We will outline the main features of a framework for a theory of dynamical systems. The basic ingredients form a triptych, with the behavior of a system in the center, and behavioral equations and latent variables as side panels. We will discuss a variety of representation and parametrization problems, in particular, questions related to input/output and state models. It is shown how the interconnection of systems fits into this framework, in particular, problems of feedback control. The final issue to which we pay attention is that of system identification. It is argued that exact system identification leads to the question of computing the most powerful unfalsified model.</p
Important control theoretic notions like stability, stabilizability and interconnectability of dynam...
Our aim is to introduce, explain, and discuss the fundamental problems, ideas, concepts, results, an...
This book is the first to report on theoretical breakthroughs on control of complex dynamical system...
We will outline the main features of a framework for a theory of dynamical systems. The basic ingred...
The purpose of this paper is to provide an informal introduction to the behavioural approach to syst...
The behavioral approach provides a mathematical framework for modeling, analysis, and synthesis of d...
The behavioral approach provides a mathematical language for the modelling of systems, particularly ...
In this paper we introduce the behavioral approach as a mathematical language for describing dynamic...
With the advent of computers in the experimental labs, dynamic systems have become a new tool for re...
System identification is the art and science of building mathematical models of dynamic systems from...
In this paper we introduce the behavioral approach as a mathematical language for describing dynamic...
One of the main features of the behavioral approach as a foundation framework for the theory of dyna...
System Identification concerns the problem of building mathematical models of dynamical systems. Thi...
Important control theoretic notions like stability, stabilizability and interconnectability of dynam...
Our aim is to introduce, explain, and discuss the fundamental problems, ideas, concepts, results, an...
This book is the first to report on theoretical breakthroughs on control of complex dynamical system...
We will outline the main features of a framework for a theory of dynamical systems. The basic ingred...
The purpose of this paper is to provide an informal introduction to the behavioural approach to syst...
The behavioral approach provides a mathematical framework for modeling, analysis, and synthesis of d...
The behavioral approach provides a mathematical language for the modelling of systems, particularly ...
In this paper we introduce the behavioral approach as a mathematical language for describing dynamic...
With the advent of computers in the experimental labs, dynamic systems have become a new tool for re...
System identification is the art and science of building mathematical models of dynamic systems from...
In this paper we introduce the behavioral approach as a mathematical language for describing dynamic...
One of the main features of the behavioral approach as a foundation framework for the theory of dyna...
System Identification concerns the problem of building mathematical models of dynamical systems. Thi...
Important control theoretic notions like stability, stabilizability and interconnectability of dynam...
Our aim is to introduce, explain, and discuss the fundamental problems, ideas, concepts, results, an...
This book is the first to report on theoretical breakthroughs on control of complex dynamical system...