3D electromagnetic design and electrical characteristics analysis of a 10-MW-class high-temperature superconducting synchronous generator for wind power
In this paper, the general electromagnetic design process of a 10-MW-class high-temperature superconducting (HTS) synchronous generator that is intended to be utilized for large scale offshore wind generator is discussed. This paper presents three-dimensional (3D) electromagnetic design proposal and electrical characteristic analysis results of a 10- MW-class HTS synchronous generator for wind power. For more detailed design by reducing the errors of a two-dimensional (2D) design owing to leakage flux in air-gap, we redesign and analyze the 2D conceptual electromagnetic design model of the HTS synchronous generator using 3D finite element analysis (FEA) software. Then electrical characteristics which include the no- load and full-load voltage of generator, harmonic contents of these two load conditions, voltage regulation and losses of generator are analyzed by commercial 3D FEA software.
목차
Abstract 1. INTRODUCTION 2. ELECTROMAGNETIC DESIGN AND ANALYSIS OF A 10-MW-CLASS HTS SYNCHRONOUS GENERATOR 2.1. Electromagnetic Design 2.2. Electromagnetic Analysis 3. ELECTRICAL CHARACTERISTICS ANALYSIS OF A 10-MW-CLASS HTS SYNCHRONOUS GENERATOR 4. CONCLUSIONS ACKNOWLEDGMENT REFERENCES
키워드
electrical characteristics2G HTS wireHTS synchronous generatormagnetic field distribution
저자
J. H. Kim [ Jeju National University, Jeju ]
S. I. Park [ Jeju National University, Jeju ]
T. D. Le [ Jeju National University, Jeju ]
H. M. Kim [ Jeju National University, Jeju ]
Corresponding author