Method for coordinating a vehicle dynamics control system with an active normal force adjustment system
A vehicle dynamics control system for a motor vehicle having an active normal force adjustment system with which the normal force acting on a wheel may be adjusted is described. For coordinating the vehicle dynamics control system with the active normal force adjustment system, information about a change in the normal force is to be supplied to a control unit of the vehicle dynamics control system and may be taken into account in the vehicle dynamic control.
1. A vehicle dynamics control system for a vehicle, comprising:
an active normal force adjustment system for changing a normal force acting on a wheel; and
a vehicle dynamics control system in communication with the active normal force adjustment system,
wherein the active normal force adjustment system is configured to supply information about a change in the normal force to the vehicle dynamic control system, the information about the change in normal force is taken into account in calculating a setpoint value, wherein the setpoint value is a setpoint yaw rate usable to regulate the transverse dynamic of the vehicle, the vehicle dynamics control system configured to take the supplied information into account in regulating the vehicle, and
wherein the setpoint yaw rate is calculated using a single-track model in which a self-steering parameter, characteristic velocity v ch , is determined as a function of the information about the change in the normal force.
2. The vehicle dynamics control system as recited in claim 1 , wherein the normal forces acting on the wheel are estimated by using a mathematical model, and the estimated normal forces are corrected based on the information supplied about the changes in normal force.
3. The vehicle dynamics control system as recited in claim 1 , wherein an intervention threshold of the vehicle dynamics control is adjusted as a function of the information about the change in the normal force.
4. The vehicle dynamics control system as recited in claim 1 , wherein the vehicle dynamics control system monitors the information about the change in normal force for plausibility.
5. The vehicle dynamics control system as recited in claim 1 , wherein the vehicle dynamics control system is configured so that the active normal force adjustment system is triggerable.
6. The vehicle dynamics control system of claim 1 , wherein the information about the change in normal force is taken into account in calculating a second setpoint value, which is a setpoint float angle usable to regulate the float angle of the vehicle.
7. The vehicle dynamics control system of claim 4 , wherein the vehicle dynamics control system monitors the information about the change in normal force for plausibility by performing long-term monitoring of the change in normal force, the long-term monitoring determining if a sum of the change in normal forces over all wheels of the vehicle equals zero when averaged over time.
8. The vehicle dynamics control system of claim 4 , wherein if the vehicle dynamics control system determines the change in normal force is not plausible, the vehicle dynamics control system outputs a passivation request to the active normal force adjustment system.
9. The vehicle dynamics control system of claim 7 , wherein the passivation request triggers the active normal force adjustment system to provide zero change to the normal force acting on the wheel.
10. The vehicle dynamics control system of claim 3 , wherein the intervention threshold of the vehicle dynamics control is adjusted if the active normal force adjustment system is being used to oversteer the vehicle.