PID Controllers for Time Delay Systems

PID Controllers for Time Delay Systems
Author: Guillermo J. Silva,Aniruddha Datta,Shankar P. Bhattacharyya
Publsiher: Springer Science & Business Media
Total Pages: 332
Release: 2007-12-22
Genre: Technology & Engineering
ISBN: 9780817644239

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Filling a gap in the literature, this book is a presentation of recent results in the field of PID controllers, including their design, analysis, and synthesis. Emphasis is placed on the efficient computation of the entire set of PID controllers achieving stability and various performance specifications, which is important for the development of future software design packages, as well as further capabilities such as adaptive PID design and online implementation. The results presented here are timely given the resurgence of interest in PID controllers and will find widespread application, specifically in the development of computationally efficient tools for PID controller design and analysis. Serving as a catalyst to bridge the theory--practice gap in the control field as well as the classical--modern gap, this monograph is an excellent resource for control, electrical, chemical, and mechanical engineers, as well as researchers in the field of PID controllers.

PID Controllers for Time Delay Systems

PID Controllers for Time Delay Systems
Author: Guillermo J. Silva,Aniruddha Datta,Shankar P. Bhattacharyya
Publsiher: Birkhäuser
Total Pages: 0
Release: 2008-11-01
Genre: Technology & Engineering
ISBN: 0817670599

Download PID Controllers for Time Delay Systems Book in PDF, Epub and Kindle

Filling a gap in the literature, this book is a presentation of recent results in the field of PID controllers, including their design, analysis, and synthesis. Emphasis is placed on the efficient computation of the entire set of PID controllers achieving stability and various performance specifications, which is important for the development of future software design packages, as well as further capabilities such as adaptive PID design and online implementation. The results presented here are timely given the resurgence of interest in PID controllers and will find widespread application, specifically in the development of computationally efficient tools for PID controller design and analysis. Serving as a catalyst to bridge the theory--practice gap in the control field as well as the classical--modern gap, this monograph is an excellent resource for control, electrical, chemical, and mechanical engineers, as well as researchers in the field of PID controllers.

Robust Control of Time delay Systems

Robust Control of Time delay Systems
Author: Qing-Chang Zhong
Publsiher: Springer Science & Business Media
Total Pages: 243
Release: 2006-05-28
Genre: Technology & Engineering
ISBN: 9781846282652

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Recently, there have been significant developments in robust control of time-delay systems. This volume presents a systematic treatment of robust control for such systems in the frequency domain. The emphasis is on systems with a single input or output delay, although the delay-free part of the plant can be multi-input-multi-output, in which case the delays in different channels should be the same. The author covers the whole range of H-infinity control of time-delay systems: from controller parameterization implementation; from the Nehari problem to the four-block problem; from theoretical developments to practical issues. The major tools used are similarity transformation, the chain-scattering approach and J-spectral factorization. Self-contained, "Robust Control of Time-delay Systems" will interest control theorists and mathematicians working with time-delay systems. Its methodical approach will be of value to graduates studying general robust control theory or its applications in time-delay systems.

Linear Parameter Varying and Time Delay Systems

Linear Parameter Varying and Time Delay Systems
Author: Corentin Briat
Publsiher: Springer
Total Pages: 412
Release: 2014-09-03
Genre: Technology & Engineering
ISBN: 9783662440506

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This book provides an introduction to the analysis and control of Linear Parameter-Varying Systems and Time-Delay Systems and their interactions. The purpose is to give the readers some fundamental theoretical background on these topics and to give more insights on the possible applications of these theories. This self-contained monograph is written in an accessible way for readers ranging from undergraduate/PhD students to engineers and researchers willing to know more about the fields of time-delay systems, parameter-varying systems, robust analysis, robust control, gain-scheduling techniques in the LPV fashion and LMI based approaches. The only prerequisites are basic knowledge in linear algebra, ordinary differential equations and (linear) dynamical systems. Most of the results are proved unless the proof is too complex or not necessary for a good understanding of the results. In the latter cases, suitable references are systematically provided. The first part pertains on the representation, analysis and control of LPV systems along with a reminder on robust analysis and control techniques. The second part is concerned with the representation and analysis of time-delay systems using various time-domain techniques. The third and last part is devoted to the representation, analysis, observation, filtering and control of LPV time-delay systems. The book also presents many important basic and advanced results on the manipulation of LMIs.

Low Complexity Controllers for Time Delay Systems

Low Complexity Controllers for Time Delay Systems
Author: Alexandre Seuret,Hitay Özbay,Catherine Bonnet,Hugues Mounier
Publsiher: Springer Science & Business Media
Total Pages: 245
Release: 2014-04-12
Genre: Technology & Engineering
ISBN: 9783319055763

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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 design a controller for the reduced order model of the plant. In the dual indirect approach, an infinite dimensional controller is designed first for the original plant model; then, the controller is approximated by keeping track of the degradation in performance and stability robustness measures. The present volume includes new techniques used at different stages of the indirect approach. It also includes new direct design methods for fixed structure and low order controllers. On the other hand, what is meant by low complexity controller is not necessarily low order controller. For example, Smith predictor or similar type of controllers include a copy of the plant internally in the controller, so they are technically infinite dimensional. However, they have very nice numerical properties from the point of reliable implementation. Therefore, such predictor-based controllers are considered as low complexity. This book includes new predictor-based design techniques, with several application examples.

PID parameter tables for control of time delayed systems for minimized ITAE and IAE criterions

PID parameter tables for control of time delayed systems for minimized ITAE and IAE criterions
Author: Roland Büchi
Publsiher: BoD – Books on Demand
Total Pages: 24
Release: 2022-07-01
Genre: Technology & Engineering
ISBN: 9783754366332

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In this publication, parameter sets for PID controllers are presented, which can be used to control systems with time-delayed stable step responses. These parameter sets minimize the quality criteria in the time domain, IAE, ITAE and ISE. They also take into account the controller output limitation, which is relevant in practice. The parameter sets are scalable with the time constant and the static gain of the system. Therefore they can be used to control all systems with a time delay behavior.

Control of Dead time Processes

Control of Dead time Processes
Author: Julio E. Normey-Rico
Publsiher: Springer Science & Business Media
Total Pages: 474
Release: 2007-06-14
Genre: Technology & Engineering
ISBN: 9781846288289

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This text introduces the fundamental techniques for controlling dead-time processes from simple monovariable to complex multivariable cases. Dead-time-process-control problems are studied using classical proportional-integral-differential (PID) control for the simpler examples and dead-time-compensator (DTC) and model predictive control (MPC) methods for progressively more complex ones. Downloadable MATLAB® code makes the examples and ideas more convenient and simpler.

Control of Unstable Systems

Control of Unstable Systems
Author: R. Padma Sree,M. Chidambaram
Publsiher: Alpha Science Int'l Ltd.
Total Pages: 324
Release: 2006
Genre: Technology & Engineering
ISBN: 1842652877

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This work is concerned with the design of PID controllers, calculation of set point weighting parameter and identification of transfer function models for unstable systems with time delay and without or with a zero.