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Modern Control Systems
International Edition

Rating
Format
Paperback, 1056 pages
Published
United States, 22 January 2008

For an introductory undergraduate course in control systems for engineering students.

 

Written to be equally useful for all engineering disciplines, this text is organized around the concept of control systems theory as it has been developed in the frequency and time domains. It provides coverage of classical control, employing root locus design, frequency and response design using Bode and Nyquist plots. It also covers modern control methods based on state variable models including pole placement design techniques with full-state feedback controllers and full-state observers. Many examples throughout give students ample opportunity to apply the theory to the design and analysis of control systems. Incorporates computer-aided design and analysis using Matlab and LabVIEW MathScript.


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Product Description

For an introductory undergraduate course in control systems for engineering students.

 

Written to be equally useful for all engineering disciplines, this text is organized around the concept of control systems theory as it has been developed in the frequency and time domains. It provides coverage of classical control, employing root locus design, frequency and response design using Bode and Nyquist plots. It also covers modern control methods based on state variable models including pole placement design techniques with full-state feedback controllers and full-state observers. Many examples throughout give students ample opportunity to apply the theory to the design and analysis of control systems. Incorporates computer-aided design and analysis using Matlab and LabVIEW MathScript.

Product Details
EAN
9780132451925
ISBN
0132451921
Publisher
Age Range
Dimensions
19.1 x 23.1 x 3.8 centimeters (1.59 kg)

Table of Contents



 1. Introduction to Control Systems.


 2. Mathematical Models of Systems.


 3. State Variable Models.


 4. Feedback Control System Characteristics.


 5. The Performance of Feedback Control Systems.


 6. The Stability of Linear Feedback Systems.


 7. The Root Locus Method.


 8. Frequency Response Methods.


 9. Stability in the Frequency Domain.


10. The Design of Feedback Control Systems.


11. The Design of State Variable Feedback Systems.


12. Robust Control Systems.


13. Digital Control Systems.


Appendix A: MATLAB® Basics.


Appendix B: LabVIEW MathScript Basics.


WEB RESOURCES

 

Appendix C: Symbols, Units, and Conversion Factors.


Appendix D: Laplace Transform Pairs



Appendix E:  An Introduction to Matrix Algebra


Appendix F: Decibel Conversion


Appendix G: Complex Numbers

 

 

Appendix H: z-Transfer Pairs Preface

 

 

Appendix I: Discrete-Time Evaluation of the Time Response


References.


Index.


 

 

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