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Moses Oludayo Tade

Kirjat ja teokset yhdessä paikassa: 2 kirjaa, julkaisuja vuosilta 1999-2014, suosituimpien joukossa Computation Of Mathematical Models For Complex Industrial Processes. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

2 kirjaa

Kirjojen julkaisuhaarukka 1999-2014.

Computation Of Mathematical Models For Complex Industrial Processes

Computation Of Mathematical Models For Complex Industrial Processes

Yu-chu Tian; Tonghua Zhang; Hongmei Yao; Moses Oludayo Tade

World Scientific Publishing Co Pte Ltd
2014
sidottu
Designed for undergraduate and postgraduate students, academic researchers and industrial practitioners, this book provides comprehensive case studies on numerical computing of industrial processes and step-by-step procedures for conducting industrial computing. It assumes minimal knowledge in numerical computing and computer programming, making it easy to read, understand and follow. Topics discussed include fundamentals of industrial computing, finite difference methods, the Wavelet-Collocation Method, the Wavelet-Galerkin Method, High Resolution Methods, and comparative studies of various methods. These are discussed using examples of carefully selected models from real processes of industrial significance. The step-by-step procedures in all these case studies can be easily applied to other industrial processes without a need for major changes. Thus, they provide readers with useful frameworks for the applications of engineering computing in fundamental research problems and practical development scenarios.
Robust Nonlinear Control Of Industrial Evaporation Systems: Implementation Of Differential Geometric Techniques

Robust Nonlinear Control Of Industrial Evaporation Systems: Implementation Of Differential Geometric Techniques

Miro Kraetzl; Moses Oludayo Tade; L C To

World Scientific Publishing Co Pte Ltd
1999
sidottu
Nonlinearities exist in all process control systems. The use of linear control techniques is valid only in a narrow region of operation. Nonlinear control is central to future industrial development. In this book, multivariable nonlinear control techniques based on differential geometry are considered in a pragmatic manner. The book provides a simplified and systematic approach to geometric nonlinear control theory. A case study of an industrial evaporator is used as an example throughout the entire book. Various other examples are also used throughout the text to illustrate the theory. The book successfully demonstrates the superiority and simplicity of the class of controllers studied through simulations and actual plant implementations. The simulations were done using the symbolic computation package MAPLE. Discussions are given on the application of symbolic computation in process engineering.This book is aimed at industrial practitioners and postgraduates in engineering, and will be particularly valuable to practicing engineers who find the theory books on control somewhat heavy going. The insights provided in the book will encourage more industrial implementations of nonlinear controllers, and thereby help to bridge the widening gap between control theory and industrial practice.