Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research focused on Vibration and Energy management, with related work in Control theory (sociology), Suspension (topology), Active suspension. Notable publications include 'Genetic algorithm-based fuzzy optimization of energy management strategy for fuel cell vehicles considering driving cycles recognition', 'Real-Time Energy Management Strategy for Fuel Cell Range Extender Vehicles Based on Nonlinear Control', and 'Ride Comfort Optimization of In-Wheel-Motor Electric Vehicles with In-Wheel Vibration Absorbers'.
Genetic algorithm-based fuzzy optimization of energy management strategy for fuel cell vehicles considering driving cycles recognition
Optimization control for dynamic vibration absorbers and active suspensions of in-wheel-motor-driven electric vehicles
Robust fault‐tolerant <i>H</i> <sub>∞</sub> output feedback control of active suspension and dynamic vibration absorber with finite‐frequency constraint
Real-Time Energy Management Strategy for Fuel Cell Range Extender Vehicles Based on Nonlinear Control
Ride Comfort Optimization of In-Wheel-Motor Electric Vehicles with In-Wheel Vibration Absorbers