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Wear-induced attenuation on transmission lines and their causes

  • In this paper, the radio frequency (RF) behavior of mechanically stressed coaxial and for the first time also twisted-pair transmission lines is investigated over their service life. The main goal is to enable predictive maintenance for cables in moving applications and avoid preventive replacement. This also reduces the use of high-cost resources. For this purpose, stranded and solid-core variants of coaxial and twisted-pair type cables are mechanically loaded on the two-pulley apparatus according to EN 50396. Their RF transmission (S21) behavior is measured using a vector network analyzer and presented over bending cycles. For the first time, the phase response of mechanically loaded transmission lines is evaluated with respect to their service life. Two significant causes for the increasing attenuation and altered phase response are identified: breakage in foil screen and increasing surface roughness on the copper conductors. The identified causes are supported with literature evidence. Through measurements and theoretical calculations, it is proven that the phase is much more suitable for an assessment of the remaining service life than the amplitude. The findings can be used to implement a cable monitoring system in industrial environments which monitors the lines in-situ and reminds the user to replace them, whenever a certain wear-level is reached.

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Author:Philipp LenzORCiD, Philipp BaronORCiD, Armin WittmannORCiD, Georg Fischer
URN:urn:nbn:de:hbz:tr5-2448
DOI:https://doi.org/10.1007/s42341-022-00423-7
Parent Title (English):Transactions on Electrical and Electronic Materials
Publisher:Springer Nature
Document Type:Article (specialist journals)
Language:English
Date of OPUS upload:2023/02/23
Year of first Publication:2023
Publishing University:Hochschule Trier
Release Date:2023/02/23
Tag:RF attenuation; coaxial; surface roughness; transmission phase; twisted-pair; wear-level monitoring
GND Keyword:Elektrisches Kabel; Koaxialkabel; Verdrillung <Elektrotechnik>; Hochfrequenz; Rauigkeit; Verschleißprüfung
Volume:24
Issue:1
Page Number:13
First Page:102
Last Page:114
Departments:FB Technik
Dewey Decimal Classification:6 Technik, Medizin, angewandte Wissenschaften / 60 Technik
Licence (German):License LogoCreative Commons - CC BY - Namensnennung 4.0 International