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Strongly Absolute Stability Problem of Descriptor Systems
Volume 18, Issue 2 (2007), pp. 305–320
Chunyu Yang   Qingling Zhang   Linna Zhou  

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https://doi.org/10.15388/Informatica.2007.179
Pub. online: 1 January 2007      Type: Research Article     

Received
1 May 2006
Published
1 January 2007

Abstract

This paper considers Lur'e type descriptor systems (LDS). The concept of strongly absolute stability is defined for LDS and such a notion is a generalization of absolute stability for Lur'e type standard state-space systems (LSS). A reduced-order LSS is obtained by a standard coordinate transformation and it is shown that the strongly absolute stability of the LDS is equivalent to the absolute stability of the reduced-order LSS. By a generalized Lyapunov function, we derive an LMIs based strongly absolute stability criterion. Furthermore, we present the frequency-domain interpretation of the criterion, which shows that the criterion is a generalization of the classical circle criterion. Finally, numerical examples are given to illustrate the effectiveness of the obtained results.

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Keywords
Lur'e type systems descriptor systems strongly absolute stability linear matrix inequality (LMI)

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INFORMATICA

  • Online ISSN: 1822-8844
  • Print ISSN: 0868-4952
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