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KADLEC, R. DREXLER, P. ROUBAL, Z.
Original Title
Comparison of Approaches to Localization of a Wideband Pulse Signal
Type
conference paper
Language
English
Original Abstract
We discuss the detection of high frequency signals produced by partial discharges, emphasizing the localization of the discharges and the related recording, processing, and interpretation of the effect in the time and frequency domains. Determining the exact position of partial discharges has proved to be a beneficial and cost-effective activity in large-sized devices such as oil cooled transformers. Within the latter two stages, multiple localization and detection methods are applicable; in this paper, was used UHF method with utilization method Akaike information criterion with arrangement in the form of a rectangle The techniques are successively examined, implemented, and tested using the input data obtained from the experiments. Relevant evaluation and comparison are performed to yield a well-balanced, dependable presentation.
Keywords
High frequency signals; partial discharges; localization of the discharges; UHF method; method Akaike information criterion.
Authors
KADLEC, R.; DREXLER, P.; ROUBAL, Z.
Released
17. 6. 2019
Publisher
IEEE
Location
Rome, Italy
ISBN
978-1-7281-3403-1
Book
2019 PhotonIcs & Electromagnetics Research Symposium - Spring (PIERS-Spring)
1559-9450
Periodical
Progress In Electromagnetics
State
United States of America
Pages from
1481
Pages to
1485
Pages count
5
URL
https://ieeexplore.ieee.org/document/9017596
BibTex
@inproceedings{BUT160879, author="Radim {Kadlec} and Petr {Drexler} and Zdeněk {Roubal}", title="Comparison of Approaches to Localization of a Wideband Pulse Signal", booktitle="2019 PhotonIcs & Electromagnetics Research Symposium - Spring (PIERS-Spring)", year="2019", journal="Progress In Electromagnetics", pages="1481--1485", publisher="IEEE", address="Rome, Italy", doi="10.1109/PIERS-Spring46901.2019.9017596", isbn="978-1-7281-3403-1", issn="1559-9450", url="https://ieeexplore.ieee.org/document/9017596" }