Investigation on Robust Codesign Methods for Networked Control Systems

This book PDF is perfect for those who love Electronic Books genre, written by Sanad Al-Areqi and published by Logos Verlag Berlin GmbH which was released on 31 December 2015 with total hardcover pages 180. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Investigation on Robust Codesign Methods for Networked Control Systems books below.

Investigation on Robust Codesign Methods for Networked Control Systems
Author : Sanad Al-Areqi
File Size : 46,8 Mb
Publisher : Logos Verlag Berlin GmbH
Language : English
Release Date : 31 December 2015
ISBN : 9783832541705
Pages : 180 pages
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Investigation on Robust Codesign Methods for Networked Control Systems by Sanad Al-Areqi Book PDF Summary

The problem of jointly designing a robust controller and an intelligent scheduler for networked control systems (NCSs) is addressed in this thesis. NCSs composing of multiple plants that share a single channel communication network with uncertain time-varying transmission times are modeled as switched polytopic systems with additive norm-bounded uncertainty. Switching is deployed to represent scheduling, the polytopic uncertainty to overapproximatively describe the uncertain time-varying transmission times. Based on the resulting NCS model and a state feedback control law, the control and scheduling codesign problem is then introduced and formulated as a robust (minimax) optimization problem with the objective of minimizing the worst-case value of an associated infinite time-horizon quadratic cost function. Five robust codesign strategies are investigated for tackling the introduced optimization problem, namely: Periodic control and scheduling (PCS), Receding-horizon control and scheduling (RHCS), Implementation-aware control and scheduling (IACS), Event-based control and scheduling (EBCS), Prediction-based control and scheduling (PBCS). All these codesign strategies are determined from LMI optimization problems based on the Lyapunov theory. The properties of each are evaluated and compared in terms of computational complexity and control performance based on simulation and experimental study, showing their effectiveness in improving the performance while utilizing the limited communication resources very efficiently.

Investigation on Robust Codesign Methods for Networked Control Systems

The problem of jointly designing a robust controller and an intelligent scheduler for networked control systems (NCSs) is addressed in this thesis. NCSs composing of multiple plants that share a single channel communication network with uncertain time-varying transmission times are modeled as switched polytopic systems with additive norm-bounded uncertainty. Switching

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