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Controllability of inherently damped large flexible space structures

机译:固有阻尼的大型柔性空间结构的可控性

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摘要

Graph theoretic techniques are used to study controllability of linear systems which represent large flexible orbiting space systems with inherent damping. The controllability of the pair of matrices representing the system state and control influence matrices is assured when all states in the model are reachable in a digraph sense from at least one input and also when the term rank of a Boolean matrix whose non trivial components are based on the state and control influence matrices has a term rank of the order of the state vector. The damping matrix does not influence the required number of actuators but gives flexibility to the possibility locations of the actuators for which the system is controllable.
机译:图论技术用于研究线性系统的可控性,线性系统代表具有固有阻尼的大型柔性轨道空间系统。当模型中的所有状态都可以从至少一个输入以图的方式到达图时,以及当基于非平凡分量的布尔矩阵的项秩确定时,可以确保代表系统状态和控制影响矩阵的一对矩阵的可控性状态和控制影响矩阵上的项在状态向量中的阶数为秩。阻尼矩阵不会影响所需的执行器数量,但会为系统可控制的执行器的可能位置提供灵活性。

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