We consider a set of identical decoupled dynamical systems and a control problem where the performance index couples the behavior of the systems. The coupling is described through a communication graph where each system is a node and the control action at each node is only function of its state and the states of its neighbors. A distributed control design method is presented which requires the solution of a single LQR problem. The size of the LQR problem is equal to the maximum vertex degree of the communication graph plus one. The design procedure proposed in this paper illustrates how stability of the large-scale system is related to the robustness of local controllers and the spectrum of a matrix representing the sparsity pattern of the ...
The recent progress in technology, as in miniaturization and microtechnologies, is now forcing contr...
In this paper, we propose a distributed LQR control method, applicable to physically coupled systems...
In this paper, we propose a distributed LQR control method, applicable to physically coupled systems...
We consider a set of identical decoupled dynamical systems and a control problem where the performan...
We consider a set of identical decoupled dynamical systems and a control problem where the performan...
A well-established distributed LQR method for decoupled systems is extended to the dynamically coupl...
The paper considers a distributed Linear Quadratic Regulator (LQR) design framework for a network of...
Several recent approaches to distributed control design over networks of interconnected dynamic syst...
The paper proposes a distributed LQR method for the solution to regulator problems of networks compo...
This paper considers a distributed LQR design framework for a multi-agent network consisting of iden...
This paper considers a distributed LQR design framework for a multi-agent network consisting of iden...
This paper considers a distributed LQR design framework for a multi-agent network consisting of iden...
Two well-established complementary distributed linear quadratic regulator (LQR) methods applied to n...
Many recent results on distributed control of multi-agent networks rely on a number of simplifying a...
Abstract—We consider the problem of designing distributed controllers for a class of systems which c...
The recent progress in technology, as in miniaturization and microtechnologies, is now forcing contr...
In this paper, we propose a distributed LQR control method, applicable to physically coupled systems...
In this paper, we propose a distributed LQR control method, applicable to physically coupled systems...
We consider a set of identical decoupled dynamical systems and a control problem where the performan...
We consider a set of identical decoupled dynamical systems and a control problem where the performan...
A well-established distributed LQR method for decoupled systems is extended to the dynamically coupl...
The paper considers a distributed Linear Quadratic Regulator (LQR) design framework for a network of...
Several recent approaches to distributed control design over networks of interconnected dynamic syst...
The paper proposes a distributed LQR method for the solution to regulator problems of networks compo...
This paper considers a distributed LQR design framework for a multi-agent network consisting of iden...
This paper considers a distributed LQR design framework for a multi-agent network consisting of iden...
This paper considers a distributed LQR design framework for a multi-agent network consisting of iden...
Two well-established complementary distributed linear quadratic regulator (LQR) methods applied to n...
Many recent results on distributed control of multi-agent networks rely on a number of simplifying a...
Abstract—We consider the problem of designing distributed controllers for a class of systems which c...
The recent progress in technology, as in miniaturization and microtechnologies, is now forcing contr...
In this paper, we propose a distributed LQR control method, applicable to physically coupled systems...
In this paper, we propose a distributed LQR control method, applicable to physically coupled systems...