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Improved LMI conditions for stability analysis of discrete-time haptic system under time-varying communication delays

机译:改进了LMI条件,以在时变通信延迟下离散时间触觉系统的稳定性分析

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The stability analysis of haptic systems without time-delay or with constant time-delay using the frequency-domain criteria such as Routh-Hurwitz or Nyquist has been found in many literatures. However, the stability analysis for the discrete-time haptic systems under time-varying delays remains a major challenge in the field of haptics. Based on the Lyapunov theory, this paper presents a sufficient stability condition in terms of LMI (Linear Matrix Inequality) for the discrete-time systems with an interval time-varying delay. Numerical simulations are included to demonstrate that the proposed condition is less conservative than some existing ones in the literature. The application of the proposed theory to analyze the stability of haptic system is presented in the second part of this paper.
机译:在许多文献中发现了在许多文献中发现了使用频域标准的延迟或恒定时延的触觉系统的稳定性分析。 然而,在时变延迟下的离散时间触觉系统的稳定性分析仍然是触觉领域的主要挑战。 基于Lyapunov理论,本文在LMI(线性矩阵不等式)方面具有间隔时间变化延迟的离散时间系统的稳定性。 包括数值模拟以证明所提出的条件比文献中的一些现有的条件较少。 本文的第二部分介绍了提出的理论分析触觉系统的稳定性。

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