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首页> 外文期刊>Systems, Man, and Cybernetics, Part B: Cybernetics, IEEE Transactions on >Prescribed Performance Output Feedback/Observer-Free Robust Adaptive Control of Uncertain Systems Using Neural Networks
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Prescribed Performance Output Feedback/Observer-Free Robust Adaptive Control of Uncertain Systems Using Neural Networks

机译:神经网络对不确定系统的规定性能输出反馈/无观察者鲁棒自适应控制

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摘要

A neural network output feedback/observer-free continuous controller for multiple-input-multiple-output uncertain nonlinear systems is designed, which is capable of guaranteeing prescribed performance bounds on the system output, as well as the boundedness of all other closed-loop signals, despite the presence of additive external disturbances and unmodeled dynamics. The assumptions that were made concern the satisfaction of an unboundedness observability property and an output Lagrange stability condition of the unmodeled dynamics subsystem and that the nominal system is output feedback equivalent to a strictly passive one. Simulations on an induction motor system illustrate the approach.
机译:设计了一种用于多输入多输出不确定非线性系统的神经网络输出反馈/无观测器连续控制器,该控制器能够保证系统输出具有规定的性能范围,以及所有其他闭环信号的有界性,尽管存在附加的外部干扰和未建模的动力学。所做的假设涉及无模型可观测性属性的满足以及未建模动力学子系统的输出拉格朗日稳定性条件的满足,并且标称系统的输出反馈与严格被动的等效。在感应电动机系统上的仿真说明了该方法。

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