A modeling procedure is proposed to handle strong electro-mechanical coupling appearing in micro-electromechanical systems (MEMS). The finite element method is used to discretize simultaneously the electrostatic and mechanical fields. The formulation is consistently derived from variational principles based on the electromechanical free energy. In classical weakly coupled formulations staggered iteration is used between the electrostatic and the mechanical domain. Therefore, in those approaches, linear stiffness is evaluated by finite differences and equilibrium is reached typically by relaxation techniques. The strong coupling formulation presented here allows to derive exact tangent matrices of the electro-mechanical system. Thus it allo...
Analysing the vibration of microsystems is a fundamental issue in the design of sensors and actuator...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
A modeling procedure is proposed to handle strong electro-mechanical coupling appearing in micro-ele...
This paper concerns the modelling of the strong electro-mechanical coupling appearing in micro-elect...
This paper presents the advantages of a strong coupled formulation to model the electro-mechanical c...
This paper presents the advantages of a strong coupled formulation to model the electro-mechanical c...
peer reviewedThis paper presents the advantages of a strong coupled formulation to model the electro...
This paper presents the advantages of a strong coupled formulation derived from the energy to model...
This paper concerns the modelling of the strong electro-mechanical coupling appearing in micro-elect...
The purpose of the present work is to model and to simulate the Coupling between the electric and me...
In micro-electromechanical systems (MEMS), coupling of structures through electrostatic forces is a...
In this paper advanced multi-physics simulations of micro-electro-mechanical systems (MEMS) are used...
In Micro-electromechanical systems (MEMS) coupling of structures through electrostatic forces is a p...
The paper introduces a method to efficiently simulate nonlinear changing electrostatic fields occurr...
Analysing the vibration of microsystems is a fundamental issue in the design of sensors and actuator...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
A modeling procedure is proposed to handle strong electro-mechanical coupling appearing in micro-ele...
This paper concerns the modelling of the strong electro-mechanical coupling appearing in micro-elect...
This paper presents the advantages of a strong coupled formulation to model the electro-mechanical c...
This paper presents the advantages of a strong coupled formulation to model the electro-mechanical c...
peer reviewedThis paper presents the advantages of a strong coupled formulation to model the electro...
This paper presents the advantages of a strong coupled formulation derived from the energy to model...
This paper concerns the modelling of the strong electro-mechanical coupling appearing in micro-elect...
The purpose of the present work is to model and to simulate the Coupling between the electric and me...
In micro-electromechanical systems (MEMS), coupling of structures through electrostatic forces is a...
In this paper advanced multi-physics simulations of micro-electro-mechanical systems (MEMS) are used...
In Micro-electromechanical systems (MEMS) coupling of structures through electrostatic forces is a p...
The paper introduces a method to efficiently simulate nonlinear changing electrostatic fields occurr...
Analysing the vibration of microsystems is a fundamental issue in the design of sensors and actuator...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...
The aim of this paper is to deal with multi-physics simulation of micro-electro-mechanical systems (...