Sompote Youwai

Orcid: 0009-0002-9878-8504

According to our database1, Sompote Youwai authored at least 15 papers between 2023 and 2025.

Collaborative distances:
  • Dijkstra number2 of seven.
  • Erdős number3 of six.

Timeline

Legend:

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Bibliography

2025
DINO-YOLO: Self-Supervised Pre-training for Data-Efficient Object Detection in Civil Engineering Applications.
CoRR, October, 2025

Developing an explainable artificial intelligent (XAI) model for predicting pile driving vibrations in Bangkok's subsoil.
Neural Comput. Appl., June, 2025

Investigating the Potential of Large Language Model-Based Router Multi-Agent Architectures for Foundation Design Automation: A Task Classification and Expert Selection Study.
CoRR, June, 2025

Triple Attention Transformer Architecture for Time-Dependent Concrete Creep Prediction.
CoRR, June, 2025

Explainable Dual-Attention Tabular Transformer for Soil Electrical Resistivity Prediction: A Decision Support Framework for High-Voltage Substation Construction.
CoRR, April, 2025

Explainable Artificial Intelligence Model for Evaluating Shear Strength Parameters of Municipal Solid Waste Across Diverse Compositional Profiles.
CoRR, February, 2025

Evaluating and Explaining Earthquake-Induced Liquefaction Potential through Multi-Modal Transformers.
CoRR, February, 2025

Load-deformation prediction of bored piles using sequential soil profile encoding with transformer architecture: A study of Bangkok subsoil.
Expert Syst. Appl., 2025

Predicting rapid impact compaction of soil using a parallel transformer and long short-term memory architecture for sequential soil profile encoding.
Eng. Appl. Artif. Intell., 2025

2024
YOLO9tr: a lightweight model for pavement damage detection utilizing a generalized efficient layer aggregation network and attention mechanism.
J. Real Time Image Process., October, 2024

Explainable Artificial Intelligent (XAI) for Predicting Asphalt Concrete Stiffness and Rutting Resistance: Integrating Bailey's Aggregate Gradation Method.
CoRR, 2024

CTrPile: A Computer Vision and Transformer Approach for Pile Capacity Estimation from Dynamic Pile Load Test.
Proceedings of the IEEE Conference on Artificial Intelligence, 2024

2023
Transformer-Based Deep Learning Model for Bored Pile Load-Deformation Prediction in Bangkok Subsoil.
CoRR, 2023

Transformer Based Model for Predicting Rapid Impact Compaction Outcomes: A Case Study of Utapao International Airport.
CoRR, 2023

Computer Vision for Particle Size Analysis of Coarse-Grained Soils.
CoRR, 2023


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