As networked dynamical systems appear around us at an increasing rate, questions concerning how to manage and control such systems are becoming more important. Examples include multiagent robotics, distributed sensor networks, interconnected manufacturing chains, and data networks. In response to this growth, a significant body of work has emerged focusing on how to organize such networks to facilitate their control and make them amenable to human interactions. In this article, we summarize these activities by connecting the network topology, that is, the layout of the interconnections in the network, to the classic notion of controllability
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
© 2012 IEEE. Personal use of this material is permitted. However, permission to reprint/republish th...
© 2012, Association for the Advancement of Artificial Intelligence (www.aaai.org). All rights reser...
Abstract — In this paper, we study leader selection and network assembly for controllability of netw...
This note studies the controllability of a leader-follower network of dynamic agents linked via neig...
Structural controllability has been proposed as an analytical framework for making predictions regar...
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
As networked dynamical systems appear around us at an increasing rate, questions concerning how to m...
© 2012 IEEE. Personal use of this material is permitted. However, permission to reprint/republish th...
© 2012, Association for the Advancement of Artificial Intelligence (www.aaai.org). All rights reser...
Abstract — In this paper, we study leader selection and network assembly for controllability of netw...
This note studies the controllability of a leader-follower network of dynamic agents linked via neig...
Structural controllability has been proposed as an analytical framework for making predictions regar...
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...
From distributed sensing to autonomous vehicles, networks are a crucial component of almost all our ...