Area of research
Civil and Structural Engineering · Orthopedics and Sports Medicine
Research interest
Research focused on Suspension (topology) and Control theory (sociology), with related work in Vibration, Skyhook, Control (management). Notable publications include 'A review of the inerter and inerter-based vibration isolation: Theory, devices, and applications', 'General Theory of Skyhook Control and its Application to Semi-Active Suspension Control Strategy Design', and 'Phase deviation of semi-active suspension control and its compensation with inertial suspension'.
A Novel Approach to Design and Control of Semi-active Inertial Suspension System for Hub Motor Driven Vehicles
Enhanced Seat Suspension Performance Through Positive Real Network Optimization and Skyhook Inertial Control
Review of Uneven Road Surface Information Perception Methods for Suspension Preview Control
Phase deviation of semi-active suspension control and its compensation with inertial suspension
Frequency-dependent equivalent impedance analysis for optimizing vehicle inertial suspensions
Dynamic modelling and analysis of a physics-driven strategy for vibration control of railway vehicles
Design and Performance Analysis of HMDV Dynamic Inertial Suspension Based on Active Disturbance Rejection Control
Two-Parameter Frequency Tracker and Its Application of Semi-active Suspension with Inerter
A review of the inerter and inerter-based vibration isolation: Theory, devices, and applications
Generalized Skyhook-Groundhook Hybrid Strategy and Control on Vehicle Suspension
Optimal Design and Dynamic Control of an ISD Vehicle Suspension Based on an ADD Positive Real Network
General Theory of Skyhook Control and its Application to Semi-Active Suspension Control Strategy Design