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Analysis and Synthesis of Polynomial Discrete-Time Systems: An SOS Approach

Autor Mohd Shakir Md Saat, Sing Kiong Nguang, Alireza Nasiri
en Limba Engleză Paperback – 7 iul 2017
Analysis and Synthesis of Polynomial Discrete-time Systems: An SOS Approach addresses the analysis and design of polynomial discrete-time control systems. The book deals with the application of Sum of Squares techniques in solving specific control and filtering problems that can be useful to solve advanced control problems, both on the theoretical side and on the practical side. Two types of controllers, state feedback controller and output feedback controller, along with topics surrounding the nonlinear filter and the H-infinity performance criteria are explored. The book also proposes a solution to global stabilization of discrete-time systems.


  • 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

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 nonlinearH8 state feedback control for polynomial discrete-time systems
4. Robust nonlinear filtering for polynomial discrete-time systems
5. Robust nonlinear H8 filtering for polynomial discrete-time systems
6. Robust nonlinearH8 output feedback control for polynomial discrete-time systems
7. Global stabilization of fuzzy polynomial discrete-time nonlinear systems
8. Global H8 control of fuzzy polynomial discrete-time nonlinear systems
9. Conclusion
Appendix A - Mathematical