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Feedback Control Linear, Nonlinear and Robust Techniques and Design with Industrial Applications / by Stephen J. Dodds.

By: Dodds, Stephen J., autor.
Material type: materialTypeLabelE-bookSeries: (Advanced Textbooks in Control and Signal Processing,, 1439-2232); (Engineering (Springer-11647)).Publisher: London : Springer International Publishing, 2015Edition: 1st edition.Description: 1 recurso en línea (XXV, 1012 páginas 674 ilustraciones, 3 ilustraciones a color.).ISBN: 9781447166757.Subject: Sistemas de control por realimentaciónOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Plant Modelling -- Plant Model Manipulation and Analysis -- Traditional Controllers - Model Based Design -- Linear Controllers for LTI SISO Plants of Arbitrary Order - Model Based Design -- Discrete Control of Linear SISO Plants -- Model Based Control of Nonlinear and Linear Plants -- State Estimation -- Switched and Saturating Control Techniques -- Sliding Mode Control and its Relatives -- Motion Control.
Abstract: This book develops the understanding and skills needed to be able to tackle original control problems. The general approach to a given control problem is to try the simplest tentative solution first and, when this is insufficient, to explain why and use a more sophisticated alternative to remedy the deficiency and achieve satisfactory performance. This pattern of working gives readers a full understanding of different controllers and teaches them to make an informed choice between traditional controllers and more advanced modern alternatives in meeting the needs of a particular plant. Attention is focused on the time domain, covering model-based linear and nonlinear forms of control together with robust control based on sliding modes and the use of state observers such as disturbance estimation. Feedback Control is self-contained, paying much attention to explanations of underlying concepts, with detailed mathematical derivations being employed where necessary. Ample use is made of diagrams to aid these conceptual explanations and the subject matter is enlivened by continual use of examples and problems derived from real control applications. Readers' learning is further enhanced by experimenting with the fully-commented MATLAB®/Simulink® simulation environment made accessible at http://extras.springer.com.ezproxy.universidadeuropea.es to produce simulations relevant to all of the topics covered in the text. A solutions manual for use by instructors adopting the book can also be downloaded from http://extras.springer.com.ezproxy.universidadeuropea.es Feedback Control is suitable as a main textbook for graduate and final-year undergraduate courses containing control modules; knowledge of ordinary linear differential equations, Laplace transforms, transfer functions, poles and zeros, root locus and elementary frequency response analysis, and elementary feedback control is required. It is also a useful reference source on control design methods for engineers practicing in industry and for academic control researchers.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TJ216 .D633 2015 EB (Browse shelf(Opens below)) Acceso electrónico eBook.12112278
Total holds: 0

Plant Modelling -- Plant Model Manipulation and Analysis -- Traditional Controllers - Model Based Design -- Linear Controllers for LTI SISO Plants of Arbitrary Order - Model Based Design -- Discrete Control of Linear SISO Plants -- Model Based Control of Nonlinear and Linear Plants -- State Estimation -- Switched and Saturating Control Techniques -- Sliding Mode Control and its Relatives -- Motion Control.

This book develops the understanding and skills needed to be able to tackle original control problems. The general approach to a given control problem is to try the simplest tentative solution first and, when this is insufficient, to explain why and use a more sophisticated alternative to remedy the deficiency and achieve satisfactory performance. This pattern of working gives readers a full understanding of different controllers and teaches them to make an informed choice between traditional controllers and more advanced modern alternatives in meeting the needs of a particular plant. Attention is focused on the time domain, covering model-based linear and nonlinear forms of control together with robust control based on sliding modes and the use of state observers such as disturbance estimation. Feedback Control is self-contained, paying much attention to explanations of underlying concepts, with detailed mathematical derivations being employed where necessary. Ample use is made of diagrams to aid these conceptual explanations and the subject matter is enlivened by continual use of examples and problems derived from real control applications. Readers' learning is further enhanced by experimenting with the fully-commented MATLAB®/Simulink® simulation environment made accessible at http://extras.springer.com.ezproxy.universidadeuropea.es to produce simulations relevant to all of the topics covered in the text. A solutions manual for use by instructors adopting the book can also be downloaded from http://extras.springer.com.ezproxy.universidadeuropea.es Feedback Control is suitable as a main textbook for graduate and final-year undergraduate courses containing control modules; knowledge of ordinary linear differential equations, Laplace transforms, transfer functions, poles and zeros, root locus and elementary frequency response analysis, and elementary feedback control is required. It is also a useful reference source on control design methods for engineers practicing in industry and for academic control researchers.

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