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Adaptive backstepping control of a class of uncertain nonlinear systems with unknown backlash-like hysteresis

机译:一类具有未知反冲样滞后的不确定非线性系统的自适应反步控制

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In this note, we consider the same class of systems as in a previous paper, i.e., a class of uncertain dynamic nonlinear systems preceded by unknown backlash-like hysteresis nonlinearities, where the hysteresis is modeled by a differential equation, in the presence of bounded external disturbances. By using backstepping technique, robust adaptive backstepping control algorithms are developed. Unlike some existing control schemes for systems with hysteresis, the developed backstepping controllers do not require the uncertain parameters within known intervals. Also, no knowledge is assumed on the bound of the "disturbance-like" term, a combination of the external disturbances and a term separated from the hysteresis model. It is shown that the proposed controllers not only can guarantee global stability, but also transient performance.
机译:在本说明中,我们考虑与上一篇论文相同的系统类别,即一类不确定的动态非线性系统,其后为未知的类似反冲的磁滞非线性,其中在有界的情况下,磁滞由微分方程建模外部干扰。通过使用反推技术,开发了鲁棒的自适应反推控制算法。与一些现有的具有滞后的系统控制方案不同,开发的反推控制器不需要在已知间隔内确定参数。同样,在“类似干扰”项,外部干扰和与磁滞模型分开的项的组合的边界上也没有知识。结果表明,所提出的控制器不仅可以保证全局稳定性,而且可以保证暂态性能。

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