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Sensitivity analysis of digital I&C modules in protection and safety systems

  • Rahman Khalil Ur
  • , M. Zubair
  • , G. Heo

Research output: Contribution to journalConference articlepeer-review

4 Citations (Scopus)

Abstract

This research is performed to examine the sensitivity of digital Instrumentation and Control (I&C) components and modules used in regulating and protection systems architectures of nuclear industry. Fault Tree Analysis (FTA) was performed for four configurations of RPS channel architecture. The channel unavailability has been calculated by using AIMS-PSA, which comes out 4.517E-03, 2.551E-03, 2.246E-03 and 2.7613-04 for architecture configuration I, II, III and IV respectively. It is observed that unavailability decreases by 43.5 % & 50.4% by inserting partial redundancy whereas maximum reduction of 93.9 % in unavailability happens when double redundancy is inserted in architecture. Coincidence module output failure and bi-stable output failures are identified as sensitive failures by Risk Reduction Worth (RRW) and Fussell-Vesely (FV) importance. RRW highlights that risk from coincidence processor output failure can reduced by 48.83 folds and FV indicates that BP output is sensitive by 0.9796 (on a scale of 1).

Original languageEnglish
Article number012020
JournalIOP Conference Series: Materials Science and Engineering
Volume51
Issue number1
DOIs
Publication statusPublished - 2013
Event1st International Conference on Sensing for Industry, Control, Communications, and Security Technologies, ICSICCST 2013 - Karachi, Pakistan
Duration: 24 Jun 201326 Jun 2013

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