Area of research
Control and Systems Engineering · Transportation
Research interest
Research focused on Multibody system and Slosh dynamics, with related work in Inertia, Finite element method, Reference frame. Notable publications include 'CuSbS 2 as a Promising Earth-Abundant Photovoltaic Absorber Material: A Combined Theoretical and Experimental Study', 'An improved prototypical network with L2 prototype correction for few-shot cross-domain fault diagnosis', and 'Nonlinear finite element analysis of liquid sloshing in complex vehicle motion scenarios'.
An improved prototypical network with L2 prototype correction for few-shot cross-domain fault diagnosis
Reference Conditions and Substructuring Techniques in Flexible Multibody System Dynamics
Nonlinear finite element analysis of liquid sloshing in complex vehicle motion scenarios
Integration of geometry and analysis for the study of liquid sloshing in railroad vehicle dynamics
Influence of rail flexibility in a wheel/rail wear prediction model
CuSbS<sub>2</sub> as a Promising Earth-Abundant Photovoltaic Absorber Material: A Combined Theoretical and Experimental Study
A Total Lagrangian ANCF Liquid Sloshing Approach for Multibody System Applications
Low Order Continuum-Based Liquid Sloshing Formulation for Vehicle System Dynamics