Development of View Optimization Techniques for Structural Monitoring Systems Using Post-Processing of Structural Analysis and Image Processing

This study aimed to enhance the efficiency of monitoring systems for structures undergoing continuous deformation by integrating structural analysis and image processing techniques. It addresses the challenge of optimizing real-time structural monitoring for precise deformation visualization, critic...

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Main Author: Yonghui Park
Format: Article
Language:English
Published: IEEE 2025-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10819407/
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author Yonghui Park
author_facet Yonghui Park
author_sort Yonghui Park
collection DOAJ
description This study aimed to enhance the efficiency of monitoring systems for structures undergoing continuous deformation by integrating structural analysis and image processing techniques. It addresses the challenge of optimizing real-time structural monitoring for precise deformation visualization, critical for engineering applications. The proposed framework for view optimization utilized the results from structural analysis performed in ABAQUS to extract initial camera positions and direction vectors, which served as inputs for an optimization algorithm. The optimization process applied image processing methods to detect deformation areas, while performance was evaluated at each iteration and saved when improvements were found. Camera parameters were iteratively updated using gradient descent and adjusted learning rates to ensure effective visualization of deformation. Experimental results confirm that this approach not only visualizes structural analysis outcomes effectively but also optimizes camera views for tailored monitoring systems. This integrated approach significantly enhances real-time monitoring, making it suitable for infrastructure health monitoring, civil engineering, and mechanical systems analysis. Overall, this work demonstrates the feasibility of combining structural analysis with imaging techniques for more accurate and efficient monitoring solutions.
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institution Kabale University
issn 2169-3536
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spelling doaj-art-62d2a9950e134c288ac760d499ce213d2025-01-09T00:01:46ZengIEEEIEEE Access2169-35362025-01-01133546356110.1109/ACCESS.2024.352478610819407Development of View Optimization Techniques for Structural Monitoring Systems Using Post-Processing of Structural Analysis and Image ProcessingYonghui Park0https://orcid.org/0000-0001-6716-6935Department of Mechanical Engineering, Sun Moon University, Asan, Chungcheongnam, Republic of KoreaThis study aimed to enhance the efficiency of monitoring systems for structures undergoing continuous deformation by integrating structural analysis and image processing techniques. It addresses the challenge of optimizing real-time structural monitoring for precise deformation visualization, critical for engineering applications. The proposed framework for view optimization utilized the results from structural analysis performed in ABAQUS to extract initial camera positions and direction vectors, which served as inputs for an optimization algorithm. The optimization process applied image processing methods to detect deformation areas, while performance was evaluated at each iteration and saved when improvements were found. Camera parameters were iteratively updated using gradient descent and adjusted learning rates to ensure effective visualization of deformation. Experimental results confirm that this approach not only visualizes structural analysis outcomes effectively but also optimizes camera views for tailored monitoring systems. This integrated approach significantly enhances real-time monitoring, making it suitable for infrastructure health monitoring, civil engineering, and mechanical systems analysis. Overall, this work demonstrates the feasibility of combining structural analysis with imaging techniques for more accurate and efficient monitoring solutions.https://ieeexplore.ieee.org/document/10819407/Structural analysisimage processingstructural monitoring systemview optimizationABAQUSgradient descent
spellingShingle Yonghui Park
Development of View Optimization Techniques for Structural Monitoring Systems Using Post-Processing of Structural Analysis and Image Processing
IEEE Access
Structural analysis
image processing
structural monitoring system
view optimization
ABAQUS
gradient descent
title Development of View Optimization Techniques for Structural Monitoring Systems Using Post-Processing of Structural Analysis and Image Processing
title_full Development of View Optimization Techniques for Structural Monitoring Systems Using Post-Processing of Structural Analysis and Image Processing
title_fullStr Development of View Optimization Techniques for Structural Monitoring Systems Using Post-Processing of Structural Analysis and Image Processing
title_full_unstemmed Development of View Optimization Techniques for Structural Monitoring Systems Using Post-Processing of Structural Analysis and Image Processing
title_short Development of View Optimization Techniques for Structural Monitoring Systems Using Post-Processing of Structural Analysis and Image Processing
title_sort development of view optimization techniques for structural monitoring systems using post processing of structural analysis and image processing
topic Structural analysis
image processing
structural monitoring system
view optimization
ABAQUS
gradient descent
url https://ieeexplore.ieee.org/document/10819407/
work_keys_str_mv AT yonghuipark developmentofviewoptimizationtechniquesforstructuralmonitoringsystemsusingpostprocessingofstructuralanalysisandimageprocessing