We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and variational linear distributed systems. It was shown that a system described by ordinary linear constant-coefficient differential equations is Hamiltonian if and only if it is variational. In this paper we extend this result to systems described by linear, constant-coefficient partial differential equations. It is shown that any variational system is Hamiltonian, and that any scalar Hamiltonian system is contained (in general, properly) in a particular variational system
This work extends a result of Crouch and Lainnabhi which characterized Hamiltonian sys-tems describe...
Based on developments in the theory of variational and Hamiltonian control systems by Crouch and van...
The Hamiltonian formulation of distributed-parameter systems has been a challenging reserach area fo...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such a represen...
This work extends an earlier result which characterized Hamiltonian systems described by second orde...
We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such a represen...
Abstract. We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such ...
Hamiltonian systems model a number of important problems in theoretical physics, mechanics, fluid dy...
Based on recent developments in the theory of variational and Hamiltonian control systems, this pape...
This work extends a result of Crouch and Lainnabhi which characterized Hamiltonian sys-tems describe...
Based on developments in the theory of variational and Hamiltonian control systems by Crouch and van...
The Hamiltonian formulation of distributed-parameter systems has been a challenging reserach area fo...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We use the formalism of bilinear- and quadratic differential forms in order to study Hamiltonian and...
We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such a represen...
This work extends an earlier result which characterized Hamiltonian systems described by second orde...
We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such a represen...
Abstract. We study linear Hamiltonian systems using bilinear and quadratic differential forms. Such ...
Hamiltonian systems model a number of important problems in theoretical physics, mechanics, fluid dy...
Based on recent developments in the theory of variational and Hamiltonian control systems, this pape...
This work extends a result of Crouch and Lainnabhi which characterized Hamiltonian sys-tems describe...
Based on developments in the theory of variational and Hamiltonian control systems by Crouch and van...
The Hamiltonian formulation of distributed-parameter systems has been a challenging reserach area fo...