IP Library › Granted Patent US 11,214,292
Granted Patent B2
US 11,214,292 · App. 16/724,648 · Granted Jan 4, 2022

Car control method and system

Inventor: Raffaele De Simone (Modena, IT)
Assignee: FERRARI S.P.A.
B62D1/12B62D6/00B62D1/14B62D1/22B62D6/002G05G9/047
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Quick Facts
Patent No.
US 11,214,292
App. No.
16/724,648
Granted
Jan 4, 2022
Kind
B2
Abstract

A control method and system to control a car; the following steps are carried out: determining a position of a joystick, which is designed to be grabbed by a hand of a driver of the car; adjusting a longitudinal motion and a transverse motion of the car as a function of the position of the joystick; determining a position of at least one pedal, which is designed to be pressed by a foot of the driver of the car; and controlling a dynamic behaviour of the car, which is different from the longitudinal motion and from the transverse motion, a function of the position of the pedal.

Claims (48)

1. A control method to control a car ( 1 ) comprising the steps of:

determining a position of a joystick ( 7 ), which is designed to be grabbed by a hand of a driver of the car ( 1 ) and can be tilted longitudinally and transversally;

adjusting a longitudinal motion, namely a forward movement and a braking, of the car ( 1 ) as a function of the backward and forward longitudinal movement of the joystick ( 7 ); and

adjusting a transverse motion, namely a degree of steering, of the car ( 1 ) as a function of the right and left lateral movement of the joystick ( 7 );

determining a position of at least one pedal ( 8 , 9 ), which is completely separate from and independent of the joystick ( 7 ) and is designed to be pressed only by a foot of the driver of the car ( 1 ); and

controlling a dynamic behaviour of the car ( 1 ), which is different from the longitudinal motion and from the transverse motion, as a function of the position of the pedal ( 8 , 9 ).

2. The control method according to claim 1 , wherein, as a function of the position of the pedal ( 8 , 9 ), an attitude angle (β) of the car ( 1 ) driving along a curve is controlled so that the attitude angle (β) is a function of the position of the pedal ( 8 , 9 ), namely so that the attitude angle (β) progressively increases as the pressure on the pedal ( 8 , 9 ) increases.

3. The control method according to claim 2 , further comprising:

determining a desired attitude angle (β) as a function of the position of the pedal ( 8 , 9 ); and

controlling the generation of a torque transmitted to drive wheels ( 3 ) of the car ( 1 ) so as to cause the car ( 1 ) to have the desired attitude angle (β) while driving along the curve.

4. The control method according to claim 3 further comprising:

determining, as a function of the desired attitude angle (β), a desired longitudinal sliding of the rear drive wheels ( 3 ), which is meant as difference between a peripheral speed of the rear drive wheels ( 3 ) in the point of contact with a road surface and a moving speed of the car ( 1 ); and

controlling the generation of the torque so as to cause the rear drive wheels ( 3 ) to have the desired longitudinal sliding along the curve.

5. The control method according to claim 2 further comprising:

determining a maximum attitude angle (β MAX ) along the curve so as to avoid the loss of control of the car ( 1 );

assuming that a desired attitude angle (β) is equal to zero in case of lack of action of the driver upon the pedal ( 8 , 9 ); and

assuming that the desired attitude angle (β) is equal to the maximum attitude angle (β MAX ) in case of maximum action of the driver upon the pedal ( 8 , 9 ).

6. The control method according to claim 5 further compirising:

assuming that a desired attitude angle (β) is equal to zero in a completely raised position of the pedal ( 8 , 9 ); and

assuming that the desired attitude angle (β) is equal to the maximum attitude angle (β MAX ) in a completely pressed position of the pedal ( 8 , 9 ).

7. The control method according to claim 2 further comprising:

determining a position of two pedals ( 8 , 9 ), which are designed to be pressed by the feet of the driver of the car ( 1 ); and

controlling the attitude angle (β) of the car ( 1 ) while driving along the curve as a function of the position of both pedals ( 8 , 9 ).

8. The control method according to claim 7 , wherein:

the attitude angle (β) of the car ( 1 ) when it drives along a right-turning curve is changed as a function of the position of one single right pedal ( 8 ); and

the attitude angle (β) of the car ( 1 ) while driving along a left-turning curve is changed as a function of the position of one single left pedal ( 8 ).

9. The control method according to claim 7 , wherein the attitude angle (β) of the car ( 1 ) while driving along the curve is changed as a function of a difference between the positions of the two pedals ( 8 , 9 ) so that the greater the difference between the positions of the two pedals ( 8 , 9 ), the greater the attitude angle (β).

10. The control method according to claim 1 , wherein, as a function of the position of the pedal ( 8 , 9 ), the distribution of the braking between front brakes and rear brakes or between right brakes and left brakes is changed.

11. The control method according to claim 10 further comprising:

assuming that a change in the distribution of the braking is equal to zero in a completely raised position of the pedal ( 8 , 9 ); and

assuming that the change in the distribution of the braking is maximum in a completely pressed position of the pedal ( 8 , 9 ).

12. The control method according to claim 10 further comprising:

determining a position of two pedals ( 8 , 9 ), which are designed to be pressed by the feet of the driver of the car ( 1 );

changing the distribution of the braking between front brakes and rear brakes as a function of the position of a first pedal ( 8 ); and

changing the distribution of the braking between right brakes and left brakes as a function of the position of a second pedal ( 9 ).

13. The control method according to claim 1 further comprising:

determining a position of a first selector ( 13 ); and

selecting the car dynamic behaviour control mode as a function of the position of the pedal ( 8 , 9 ) based on the position of the first selector ( 13 ).

14. The control method according to claim 1 further comprising:

determining a position of a second selector ( 12 ); and

selecting whether to control the car dynamic behaviour as a function of the position of the pedal ( 8 , 9 ) based on the position of the second selector ( 12 ).

15. The control method according to claim 1 further comprising using the position of the pedal ( 8 , 9 ) to interact with an infotainment system of the car ( 1 ) as an alternative to using the position of the pedal ( 8 , 9 ) to change the motion of the car ( 1 ).

16. A system to control a car ( 1 ) comprising:

a joystick ( 7 ), which is designed to be grabbed by a hand of a driver of the car ( 1 ); and

a control unit ( 11 ), which is designed to adjust a longitudinal motion, namely a forward movement and a braking, of the car ( 1 ) as a function of the backward and forward longitudinal movement of the joystick ( 7 ) and is designed to adjust a transverse motion, namely a degree of steering, of the car ( 1 ) as a function of the right and left lateral movement of the joystick ( 7 );

wherein there is at least one pedal ( 8 , 9 ), which is completely separate from and independent of the joystick ( 7 ) and is designed to be pressed only by a foot of the driver of the car ( 1 ); and

the control unit ( 11 ) is designed to control a dynamic behaviour of the car ( 1 ), which is different from the longitudinal motion and from the transverse motion, as a function of the position of the pedal ( 8 , 9 ).

17. A car ( 1 ) comprising the control system according to claim 16 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2021
From: DE SIMONE, RAFFAELE
To: FERRARI S.P.A.
Reel/Frame 058241/0597 →
Priority Claims (1)
IT 102018000021097 · Dec 27, 2018 · national
Continuity (1)
Related Publication 20200207399A1 · Jul 2, 2020