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首页> 外文期刊>Automatica >A robust decentralized model reference adaptive control for non-minimum-phase in interconnected systems
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A robust decentralized model reference adaptive control for non-minimum-phase in interconnected systems

机译:互联系统中非最小相位的鲁棒分散模型参考自适应控制

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摘要

In this paper, we present a decentralized model reference adaptive control for interconnected subsystems in the sense that no information exchange occurs between the subsystems. The approach is based on the interconnection output estimation usingthe polynomial series which offers a general solution for interconnected subsystems. The parameter estimation scheme is a combined adaptive data filtering with a recursive least-squares algorithm with parameter projection and normalization. The problem of minimum phased subsystems is handled by an adaptive input-output data filtering. Hence the zeros of each subsystem estimated model are relocated inside the unit circle. This estimated model which is minimum phased is then used for the control synthesis.It is shown that the stability conditions based on weak interconnections are relaxed. Also the robustness of the proposed adaptive control against unmodeled dynamics is stated. Finally, the results are illustrated by numerical examples.
机译:在本文中,在子系统之间不进行信息交换的意义上,我们提出了一种用于互连子系统的分散模型参考自适应控制。该方法基于使用多项式序列的互连输出估计,该多项式序列为互连子系统提供了通用解决方案。参数估计方案是将自适应数据过滤与具有参数投影和归一化的递归最小二乘算法相结合的方法。最小相位子系统的问题由自适应输入输出数据过滤处理。因此,每个子系统估计模型的零都将重新放置在单位圆内。该估计的最小相位模型随后用于控制综合。结果表明,基于弱互连的稳定性条件得到了放松。还陈述了所提出的针对未建模动力学的自适应控制的鲁棒性。最后,通过数值示例说明了结果。

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