Robust flight control : a design challenge

In October 1994, 22 organisations throughout Europe accepted a challenge to solve a specific robust flight control design problem. The results of that design challenge, presented at the GARTEUR Specialists' Workshop in Toulouse, France in April 1997, are reported here. Two flight control benchm...

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Dettagli Bibliografici
Altri autori: Bennani, Samir (Redattore), Terlouw, Jan, 1964- (Redattore), Magni, Jean-François, 1954- (Redattore)
Natura: Livre numérique
Lingua:Anglais
Pubblicazione: London ; Paris [etc.] : Springer-Verlag : Springer e-books [20..].
Cham : Springer Nature
Serie:Lecture notes in control and information sciences 224
Soggetti:
Accesso online:Accès sur la plateforme de l'éditeur
Accès sur la plateforme Istex
Accès Université d'Orléans
Accès INSA CVL
Nota: Archives Springer e-books (Licence nationale)
Archives Springer e-books (Licence nationale)
Autres localisations: Voir dans le Sudoc
Edition sous un autre format:• Robust flight control, a design challenge, Jean-François Magni, Samir Bennani, and Jan Terlouw (eds.), London, Springer, 1997, x, 649 p., Lecture notes in control and information sciences, 3-540-76151-9
• Robust Flight Control, Texte imprimé, 9783662176689
Sommario:
  • Multi-objective parameter synthesis (MOPS)
  • Eigenstructure assignment
  • Linear quadratic optimal control
  • Robust quadratic stabilization
  • H ? mixed sensitivity
  • H ? loop-shaping
  • ?-Synthesis
  • Nonlinear dynamic inversion control
  • Robust inverse dynamics estimation
  • A model following control approach
  • Predictive control
  • Fuzzy logic control
  • The RCAM design challenge problem description
  • The classical control approach
  • Multi-objective parameter synthesis (MOPS)
  • An Eigenstructure Assignment approach (1)
  • An Eigenstructure Assignment approach (2)
  • A model multi-model approach
  • The Lyapunov approach
  • An H ? approach
  • A ?-synthesis approach (1)
  • A ?-synthesis approach (2)
  • Autopilot design based on the Model Following Control approach
  • Flight management using predictive control
  • A fuzzy control approach
  • The HIRM design challenge problem description
  • Design via LQ methods
  • The H ? loop-shaping approach
  • Design of stability augmentation system using ?-synthesis
  • Design of a robust, scheduled controller using ?-synthesis
  • Nonlinear dynamic inversion and LQ techniques
  • The Robust Inverse Dynamics Estimation approach
  • The industrial view
  • Another view on the Design Challenge achievements
  • Concluding remarks.