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STATE-SPACE MODELING OF TWO-DIMENSIONAL VECTOR-EXPONENTIAL TRAJECTORIES

机译:二维矢量指数轨迹的状态空间建模

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摘要

We solve two problems in modeling polynomial vector-exponential trajectories dependent on two independent variables. In the first one we assume that the data-generating system has no inputs, and we compute a state representation of the most powerful unfalsified model for this data. In the second instance we assume that the data-generating system is controllable and quarter-plane causal, and we compute a Roesser input-state-output model. We provide procedures for solving these identification problems, both based on the factorization of constant matrices directly constructed from the data, from which state trajectories can be computed.
机译:我们解决了在依赖两个独立变量的多项式矢量-指数轨迹建模中的两个问题。在第一个中,我们假设数据生成系统没有输入,并且我们为该数据计算了最强大的未伪造模型的状态表示。在第二种情况下,我们假设数据生成系统是可控制的并且是四分之一平面因果关系,并且我们计算了Roesser输入状态输出模型。我们提供了解决这些识别问题的程序,两者都是基于直接从数据构造的常数矩阵的因式分解,从而可以计算出状态轨迹。

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