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Output-feedback Design forNon-smooth Mechanical Systems

  • Kartonierter Einband
  • 212 Seiten
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In this book, the focus is on two control problems for non-smooth systems. Firstly, the disturbance attenuation problem for piecew... Weiterlesen
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Beschreibung

In this book, the focus is on two control problems for non-smooth systems. Firstly, the disturbance attenuation problem for piecewise linear (PWL) and piecewise affine (PWA) systems is studied. Here, we focus on applications in the field of perturbed flexible mechanical systems with PWL restoring characteristics. Secondly, the stabilization problem for Lur e type systems with set-valued nonlinearities is examined. In the latter context, the focus is on the application area of mechanical systems with set-valued friction characteristics, where the friction is non-collocated with the control action. To deal with both the disturbance attenuation and the stabilization problem, observer- based output-feedback control strategies are proposed. To show the strengths, weaknesses and potential of output-feedback controllers beyond their theoretical importance, it is indispensable to evaluate them in experimental setups. Therefore, the presented strategies are implemented to two case studies: i) a PWL system, ii) a dynamic rotor system with friction. These case studies can be considered as benchmarks for the proposed strategies for non- smooth and discontinuous systems.

Autorentext

Apostolos Doris, Bachelor and MSc-degree: Studied Mechanical Engineering at Aristotle University of Thessaloniki, Greece. Ph.D.: Obtained his Ph.D. at the Technical University of Eindhoven, The Netherlands. Currently he is working with Shell International Exploration and Production as a research well engineer in Rijswijk, The Netherlands

Produktinformationen

Titel: Output-feedback Design forNon-smooth Mechanical Systems
Untertitel: Control Synthesis and Experiments
Autor:
EAN: 9783639093773
ISBN: 978-3-639-09377-3
Format: Kartonierter Einband
Herausgeber: VDM Verlag Dr. Müller e.K.
Genre: Sonstiges
Anzahl Seiten: 212
Gewicht: 332g
Größe: H220mm x B150mm x T13mm
Jahr: 2013
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