State Observers For Linear Systems With Uncertainty


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State Observers for Linear Systems with Uncertainty


State Observers for Linear Systems with Uncertainty

Author: S. K. Korovin

language: en

Publisher: Walter de Gruyter

Release Date: 2009


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This book presents the basic concepts and recent developments of linear control problems with perturbations. The presentation concerns both continuous and discrete dynamical systems. It is self-contained and illustrated by numerous examples. From the contents: Notion of state observers Observability Observers of full-phase vectors for fully determined linear systems Functional observers for fully determined linear systems Asymptotic observers for linear systems with uncertainty Observers for bilinear and discrete systems.

Nonlinear Observers and Applications


Nonlinear Observers and Applications

Author: Gildas Besançon

language: en

Publisher: Springer

Release Date: 2007-10-11


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The purpose of this fantastically useful book is to lay out an overview on possible tools for state reconstruction in nonlinear systems. Here, basic observability notions and observer structures are recalled, together with ingredients for advanced designs on this basis. The problem of state reconstruction in dynamical systems, known as observer problem, is crucial for controlling or even merely monitoring processes. For linear systems, the theory has been well established for several years, so this book attempts to tackle the problem for non-linear systems.

Active Disturbance Rejection Control for Nonlinear Systems


Active Disturbance Rejection Control for Nonlinear Systems

Author: Bao-Zhu Guo

language: en

Publisher: John Wiley & Sons

Release Date: 2016-10-18


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A concise, in-depth introduction to active disturbance rejection control theory for nonlinear systems, with numerical simulations and clearly worked out equations Provides the fundamental, theoretical foundation for applications of active disturbance rejection control Features numerical simulations and clearly worked out equations Highlights the advantages of active disturbance rejection control, including small overshooting, fast convergence, and energy savings