Engineering and TechnologyEarthquake Engineering & Structural Dynamics
Clustering-based adaptive ground motion selection algorithm for efficient estimation of structural fragilities
T. Kim, O. Kwon, et al.
Experience a breakthrough in earthquake engineering with a clustering-based algorithm that efficiently selects representative ground motions to predict seismic demands. This innovative research by Taeyong Kim, Oh-Sung Kwon, and Junho Song showcases a method that enhances accuracy while reducing the number of ground motions needed for robust structural fragility assessments.
Related Publications
Explore these studies to deepen your understanding
Adjacent work that informs or extends this paper's methodology and findings.
Biology
DUBStepR is a scalable correlation-based feature selection method for accurately clustering single-cell data
B. Ranjan, W. Sun, et al.
Physics
Ground-based and JWST Observations of SN 2022pul: II. Evidence from Nebular Spectroscopy for a Violent Merger in a Peculiar Type Ia Supernova
Kw, Jo, et al.
Chemistry
Catalytically-active porous assembly with dynamic pulsating motion for efficient exchange of products and reagents
S. Wu, L. Huang, et al.
Medicine and Health
Machine learning for accurate estimation of fetal gestational age based on ultrasound images
L. H. Lee, E. Bradburn, et al.

