process control modeling design and simulation by b wayne bequette pdf Thursday, March 18, 2021 1:01:53 AM

Process Control Modeling Design And Simulation By B Wayne Bequette Pdf

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Process Control: Modeling, Design, and Simulation

Thank you for interesting in our services. We are a non-profit group that run this website to share documents. We need your help to maintenance this website. Please help us to share our service with your friends. Home Process Control modeling, design and simulation - B. Wayne Bequette. Share Embed Donate. Process Control: Modeling, Design, and Simulation teaches the field's most important techniques, behaviors, and control problems through practical examples, supplemented by extensive exercises—with detailed derivations, relevant software files, and additional techniques available on a companion Web site.

Introduction Section 1. Instrumentation Section 1. Process Models and Dynamic Behavior Section 1. Control Textbooks and Journals Section 1. A Look Ahead Section 1.

Summary Student Exercises Chapter 2. Fundamental Models Section 2. Background Section 2. Balance Equations Section 2. Material Balances Section 2. Constitutive Relationships Section 2. Material and Energy Balances Section 2. Form of Dynamic Models Section 2. Linear Models and Deviation Variables Section 2. Dynamic Behavior Section 3. Background Section 3.

Linear State Space Models Section 3. Introduction to Laplace Transforms Section 3. Transfer Functions Section 3. First-Order Behavior Section 3. Integrating System Section 3. Second-Order Behavior Section 3. Lead-Lag Behavior Section 3. Poles and Zeros Section 3. Processes with Dead Time Section 3. Summary References Student Exercises Chapter 4. Empirical Models Section 4. Introduction Section 4. Discrete-Time Autoregressive Models Section 4. Parameter Estimation Section 4.

Summary References Student Exercises Appendix 4. Introduction to Feedback Control Section 5. Motivation Section 5. Development of Control Block Diagrams Section 5. Response to Setpoint Changes Section 5.

Routh Stability Criterion Section 5. Effect of Tuning Parameters Section 5. Response to Disturbances Section 5. Open-Loop Unstable Systems Section 5. Summary References Student Exercises Chapter 6. Introduction Section 6. Direct Synthesis Section 6. Summary References Student Exercises Chapter 7. Frequency-Response Analysis Section 7.

Motivation Section 7. Bode and Nyquist Plots Section 7. Closed-Loop Stability Concepts Section 7. Bode and Nyquist Stability Section 7. Robustness Section 7. Summary Reference Student Exercises Chapter 8. Internal Model Control Section 8. Introduction to Model-Based Control Section 8. Model Uncertainty and Disturbances Section 8.

IMC Background Section 8. Effect of Model Uncertainty and Disturbances Section 8. Improved Disturbance Rejection Design Section 8. Manipulated Variable Saturation Section 8. Summary References Student Exercises Appendix 8. Background Section 9. Summary References Student Exercises Chapter Cascade and Feed-Forward Control Section Background Section Introduction to Cascade Control Section Cascade-Control Analysis Section Cascade-Control Design Section Cascade IMC Section Feed-Forward Control Section Feed-Forward Controller Design Section Summary of Feed-Forward Control Section Combined Feed-Forward and Cascade Section PID Enhancements Section Antireset Windup Section Autotuning Techniques Section Controller Parameter Gain Scheduling Section Motivation Section Ratio Control Section Selective and Override Control Section Split-Range Control Section Simulink Functions Section Control-Loop Interaction Section Introduction Section The General Pairing Problem Section The Relative Gain Array Section Return to the Motivating Example Section RGA and Sensitivity Section Summary References Student Exercises Appendix Multivariable Control Section Zeros and Performance Limitations Section Scaling Considerations Section Directional Sensitivity and Operability Section Block-Diagram Analysis Section

Solutions_Manual

For junior or senior-level undergraduate Chemical Engineering courses in process dynamics and control, as well as a reference for professionals seeking the latest simulation tools and advanced control strategies. This is the first book to offer a fully integrated introduction of the fundamental topics of process dynamics with MATLAB software tools that allow students to learn the material interactively through computer-based simulation exercises. Process Control: Modeling, Design and Simulation presents realistic problems and provides the software tools for students to simulate processes and solve practical, real-world problems. Ultimately, the book will teach students to analyze dynamic chemical processes and develop automatic control strategies to operate them safely and economically. Reinforce and enhance the student's ability to learn new model-based techniques. Provides students with an appreciation of the dynamic nature of chemical processes and helps them develop strategies to operate these procedures. Enables students to integrate the techniques and reinforce the concepts presented throughout the book.


Process Control: Modeling, Design and Simulation. Prentice Hall, Upper Saddle River, NJ (). B. Wayne Bequette. (19 December ).


Process Control modeling, design and simulation - B. Wayne Bequette.pdf

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Process Control: Modeling, Design and Simulation

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