Automated dimensional quality assessment of steel members using TLS and enhanced edge line estimation

  • Rajendran, Mathanraj; 
  • Sim, Sung-Han; 
  • Kim, Min-Koo; 
  • Choi, Yoon-Ki; 
  • Yi, Chang-Yong
Citations

WEB OF SCIENCE

1
Citations

SCOPUS

2

초록

Dimensional quality assessment (DQA) of manufactured structural members is important to ensure that the final dimensions of steel components fall within acceptable manufacturing tolerances. Although a few studies have investigated the dimensional inspection of steel members, most rely on controlled or static experimental setups such as fixed cameras, stable lighting, or production-line systems. These constraints limit their applicability in on-site or flexible inspection scenarios. Thus, this study proposes a method leveraging terrestrial laser scan data that assesses two types of dimensional quality of steel members including overall length and cross-section dimensions. A new edge point detection algorithm and a new edge loss compensation model are both developed to accurately estimate the edges and corners of steel members. Experimental validations on various steel members with different sizes and cross-sectional shapes are conducted and results show that the proposed approach achieves an average error of 0.63 mm for overall measurements of a long member of H-beam and approximately 1 mm for cross-sectional measurements. Moreover, comparative analysis with previous algorithms proves that the method outperforms the prior edge estimation methods, demonstrating its potential for practical application.

키워드

Dimensional quality assessment; Steel member; Cross-sectiondimensions; Terrestrial laser scanning; Edge estimation; ACCURACY; CONCRETE
제목
Automated dimensional quality assessment of steel members using TLS and enhanced edge line estimation
저자
Rajendran, Mathanraj; Sim, Sung-Han; Kim, Min-Koo; Choi, Yoon-Ki; Yi, Chang-Yong
DOI
10.1016/j.measurement.2025.118990
발행일
2026-01-15
유형
Article
저널명
Measurement: Journal of the International Measurement Confederation
권
257