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Analysis of Permanent Magnet Synchronous Generator for Vortex Induced Vibration Hydrokinetic Energy Applications Based on Analytical Magnetic Field Calculations
Journal of Magnetics, Volume 17, Number 1, 31 Mar 2012, Pages 19-26
Jang-Young Choi (Department of Electrical Engineering, Chungnam National University), Hyun-Jae Shin (Department of Electrical Engineering, Chungnam National University), Jong-Su Choi * (Ocean System Engineering Research Department, Korea Ocean Research & Development Institute), Sup Hong (Ocean System Engineering Research Department, Korea Ocean Research & Development Institute), Tae-Kyeong Yeu (Ocean System Engineering Research Department, Korea Ocean Research & Development Institute), Hyung-Woo Kim (Ocean System Engineering Research Department, Korea Ocean Research & Development Institute)
Abstract

This paper deals with the performance analysis and estimation of the electrical parameters of a permanent
magnet synchronous generator (PMSG) for hydrokinetic energy conversion applications using vortex induced vibration (VIV). The analytical solutions for the magnetic fields produced by permanent magnets (PMs) and stator winding currents are obtained using a 2D polar coordinate system and a magnetic vector potential. An analytical expression for the 2D permeance is also derived, which takes into account stator skew effects. Based on these magnetic field solutions and the 2D permeance function, electrical circuit parameters such as the backemf constant and the air-gap inductance are obtained analytically. The performances of the PMSG are investigated using the estimated electrical circuit parameters and an equivalent circuit (EC). All analytical results are validated extensively using 2D finite element (FE) analyses. Experimental measurements for parameters such as the back-emf and inductance are also presented to confirm the analyses.


 

Keywords: electrical parameter estimation; permanent magnet synchronous generator; hydrokinetic energy; magnetic fields
DOI: http://dx.doi.org/10.4283/JMAG.2012.17.1.019
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