Extended Dissipativity Analysis and Synthesis for Discrete-Time Lur'e Delayed Systems: Matrix-Separation-Based Lyapunov Functional Method

  • Xie, Ke-You; 
  • Lee, Sangmoon; 
  • Zhang, Chuan-Ke; 
  • Jin, Li; 
  • Liu, Yajuan; 
  • 외 1명
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초록

This paper develops a matrix-separation-based Lyapunov functional method to study the extended dissipativity analysis and synthesis issue of discrete-time Lur'e-type delayed systems. The advanced idea of matrix-separation is reflected in Lyapunov functional candidates and estimates summation terms as precisely as feasible. First, we introduce a novel summation inequality based on the matrix-separation method to provide a bound for the augmented summation that involves common state variables. An improved delay-product-type Lyapunov functional is devised by extending non-positive definite summations as separate subblocks of the state-augmented summation. Then, by using the matrix injection method to handle the cubic delay term in the functional forward difference, a delay-variation-dependent stability criterion and an extended dissipativity criterion are developed under the matrix-separation-based method. Subsequently, sufficient conditions for the control design of Lur'e-type systems are derived. Finally, the effectiveness and superiority of the proposed method are verified through its application to Chua's circuits, neural networks, and a stochastic numerical example.

키워드

delay systems; difference equations; sampled data systems; stability criteria; STABILITY-CRITERION; INEQUALITIES
제목
Extended Dissipativity Analysis and Synthesis for Discrete-Time Lur'e Delayed Systems: Matrix-Separation-Based Lyapunov Functional Method
저자
Xie, Ke-You; Lee, Sangmoon; Zhang, Chuan-Ke; Jin, Li; Liu, Yajuan; He, Yong
DOI
10.1049/cth2.70035
발행일
2025-01
유형
Article
저널명
IET Control Theory and Applications
권
19
호
1