Nonlinear control and filtering using differential flatness approaches : applications to electromechanical systems

Author(s)

    • Rigatos, Gerasimos G.

Bibliographic Information

Nonlinear control and filtering using differential flatness approaches : applications to electromechanical systems

Gerasimos G. Rigatos

(Studies in systems, decision and control / series editor Janusz Kacprzyk, 25)

Springer, c2015

  • : hbk.

Available at  / 2 libraries

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Note

Bibliography: p. 701-730

Description and Table of Contents

Description

This monograph presents recent advances in differential flatness theory and analyzes its use for nonlinear control and estimation. It shows how differential flatness theory can provide solutions to complicated control problems, such as those appearing in highly nonlinear multivariable systems and distributed-parameter systems. Furthermore, it shows that differential flatness theory makes it possible to perform filtering and state estimation for a wide class of nonlinear dynamical systems and provides several descriptive test cases. The book focuses on the design of nonlinear adaptive controllers and nonlinear filters, using exact linearization based on differential flatness theory. The adaptive controllers obtained can be applied to a wide class of nonlinear systems with unknown dynamics, and assure reliable functioning of the control loop under uncertainty and varying operating conditions. The filters obtained outperform other nonlinear filters in terms of accuracy of estimation and computation speed. The book presents a series of application examples to confirm the efficiency of the proposed nonlinear filtering and adaptive control schemes for various electromechanical systems. These include: * industrial robots; * mobile robots and autonomous vehicles; * electric power generation; * electric motors and actuators; * power electronics;* internal combustion engines; * distributed-parameter systems; and * communication systems. Differential Flatness Approaches to Nonlinear Control and Filtering will be a useful reference for academic researchers studying advanced problems in nonlinear control and nonlinear dynamics, and for engineers working on control applications in electromechanical systems.

Table of Contents

Flatness-based Control.- Nonlinear Adaptive Control Based on Differential Flatness Theory.- Nonlinear Kalman Filtering Based on Differential Flatness Theory.- Industrial Robotics.- Mobile robotics and Vehicles.- Electric Power Generation.- Electric Motors and Actuators.- Power Electronics.- Internal Combustion Engines.- Distributed Parameter Systems.- Communication Systems.

by "Nielsen BookData"

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Details

  • NCID
    BB19619669
  • ISBN
    • 9783319164199
  • Country Code
    sz
  • Title Language Code
    eng
  • Text Language Code
    eng
  • Place of Publication
    Cham
  • Pages/Volumes
    xxix, 736 p.
  • Size
    25 cm
  • Parent Bibliography ID
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