三维类罗塞模型实现的特定应用稳定性

J. Velten, A. Kummert, Alexandros Gavriilidis, K. Gałkowski
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引用次数: 1

摘要

多维系统的稳定性仍然是一个具有挑战性的工作领域。众所周知和建立的稳定性措施可能导致复杂的数学问题,而简单的测试仅限于n-D系统的特殊情况。提出了一种新的基于roesser模型描述的离散三维系统稳定性检验方法。此测试适用于所有三个坐标方向有界的信号,如时空视频图像信号。在实际操作中观察三维系统,即考虑一系列处理,从而得到一维状态空间描述,从而允许应用一维稳定性测试。由于将一维稳定性测试应用于高维问题并不是一种全新的方法,因此本文的主要贡献是将离散的三维系统描述规则且结构良好地分解为经典的一维状态空间描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application specific stability of 3-D Roesser-like model realizations
Stability of multidimensional (k-D) systems is still a challenging field of work. Well known and established stability measures may lead to complex mathematical problems, while simple tests are restricted to special cases of n-D systems. A new stability test for certain discrete 3-D system realizations given in a Roesser-like model description is proposed. This test is suitable for signals bounded with respect to all three coordinate directions, like spatio temporal video image signals. The 3-D system is observed in real operation, i.e. considering a sequence of processing, which leads to a 1-D state space description, allowing for application of a 1-D stability test. Since application of 1-D stability tests to higher dimensional problems is not a completely new approach, main contribution of this paper is the regular and well structured decomposition of a discrete 3-D system description into a classical 1-D state space description.
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