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Adaptive variable structure control for large-scale time-delayed systems with unknown nonlinear dead-zone 被引量:1

Adaptive variable structure control for large-scale time-delayed systems with unknown nonlinear dead-zone
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摘要 The problem of adaptive fuzzy control for a class of large-scale, time-delayed systems with unknown nonlinear dead-zone is discussed here. Based on the principle of variable structure control, a design scheme of adaptive, decentralized, variable structure control is proposed. The approach removes the conditions that the dead-zone slopes and boundaries are equal and symmetric, respectively. In addition, it does not require that the assumptions that all parameters of the nonlinear dead-zone model and the lumped uncertainty are known constants. The adaptive compensation terms of the approximation errors are adopted to minimize the influence of modeling errors and parameter estimation errors. By theoretical analysis, the closed-loop control system is proved to be semi-globally uniformly ultimately bounded, with tracking errors converging to zero. Simulation results demonstrate the effectiveness of the approach. The problem of adaptive fuzzy control for a class of large-scale, time-delayed systems with unknown nonlinear dead-zone is discussed here. Based on the principle of variable structure control, a design scheme of adaptive, decentralized, variable structure control is proposed. The approach removes the conditions that the dead-zone slopes and boundaries are equal and symmetric, respectively. In addition, it does not require that the assumptions that all parameters of the nonlinear dead-zone model and the lumped uncertainty are known constants. The adaptive compensation terms of the approximation errors axe adopted to minimize the influence of modeling errors and parameter estimation errors. By theoretical analysis, the closed-loop control system is proved to be semiglobally uniformly ultimately bounded, with tracking errors converging to zero. Simulation results demonstrate the effectiveness of the approach.
机构地区 Dept. of Computer
出处 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2007年第4期865-870,共6页 系统工程与电子技术(英文版)
基金 This project was supported by the National Natural Science Foundation of China (60074013) the Foundation of New Era Talent Engineering of Yangzhou University.
关键词 时滞系统 自适应变结构控制 离散控制 非线性死区 nonlinear dead-zone decentralized control adaptive control variable structure control
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  • 1Tao G, Kokotovic P V. Adaptive sliding control of plants with unknown dead-zone[J]. IEEE Trans on Automatic Control, 1994,39(1) :59-68.
  • 2Tao G, Kokotovic P V. Discrete-time adaptive control of systems with unknown dead-zone[J]. Int J of Control, 1995,61(1) : 1-17.
  • 3Cho H Y, Bai E W. Convergence results for an adaptive dead-zone inverse[J]. Int J of Adaptive Control and Signal Processing, 1998,12: 451-466.
  • 4Wang X S, Hong H, Su C Y. Model reference adaptive control of continuous time systems with an unknown deadzone[J]. IEE Proe of Control Theory Appllcation,2003,150(3).-261-266.
  • 5Wang X S, Su C Y, Hong H. Robust adaptive control a class of nonlinear systems with an unknown dead-zone[J]. Automatica, 2004,40(3): 407 - 413.
  • 6Zhang T P. Stable Adaptive Fuzzy Sliding Mode Control of Interconnected Systems[J]. Fuzzy Sets and Systems, 2001,122:5-19.
  • 7Huang S N, Tan K K, Lee T H. Decentralized control design for large-scale systems with strong interconnections using neural networks[J]. IEEE Transactions on Automatic Control, 2003,5 (48) : 805- 810.
  • 8Zhang T P, et al. Decentralized direct adaptive neural network control of interconnected systems[J]. Proceedings of Third International Conference on Machine Learning and Cybernetics, Shanghai ,China, 2004:856-860.
  • 9Huang S N, Tan K K, Lee T H. Decentralized control of a class of large-scale nonlinear systems using neural networks[J]. Automatica, 2005,41 : 1645- 1649.
  • 10Zhang T. P. Stable adaptive fuzzy sliding mode control of interconnected systems[J]. Fuzzy Sets and Systems, 2001,122:5-19.

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