Author:
Ni Ruizheng,Qiu Ruichang,Jin Zheming,Chen Jie,Liu Zhigang
Abstract
AbstractThe resonant frequency of the transformer contains information related to its structure. It is easier to identify the resonance frequency in the vibration signal during the hammer test and power on than in the operation of the transformer, because the vibration caused by the load current does not need to be considered during the hammer test and power on. Therefore, an analysis method with simple calculation, fast calculation speed and easy real-time monitoring is needed to deal with these two non-stationary vibrations. Vibration monitoring can understand the health status of transformer in real time, improve the reliability of power supply and give early warning in the early stage of faults. A new frequency domain segmentation method is proposed in this paper. This method can effectively process the vibration signal of transformer and identify its resonant frequency. Eleven different load states are set on the transformer. The method proposed in this paper can extract the resonant frequency of the transformer from the hammering test signal. Compared with the original empirical wavelet transform method, this method can divide the frequency domain more effectively, has higher time–frequency resolution, and the running time of the modified method is shortened from 80 to 2 s. The universality of this method is proved by experiments on three different types of transformers.
Publisher
Springer Science and Business Media LLC
Reference26 articles.
1. Dai, J., Song, H., Sheng, G. & Jiang, X. Dissolved gas analysis of insulating oil for power transformer fault diagnosis with deep belief network. IEEE T. Dielect. El. In. 24(5), 2828–2835 (2017).
2. Zhang, B., Yan, N., Du, J., Han, F. & Wang, H. A novel approach to investigate the core vibration in power transformers. IEEE T. Magn. 54(11), 1–4 (2018).
3. Bagheri, M., Zollanvari, A. & Nezhivenko, S. Transformer fault condition prognosis using vibration signals over cloud environment. IEEE Access 6, 9862–9874 (2018).
4. Lee, S. H., Jung, S. Y. & Lee, B. W. Partial discharge measurements of cryogenic dielectric materials in an HTS transformer using HFCT. IEEE T. Appl. Supercon. 20(3), 1139–1142 (2010).
5. Yang, Z., Zhou, Q., Wu, X. & Zhao, Z. A novel measuring method of interfacial tension of transformer oil combined PSO optimized SVM and multi frequency ultrasonic technology. IEEE Access 7, 182624–182631 (2019).
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献