Development of a 2D SLAM based radiation mapping system for surface contamination measurement

This study developed a SLAM-based radiation measurement system using an autonomous mobile robot and a LiDAR sensor to improve the quantitative accuracy of surface contamination assessments. Conventional fixed or manually operated radiation detection systems have limitations in performing precise evaluations over wide areas. To resolve these issues, the proposed system integrates autonomous navigation, real-time localization, and dynamic measurement correction. Correction factors derived from static experiments are applied in real time to compensate for CPS errors caused by variations in detector height and speed, enabling accurate measurements under various conditions. Scanning experiments were conducted using Co-60 radiation sources. After applying the correction factors, the average deviation was reduced to within 10%, with lower scanning speeds resulting in further error reduction. This system, equipped with a real-time correction algorithm, serves as a foundational technology for dynamic radiation mapping and has potential applications in facility decommissioning and precision measurement of radioactive contamination areas.

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Publication Details

Journal
Annals of Nuclear Energy
Published
2026-09-16
DOI
https://doi.org/10.1016/j.anucene.2026.112845
Primary Topic
Radiation Shielding Materials Analysis
Type
article
Field-Weighted Citation Impact
0.00

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article

Development of a 2D SLAM based radiation mapping system for surface contamination measurement

Bum Kyoung Seo, Sujung Min, Sang Bum Hong, Sujin Kim
Annals of Nuclear Energy
Radiation Shielding Materials Analysis
article

Development of a 2D SLAM based radiation mapping system for surface contamination measurement

Bum Kyoung Seo, Sujung Min, Sang Bum Hong, Sujin Kim
article en

Abstract

This study developed a SLAM-based radiation measurement system using an autonomous mobile robot and a LiDAR sensor to improve the quantitative accuracy of surface contamination assessments. Conventional fixed or manually operated radiation detection systems have limitations in performing precise evaluations over wide areas. To resolve these issues, the proposed system integrates autonomous navigation, real-time localization, and dynamic measurement correction. Correction factors derived from static experiments are applied in real time to compensate for CPS errors caused by variations in detector height and speed, enabling accurate measurements under various conditions. Scanning experiments were conducted using Co-60 radiation sources. After applying the correction factors, the average deviation was reduced to within 10%, with lower scanning speeds resulting in further error reduction. This system, equipped with a real-time correction algorithm, serves as a foundational technology for dynamic radiation mapping and has potential applications in facility decommissioning and precision measurement of radioactive contamination areas.

Annals of Nuclear EnergyVol. 241
Korea Atomic Energy Research Institute (KR), Korea University of Science and Technology (KR)
National Research Foundation, Korea Atomic Energy Research Institute, National Research Foundation of Korea, Ministry of Science and ICT, South Korea, Institute for Information and Communications Technology Promotion, Korea Technology and Information Promotion Agency for SMEs
Openalex Percentile: Top 25%
Radiation Shielding Materials Analysis
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Development of a 2D SLAM based radiation mapping system for surface contamination measurement — Bum Kyoung Seo, Sujung Min, et al. · Annals of Nuclear Energy (2026) | TGRS Research Map | TGRS