<p><P>The effectiveness of proportional-integral-derivative (PID) controllers for a large class of process systems has ensured their continued and widespread use in industry. Similarly there has been a continued interest from academia in devising new ways of approaching the PID tuning problem. </P><
PID Control: New Identification and Design Methods
β Scribed by Michael A. Johnson, Mohammad H. Moradi
- Publisher
- Springer
- Year
- 2005
- Tongue
- English
- Leaves
- 558
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
The effectiveness of proportional-integral-derivative (PID) controllers for a large class of process systems has ensured their continued and widespread use in industry. Similarly there has been a continued interest from academia in devising new ways of approaching the PID tuning problem. To the industrial engineer and many control academics this work has previously appeared fragmented but a key determinant of this literature is the type of process model information used in the PID tuning methods. PID Control presents a set of coordinated contributions illustrating methods, old and new, that cover the range of process model assumptions systematically. After a review of PID technology, these contributions begin with model-free methods, progress through non-parametric model methods (relay experiment and phase-locked-loop procedures), visit fuzzy-logic- and genetic-algorithm-based methods; introduce a novel subspace identification method before closing with an interesting set of parametric model techniques including a chapter on predictive PID controllers. Highlights of PID Control include: an introduction to PID control technology features and typical industrial implementations; chapter contributions ordered by the increasing quality of the model information used; novel PID control concepts for multivariable processes. PID Control will be useful to industry-based engineers wanting a better understanding of what is involved in the steps to a new generation of PID controller techniques. Academics wishing to have a broader perspective of PID control research and development will find useful pedagogical material and research ideas in this text.
π SIMILAR VOLUMES
<span>Demand for this book will be generated by the widespread use of PID in industry and because of the modern need for simple control systems to control a wider range of complex industrial processes and systems.</span>
The robustness and simplicity of proportional-integral-derivative (PID) controllers has ensured their continued and widespread use in industry. New techniques have been developed to allow PID controllers to match the performance of more advanced controller designs where the advanced training and com
London, Springer, 2005. , 543 ΡΡΡ.<div class="bb-sep"></div><strong>Π‘ΠΎΠ΄Π΅ΡΠΆΠ°Π½ΠΈΠ΅:</strong><br/>PID Control Technology<br/>M.A. Johnson<br/>Some PID Control Fundamentals<br/>M.A. Johnson<br/>On-line Model Free Methods<br/>J. Crowe<br/>Automatic PID Controller Tuning β The Nonparametric Approach<br/>K.K
The robustness and simplicity of proportional-integral-derivative (PID) controllers has ensured their continued and widespread use in industry. New techniques have been developed to allow PID controllers to match the performance of more advanced controller designs where the advanced training and com
<span>This book is about Computer Aided Control System Design (CACSD) of the direct process controller. Various methods and tools, representing an up-to-date level of development, are presented by leading experts. Several articles describe main principles and problems associated with modern direct c