Analysis and Synthesis of Polynomial Discrete-Time Systems: An SOS Approach
Autor Mohd Shakir Md Saat, Sing Kiong Nguang, Alireza Nasirien Limba Engleză Paperback – 8 iul 2017
- Presents recent developments of the Sum of Squares approach in control of Polynomial Discrete-time Systems
- Includes numerical and practical examples to illustrate how design methodologies can be applied
- Provides a methodology for robust output controller design with an H-infinity performance index for polynomial discrete-time systems
- Offers tools for the analysis and design of control processes where the process can be represented in polynomial form
- Uses the Sum of Squares method for solving controller and filter design problems
- Provides MATLAB® code and simulation files of all illustrated example
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Specificații
ISBN-13: 9780081019016
ISBN-10: 0081019017
Pagini: 200
Dimensiuni: 191 x 235 x 12 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0081019017
Pagini: 200
Dimensiuni: 191 x 235 x 12 mm
Editura: ELSEVIER SCIENCE
Public țintă
[1] Researchers working in the fields of Control Theories. [2] Electrical and Electronic engineers. [3] Engineers that have to consider a control application has part of their projects. [4] Process Control engineer.Cuprins
1. Introduction
2. Robust nonlinear control for polynomial discrete-time systems
3. Robust nonlinearH∞ state feedback control for polynomial discrete-time systems
4. Robust nonlinear filtering for polynomial discrete-time systems
5. Robust nonlinear H∞ filtering for polynomial discrete-time systems
6. Robust nonlinearH∞ output feedback control for polynomial discrete-time systems
7. Global stabilization of fuzzy polynomial discrete-time nonlinear systems
8. Global H∞ control of fuzzy polynomial discrete-time nonlinear systems
9. Conclusion
Appendix A - Mathematical
2. Robust nonlinear control for polynomial discrete-time systems
3. Robust nonlinearH∞ state feedback control for polynomial discrete-time systems
4. Robust nonlinear filtering for polynomial discrete-time systems
5. Robust nonlinear H∞ filtering for polynomial discrete-time systems
6. Robust nonlinearH∞ output feedback control for polynomial discrete-time systems
7. Global stabilization of fuzzy polynomial discrete-time nonlinear systems
8. Global H∞ control of fuzzy polynomial discrete-time nonlinear systems
9. Conclusion
Appendix A - Mathematical