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Spread Spectrum Time Domain Reflectometry (SSTDR) and Frequency Domain Reflectometry (FDR) for Detection of Cable Anomalies Using Machine Learning

  • Bill Glass
  • , Jonathan Tedeschi
  • , Mychal Spencer
  • , Jiyoung Son
  • , Mohammad Taufique
  • , Dongsheng Li
  • , Leo Fifield
  • , Jacob A. Farber
  • , Ahmad Y. Al Rashdan

Research output: Book/ReportTechnical Report

Abstract

Cables are initially qualified for nuclear power plant use for 40 years. As plants extend their operating license to 60 and 80 years, continued use of these cables must shift to a performance-based approach since it is cost prohibitive to completely replace cables that are likely still capable of performing their design function. A variety of cable tests are available and are commonly applied during outages when the cables can be taken out of service. Frequency domain reflectometry (FDR) is one of these test methods that is being more broadly accepted and used because it not only detects anomalies along the cable with a low-voltage signal that does not stress the cable insulation, but the technique also locates the anomalies. This supports follow-up local inspection and local repair or partial replacement of a damaged cable segment. Currently, FDR testing is only applied to cables that are taken out of service since the test instrument would be damaged by operational voltages.
Original languageEnglish
DOIs
StatePublished - Sep 1 2023

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