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Article
Robustness Analysis of Descriptor Systems with Parameter Uncertainties
International Journal of Control, Automation, and Systems
  • Chunyu Yang, Northeastern University
  • Qingling Zhang, Northeastern University
  • Fuzhen Zhang, Nova Southeastern University
  • Zheng Zhou, Northeastern University
Document Type
Article
Publication Date
4-1-2010
Keywords
  • Descriptor systems,
  • Linear matrix inequality (LMI),
  • Parameter uncertainties,
  • Robustness
Disciplines
Abstract

This paper investigates the problem of robustness analysis for descriptor systems with parameter uncertainties in both the derivative and state matrices. Using a parameter dependent Lyapunov function, we derive a linear matrix inequality (LMI) based sufficient condition for the admissibility of the system. Unlike the existing results, our criterion has no restriction on the rank of the derivative matrix. Further, we use the obtained method to study interval descriptor systems and multi-parameter singular perturbed systems. The proposed approaches overcome some drawbacks of the existing results. Finally, we present two numerical examples to show the effectiveness of the main results

DOI
10.1007/s12555-010-0204-x
Citation Information
Chunyu Yang, Qingling Zhang, Fuzhen Zhang and Zheng Zhou. "Robustness Analysis of Descriptor Systems with Parameter Uncertainties" International Journal of Control, Automation, and Systems Vol. 8 Iss. 2 (2010) p. 204 - 209 ISSN: 1598-6446
Available at: http://works.bepress.com/fuzhen-zhang/126/