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Some new applications of Russell's principle to infinite dimensional vibrating systems

机译:罗素原理在无限维振动系统中的一些新应用

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The aim of this work is to highlight the interest of a by now classical methodology, commonly called Russell's principle, in proposing new control strategies and estimates for infinite dimensional vibratihg systems. After describing (with complete proofs) a particular version, of interest for our work, of Russell's principle, we consider two main applications. The first one, which mainly contains results which are new, studies the approximation of a class of boundary control systems by systems with controls distributed, in an-open set (internal controls), with the support shrinking to the boundary. These approximations are interesting since for the approximating systems we have bounded, input operators, which makes easier the use of many control theoretic tools. The second application concerns the approximation of exact controls for infinite dimensional systems using their projections,on finite dimensional spaces. We propose here an alternative, based on Russell's principle, of the existing approximation methods, often based on inverting the Gramian. (C) 2017 Elsevier. Ltd. All rights reserved.
机译:这项工作的目的是强调一种现今经典的方法(通常称为Russell原理)在为无限维振动系统提出新的控制策略和估计时的兴趣。在描述(并有完整的证明)关于拉塞尔原理的特定版本(对我们的工作感兴趣)之后,我们考虑两个主要应用。第一个主要包含新结果,第一个研究的对象是一类边界控制系统,该类边界控制系统是通过将控制分布在一个开放集(内部控制)中,且支撑缩小到边界的系统来近似的。这些逼近很有趣,因为对于逼近系统,我们有界的输入运算符,这使使用许多控制理论工具变得更加容易。第二个应用涉及在有限维空间上使用其投影对无限维系统的精确控制的近似。我们在此提出基于拉塞尔原理的现有近似方法的替代方法,该方法通常基于反格拉姆文。 (C)2017爱思唯尔。有限公司。保留所有权利。

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