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하이브리드 송수신 방식의 비접촉식 초음파를 이용한 투과파 및 반사파 판별 알고리즘 개발

Translated title of the contribution: Development of an Algorithm for Distinguishing Between Transmitted and Reflected Ultrasonic Signals Using A Hybrid Transmission and Reception Method with Non-Contact Ultrasonic Measurement Technology
  • Hae Gweon Kang
  • , Ga Ram Han
  • , Jeong Chay Jeon
  • , Jun Ho Bang*
  • *Corresponding author for this work
  • Korea Electrical Safety Corporation

Research output: Contribution to journalJournal articlepeer-review

Abstract

Although technologies that allow the detection of abnormalities in high voltage electrical installations without power interruption are being applied, there are limitations in clearly determining facility faults. In particular, molded-type electrical equipment has a structure that completely seals internal components from the outside, making it difficult to detect internal anomalies. Therefore, it is challenging to detect early internal faults using existing power-on diagnostic method. In response, a new diagnostic method has been introduced that utilizes ultrasound to penetrate epoxy insulation and estimate the internal temperature of high-voltage molded-type transformer windings, along with a non-contact ultrasonic measurement technology. This paper, based on previous research, develops an algorithm for distinguishing between transmitted and reflected ultrasonic signals using a hybrid transmission and reception method with non-contact ultrasonic measurement technology. The performance of the algorithm was verified using high-voltage winding samples from a molded transformer specially fabricated for the experiment.

Translated title of the contributionDevelopment of an Algorithm for Distinguishing Between Transmitted and Reflected Ultrasonic Signals Using A Hybrid Transmission and Reception Method with Non-Contact Ultrasonic Measurement Technology
Original languageKorean
Pages (from-to)2113-2118
Number of pages6
JournalTransactions of the Korean Institute of Electrical Engineers
Volume73
Issue number11
DOIs
StatePublished - 2024.11

Keywords

  • Cast-resin Transformer
  • Reflective Wave
  • Time of Flight
  • Transmission Wave
  • Ultrasonic

Quacquarelli Symonds(QS) Subject Topics

  • Engineering - Electrical & Electronic
  • Engineering - Petroleum

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