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Stability Analysis and Controller Design for Switched Time-Delay Systems.

机译:切换时滞系统的稳定性分析和控制器设计。

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摘要

In this thesis, the stability analysis and control synthesis for uncertain switched time-delay systems are investigated. It is known that a wide variety of real-world systems are subject to uncertainty and also time-delay in their dynamics. These characteristics, if not taken into consideration in analysis and synthesis, can lead to important problems such as performance degradation or instability in a control system. On the other hand, the switching phenomenon often appears in numerous applications, where abrupt change is inevitable in the system model. Switching behavior in this type of systems can be triggered either by time, or by the state of the system. A theoretical framework to study various features of switched systems in the presence of uncertainty and time-delay (both neutral and retarded) would be of particular interest in important applications such as network control systems, power systems and communication networks.;To address the problem of robust stability for the class of uncertain switched systems with unknown time-varying delay discussed above, sufficient conditions in the form of linear matrix inequalities (LMI) are derived. An adaptive switching control algorithm is then proposed for the stabilization of uncertain discrete time-delay systems subject to disturbance. It is assumed that the discrete time-delay system is highly uncertain, such that a single fixed controller cannot stabilize it effectively. Sufficient conditions are provided subsequently for the stability of switched time-delay systems with polytopic-type uncertainties. Moreover, an adaptive control scheme is provided to stabilize the uncertain neutral time-delay systems when the upper bounds on the system uncertainties are not available a priori . Simulations are provided throughout the thesis to support the theoretical results.
机译:本文研究了不确定切换时滞系统的稳定性分析和控制综合。众所周知,现实世界中的各种系统都存在不确定性,并且其动力学也存在时间延迟。如果在分析和综合中未考虑这些特性,则可能导致重要的问题,例如性能下降或控制系统不稳定。另一方面,开关现象经常出现在许多应用中,在这些应用中,系统模型中的突变是不可避免的。这种类型的系统中的切换行为可以通过时间或系统状态来触发。在不确定性和时延(中性和延迟)存在下研究交换系统各种功能的理论框架,在诸如网络控制系统,电力系统和通信网络等重要应用中将特别有意义。针对上面讨论的不确定时滞未知的不确定切换系统的鲁棒稳定性,推导了线性矩阵不等式(LMI)形式的充分条件。然后提出了一种自适应开关控制算法,用于稳定受干扰的不确定离散时滞系统。假设离散时滞系统具有很高的不确定性,因此单个固定控制器无法有效地稳定它。随后为具有多主题类型不确定性的切换时滞系统的稳定性提供了充分的条件。此外,当系统不确定性的上限不是事先可用时,提供了一种自适应控制方案来稳定不确定的中性时滞系统。在整个论文中提供了仿真以支持理论结果。

著录项

  • 作者

    Moezzi Madani, Kaveh.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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