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Model Predictive Control (MPC) has become a widely used methodology across all engineering disciplines, yet there are few books which study this approach. Until now, no book has addressed in detail all key issues in the field including apriori stability and robust stability results. Engineers and MPC researchers now have a volume that provides a complete overview of the theory and practice of MPC as it relates to process and control engineering. Model-Based Predictive Control, A Practical Approach, analyzes predictive control from its base mathematical foundation, but delivers the subject matter in a readable, intuitive style. The author writes in layman's terms, avoiding jargon and using a style that relies upon personal insight into practical applications. This detailed introduction to predictive control introduces basic MPC concepts and demonstrates how they are applied in the design and control of systems, experiments, and industrial processes. The text outlines how to model, provide robustness, handle constraints, ensure feasibility, and guarantee stability. It also details options in regard to algorithms, models, and complexity vs. performance issues.
This book investigates the fundamental principles and practical implementation of Model Predictive Control (MPC) to provide engineers with a comprehensive framework for system design. J. A. Rossiter utilizes his expertise in control engineering to bridge the gap between abstract mathematical theory and real-world industrial application. The text systematically addresses critical challenges such as stability, constraint handling, and robustness, offering a structured approach for practitioners to evaluate performance versus complexity.
What You Will Find
Experts recognize this volume as a practical resource that simplifies complex control theory for engineers working in process industries. Readers frequently note that the author's accessible writing style makes advanced MPC concepts approachable without sacrificing technical rigor.
Page Count:
348
Publication Date:
2003-01-01
Publisher:
Taylor & Francis Group
ISBN-10:
0203503961
ISBN-13:
9780203503966
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