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Indirect robust model reference adaptive control for discrete-time system with output uncertainty

机译:具有输出不确定性的离散时间系统的间接鲁棒模型参考自适应控制

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For a class of more general discrete-time systems with output uncertainty, the design and analysis of robust indirect model reference adaptive control (MRAC) with normalized adaptive law are investigated. The main work includes three parts. Firstly, it is shown that the constructed parameter estimation algorithm not only possesses the same properties as those of traditional estimation algorithms, but also it avoids the possibility of division by zero. Secondly, by establishing a relationship between the plant parameter estimate and controller parameter estimate, some similar properties of the latter are also established. Thirdly, by using the relationship between the normalizing signal and all the signals of the closed-loop system, and some important mathematical tools on discrete-time systems, a systematic stability and robustness analysis approach to the discrete indirect robust MRAC scheme is developed rigorously.
机译:对于一类具有输出不确定性的更通用的离散时间系统,研究了具有归一化自适应律的鲁棒间接模型参考自适应控制(MRAC)的设计和分析。主要工作包括三个部分。首先,表明所构造的参数估计算法不仅具有与传统估计算法相同的性质,而且避免了被零除的可能性。其次,通过建立工厂参数估计和控制器参数估计之间的关系,还建立了后者的一些相似特性。第三,利用归一化信号与闭环系统所有信号之间的关系,以及离散系统上的一些重要数学工具,针对离散间接鲁棒MRAC方案,系统地开发了系统的稳定性和鲁棒性分析方法。

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