Title :
Comprehensive salient-pole synchronous machine parametric design analysis using time-step finite element-state space modeling techniques
Author :
Deng, Fang ; Demerdash, Nabeel A.
Author_Institution :
Delphi Autom. Syst., Gen. Motors Corp., Flint, MI, USA
fDate :
9/1/1998 12:00:00 AM
Abstract :
This paper details the application of a time-stepping coupled finite element-state space (CFE-SS) model to predict a salient-pole synchronous generator´s parameters and performance, including damper bar current profiles and bar losses as well as iron core (including pole face) losses, under various operating conditions. The CFE-SS modeling environment is based on the natural ABC flux linkage frame of reference, which is coupled to a time/rotor stepping FE magnetic field and machine winding inductance profile computation model. This allows one to rigorously include the synergism between the space harmonics generated by magnetic saturation and machine magnetic circuit as well as winding layout topologies, and the time harmonics generated by the nonsinusoidal phase currents, ripple rich field excitation and damper bar currents. The impact of such synergism between these space and time harmonics on damper bar current profiles and losses, iron core losses, various machine winding current, voltage and torque profiles/waveforms is studied here for a 10-pole, 44.9 kVA, 17,143 RPM, 1428.6 Hz, 82 V (L-N), wound-pole aircraft generator
Keywords :
finite element analysis; machine theory; machine windings; magnetic circuits; magnetic cores; state-space methods; synchronous generators; 1428.6 Hz; 44.9 kVA; 82 V; bar losses; damper bar current profiles; inductance profile computation; iron core losses; machine winding; magnetic field; nonsinusoidal phase currents; parametric design analysis; salient-pole synchronous generator; time-step finite element-state space modeling; torque profiles; voltage profiles; winding layout topologies; Damping; Finite element methods; Iron; Machine windings; Magnetic cores; Performance loss; Predictive models; Shock absorbers; Synchronous generators; Synchronous machines;
Journal_Title :
Energy Conversion, IEEE Transactions on