METHOD AND DEVICE FOR LATERAL STABILIZATION FOR A SINGLE-TRACKED MOTOR VEHICLE AT A STANDSTILL
20200004271 ยท 2020-01-02
Inventors
- Georg Widmaier (Leonberg, DE)
- Alessandro Moia (Holzgerlingen, DE)
- Silas Klug (Magstadt, DE)
- Jochen Fassnacht (Calw, DE)
- Klaus Beulich (Weil Der Stadt, DE)
Cpc classification
Y02T10/72
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B62K11/00
PERFORMING OPERATIONS; TRANSPORTING
B62J45/4151
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method for laterally stabilizing a single-tracked motor vehicle, driven with the aid of an electric motor, that is in a vertically aligned state and at a standstill. The front wheel of the motor vehicle has a steering angle in which the electric motor is controlled in such a way that it exerts drive torques on the motor vehicle that act in alternation in the forward direction and in the reverse direction.
Claims
1. A method for laterally stabilizing a single-tracked motor vehicle, driven with the aid of an electric motor, that is in a vertically aligned state and at a standstill, the method comprising: controlling the electric motor, a front wheel of the motor vehicle having a steering angle, so that it exerts drive torques on the motor vehicle that act in alternation in a forward direction and in a reverse direction.
2. The method of claim 1, wherein a lateral tilt direction of the motor vehicle is ascertained with a sensor system, and when the tilt direction points in the direction of the steering angle, the electric motor is controlled so that it exerts a drive torque that acts on the motor vehicle in the forward direction, and when the tilt direction points in the opposite direction of the steering angle, the electric motor is controlled so that it exerts a drive torque that acts on the motor vehicle in the reverse direction.
3. The method of claim 1, wherein the method is deactivated when the rider signals an intent to start and at the same time actuates the steering by actuating a motor torque request element.
4. The method of claim 1, wherein the single-tracked motor vehicle is an electric scooter.
5. The method of claim 1, wherein in the vertically aligned state of the motor vehicle the value of the roll angle is zero, and the motor vehicle is laterally stabilized by regulating the roll angle to the value zero.
6. The method of claim 2, wherein the tilt direction is ascertained with an inertial sensor system.
7. A stabilizing device for laterally stabilizing a single-tracked motor vehicle, driven with the aid of an electric motor, that is in a vertically aligned state and at a standstill, comprising: a device configured to perform the following method: controlling the electric motor, a front wheel of the motor vehicle having a steering angle, so that it exerts drive torques on the motor vehicle that act in alternation in a forward direction and in a reverse direction.
8. The stabilizing device of claim 7, wherein a lateral tilt direction of the motor vehicle is ascertained with a sensor system, and when the tilt direction points in the direction of the steering angle, the electric motor is controlled so that it exerts a drive torque that acts on the motor vehicle in the forward direction, and when the tilt direction points in the opposite direction of the steering angle, the electric motor is controlled so that it exerts a drive torque that acts on the motor vehicle in the reverse direction.
9. The stabilizing device of claim 7, wherein the method is deactivated when the rider signals an intent to start and at the same time actuates the steering by actuating a motor torque request element.
10. The stabilizing device of claim 7, wherein the single-tracked motor vehicle is an electric scooter.
11. The stabilizing device of claim 7, wherein in the vertically aligned state of the motor vehicle the value of the roll angle is zero, and the motor vehicle is laterally stabilized by regulating the roll angle to the value zero.
12. The stabilizing device of claim 8, wherein the tilt direction is ascertained with an inertial sensor system.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012]
[0013]
[0014]
DETAILED DESCRIPTION
[0015] The present invention relates to a self-stabilization function for an electric scooter or some other single-tracked motor vehicle at a standstill, the stabilization function being intended to be implemented without additional components. The present invention allows the rider to sit on the scooter, even when it is at a standstill, without having to place the feet on the ground. This is suitable, for example, when stopped at a traffic light, in that the scooter, similarly as with a Segway, stabilizes itself. However, the stabilization takes place in the transverse direction, whereas with a Segway it takes place in the longitudinal direction of travel.
[0016]
[0017] In order to balance the electric scooter, the drive torque exerted by drive motor 100 must at the same time be expressed as lateral forces that occur. For this reason, when the vehicle is at a standstill the rider must hold the handlebar at a lateral steering angle, as illustrated in
[0020] As a result of this effect, it is possible to modulate the lateral forces acting on the center of gravity, in that the motor torque of the electric motor is always selected in such a way that a beginning tendency to tip over is counteracted by changing the direction of transverse forces F1 or F2 that arise.
[0021]
[0027] The longitudinal movement of the two-wheeled vehicle, similarly as with a Segway, is modulated very gently so that there is little or no perception of same by the rider. [0028] 6) The controller recognizes when the rider once again moves the handlebar, and accelerates the vehicle to move it forward, and then switches off. [0029] 7) Step 1) is repeated at the next stop situation.