Presents a step-by-step approach to modeling, analysis and control, covering fundamental theory, practical implementation, and advanced strategies. Aimed at senior undergraduates and first-year graduates, it includes real-world examples, solved problems, and exercises, and is supported online by a solutions manual, MATLAB (R) code and Simulink (R) files.
Presents a step-by-step approach to modeling, analysis and control, covering fundamental theory, practical implementation, and advanced strategies. Aimed at senior undergraduates and first-year graduates, it includes real-world examples, solved problems, and exercises, and is supported online by a solutions manual, MATLAB (R) code and Simulink (R) files.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Nader Jalili is a Professor of Mechanical Engineering and Mary and Richard Templeton Dean of Lyle School of Engineering at Southern Methodist University (SMU). He was formerly Professor and Head of the Mechanical Engineering Department at the University of Alabama (UA) from 2018. Prior to his department headship at UA, Dr Jalili was a Professor of Mechanical Engineering and Associate Department Chair for Graduate Studies and Research at Northeastern University. An ASME Fellow, he is an innovative leader and researcher, known for bringing the resources of engineering education and research to undergraduate and graduate students, industry partners, and community outreach programs. Dr Jalili is a recipient of numerous international and institutional awards for his research, leadership, teaching, and service including the 2022 ASME Michael J. Rabins Leadership Award, the 2017 Northeastern University College of Engineering Outstanding Service Award, the 2015 Northeastern University Excellence in Teaching Award, and the 2003 National Science Foundation CAREER Award, as well as consecutive Professor of the Year Awards for teaching excellence at all his prior institutions.
Inhaltsangabe
Part I. Modeling of Multi-Domain Dynamic Systems: 1. Introduction to Dynamic Systems 2. Modeling of Mechanical Systems 3. Modeling of Electrical Systems 4. Modeling of Multi-Domain Systems Part II. Analysis of Multi-Domain Dynamic Systems: 5. Dynamic System Response 6. System Response Characteristics 7. System Transfer Function Analysis Part III. Introduction to Feedback Systems: 8. Analysis of Feedback Control Systems 9. Root Locus Techniques 10. Frequency Domain Methods 11. Implementation of Feedback Control Systems Part IV. Analysis and Feedback Control of Modern Systems: 12. State-Space Representation and Analysis 13. State-Space Control System Design 14. Advanced Topics in Control Engineering.
Part I. Modeling of Multi-Domain Dynamic Systems: 1. Introduction to Dynamic Systems 2. Modeling of Mechanical Systems 3. Modeling of Electrical Systems 4. Modeling of Multi-Domain Systems Part II. Analysis of Multi-Domain Dynamic Systems: 5. Dynamic System Response 6. System Response Characteristics 7. System Transfer Function Analysis Part III. Introduction to Feedback Systems: 8. Analysis of Feedback Control Systems 9. Root Locus Techniques 10. Frequency Domain Methods 11. Implementation of Feedback Control Systems Part IV. Analysis and Feedback Control of Modern Systems: 12. State-Space Representation and Analysis 13. State-Space Control System Design 14. Advanced Topics in Control Engineering.
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