Affiliation:
1. School of Electrical and Information Engineering, Zhengzhou University of Light Industry, Zhengzhou 450002, China
2. Shandong Electric Power Research Institute, Jinan 250002, China
Abstract
Background:
A novel fault location method of HVDC transmission line based on a concentric
relaxation principle is proposed in this paper.
Methods:
Due to the different position of fault, the instantaneous energy measured from rectifier
and inverter are different, and the ratio k between them is the relationship to the fault location d.
Through the analysis of amplitude-frequency characteristics, we found that the wave attenuation
characteristic of low frequency in the traveling wave is stable, and the amplitude of energy is larger,
so we get the instantaneous energy ratio by using the low-frequency data. By using the method of
wavelet packet decomposition, the voltage traveling wave signal was decomposed.
Results:
Finally, calculate the value k. By using the data fitting, the relative function of k and d can
be got, that is the fault location function.
Conclusion:
After an exhaustive evaluation process considering different fault locations, fault resistances,
and noise on the unipolar DC transmission system, four-machine two-area AC/DC parallel
system, and an actual complex grid, the method presented here showed a very accurate and robust
behavior.
Funder
key scientific and technological project of Henan province
Foundation of key scientific and technological research projects in Henan province
National Natural Science Foundation of China
Publisher
Bentham Science Publishers Ltd.
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Reference25 articles.
1. da Silva F.; Electric power systems (review of “HVDC Transmission: Power conversion applications in power systems). IEEE Transactions on Industrial Electronics Magazine pp.
75-76, 2010.,4(1)
2. An W.; Mou M.; Wei C.J.; Reliability evaluation and comparison for different topologies of VSC-HVDC distribution networks using analytical and simulation methods
3. Lan S.; Chen M.J.; Chen D.Y.; A Novel HVDC Double-terminal Non-Synchronous Fault Location Method based on Convolutional Neural Network 2019
4. He Z-Y.; Kai L.; Natural frequency-based line fault location in HVDC lines. IEEE Trans Power Deliv X.P. Li, S. Lin, J.W. Yang, and R.K. Mai, pp. 851-859, 2014,29(2)
5. Ding J.; Wang X.; Zheng Y.; Distributed Traveling-wave-based fault-location algorithm embedded in multiterminal transmission lines. IEEE Trans Power Deliv pp. 3045-3054, 2018,33(6)
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