Handbook of Vehicle Suspension Control Systems provides a comprehensive overview of the latest advances in suspension control theory and its applications. Topics include intelligent vehicle suspension control systems, adaptive control for active suspensions, robust integrated suspension control, interval type-II fuzzy controllers, active control for systems with actuator uncertainty, finite frequency approaches, fault-tolerant fuzzy control, H-infinity fuzzy control with actuator saturation, sliding mode controllers for semi-active suspensions with magnetorheological dampers, joint controller and parameter design, LMI-based vibration control for engine-body systems with time delay, and frequency domain analysis and design for nonlinear suspension systems.
Featuring contributions from international experts, this handbook is a valuable resource for academic researchers and industry professionals in control engineering, especially those focused on automotive applications.




