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Iterative learning control for bilinear parameterized systems with time-varying delay

机译:时变时滞双线性参数化系统的迭代学习控制

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摘要

For higher-order bilinear parameterized systems with time-varying delay, a novel adaptive iterative learning control strategy is proposed. The time-varying delay term is solved via the signal replacement theory and the parameter recombination technique. For the bilinear parameterized term, a differential-difference couple-type updating law is imported. Then by constructing a Lyapunov-Krasovskii composite energy function, convergence of the tracking error and finiteness of all signals are proved. Finally, the simulation example is carried out to illustrate the validity and feasibility of the designed strategy.
机译:针对具有时变时滞的高阶双线性参数化系统,提出了一种新型的自适应迭代学习控制策略。时变延迟项通过信号替换理论和参数重组技术求解。对于双线性参数化项,引入了差分-差分对类型更新定律。然后通过构造一个Lyapunov-Krasovskii复合能量函数,证明了跟踪误差的收敛性和所有信号的有限性。最后,通过仿真实例说明了所设计策略的有效性和可行性。

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