DocumentCode
157441
Title
Hybrid synchronous motor-alternator with dual AC/DC excitation system for shipboard generation and propulsion applications
Author
Stanic, G. ; Bonato, S. ; Groppo, M. ; Tessarolo, Alberto
Author_Institution
MarelliMotori SpA, Vicenza, Italy
fYear
2014
fDate
2-5 Sept. 2014
Firstpage
2362
Lastpage
2367
Abstract
State-of-the-art ships focus on enhancing vessel performance, lower emissions, optimize space on board and save fuel. This paper describes an innovative marine solution in which the same electric machine can be operated as a conventional shaft generator and also as a variable speed propulsion motors. The distinctive design (patent pending) consists of a special synchronous machine provided with two separate exciters (one AC and the second DC) each capable to energize the same main rotor field through two independent rotating rectifiers. Whilst the conventional PTO/PTI systems may use the synchronous machine in a very narrow speed range - the presence of the independent AC exciter allows to energize the main field from zero rpm. The propeller can therefore be fully electrically operated. The dual-excitation arrangement is described in the paper highlighting its benefits compared to the conventional design. Numerical simulations are presented to assess the possible electromagnetic interactions between the two coaxial rotating excitation systems. Extensive testing campaign validated the design expectations.
Keywords
alternators; electric propulsion; marine propulsion; numerical analysis; rectifying circuits; rotors; shafts; ships; synchronous motors; PTO-PTI system; coaxial rotating excitation system; dual AC-DC excitation system; dual-excitation arrangement; electric machine; electromagnetic interaction; fuel saving; hybrid synchronous motor-alternator; independent rotating rectifier; innovative marine solution; numerical simulation; rotor; shaft generator; shipboard generation application; synchronous machine; variable speed propulsion motor; vessel performance; Propellers; Rectifiers; Rotors; Stator windings; Torque; Motor-generators. Rotating exciter design. Salient-pole synchronous machines. Synchronous generators. Synchronous motors;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical Machines (ICEM), 2014 International Conference on
Conference_Location
Berlin
Type
conf
DOI
10.1109/ICELMACH.2014.6960516
Filename
6960516
Link To Document