Impact of Radial Air-Gap Eccentricity on Stator End Winding Vibration Characteristics in DFIG

Ming Xing Xu, Yu Ling He, Wen Zhang, De Rui Dai, Xiang Ao Liu, Wen Jie Zheng, Shu Ting Wan, David Gerada, Shan Zhe Shi

Research output: Journal PublicationArticlepeer-review

4 Citations (Scopus)

Abstract

In this paper, qualitative theoretical derivations, finite element analysis (FEA) and experiments are used to investigate the electromagnetic force (EF) and vibration characteristics of end windings. In contrast to previous studies, this study focuses not only on end winding EF/vibration under normal and radial static air gap eccentricity (RSAGE) conditions, but also for the cases of radial dynamic air gap eccentricity (RDAGE) and radial dynamic static hybrid air gap eccentricity (RHAGE). Firstly, the magnetic flux density (MFD) is derived for normal and radial air gap eccentricity (RAGE) faults, and detailed EF expressions are obtained before and after the RAGE fault. The finite element analysis (FEA) and experimental studies were performed on a four-pole DFIG at a speed of 1500 rpm to verify the proposed theoretical analysis. It is shown that RSAGE only enlarges the EF/end winding vibration and does not introduce new frequency components. RDAGE not only increases EF/end winding vibration but also introduces new frequency components. RHAGE can be seen as a superimposed effect of RSAGE and RDAGE.

Original languageEnglish
Article number6426
JournalEnergies
Volume15
Issue number17
DOIs
Publication statusPublished - Sept 2022

Keywords

  • doubly fed induction generator (DFIG)
  • electromagnetic force (EF)
  • end winding vibration
  • radial air gap eccentricity (RAGE)

ASJC Scopus subject areas

  • Renewable Energy, Sustainability and the Environment
  • Building and Construction
  • Fuel Technology
  • Engineering (miscellaneous)
  • Energy Engineering and Power Technology
  • Energy (miscellaneous)
  • Control and Optimization
  • Electrical and Electronic Engineering

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