Title :
Stability of Discrete-Time Systems With Time-Varying Delays via a Novel Summation Inequality
Author :
Seuret, Alexandre ; Gouaisbaut, Frederic ; Fridman, Emilia
Author_Institution :
LAAS, Toulouse, France
Abstract :
This technical note is concerned with the stability analysis of discrete linear systems with time-varying delays. The novelty of the technical note comes from the consideration of a new inequality which is less conservative than the celebrated Jensen inequality employed in the context of discrete-time delay systems. This inequality is a discrete-time counterpart of the Wirtinger-based integral inequality that was recently employed for the improved analysis of continuous-tine systems with delays. However, differently from the continuous-time case, the proof of the new inequality is not based on the Wirtinger inequality. The method is also combined with an efficient representation of the improved reciprocally convex combination inequality in order to reduce the conservatism induced by the LMIs optimization setup. The effectiveness of the proposed result is illustrated by some classical examples from the literature.
Keywords :
continuous time systems; delays; discrete time systems; linear matrix inequalities; stability; time-varying systems; Jensen inequality; LMIs; Wirtinger-based integral inequality; continuous-time systems; discrete-time systems; reciprocally convex combination inequality; stability; summation inequality; time-varying delays; Delay systems; Delays; Linear matrix inequalities; Stability analysis; Symmetric matrices; Time-varying systems; Vectors; Discrete-time-delay systems; Summation inequalities; stability analysis; summation inequalities; time-varying delay;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2015.2398885