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A convex optimization approach to fixed-order controller design for disturbance rejection in SISO systems

机译:SISO系统中抑制扰动的定序控制器设计的凸优化方法

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摘要

The problem of rejection of persistent unknown-but-bounded disturbances can be solved using the well-known l/sup 1/ design approach. However, in spite of its success, this theory suffers from the fact that the resulting controller may have arbitrarily high order, even in the state-feedback case. In addition, system performance is optimized under the assumption of zero initial conditions. In this paper we propose a new approach to the problem of synthesizing fixed order controllers to optimally reject persistent disturbances. The main result of the paper shows that this approach leads to a finite-dimensional convex optimization problem that can be efficiently solved.
机译:可以使用众所周知的1 / sup 1 /设计方法来解决拒绝持续的未知但有界干扰的问题。但是,尽管取得了成功,但该理论仍遭受这样一个事实的困扰,即即使在状态反馈的情况下,所得的控制器也可能具有任意高阶。另外,在零初始条件下优化系统性能。在本文中,我们提出了一种解决固定定序控制器综合问题的新方法,以最优地消除持续干扰。本文的主要结果表明,这种方法导致了可以有效解决的有限维凸优化问题。

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