Jin-Gyun Kim
Orcid: 0000-0002-2146-7609
According to our database1,
Jin-Gyun Kim
authored at least 18 papers
between 2019 and 2024.
Collaborative distances:
Collaborative distances:
Timeline
Legend:
Book In proceedings Article PhD thesis Dataset OtherLinks
Online presence:
-
on orcid.org
On csauthors.net:
Bibliography
2024
A rapidly trained DNN model for real-time flexible multibody dynamics simulations with a fixed-time increment.
Eng. Comput., October, 2024
An efficient fixed-time increment-based data-driven simulation for general multibody dynamics using deep neural networks.
Eng. Comput., February, 2024
cNN-DP: Composite neural network with differential propagation for impulsive nonlinear dynamics.
J. Comput. Phys., January, 2024
Variable-stiffness-morphing wheel inspired by the surface tension of a liquid droplet.
Sci. Robotics, 2024
2023
Multiphysics model reduction of thermomechanical vibration in a state-space formulation.
Eng. Comput., October, 2023
Eng. Comput., August, 2023
Dual-Arm Path-Planning Algorithm for Wiring Harness Assembly Using Redundantly Actuated Robotic Systems.
IEEE Access, 2023
2022
Real-time response estimation of structural vibration with inverse force identification.
CoRR, 2022
Implicit Inverse Force Identification Method of Acoustic Liquid-structure Interaction Finite Element Model.
CoRR, 2022
Virtual Thermal Sensor for Real-Time Monitoring of Electronic Packages in a Totally Enclosed System.
IEEE Access, 2022
2021
Optimal hybrid parameter selection for stable sequential solution of inverse heat conduction problem.
CoRR, 2021
Multiphysics model reduction of thermomechanical vibration in a state-space formulation.
CoRR, 2021
Online adaptive basis construction for nonlinear model reduction through local error optimization.
CoRR, 2021
Interpolation multipoint constraints with selection criteria of degree of freedoms for flexible multibody dynamics.
Appl. Math. Comput., 2021
2020
Appl. Math. Comput., 2020
2019
Data-driven simulation for general purpose multibody dynamics using deep neural networks.
CoRR, 2019
Novel modal methods for transient analysis with a reduced order model based on enhanced Craig-Bampton formulation.
Appl. Math. Comput., 2019
Proceedings of the Advances in Additive Manufacturing, Modeling Systems and 3D Prototyping, 2019