Analysis and validation of mathematical morphology filters for single-ended fault localization in VSC-HVDC links
Author:
Publisher
Springer Science and Business Media LLC
Subject
Applied Mathematics,Electrical and Electronic Engineering
Link
http://link.springer.com/content/pdf/10.1007/s00202-020-01186-1.pdf
Reference36 articles.
1. Yang Y, Huang C (2020) A single-ended fault location method for DC lines in bipolar MMCHVDC system. Electr Eng 102:899–908. https://doi.org/10.1007/s00202-020-00922-x
2. Chang B, Cwikowski O, Barnes M, Shuttleworth R, Beddard A, Coventry P (2017) Review of different fault detection methods and their impact on pre-emptive vsc-hvdc dc protection performance. High Volt 2(4):211–219
3. Ashouri M, Bak CL, Silva FFD (2018) A review of the protection algorithms for multi-terminal vcd-hvdc grids. In: 2018 IEEE international conference on industrial technology (ICIT), pp 1673–1678
4. Halem N, Rajapakse A (2018) Local measurement based ultra-fast directional ROCOV scheme for protecting Bi-pole HVDC grids with a metallic return conductor. Electric Power Energy Syst 98:323–330
5. Azizi S, Sanaye-Pasand M, Abedini M, Hassani A (2014) A traveling-wave-based methodology for wide-area fault location in multiterminal DC systems. IEEE Trans Power Deliv 29(6):2552–2560
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1. Novel wavefront detection and fault location method based on Hilbert-Huang transform for long HVDC transmission lines;Electric Power Systems Research;2022-10
2. Mathematical Morphology-Based Fault Detection in Radial DC Microgrids Considering Fault Current from VSC;IEEE Transactions on Smart Grid;2022
3. A pilot protection scheme for VSC-MTDC grids based on polarity comparison using a combined morphological technique;Electrical Engineering;2021-10-04
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