Hierarchical Network Identification of Large-Scale Systems - An Approach Based on Dissipation Equalities

C. Kojima
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引用次数: 1

Abstract

Abstract Recently, dynamical systems in science and engineering problems become increasingly larger and too complex. One of the ways to solve the difficulty is to model the systems with a hierarchically networked interconnection of subsystems. In this paper, we consider a hierarchical network system which is an interconnection of dissipative subsystems and identify both subsystems and network structure, called network system, preserving the dissipativity properties. We first estimate the state sequences of subsystems via the dissipation equalities instead of the matrix input-output equation in ordinary subspace identification methods. As a main result, we show an identification method in open-loop manner for subsystems and network systems based on the least-squares method. We also propose an identification method in a closed-loop manner.
大系统的分层网络辨识——一种基于耗散等式的方法
摘要近年来,动力系统在科学和工程中的问题变得越来越庞大和复杂。解决这一困难的方法之一是用子系统的分层网络互连对系统进行建模。本文考虑一个由耗散子系统互连而成的分层网络系统,在保持耗散特性的前提下,将子系统和网络结构都称为网络系统。本文首先用耗散等式来估计子系统的状态序列,而不是用普通子空间辨识方法中的矩阵输入输出方程来估计。作为主要结果,我们提出了一种基于最小二乘法的子系统和网络系统开环辨识方法。我们还提出了一种闭环识别方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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