательство: Elsevier Science Рейтинг: Цена: 129130.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание:
Stability, Control and Application of Time-delay Systems gives a systematic description of the analysis, design, and application of time delay systems along with the adequate designs of integrated modelling, control and frequency characterizations. Topics in the individual chapters range from a generally theoretical time delay systems to a more complex class of time delay systems, and to some selective applications.
The main common theme of all the contributions in this book is that of creating certain synergies of modelling, analysis, control, computing and applications of time delay systems in order to achieve robust stability while retaining desired performance quality.
This book provides innovative insights into the state-of-the-art of time-delay systems in both theory and practical aspects. It has been edited with an emphasis on presenting constructive theoretical and practical methodological approaches and techniques to the time delay system employing modelling, control and applications.
Unifies existing and emerging concepts concerning time delay dynamical systems
Provides a series of latest results in large-delay analysis, multi-agent systems with delays, and thermal systems with delays
Gives in each chapter numerical and simulation results in order to reflect the engineering practice
Автор: Qing-Chang Zhong Название: Robust Control of Time-delay Systems ISBN: 1849965668 ISBN-13(EAN): 9781849965668 Издательство: Springer Рейтинг: Цена: 130590.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: Recently, there have been significant developments in robust control of time-delay systems.
Автор: Rajeeb Dey; Goshaidas Ray; Valentina Emilia Balas Название: Stability and Stabilization of Linear and Fuzzy Time-Delay Systems ISBN: 3319701479 ISBN-13(EAN): 9783319701479 Издательство: Springer Рейтинг: Цена: 139750.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание:
This book provides a clear understanding in formulating stability analysis and state feedback control of retarded time delay systems using Lyapunov's second method in an LMI framework. The chapters offer a clear overview of the evolution of stability analysis in terms of the construction of a Lyapunov functional and use of the integral inequalities in order to reduce the gap of delay upper bound estimate compared to frequency domain method through existing and proposed stability theorems. Power system engineering problem has been presented here to give readers fair idea on applicability of the model and method for solving engineering problems. Without deviating from the framework of analysis more complex dynamics of the system have been dealt with here that includes actuator saturation and thereby ascertaining local stability for an estimated time-delay and domain of attraction. Nonlinearity in a time-delay system has been dealt with in the T-S fuzzy modeling approach.
This book is useful as a textbook for Master's students and advanced researcher working in the field of control system engineering, and for practicing engineers dealing with such complex dynamical systems. The strengths of the book are lucidity of presentation, lucidity of solution method, MATLAB programs given in the appendix that help the novice researcher to carry out research in this area independently, clear idea about the formulation of desired stability and control problem in a LMI framework, application problem provided can motivate students and researcher to recast their problems in the similar framework easily, helpful for readers to use the stability (stabilization) conditions or formulate their own stability conditions easily for a complicated linear or nonlinear dynamical system.
Автор: Dana Zelenko Название: Time-Delay Systems ISBN: 1681176572 ISBN-13(EAN): 9781681176574 Издательство: Gazelle Book Services Рейтинг: Цена: 217350.00 T Наличие на складе: Невозможна поставка. Описание: It is well known that, together with the increasing expectations of system dynamic performances, the delay information in practical systems or processes should not be neglected in the modelling procedure. Time delay is a very common phenomenon in the engineering world. In fact, many industrial processes include after effect phenomena in their inner dynamics. And actuators, sensors, and field networks that are involved in feedback loops usually introduce unavoidable delays. Time delays in dynamical systems arise as an inevitable consequence of finite speeds of information transmission. Realistic models increasingly demand the inclusion of delays in order to properly understand, analyse, design, and control real-life systems. Time delay is very often encountered in various technical systems, such as electric, pneumatic and hydraulic networks, chemical processes, long transmission lines, robotics, etc. So, the problem of controllability, observability, robustness, optimisation, adaptive control, pole placement and particularly stability and robustness stabilisation for this class of systems, has been one of the main interests for many scientists and researchers during the last five decades. Time-Delay Systems is concerned with the stability analysis and control problems of time-delay systems; a research field with at least six-decade long history that has been very active especially in the past two decades.
Автор: H.Y. Hu; Z.H. Wang Название: Dynamics of Controlled Mechanical Systems with Delayed Feedback ISBN: 3642078397 ISBN-13(EAN): 9783642078392 Издательство: Springer Рейтинг: Цена: 148010.00 T Наличие на складе: Есть у поставщика Поставка под заказ. Описание: Most controlled mechanical systems with time delays can be modeled as the dynamic systems described by a set of ordinary differential equations with time delays.
Автор: Sira-Ramirez, Hebertt Название: Active Disturbance Rejection Control of Dynamic Systems ISBN: 0128498684 ISBN-13(EAN): 9780128498682 Издательство: Elsevier Science Рейтинг: Цена: 124640.00 T Наличие на складе: Поставка под заказ. Описание: Active Disturbance Rejection Control of Dynamic Systems: A Flatness Based Approach describes the linear control of uncertain nonlinear systems. The net result is a practical controller design that is simple and surprisingly robust, one that also guarantees convergence to small neighborhoods of desired equilibria or tracking errors that are as close to zero as desired. . This methodology differs from current robust feedback controllers characterized by either complex matrix manipulations, complex parameter adaptation schemes and, in other cases, induced high frequency noises through the classical chattering phenomenon. . The approach contains many of the cornerstones, or philosophical features, of Model Free Control and ADRC, while exploiting flatness and GPI control in an efficient manner for linear, nonlinear, mono-variable and multivariable systems, including those exhibiting inputs delays. . The book contains successful experimental laboratory case studies of diverse engineering problems, especially those relating to mechanical, electro-mechanical, robotics, mobile robotics and power electronics systems.
Автор: Verica Radisavljevi?-Gaji?; Milo? Milanovi?; Patri Название: Multi-Stage and Multi-Time Scale Feedback Control of Linear Systems with Applications to Fuel Cells ISBN: 3030103889 ISBN-13(EAN): 9783030103880 Издательство: Springer Рейтинг: Цена: 106210.00 T Наличие на складе: Поставка под заказ. Описание: This book provides a comprehensive study of multi-stage and multi-time scale design of feedback controllers for linear dynamic systems. It examines different types of controllers as can be designed for different parts of the system (subsystems) using corresponding feedback gains obtained by performing calculations (design) only with subsystem (reduced-order) matrices.The advantages of the multi-stage/multi-time scale design are presented and conditions for implementation of these controllers are established. Complete derivations and corresponding design techniques are presented for two-stage/two-time-scale, three-stage/three-time scale, and four-stage/four-time-scale systems. The techniques developed have potential applications to a large number of real physical systems. The design techniques are demonstrated on examples of mathematical models of fuel cells, especially the proton exchange membrane fuel cell.
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