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This book reviews PID controller theory, design and realization, covering new approaches to controller tuning; configurations for more efficient control and such non-standard approaches as fractional-order, event-based, nonlinear and predictive control.
The early 21st century has seen a renewed interest in research in the widely-adopted proportional-integral-differential (PID) form of control. PID Control in the Third Millennium provides an overview of the advances made as a result. Featuring: new approaches for controller tuning; control structures and configurations for more efficient control; practical issues in PID implementation; and non-standard approaches to PID including fractional-order, event-based, nonlinear, data-driven and predictive control; the nearly twenty chapters provide a state-of-the-art resumé of PID controller theory, design and realization. Each chapter has specialist authorship and ideas clearly characterized from both academic and industrial viewpoints. PID Control in the Third Millennium is of interest to academics requiring a reference for the current state of PID-related research and a stimulus for further inquiry. Industrial practitioners and manufacturers of control systems with application problems relating to PID will find this to be a practical source of appropriate and advanced solutions.
Each chapter has a strong industrial correlation, and therefore the book will be of interest to process control vendors and industrial engineers who are looking for new methodologies to implement Each chapter is written by a well-known expert in the field and therefore each topic is covered in depth by a world-leading specialist Gives the reader new methods for improving the performance of the most widely applied form of control in the industry Includes supplementary material: sn.pub/extras
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The early 21st century has seen a renewed interest in research in the widely-adopted proportional-integral-derivative (PID) controllers. PID Control in the Third Millennium provides an overview of the advances made as a result. Featuring:
· new approaches for controller tuning;
· control structures and configurations for more efficient control;
· practical issues in PID implementation; and
· non-standard approaches to PID including fractional-order, event-based, nonlinear, data-driven and predictive control;
the nearly twenty chapters provide a state-of-the-art resumé of PID controller theory, design and realization. Each chapter has specialist authorship and ideas clearly characterized from both academic and industrial viewpoints.Advances in Industrial Control aims to report and encourage the transfer of technology in control engineering. The rapid development of control technology has an impact on all areas of the control discipline. The series offers an opportunity for researchers to present an extended exposition of new work in all aspects of industrial control.
PID Control in the Third Millennium is of interest to academics requiring a reference for the current state of PID-related research and a stimulus for further inquiry. Industrial practitioners andmanufacturers of control systems with application problems relating to PID will find this to be a practical source of appropriate and advanced solutions.
Advances in Industrial Control aims to report and encourage the transfer of technology in control engineering. The rapid development of control technology has an impact on all areas of the control discipline. The series offers an opportunity for researchers to present an extended exposition of new work in all aspects of industrial control.
Contenu
PID Tuning.- Model-based PID Tuning.- Tuning Rules for Integral and Unstable Systems.- Robust Tuning of PID Controllers.- PID Tuning for Smooth Control.- PID Control of MIMO Processes.- Feedforward plus PID Control.- PID-based Control Structures.- Robust Multivariable PID Controller Design.- Identification for PID Control.- Design based on the Characterization of all Stabilizing PID Controllers.- Fragility Evaluation of PID Controller Tuning Rules.- Performance Assessment for PID Control.- Industrial Applications of PID Control.- Fractional-order PID Control.- Nonlinearisation of PID Control.- Data-driven PID Control.- Predictive Control Approach for PID Controller Design.