High temperature superconducting cables and their performance against short circuit faults: current development, challenges, solutions, and future trends

M Yazdani-Asrami, S Seyyedbarzegar… - Superconductor …, 2022 - iopscience.iop.org
Along with advancements in superconducting technology, especially in high-temperature
superconductors (HTSs), the use of these materials in power system applications is gaining …

Synthesis of antioxidant functionalized nano-TiO2 for improving fire resistance and UV-shielding behavior of intumescent fire-retardant coatings for cable

H Liu, L Yan, F Wang - Progress in Organic Coatings, 2024 - Elsevier
A unique hybridized antioxidant named TiO 2-KH550-PA, of which silane modified nano-TiO
2 particles were grafted with 3-(3, 5-di-tert-butyl-4-hydroxyphenyl) propionic acid by …

[HTML][HTML] Coaxial Cable Distributed Strain Sensing: Methods, Applications and Challenges

S King, G Jombo, O Simpson, W Duan, A Bowles - Sensors, 2025 - mdpi.com
Distributed strain sensing is a powerful tool for in situ structural health monitoring for a wide
range of critical engineering infrastructures. Strain information from a single sensing device …

Fault detection and localization of shielded cable via optimal detection of time–frequency-domain reflectometry

H Lim, GY Kwon, YJ Shin - IEEE Transactions on …, 2021 - ieeexplore.ieee.org
In recent years, as reliance on factory automation increases, real-time surveillance
techniques for electrical systems have received substantial attention. In particular, the fault …

Principle and verification of an improved algorithm for cable fault location based on complex reflection coefficient spectrum

Y Hu, L Chen, Y Liu, Y Xu - IEEE Transactions on Dielectrics …, 2022 - ieeexplore.ieee.org
Diagnostic methods for fault location in cable insulation have become increasingly vital with
the development of long-distance cables. This article presents an improved method for fault …

An efficient cross-terms suppression method in time–frequency domain reflectometry for cable defect localization

XY Zou, HB Mu, HT Zhang, LQ Qu… - IEEE Transactions on …, 2022 - ieeexplore.ieee.org
Time–frequency domain reflectometry (TFDR) is a highly sensitive method to locate the
defects of cables. However, there are cross terms when a multicomponent signal is …

A partial discharge detection system for XLPE cable terminals and acoustic wave sensing characteristics based on fiber optic mach-zehnder interferometer

Y Hao, Y Chen, Y Chen, T Huang, J Xiao… - IEEE Sensors …, 2021 - ieeexplore.ieee.org
Monitoring the cable terminal's partial discharge (PD) is of great significance to ensure the
cable line's safe and stable operation. To improve the anti-interference ability and real-time …

An efficient accuracy improvement method for cable defect location based on instantaneous filtering in time-frequency domain

X Zou, H Mu, R Wang, K Fan, Z Cheng, Y He, G Zhang - Measurement, 2024 - Elsevier
Time-frequency domain reflectometry is a highly sensitive method to locate cable defect.
However, locating a potential defect far from the cable head may be less accurate because …

A detection method for cable local defects based on born iteration

L Guo, Z Nie, G Liu - Electric Power Systems Research, 2024 - Elsevier
According to a survey, local defects are the primary cause of permanent cable faults. In
addition to causing power outages, these faults can also cause loss of control. It is …

An online measuring method for tangent delta of power cables based on an injected very-low-frequency signal

J Zhang, Y Jiao, Q Chen, L Zhou, H Li… - IEEE Sensors …, 2021 - ieeexplore.ieee.org
The deterioration of cable insulation is a widely acknowledged problem, and detection lays
the foundation for maintenance and overhaul. The measurement of Tangent delta (tan) at …