Identification of Multivariable Industrial Processes for Simulation Diagnosis and Control

Identification of Multivariable Industrial Processes for Simulation  Diagnosis  and Control
Author: Yucai Zhu,Ton Backx
Publsiher: Unknown
Total Pages: 0
Release: 1993
Genre: Automatic control
ISBN: 0387198350

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Identification of Multivariable Industrial Processes

Identification of Multivariable Industrial Processes
Author: Yucai Zhu,Ton Backx
Publsiher: Unknown
Total Pages: 204
Release: 1993-05-28
Genre: Electronic Book
ISBN: 1447120590

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Identification of Multivariable Industrial Processes

Identification of Multivariable Industrial Processes
Author: Yucai Zhu,Ton Backx
Publsiher: Springer Science & Business Media
Total Pages: 200
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 9781447120582

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Identification of Multivariable Industrial Processes presents a unified approach to multivariable industrial process identification. It concentrates on industrial processes with reference to model applications. The areas covered are experiment design, model structure selection, parameter estimation as well as error bounds of the transfer function. This publication is intended to fill the gap between modern systems and control theory and industrial application. It is based on the results of 10 years of research and application experiences. The theories and models discussed are fully explained and illustrated with case studies. At an early stage the reader is introduced to real applications.

Multivariable System Identification For Process Control

Multivariable System Identification For Process Control
Author: Y. Zhu
Publsiher: Elsevier
Total Pages: 372
Release: 2001-10-08
Genre: Technology & Engineering
ISBN: 9780080537115

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Systems and control theory has experienced significant development in the past few decades. New techniques have emerged which hold enormous potential for industrial applications, and which have therefore also attracted much interest from academic researchers. However, the impact of these developments on the process industries has been limited. The purpose of Multivariable System Identification for Process Control is to bridge the gap between theory and application, and to provide industrial solutions, based on sound scientific theory, to process identification problems. The book is organized in a reader-friendly way, starting with the simplest methods, and then gradually introducing more complex techniques. Thus, the reader is offered clear physical insight without recourse to large amounts of mathematics. Each method is covered in a single chapter or section, and experimental design is explained before any identification algorithms are discussed. The many simulation examples and industrial case studies demonstrate the power and efficiency of process identification, helping to make the theory more applicable. MatlabTM M-files, designed to help the reader to learn identification in a computing environment, are included.

Industrial Process Identification

Industrial Process Identification
Author: Ai Hui Tan,Keith Richard Godfrey
Publsiher: Springer
Total Pages: 217
Release: 2019-01-01
Genre: Technology & Engineering
ISBN: 9783030036614

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Industrial Process Identification brings together the latest advances in perturbation signal design. It describes the approaches to the design process that are relevant to industries. The authors’ discussion of several software packages (Frequency Domain System Identification Toolbox, prs, GALOIS, multilev_new, and Input-Signal-Creator) will allow readers to understand the different designs in industries and begin designing common classes of signals. The authors include two case studies that provide a balance between the theory and practice of these designs: the identification of a direction-dependent electronic nose system; and the identification of a multivariable cooling system with time-varying delay. Major aspects of signal design such as the formulation of suitable specifications in the face of practical constraints, the classes of designs available, the various objectives necessitating separate treatments when dealing with nonlinear systems, and extension to multi-input scenarios, are discussed. Codes, including some that will produce simulated data, are included to help readers replicate the results described. Industrial Process Identification is a powerful source of information for control engineers working in the process and communications industries seeking guidance on choosing identification software tools for use in practical experiments and case studies. The book will also be of interest to academic researchers and students working in electrical, mechanical and communications engineering and the application of perturbation signal design. Advances in Industrial Control reports and encourages 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.

System Identification SYSID 03

System Identification  SYSID  03
Author: Paul Van Den Hof,Bo Wahlberg,Siep Weiland
Publsiher: Elsevier
Total Pages: 2080
Release: 2004-06-29
Genre: Science
ISBN: 0080437095

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The scope of the symposium covers all major aspects of system identification, experimental modelling, signal processing and adaptive control, ranging from theoretical, methodological and scientific developments to a large variety of (engineering) application areas. It is the intention of the organizers to promote SYSID 2003 as a meeting place where scientists and engineers from several research communities can meet to discuss issues related to these areas. Relevant topics for the symposium program include: Identification of linear and multivariable systems, identification of nonlinear systems, including neural networks, identification of hybrid and distributed systems, Identification for control, experimental modelling in process control, vibration and modal analysis, model validation, monitoring and fault detection, signal processing and communication, parameter estimation and inverse modelling, statistical analysis and uncertainty bounding, adaptive control and data-based controller tuning, learning, data mining and Bayesian approaches, sequential Monte Carlo methods, including particle filtering, applications in process control systems, motion control systems, robotics, aerospace systems, bioengineering and medical systems, physical measurement systems, automotive systems, econometrics, transportation and communication systems *Provides the latest research on System Identification *Contains contributions written by experts in the field *Part of the IFAC Proceedings Series which provides a comprehensive overview of the major topics in control engineering.

Process Control

Process Control
Author: Jean-Pierre Corriou
Publsiher: Springer
Total Pages: 860
Release: 2017-08-17
Genre: Technology & Engineering
ISBN: 9783319611433

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This reference book can be read at different levels, making it a powerful source of information. It presents most of the aspects of control that can help anyone to have a synthetic view of control theory and possible applications, especially concerning process engineering.

Supervision and Control for Industrial Processes

Supervision and Control for Industrial Processes
Author: Bjorn Sohlberg
Publsiher: Springer Science & Business Media
Total Pages: 247
Release: 2012-12-06
Genre: Psychology
ISBN: 9781447115588

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The series Advances in Industrial Control aims to report and encourage technology transfer in control engineering. The rapid development of control technology impacts all areas of the control discipline. New theory, new controllers, actuators, sensors, new industrial processes, computer methods, new applications, new philosophies ... , new challenges. Much of this development work resides in industrial reports, feasibility study papers and the reports of advanced collaborative projects. The series offers an opportunity for researchers to present an extended exposition of such new work in all aspects of industrial control for wider and rapid dissemination. The steel industry world-wide is highly competitive and there is significant research in progress to ensure competitive success prevails in the various companies. From an engineering viewpoint, this means the use of increasingly sophisticated techniques and state-of-the-art theory to optimise process throughput and deliver ever more exacting dimensional and material property specifications. Dr. Bjöm Sohlberg's monograph demonstrates this interplay between fundamental control engineering science and the demands of a particular applications project in the steel strip production business. It is an excellent piece of work which clearly shows how these industrial engineering challenges can be formulated and solved.