Area of research
Civil and Structural Engineering · Automotive Engineering
Research interest
Research focused on Suspension (topology) and Vibration, with related work in Stiffness, Control theory (sociology), Active suspension. Notable publications include 'Vibration mitigation for in-wheel switched reluctance motor driven electric vehicle with dynamic vibration absorbing structures', 'Adaptive neural network control for active suspension system with actuator saturation', and 'In-Wheel Motor Vibration Control for Distributed-Driven Electric Vehicles: A Review'.
In-Wheel Motor Vibration Control for Distributed-Driven Electric Vehicles: A Review
A novel negative stiffness magnetic spring design for vehicle seat suspension system
Semi-actively Controllable Vehicle Seat Suspension System with Negative Stiffness Magnetic Spring
A Novel Electrical Variable Stiffness Device for Vehicle Seat Suspension Control With Mismatched Disturbance Compensation
Vibration mitigation for in-wheel switched reluctance motor driven electric vehicle with dynamic vibration absorbing structures
Adaptive neural network control for active suspension system with actuator saturation