
Nise's Control Systems Engineering
Global Edition
Norman S. Nise(Author)
Wiley (Publisher)
Published on 24. October 2018
Book
Paperback/Softback
944 pages
978-1-119-38297-3 (ISBN)
Description
Nise's Control Systems Engineering takes a practical approach, presenting clear and complete explanations. Real world examples demonstrate the analysis and design process, while helpful skill assessment exercises, numerous in-chapter examples, review questions and problems reinforce key concepts. A new progressive problem, a solar energy parabolic trough collector, is featured at the end of each chapter. Hardware Interface Laboratory experiments have been added to certain chapters. These experiments use National Instrument's myDAQ (R) to interface your computer to actual hardware to test control system principles in the real-world.
More details
Edition
7th Edition, Global Edition
Language
English
Place of publication
New York
United States
Target group
Professional and scholarly
Dimensions
Height: 235 mm
Width: 149 mm
Thickness: 25 mm
Weight
666 gr
ISBN-13
978-1-119-38297-3 (9781119382973)
Schweitzer Classification
Other editions
Additional editions

Norman S. Nise
Control Systems Engineering
Book
12/2014
7th Edition
Wiley
€128.51
Article exhausted; check for reprint
Previous edition

Norman S. Nise
Control Systems Engineering
Book
12/2014
7th Edition
Wiley
€128.51
Article exhausted; check for reprint
Content
PREFACE, ix
1. INTRODUCTION
2. MODELING IN THE FREQUENCY DOMAIN
3. MODELING IN THE TIME DOMAIN
4. TIME RESPONSE
5. REDUCTION OF MULTIPLE SUBSYSTEMS
6. STABILITY
7. STEADY-STATE ERRORS
8. ROOT LOCUS TECHNIQUES
9. DESIGN VIA ROOT LOCUS
10. FREQUENCY RESPONSE TECHNIQUES
11. DESIGN VIA FREQUENCY RESPONSE
12. DESIGN VIA STATE SPACE
13. DIGITAL CONTROL SYSTEMS
APPENDIX A List of Symbols
APPENDIX B MATLAB Tutorial
APPENDIX C Simulink Tutorial
APPENDIX D LabVIEW Tutorial
GLOSSARY
ANSWERS TO SELECTED PROBLEMS
INDEX
APPENDIX E MATLAB's GUI Tools
1. INTRODUCTION
2. MODELING IN THE FREQUENCY DOMAIN
3. MODELING IN THE TIME DOMAIN
4. TIME RESPONSE
5. REDUCTION OF MULTIPLE SUBSYSTEMS
6. STABILITY
7. STEADY-STATE ERRORS
8. ROOT LOCUS TECHNIQUES
9. DESIGN VIA ROOT LOCUS
10. FREQUENCY RESPONSE TECHNIQUES
11. DESIGN VIA FREQUENCY RESPONSE
12. DESIGN VIA STATE SPACE
13. DIGITAL CONTROL SYSTEMS
APPENDIX A List of Symbols
APPENDIX B MATLAB Tutorial
APPENDIX C Simulink Tutorial
APPENDIX D LabVIEW Tutorial
GLOSSARY
ANSWERS TO SELECTED PROBLEMS
INDEX
APPENDIX E MATLAB's GUI Tools