Low-Complexity Controllers for Time-Delay Systems

This volume in the newly established series Advances in Delays and Dynamics (ADD@S) provides a collection of recent results on the design and analysis of Low Complexity Controllers for Time Delay Systems. A widely used indirect method to obtain low order controllers for time delay systems is to desi...

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Detalles Bibliográficos
Otros Autores: Seuret, Alexandre (ed.), Ozbay, Hitay (ed.), Bonnet, Catherine (ed.), Mounier, Hugues (ed.)
Formato: Libro electrónico
Lenguaje:Inglés
Publicado: Cham : Springer International Publishing : Imprint: Springer, 2014.
Colección:Advances in Delays and Dynamics, 2
Materias:
Acceso en línea:http://dx.doi.org/10.1007/978-3-319-05576-3
Aporte de:Registro referencial: Solicitar el recurso aquí
Tabla de Contenidos:
  • State-Dependent Sampling for Online Control
  • Design of First Order Controllers for Unstable Infinite Dimensional Plants
  • Anti-Windup Conditioning for Actuator Saturation in Internal Model Control with Delays
  • Stabilization of Some Fractional Neutral Delay Systems which Possibly Possess an Infinite Number of Unstable Poles
  • Controller Design for a Class of Delayed and Constrained Systems: Application to Supply Chains
  • Delay Effects in Visual Tracking Problems for an Optronic Sighting System
  • Tuning an H-Infinity Controller with a Given Order and a Structure for Interconnected Systems with Delays
  • Delay-Independent Stability via reset loops
  • Low Complexity Invariant Sets for Time-Delay Systems: a Set Factorization Approach
  • Delays and Propagation: Control Liapunov Functionals and Computational Issues
  • Integral Inequality for Time-Varying Delay Systems and its Application to Output-Feedback Control
  • Control-Oriented Input-Delay Model of the Distributed Temperature of a SI Engine Exhaust Catalyst
  • Suppressing Stick-slip Oscillations in Oilwell Drillstrings
  • Flatness-Based Control for a Non-Linear Spatially Distributed Model of a Drilling System
  • Smith Predictor-based Control with Distance Feedback for Haptic Systems under Distributed Time-Delays.