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  • Robust and Optimal Controller Design via Linear Matrix Inequalities

    Robust and Optimal Controller Design via Linear Matrix Inequalities by Assunção, Edvaldo; Sereni, Bruno;

      • GET 17% OFF

      • The discount is only available for 'Alert of Favourite Topics' newsletter recipients.
      • Publisher's listprice EUR 90.94
      • The price is estimated because at the time of ordering we do not know what conversion rates will apply to HUF / product currency when the book arrives. In case HUF is weaker, the price increases slightly, in case HUF is stronger, the price goes lower slightly.

        35 521 Ft (33 829 Ft + 5% VAT)
      • Discount 12% (cc. 4 263 Ft off)
      • Discounted price 31 258 Ft (29 770 Ft + 5% VAT)
      • Discount is valid until: 5 August 2026

    31 258 Ft

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    Product details:

    • Publisher Springer Nature Switzerland
    • Date of Publication 21 September 2026

    • ISBN 9783032204776
    • Binding Hardback
    • No. of pages pages
    • Size 235x155 mm
    • Language English
    • Illustrations Approx. 250 p. 75 illus. in color.
    • 700

    Categories

    Long description:

    This textbook provides an accessible introduction to linear matrix inequalities (LMIs) that requires no prior knowledge of the subject. It covers both the theoretical foundations and practical applications for solving real-world control problems using MATLAB, beginning with the basic introduction “My First LMI” and gradually progressing to more advanced control challenges. Essential background information on dynamic systems analysis and linear algebra is included, specifically tailored for applications in LMI-based control. Readers will learn about system stability and stabilization through an intuitive explanation of the Lyapunov energy function and its connection to LMI formulations. The core content addresses major control design problems for both continuous-time and discrete-time linear time-invariant (LTI) systems. Additionally, extensions to output feedback and linear parameter-varying (LPV) control are discussed. The theoretical foundations are complemented by practical, challenging design problems that highlight the real-world applicability of LMIs through experimental implementation on platforms such as a 3-DOF helicopter and an active suspension system.

    Robust and Optimal Controller Design via Linear Matrix Inequalities provides a well-structured learning experience, empowering a new generation of students, practicing engineers, and researchers to confidently adopt and apply LMIs in both academic and industrial control applications.

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    Table of Contents:

    Introduction.- Fundamentals and lmi.- Stabilzation.- Robust control.-Hoo optimal control.- H2 optimal control.- Discrete time Control.- H2 hoo optimal control in discrete-Time systems.- More lmi applications in control systems design.

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