Fault tolerance analysis of double winding permanent magnet wind generator based on field circuit combination method

Author:

AI Mengmeng12,Xu Ziyi1,Liu Wenhui3

Affiliation:

1. College of Electrical and Electronic Engineering, Harbin University of Science and Technology, , China

2. The Key Lab of National and Local United Engineering for Electric & Heat Transfer Technology of Large Electrical Machine, Harbin University of Science and Technology, , China

3. Jiamusi Electric Machinery Company Limited, , China

Abstract

Aiming at the problem that the reliability of traditional double winding permanent magnet wind generator is low when it runs on the sea, and it cannot run normally when the fault occurs, the fault tolerance characteristics of the generator are studied. Taking a 60 kW double winding permanent magnet synchronous wind generator as an example, the finite element method is used to calculate the electromagnetic parameters of the generator under rated load, single winding fault condition and fault-tolerant condition, and the variation characteristics of magnetic density, electromagnetic torque and other electromagnetic parameters under various working conditions including fault-tolerant conditions are determined. At the same time, the thermal circuit method is used to check the hot spot temperature of the generator under various working conditions to explore the fault tolerance necessity and operation reliability of the dual winding permanent magnet wind turbine. Finally, by building a prototype platform, the rationality of the solution model and the accuracy of the calculation results are verified.

Publisher

IOS Press

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference17 articles.

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4. Comprehensive frequency regulation scheme for permanent magnet synchronous generator-based wind turbine generation system;Gao;IET Renewable Power Generation,2019

5. Development and optimization of low-speed and high-efficiency permanent magnet generator for micro hydro-electrical generation system;Wei;Renewable Energy,2020

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