Accounting for constraints in delay systems / Giorgio Valmorbida, Wim Michiels, Pierdomenico Pepe, editors.
2022
TJ223.T5
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Title
Accounting for constraints in delay systems / Giorgio Valmorbida, Wim Michiels, Pierdomenico Pepe, editors.
ISBN
9783030890148 (electronic bk.)
3030890147 (electronic bk.)
3030890139
9783030890131
3030890147 (electronic bk.)
3030890139
9783030890131
Publication Details
Cham, Switzerland : Springer, 2022.
Language
English
Description
1 online resource.
Item Number
10.1007/978-3-030-89014-8 doi
Call Number
TJ223.T5
Dewey Decimal Classification
629.8/3
Summary
Time-delays are fundamental to understand phenomena in control applications as networked systems, traffic management, control of vibrations, and supply chains. The need for a performance and reliability on these systems has to overcome challenges related to the constraints in the controlled systems. These constraints can be physical, such as input magnitude saturation on actuators, or technological, such as the limited bandwidth in a networked system or the fixed structure in a control architecture, where only a few parameters can be set. This volume provides a wide-ranging collection of methods for the analysis and design of control laws for delay systems with constraints. These methods cover fundamental analytical aspects as, for instance, the stability analysis of Positive Delay systems or the achievable performance of PID controls for delay systems. The book gives valuable material for researchers and graduate students in Automatic Control. .
Note
Includes index.
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Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed April 14, 2022).
Series
Advances in delays and dynamics ; v.12.
Available in Other Form
Print version: 9783030890131
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Table of Contents
Stabilizing Systems with Uncertain Time Delay via PID Control:How Good Is It
Stability Analysis of Linear Delay Systems via Internally Positive Representations: an overview
Control by Set Invariance of a Class of Convolution Systems.
Stability Analysis of Linear Delay Systems via Internally Positive Representations: an overview
Control by Set Invariance of a Class of Convolution Systems.