Excitation control of dual-wound machines for coupling mitigation
A dual-wound machine comprises a dual-wound generator supplying power to two separate powered zones. The generator comprises a wound rotor with a field winding and a stator with two sets of phase windings and a field control loop that controls the excitation voltage applied to the field winding and therefore the magnetic field produced by the rotor, in order to maintain a constant field flux in the generator and mitigate dynamic coupling between the two sets of phase windings when supplying power to unbalanced loads.
1. A dual-wound machine, comprising a wound-rotor dual-wound generator supplying power to two separate powered zones having unbalanced loads, wherein the generator comprises a wound rotor having a field winding producing a magnetic field, a stator having two sets of collocated phase windings each set supplying power to a separate powered zone, and a field control having a feedback loop that controls the excitation voltage applied to the field winding, and thereby the magnetic field produced by the rotor, to mitigate dynamic coupling between the two sets of collocated phase windings due to a power disturbance of an unbalanced load in one of the two separate powered zones when supplying power to the two separate powered zones.
2. The dual-wound machine of claim 1 , wherein the feedback loop maintains a constant field flux in the generator.
3. The dual-wound machine of claim 1 , wherein the feedback loop regulates a field flux in the generator in response to a generator speed.