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Computation of Observability Regions for Piecewise Affine Systems: A Projection-Based Algorithm

机译:分段仿射系统可观区域的计算:基于投影的算法

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In this paper we consider the problem of computing sets of observable states for discrete-time, piecewise affine systems. When the maximal set of observable states is full-dimensional, we provide an algorithm for reconstructing it up to a zero measure set. The core of the method is a quantifier elimination procedure that, in view of basic results on piecewise linear algebra, can be performed via the projection of polytopes on subspaces. We also provide a necessary condition on the minimal length of the observability horizon in order to expect a full-dimensional set of observable states. Numerical experiments highlight that the new procedure is considerably faster than the one proposed in [1].
机译:在本文中,我们考虑了为离散时间分段仿射系统计算可观状态集的问题。当可观察状态的最大集合为全维时,我们提供了一种算法,可将其重构为零度量集。该方法的核心是量词消除程序,鉴于分段线性代数的基本结果,可以通过将多边形投影到子空间上来执行。我们还为可​​观察范围的最小长度提供了必要条件,以便期望可观察状态的完整维集。数值实验表明,新方法比[1]中提出的方法要快得多。

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