Two simple and effective control strategies for a multi-axle heavy truck, modified skyhook damping (MSD) control and proportional-integration-derivative (PID) control, were implemented into functional virtual prototype (FVP) model and compared in terms of road friendliness and ride comfort. A four-axle heavy truck-road coupling system model was established using FVP technology and validated through a ride comfort test. Then appropriate passive air suspensions were chosen to replace the rear tandem suspensions of the original truck model for preliminary optimization. The mechanical properties and time lag of dampers were taken into account in simulations of MSD and PID semi-active dampers implemented using MATLAB/Simulink. Through co-simulat...
Vehicle suspension system plays important role in maintaining constant contact of the wheels with th...
This paper deals with dynamics and control policies analysis of semi-active suspension systems for ...
The field of automotive suspensions is changing. Semi-active and active suspensions are starting to ...
Two simple and effective control strategies for a multi-axle heavy truck, modified skyhook damping (...
This paper presents a multi-objective optimization strategy for heavy truck suspension systems based...
This paper presents a multi-objective optimization strategy for heavy truck suspension systems based...
A semi-active truck damper was developed in conjunction with a commercial shock absorber manufacture...
The optimum level of passive damping for minimizing the root mean square (r.m.s.) dynamic tyre force...
The capabilities of a semi-active front axle suspension are investigated for a commercial vehicle. A...
The capabilities of a semi-active front axle suspension are investigated for a commercial vehicle. A...
The capabilities of a semi-active front axle suspension are investigated for a commercial vehicle. A...
This paper deals with advanced suspension systems of heavy vehicles. An analytical 6-DOF heavy off-r...
This paper deals with advanced suspension systems of heavy vehicles. An analytical 6-DOF heavy off-r...
Frame and cab suspension designs of Class 8 heavy trucks were investigated to see their effects on r...
The main objective of the research presented in this thesis is to enhance driver comfort and handlin...
Vehicle suspension system plays important role in maintaining constant contact of the wheels with th...
This paper deals with dynamics and control policies analysis of semi-active suspension systems for ...
The field of automotive suspensions is changing. Semi-active and active suspensions are starting to ...
Two simple and effective control strategies for a multi-axle heavy truck, modified skyhook damping (...
This paper presents a multi-objective optimization strategy for heavy truck suspension systems based...
This paper presents a multi-objective optimization strategy for heavy truck suspension systems based...
A semi-active truck damper was developed in conjunction with a commercial shock absorber manufacture...
The optimum level of passive damping for minimizing the root mean square (r.m.s.) dynamic tyre force...
The capabilities of a semi-active front axle suspension are investigated for a commercial vehicle. A...
The capabilities of a semi-active front axle suspension are investigated for a commercial vehicle. A...
The capabilities of a semi-active front axle suspension are investigated for a commercial vehicle. A...
This paper deals with advanced suspension systems of heavy vehicles. An analytical 6-DOF heavy off-r...
This paper deals with advanced suspension systems of heavy vehicles. An analytical 6-DOF heavy off-r...
Frame and cab suspension designs of Class 8 heavy trucks were investigated to see their effects on r...
The main objective of the research presented in this thesis is to enhance driver comfort and handlin...
Vehicle suspension system plays important role in maintaining constant contact of the wheels with th...
This paper deals with dynamics and control policies analysis of semi-active suspension systems for ...
The field of automotive suspensions is changing. Semi-active and active suspensions are starting to ...