A novel hybrid state space modeling approach for a dual armature generator is presented. The model uses finite element analysis to obtain the rotor angle-dependent parameters, namely the flux linkage, stator inductances and cogging torque, which are then incorporated into the dynamic equations of the hybrid model using Fourier representations of the physical parameters as function of the rotor angle. The proposed hybrid model addresses many of the limitations of the classical modeling approach, which uses analytical expressions to obtain flux linkage and stator inductances based on significant simplifications. The proposed model is verified experimentally by simulating the dynamics of a three-phase permanent magnet generator. Predictions ba...
In a companion paper, a time-stepping coupled finite element state-space algorithm for modeling of i...
The combined finite element-state space (CFE-SS) modeling environment was used to predict the perfor...
In this research, hybrid machines utilizing both a field winding and permanent magnets (PMs) are inv...
In this paper, a coupled finite-element/state space modeling technique is applied in the determinati...
This research work develops dynamic model and experimental validation of a dual-star PMSG. A techniq...
This article describes simulation problems of hybrid excitation generator. As an example a conceptua...
A time-stepping coupled finite element-state-space model for induction motor drives is developed. Th...
This paper describes how a comprehensive time-stepping coupled finite element phase flux linkage-bas...
An interior permanent-magnet (PM) motor is modeled by a combined analytical-numerical approach, in w...
This paper describes how a comprehensive time-stepping coupled finite element phase flux linkage-bas...
This paper details the application of a time-stepping coupled finite element-state space (CFE-SS) mo...
A time-stepping coupled finite element-state-space model for induction motor drives is developed. Th...
Three-phase synchronous generators which convert mechanical energy into electrical energy are the m...
A combined finite element state-space modeling environment capable of predicting no-load induction m...
This first of two companion papers centers on applying a coupled finite-element/state-space techniqu...
In a companion paper, a time-stepping coupled finite element state-space algorithm for modeling of i...
The combined finite element-state space (CFE-SS) modeling environment was used to predict the perfor...
In this research, hybrid machines utilizing both a field winding and permanent magnets (PMs) are inv...
In this paper, a coupled finite-element/state space modeling technique is applied in the determinati...
This research work develops dynamic model and experimental validation of a dual-star PMSG. A techniq...
This article describes simulation problems of hybrid excitation generator. As an example a conceptua...
A time-stepping coupled finite element-state-space model for induction motor drives is developed. Th...
This paper describes how a comprehensive time-stepping coupled finite element phase flux linkage-bas...
An interior permanent-magnet (PM) motor is modeled by a combined analytical-numerical approach, in w...
This paper describes how a comprehensive time-stepping coupled finite element phase flux linkage-bas...
This paper details the application of a time-stepping coupled finite element-state space (CFE-SS) mo...
A time-stepping coupled finite element-state-space model for induction motor drives is developed. Th...
Three-phase synchronous generators which convert mechanical energy into electrical energy are the m...
A combined finite element state-space modeling environment capable of predicting no-load induction m...
This first of two companion papers centers on applying a coupled finite-element/state-space techniqu...
In a companion paper, a time-stepping coupled finite element state-space algorithm for modeling of i...
The combined finite element-state space (CFE-SS) modeling environment was used to predict the perfor...
In this research, hybrid machines utilizing both a field winding and permanent magnets (PMs) are inv...