DRIVE MODULE FOR A SELF-DRIVING VEHICLE, AND SELF-DRIVING VEHICLE
20230347943 · 2023-11-02
Inventors
- Adrian Heinrich Sichau (Holzgerlingen, DE)
- Bernd Stuke (Leonberg, DE)
- Felix Jaegle (Ditzingen, DE)
- Gael Le Hen (Ludwigsburg, DE)
- Olaf Ohlhafer (Erligheim, DE)
Cpc classification
B61C9/38
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A drive module for a self-driving vehicle of an elevated-track-type support structure. The drive module is able to be connected to a support arm for a gondola.
Claims
1-12. (canceled)
13. A drive module for a self-driving vehicle of an elevated-track-type support structure, the drive module being configured to be connected to a support arm for a gondola, the drive module comprising: a lifting device, which is at least indirectly able to be driven by an electric motor and configured to move the support arm between a raised driving position and a lowered loading or unloading position for the gondola.
14. The drive module as recited in claim 13, wherein the drive module has a first electric motor configured to move the gondola along the support structure, and the lifting device is at least indirectly drivable by the first electric motor.
15. The drive module as recited in claim 14, wherein the first electric motor is configured to be alternately coupled with drive elements for the gondola or the lifting device via gear unit having at least two coupling devices.
16. The drive module as recited in claim 15, wherein an additional coupling device is provided to block the lifting device when the first electric motor is actively connected to the drive elements.
17. The drive module as recited in claim 15, wherein the at least two coupling devices are switched using separate actuators.
18. The drive module as recited in claim 16, wherein switching of the at least two coupling devices is implemented via a shared actuator, the at least two coupling devices being mechanically coupled with one another.
19. The drive module as recited in claim 16, wherein the at least two coupling devices and the additional coupling device are switchable using a shared actuator.
20. The drive module as recited in claim 16, wherein the additional coupling device is switchable using an additional actuator.
21. The drive module as recited in claim 13, wherein the drive module has a first electric motor configured to move the gondola along the support structure, and the lifting device is configured to be driven using a second electric motor.
22. The drive module as recited in claim 13, wherein the lifting device has a cable or chain drive for lowering or raising the gondola.
23. The drive module as recited in claim 13, wherein the drive module has a closed housing.
24. A self-driving vehicle, comprising: a gondola connected to a support arm; and a drive module connected to the support arm, wherein the drive module includes a lifting device, which is at least indirectly able to be driven by an electric motor and configured to move the support arm between a raised driving position and a lowered loading or unloading position for the gondola; wherein the support arm is movable relative to the drive module using the lifting device, and the support arm is configured to be coupled with the drive module using a coupling.
25. The self-driving vehicle as recited in claim 24, herein the coupling includes a centering aid.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS
[0021] Identical elements or elements having the same function have been provided with the same reference numerals in the figures.
[0022]
[0023] In addition, support structure 10 of transport system 1000 usually includes at least and stop or transfer location having a portal-type structure 104 which, by way of example, is made up of two perpendicular supports 105, 106 and at least one cross beam 108 connecting the two supports 105, 106 to each other. In the region of cross beam 108, four support devices 110 are situated, likewise purely by way of example, which are individually movable in the direction of double arrow 112 in the horizontal direction using drives, which are not depicted. With the aid of support device 110, given a position that is aligned with the support rail, a vehicle 10 entering the region of structure 104 is able to be transferred from the support rail fixed in place on the support cable 102 to a guide region 114 of support device 110. After the transfer to support device 110 and a subsequent transverse movement of support device 110 and an alignment of a further support device 110 flush with the support rail (as illustrated for vehicle 10 shown by dashed lines), the former vehicle 10 can be lowered while another vehicle 10 is able to pass through structure 104 without stopping utilizing further support device 10 aligned with the support rail.
[0024] Self-driving vehicle 10, which is developed with a gondola 12 for transporting passengers in the illustrated exemplary embodiment, is coupled with a drive module 20 via a support arm 14 situated on the upper side of gondola 12, the drive module being used both for moving gondola 12 along support structure 100 and for raising or lowering support arm 14 together with gondola 12.
[0025] To avoid swinging of gondola 12 and support arm 14 relative to drive module 20 while gondola 12 is raised or lowered, e.g., due to wind effects, a device 30 for the horizontal guidance of gondola 12 is furthermore situated at the location where gondola 12 is lowered or raised or in the region of structure 104. By way of example, device 30 is developed in the form of a sleeve as part of a protective housing 32, and protective housing 32 furthermore has a door region 34 by way of which gondola 12 is able to be entered or exited.
[0026] With the aid of drive module 20, gondola 12 may be vertically lifted and lowered in the direction of double arrow 22. It is additionally mentioned that lifting or lowering of gondola 12 with the aid of drive module 20 may take place not only in the region of structure 104, but—in case of an emergency, for example—also at any other location of transport system 1000 where no structure 104 and no device 30 is situated, in particular. Gondola 12 may also be developed in such a way that it is used for transporting items or objects.
[0027]
[0028] For example, lifting device 50 has a cable drum 52, which can be driven via second output shaft 40. Two cables 53, 54 are fixed in place on cable drum 52 and connected to the upper side of support arm 14 of gondola 12. Via a rotation of second output shaft 40 or a rotation of cable drum 52, support arm 14 with gondola 12 thus is able to be raised and lowered in the direction of double arrow 22. To allow for a rigid coupling or connection of support 14 to drive module 20 or to housing 24 during a driving operation, i.e., when support arm 14 is raised, drive module 20 and support arm 14 furthermore have a coupling 55, which by way of example includes a centering pin 56 that projects in a perpendicular fashion from the upper side of support arm 14 and interacts with a mirror-inverted opening (not shown) on a centering plate 57.
[0029] The (single) electric motor is used both for moving gondola 12 along support structure 100 and for moving gondola 12 in the direction of double arrow 22 with the aid of lifting device 50. In this context, it is provided that gondola 12 is either moved along support structure 100 with the aid of electric motor 25, or gondola 12 is raised or lowered with the aid of lifting device 50. A simultaneous operation of lifting device 50 and drive rollers 36 with the aid of electric motor 25 is not provided.
[0030] For such an alternate operation of drive module 20 or electric motor 25, reference is initially made to the illustration of
[0031] Depicted is a scenario where first coupling device 61 is open while the two other coupling devices 62 and 63 are shown in a closed position.
[0032] Coupling devices 61 through 63 are developed as claw couplings by way of example, but other designs of coupling devices 61 through 63 from the related art are also possible.
[0033] In addition, a separate actuator 64 to 66 is assigned to each coupling device 61 to 63, which is used to release or close the respective coupling device 61 to 63. First coupling device 61 is situated in the force flow of second output shaft 40, which is used to drive cable drum 52. Second coupling device 62 is also situated in the force flow of second output shaft 40 and used to avoid an unintended lowering of gondola 12 in the scenario shown in
[0034]
[0035]
[0036] Finally, a modified drive module 20 is shown in
[0037] Self-driving vehicle 10 as described above is able to be changed or modified in a variety of ways without departing from the present invention.