This paper considers regulated output synchronization for heterogeneous networks, where agents are non-introspective (i.e. agents have no access to their own states or outputs), non-minimum-phase agents in the presence of external disturbances, including process disturbances and measurement noise, with known frequencies. Moreover, the communication network is directed, weighted and time-varying. A purely decentralized linear time-invariant protocol based on a high-gain observer is designed for each agent to achieve regulated output synchronization, i.e. agents’ outputs are asymptotically regulated to a given reference trajectory, even in the presence of external disturbance with known frequencies
In this paper we consider the output synchronization problem for heterogeneous networks of linear ag...
This paper studies the synchronization problem for undirected, weighted networks where agents are no...
We consider the synchronization problem for a class of directed networks where the agents receive re...
This paper considers regulated output synchronization for heterogeneous networks, where agents are n...
This paper studies regulated output synchronization for heterogeneous directed networks with non-int...
We consider almost regulated output synchronization for heterogeneous directed networks with externa...
We consider almost regulated output synchronization for directed heterogeneous networks where agents...
We consider almost regulated output synchronization for heterogeneous directed networks with externa...
We consider almost output synchronization for directed heterogeneous time-varying networks where age...
In this paper we study the problem of achieving regulated output synchronization in a network of min...
In this paper we consider the output synchronization problem for heterogeneous networks of linear ag...
We consider stochastic almost output synchronization for time-varying directed networks of nonidenti...
We consider the H∞ almost output synchronization and regulated output synchronization problem for he...
We consider the H∞ almost output synchronization and regulated output synchronization problem for he...
We consider two synchronization problems, namely, state synchronization for networks of identical li...
In this paper we consider the output synchronization problem for heterogeneous networks of linear ag...
This paper studies the synchronization problem for undirected, weighted networks where agents are no...
We consider the synchronization problem for a class of directed networks where the agents receive re...
This paper considers regulated output synchronization for heterogeneous networks, where agents are n...
This paper studies regulated output synchronization for heterogeneous directed networks with non-int...
We consider almost regulated output synchronization for heterogeneous directed networks with externa...
We consider almost regulated output synchronization for directed heterogeneous networks where agents...
We consider almost regulated output synchronization for heterogeneous directed networks with externa...
We consider almost output synchronization for directed heterogeneous time-varying networks where age...
In this paper we study the problem of achieving regulated output synchronization in a network of min...
In this paper we consider the output synchronization problem for heterogeneous networks of linear ag...
We consider stochastic almost output synchronization for time-varying directed networks of nonidenti...
We consider the H∞ almost output synchronization and regulated output synchronization problem for he...
We consider the H∞ almost output synchronization and regulated output synchronization problem for he...
We consider two synchronization problems, namely, state synchronization for networks of identical li...
In this paper we consider the output synchronization problem for heterogeneous networks of linear ag...
This paper studies the synchronization problem for undirected, weighted networks where agents are no...
We consider the synchronization problem for a class of directed networks where the agents receive re...