Improved Lyapunov Functional for Stability Analysis in Delay-Differential Systems

Main Article Content

Krissana Antharat
Grienggrai Rajchakit

Abstract

This paper explores the stability of differential systems influenced by time delays, with a specific focus on situations where these delays change over time. Such systems often present analytical challenges due to the unpredictable nature of the delays. To tackle this, we introduce a new form of Lyapunov–Krasovskii functional, which leads to a refined condition for stability that depends directly on the characteristics of the delay. This condition is formulated using Linear Matrix Inequalities (LMIs), which offer a practical way to assess stability while maintaining a solid theoretical foundation. By modeling the effects of time-varying delays more accurately, the method contributes both to a deeper understanding of how such delays affect system behavior and to more reliable tools for analyzing systems where delays are a built-in feature that cannot be ignored.


 


Manuscript received:23 Feb 2025 | Revised: 16 Apr 2025 | Accepted: 29 Apr 2025 | Published: 30 Jul 2025

Article Details

How to Cite
Antharat, K., & Rajchakit, G. (2025). Improved Lyapunov Functional for Stability Analysis in Delay-Differential Systems . International Journal on Robotics, Automation and Sciences, 7(2), 108–112. https://doi.org/10.33093/ijoras.2025.7.2.10
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Articles

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