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On the fixed controllable subspace in linear structured systems

机译:在线性结构系统中固定可控子空间

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Abstract In this paper we consider interconnected networks that are described by means of structured linear systems with state and control variables. We represent these systems, whose matrices contain fixed zeros and free parameters, by means of directed graphs and study questions concerning controllability and the controllable subspace. We show in this paper that the controllable subspace can have a part that will be present for almost all values of the free parameters. It actually is a subspace of the controllable subspace and will be referred to as the fixed controllable subspace. The subspace can then be seen as a kind of robustly controllable part of the system. Indeed, it is a subspace in the state space with the generic property that states in it can be steered in an arbitrary way. We derive a characterization of the fixed controllable subspace using the graph representation. The obtained characterization makes use of well-known algorithms from optimization and networks theory. To get some more insight in the components in the fixed part, we also give a representation of the structured linear systems by means of bipartite graphs. Using the Dulmage–Mendelsohn decomposition, we are able to decompose our structured systems in such a way that in some special cases, the fixed controllable subspace can be obtained directly from the decomposition. ]]>
机译:<![cdata [ Abstract 在本文中,我们考虑通过具有状态和控制变量的结构线性系统描述的互连网络。我们代表这些系统,其矩阵通过有关的图表和研究问题和可控子空间的定向图和研究问题包含固定的零和自由参数。 我们在本文中显示了可控子空间可以具有几乎所有空闲参数值的部分。它实际上是可控子空间的子空间,并将被称为固定可控子空间。然后,子空间可以被视为系统的那种坚固可控部分。实际上,它是状态空间中的子空间,具有以任意方式引导它的通用属性。 我们使用图形表示导出固定可控子空间的表征。获得的表征利用优化和网络理论利用众所周知的算法。为了在固定部分中的组件中获得更多洞察力,我们还通过二分图表示结构化线性系统的表示。使用Dulmage-MendelsoHN分解,我们能够以这种方式分解结构化系统,即在一些特殊情况下,可以直接从分解中获得固定可控子空间。 ]]>

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