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首页> 外文期刊>International Journal of Control >Adaptive and non-adaptive 'pole-placement' control of multivariable linear time-varying plants
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Adaptive and non-adaptive 'pole-placement' control of multivariable linear time-varying plants

机译:多变量线性时变植物的自适应和非自适应“极点布置”控制

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摘要

In this paper, the adaptive and non-adaptive 'pole-placement' control problems are addressed for a class of index-invariant multivariable linear time-varying plants. In the case where the plant parameters are completely known, it is shown that a 'pole-placement'-like control algorithm can be designed by solving a time-varying Diophantine equation. Furthermore, the tracking performance of such a controller can be improved by, incorporating the internal model principle into the design. In the case where the plant parameters are only partially known, a gradient-based adaptive law with projection and normalization is employed to estimate the plant parameters on-line. An adaptive controller is then designed, based on these parameter estimates, and the stability properties of the adaptive closed-loop plant are established. The design and realization of both the adaptive and non-adaptive control laws is illustrated by means of a simple example.
机译:在本文中,针对一类指数不变的多变量线性时变植物,解决了自适应和非自适应的“极点布置”控制问题。在完全了解工厂参数的情况下,表明可以通过求解随时间变化的Diophantine方程来设计类似“极点放置”的控制算法。此外,通过将内部模型原理纳入设计中,可以改善这种控制器的跟踪性能。在仅部分地了解植物参数的情况下,采用具有投影和归一化的基于梯度的自适应定律在线估算植物参数。然后基于这些参数估计值设计自适应控制器,并建立自适应闭环设备的稳定性。通过一个简单的例子说明了自适应和非自适应控制律的设计和实现。

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