Road vehicle crash control method, and road vehicle implementing such a control method
An embodiment of a method of controlling a road vehicle having a number of wheels; a frame housing a passenger compartment; and a number of suspensions suspending the frame from respective wheels, and expandable or contractable to adjust the height of the frame with respect to the ground; the method including the steps of: determining a collision; and raising the frame with respect to the ground by expanding at least some of the suspensions on determining a collision.
1. A road vehicle comprising:
a number of wheels;
a frame housing a passenger compartment;
a number of suspensions suspending the frame from respective wheels, and expandable or contractable to adjust the height of the frame with respect to the ground;
a crash sensor; and
a control unit, which is configured to receive a signal from the crash sensor, and is configured to control the suspensions to raise the frame with respect to the ground by expanding at least some of the suspensions on determining a collision, the control unit configured to synchronize raising of the frame with respect to the ground with the forward movement of the occupants of the passenger compartment produced by collision-induced deceleration of the road vehicle.
2. A road vehicle as claimed in claim 1 ,
wherein:
the passenger compartment is provided with front airbags; and
the control unit is configured to trigger the front airbags using a command signal and is also configured to raise the frame with respect to the ground upon collision, using the same command signal used to activate the front airbags of the passenger compartment.
3. A road vehicle as claimed in claim 1 , wherein the control unit is configured to raise the frame with respect to the ground by expanding at least some of the suspensions on determining a head-on collision.
4. A road vehicle as claimed in claim 1 , wherein:
the passenger compartment is provided with seat belts;
the control unit is configured to determine whether or not the seat belts of the occupants of the passenger compartment are fastened; and
the control unit is configured to not raise the frame with respect to the ground upon collision, when the seat belts of the occupants of the passenger compartment are fastened.
5. A road vehicle comprising:
a number of wheels;
a frame housing a passenger compartment provided with front airbags;
a number of suspensions suspending the frame from respective wheels, and expandable or contractible to adjust the height of the frame with respect to the ground;
a crash sensor; and
a control unit, which is configured to receive a signal from the crash sensor, and configured to control the suspensions to raise the frame with respect to the ground by expanding at least some of the suspensions on determining a collision, configured to trigger the front airbags using a command signal, and also configured to raise the frame with respect to the ground upon collision, using the same command signal used to activate the front airbags of the passenger compartment, and also configured to raise the frame with respect to the ground by expanding at least some of the suspensions only on determining a head-on collision.
6. A road vehicle as claimed in claim 5 , wherein:
the passenger compartment is provided with seat belts;
the control unit is configured to determine whether or not the seat belts of the occupants of the passenger compartment are fastened; and
the control unit is configured to not raise the frame with respect to the ground upon collision, when the seat belts of the occupants of the passenger compartment are fastened.
7. A road vehicle as claimed in claim 5 , wherein the control unit is configured to synchronize raising of the frame with respect to the ground with the forward movement of the occupants of the passenger compartment produced by collision-induced deceleration of the road vehicle.
8. A road vehicle comprising:
a number of wheels;
a frame housing a passenger compartment provided with seat belts;
a number of suspensions suspending the frame from respective wheels, and the suspensions being expandable or contractable to adjust the height of the frame with respect to the ground;
a crash sensor; and
a control unit, which is configured to receive a signal from the crash sensor, and configured to control the suspensions to raise the frame with respect to the ground by expanding at least some of the suspensions on determining a collision;
the control unit configured to determine whether or not the seat belts of the occupants of the passenger compartment are fastened; and configured to not raise the frame with respect to the ground upon collision, when the seat belts of the occupants of the passenger compartment are fastened.
9. A road vehicle as claimed in claim 8 , wherein:
the passenger compartment is provided with air bags; and the control unit is configured to trigger the front airbags using a command signal and is also configured to raise the frame with respect to the ground upon collision, using the same command signal used to activate the front airbags of the passenger compartment.
10. A road vehicle as claimed in claim 8 , wherein the control unit is configured to raise the frame with respect to the ground by expanding at least some of the suspensions on determining a head-on collision.
11. A road vehicle as claimed in claim 8 , wherein the control unit is configured to synchronize raising of the frame with respect to the ground with the forward movement of the occupants of the passenger compartment produced by collision-induced deceleration of the road vehicle.