Xingliang Jiang
Papers
2
Total Citations
15
H-Index
2
About
Xingliang Jiang is a researcher specializing in power transmission line inspection and non-destructive testing methodologies, with a particular focus on ensuring the structural integrity and safe operation of overhead power infrastructure. His work addresses a critical challenge in electrical engineering: the reliable detection of broken steel strands in Aluminum Conductor Steel-Reinforced (ACSR) cables, which form the backbone of modern power delivery networks. Jiang's most notable contribution lies in the development and optimization of Magnetic Flux Leakage (MFL) sensor technology for identifying strand failures in overhead transmission lines, work that has garnered 12 citations and established a foundation for practical field inspection tools. Building on this, he has advanced quantitative fault identification techniques, combining S-transform signal processing with Support Vector Machine (SVM) classification to more precisely characterize damage caused by lightning strikes, corrosion, ice shedding, wind vibration, and external mechanical forces. His research bridges the gap between theoretical sensing methods and real-world safety applications, offering engineers actionable diagnostic tools to prevent potentially catastrophic transmission line failures. For students entering the fields of power systems engineering or non-destructive evaluation, Jiang's work represents an important intersection of electromagnetics, signal processing, and infrastructure safety.
Research Focus
Key Achievements
Top Papers
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