Measurement of surface vibration signal of 500 kV transformer and analysis of its frequency characteristics
Author:
Dai Lili1, Zhang Guangyong2, Guo Jinqin1ORCID, Li Yongwei1
Affiliation:
1. Taiyuan Institute of Technology , Taiyuan , Shanxi , 030008 , P.R. China 2. State Grid UHV Transformation co. op. SGPC , Taiyuan , Shanxi , 030032 , P.R. China
Abstract
Abstract
By measuring and analyzing the vibration signals of the transformer core and windings, the operating conditions of the transformer can be diagnosed. In this paper, the surface vibration signals of 500 kV autotransformer with different structures are measured, and the frequency domain characteristics of the surface vibration signals are analyzed. The blind source separation algorithm is used to separate the surface vibration signals and obtain the vibration signals of core and winding respectively, which provides strong data support for further condition evaluation and fault diagnosis of the core and winding using their vibration signals. Firstly, the surface vibration signal measuring points are set according to the specific arrangement of the core and winding of the transformer; secondly, the vibration signals of different vibration measuring points of the transformer under the same load and different loads of the same vibration measuring point are measured respectively; finally, the frequency characteristics of the measured vibration signals are compared and analyzed. Then, use blind source separation algorithm for transformer surface vibration signal processing, the two signals obtained are close to the vibration characteristics of core and winding respectively, and the separated, it is proved that the accurate vibration signals of core and winding can be obtained by blind source separation, it is helpful for further analysis of the operation state of the core and winding.
Funder
Science and Technology Innovation Project of Shanxi Province Colleges and Universities Program for the (Reserved) Discipline Leaders of Taiyuan Institute of Technology
Publisher
Walter de Gruyter GmbH
Subject
Energy Engineering and Power Technology
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