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Implementation of a Modified SQI for the Preprocessing of Magnetic Flux Leakage Signal
Journal of Magnetics, Volume 18, Number 3, 30 Sep 2013, Pages 357-360
Bok-Jin Oh (Graduate School of Electronics Engineering, Kyungpook National University), Doo-Hyun Choi * (School of Electronics Engineering, Kyungpook National University)
Abstract

A modified SQI method using magnetic leakage flux (MFL) signal for underground gas pipelines’ defect
detection and characterization is presented in this paper. Raw signals gathered using MFL signals include many unexpected noises and high frequency signals, uneven background signals, signals caused by real defects, etc. The MFL signals of defect free pipelines primarily consist of two kinds of signals, uneven low frequency signals and uncertain high frequency noises. Leakage flux signals caused by defects are added to the case of pipelines having defects. Even though the SQI (Self Quotient Image) is a useful tool to gradually remove the varying backgrounds as well as to characterize the defects, it uses the division and floating point operations. A modified SQI having low computational complexity without time-consuming division operations is presented in this paper. By using defects carved in real pipelines in the pipeline simulation facility (PSF) and real MFL data, the performance of the proposed method is compared with that of the original SQI


 

Keywords: modified SQI; complexity; magnetic flux leakage; gas pipeline; pipeline defects
DOI: http://dx.doi.org/10.4283/JMAG.2013.18.3.357
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