Used here is the coupled finite-element state-space (CFE-SS) approach, based on the natural ABC flux-linkage frame of reference, to predict a salient-pole synchronous generator\u27s parameters and performance, including damper bar currents and iron core losses, under open-circuit short-circuit impedance, and infinite bus load conditions. The full synergistic effects of space harmonics resulting from the magnetic circuit geometry, saliency, saturation, winding layouts, slotting, and time harmonics resulting from the nonsinusoidal armature currents and field as well as damper bar currents, are included in the simulations
The long and enduring history of utilization of the wound-field synchronous generator in a large num...
In a companion paper, a time-stepping coupled finite element state-space algorithm for modeling of i...
For synchronous 3 phase electrical generator machine design, the ability to predict the subtransient...
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 approach was developed for synchronous machine un...
This first of two companion papers centers on applying a coupled finite-element/state-space techniqu...
In this paper, a coupled finite-element/state space modeling technique is applied in the determinati...
The combined finite element-state space (CFE-SS) modeling environment was used to predict the perfor...
In a companion paper, a time-stepping coupled finite element state-space algorithm for the modeling ...
In this work, a state model which portrays the dynamic electromagnetic characteristics of a synchron...
A time-stepping coupled finite element-state-space model for induction motor drives is developed. Th...
In this paper the StandStill Frequency Response characteristics (SSFR) of saturated synchronous gene...
In the development of a high temperature superconducting synchronous generator it is important to an...
In this thesis, a comprehensive numerical simulation model is presented for detailed no-load perform...
A time-stepping coupled finite element-state-space model for induction motor drives is developed. Th...
The long and enduring history of utilization of the wound-field synchronous generator in a large num...
In a companion paper, a time-stepping coupled finite element state-space algorithm for modeling of i...
For synchronous 3 phase electrical generator machine design, the ability to predict the subtransient...
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 approach was developed for synchronous machine un...
This first of two companion papers centers on applying a coupled finite-element/state-space techniqu...
In this paper, a coupled finite-element/state space modeling technique is applied in the determinati...
The combined finite element-state space (CFE-SS) modeling environment was used to predict the perfor...
In a companion paper, a time-stepping coupled finite element state-space algorithm for the modeling ...
In this work, a state model which portrays the dynamic electromagnetic characteristics of a synchron...
A time-stepping coupled finite element-state-space model for induction motor drives is developed. Th...
In this paper the StandStill Frequency Response characteristics (SSFR) of saturated synchronous gene...
In the development of a high temperature superconducting synchronous generator it is important to an...
In this thesis, a comprehensive numerical simulation model is presented for detailed no-load perform...
A time-stepping coupled finite element-state-space model for induction motor drives is developed. Th...
The long and enduring history of utilization of the wound-field synchronous generator in a large num...
In a companion paper, a time-stepping coupled finite element state-space algorithm for modeling of i...
For synchronous 3 phase electrical generator machine design, the ability to predict the subtransient...