DEVICE AND METHOD FOR DETECTING A PIVOT ANGLE BETWEEN A VEHICLE AND A TRAILER DEVICE
20170136839 · 2017-05-18
Assignee
Inventors
- Michael Burkhart (Ravensburg, DE)
- Thomas Rösch (Friedrichshafen, DE)
- Georges Halsdorf (Langenargen, DE)
Cpc classification
B60D1/62
PERFORMING OPERATIONS; TRANSPORTING
B60D1/30
PERFORMING OPERATIONS; TRANSPORTING
B60D1/245
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60D1/62
PERFORMING OPERATIONS; TRANSPORTING
G01S3/14
PHYSICS
Abstract
The disclosure relates to a pivot angle detection device and a method for detecting a pivot angle between a vehicle and a trailer coupling device that is coupled to the vehicle. A transmitter is hereby provided, which is designed for producing an electromagnetic field, as well as a receiver which is designed to detect a field strength of the electromagnetic field, whereby the transmitter and receiver are arranged towards each other on the vehicle and trailer coupling device in such a way that a change of the pivot angle produces a dependent change in the field strength that is detected by the receiver. Additionally, an evaluation device for determining the pivot angle based on the detected field strength is also provided. The disclosure also relates to a transmitter, a receiver and an evaluation device, that are designed for this purpose.
Claims
1. A pivot angle detection device for detecting a pivot angle between a vehicle and a trailer coupling device which is coupled to the vehicle, the device comprising: a transmitter designed for generating an electromagnetic field, and a receiver designed for detecting a field strength of the electromagnetic field, wherein the transmitter and receiver are arranged on the vehicle and trailer coupling device, such that a change of the pivot angle produces a dependent change in the field strength that is detected by the receiver, and an evaluation device for determining the pivot angle based on the detected field strength.
2. The pivot angle detection device according to claim 1, further comprising at least two transmitters, wherein the first transmitter is arranged in the region of an upright edge of a first side of the vehicle or in the region of an upright edge of a first side of the trailer coupling device and the second (5) transmitter is arranged in the region of an upright edge of a second side which is opposite to the first side of the vehicle or of the trailer coupling device.
3. The pivot angle detection device according to claim 2, wherein the receiver is placed on a longitudinal vehicle axis or on a longitudinal trailer axis.
4. The pivot angle detection device according to claim 1, further comprising at least two receivers, wherein the first receiver is arranged in the region of an upright edge of a first side of the vehicle or in the region of an upright edge of a first side of the trailer coupling device and the second receiver is arranged in the region of an upright edge of a second side which is opposite to the first side of the vehicle or of the trailer coupling device.
5. The pivot angle detection device according to claim 4, wherein the transmitter is placed on the longitudinal vehicle axis or on the longitudinal trailer axis.
6. The pivot angle detection device according to claim 1, wherein the transmitter is placed on one of the longitudinal vehicle axis and the longitudinal trailer axis and the receiver is placed on the respective other one of the longitudinal vehicle axis and the longitudinal trailer axis.
7. The pivot angle detection device according to claim 1, wherein the transmitter is a Bluetooth, RFID, WLAN or NFC transmitter.
8. A transmitter designed for the pivot angle detection device according to claim 1.
9. A receiver designed for the pivot angle detection device according to claim 1.
10. An evaluation device designed for the pivot angle detection device according to claim 1.
11. A method for determining a pivot angle between a vehicle and a trailer coupling device which is coupled to vehicle, the method comprising: producing an electromagnetic field through a transmitter, detecting a field strength of the electromagnetic field with a receiver, wherein the transmitter and receiver are arranged on the vehicle and trailer coupling device in such a way that a change of the pivot angle leads to a dependent change in the field strength that is detected by the receiver, determining the pivot angle based on the detected field strength.
12. The pivot angle detection device according to claim 1, wherein the transmitter and receiver are arranged towards each other.
13. The pivot angle detection device according to claim 1, wherein the transmitter is configured to emit a unique identification code and the receiver is configured to identify the identification code.
14. The pivot angle detection device according to claim 1, wherein the evaluation device determines the pivot angle through at least one of trigonometric calculations, characteristic diagrams, and stored test results.
15. The pivot angle detection device according to claim 1, further comprising a coupling, wherein the coupling is one of a fifth wheel coupling, a Rockinger coupling, or a ball coupling.
16. The pivot angle detection device according to claim 1, wherein the pivot angle is a curve pivot angle between the vehicle and the trailer coupling device.
17. The pivot angle detection device according to claim 1, wherein the pivot angle is an inclination angle between the vehicle and the trailer coupling device.
18. The pivot angle detection device according to claim 1, wherein the field strength decreases with increasing distance between the transmitter and the receiver.
19. The pivot angle detection device according to claim 1, further comprising a shield configured to at least partially screen the receiver from the electromagnetic field, wherein the dependent change in the field strength that is detected by the receiver is caused by the shield.
20. The pivot angle detection device according to claim 1, wherein the trailer coupling device comprises a trailer and a pivot plate attached to the trailer, wherein the pivot angle is between a longitudinal pivot plate axis and a longitudinal trailer axis.
Description
[0018] The disclosure is explained in more detail by means of following figures of advantageous embodiments of the disclosure, by means of which advantageous characteristics of the disclosure can be derived. The figures display in a respective schematic depiction:
[0019]
[0020]
[0021]
[0022] Components in the figures, which are identical or which have an identical function, are identified with the same reference signs.
[0023]
[0024] The pivot angle detection device comprises at least one receiver 4, which is firmly arranged on vehicle 1, as well as a first and a second transmitter 5, 5 which are firmly arranged on the trailer coupling device 2. Each one of the transmitters 5, 5 is designed to emit an electromagnetic field F. The receiver 4 is designed to detect a field strength of the respective electromagnetic field F within its detecting range, particularly at an antenna of the receiver 4.
[0025] The transmitters 5 and receiver 4 are thereby arranged towards each other on the vehicle 1 and trailer coupling device 2, that a change of the pivot angle produces a dependent change in the field strength of the electromagnetic field F that is detected by the receiver 4. In detail, the field strength of the electric fields F decreases with increasing distance from the respective transmitter 5. The further away the receiver 4 is from the respective transmitter 5, the lower the field strengths will be in the range of the receiver 4. In the depicted illustration, the transmitters 5 are thus arranged on the trailer coupling device 2 in such a way, that their position changes in relation to the position of the receiver 4 on the vehicle 1 depending on the pivot angle . During the pivoting of vehicle 1 and of trailer coupling device 2, as it is depicted in
[0026] The field strengths detected by receiver 4 are transmitted to the evaluation device 6. It determines the pivot angle from it. This can be done e.g. by using trigonometric formulas, by characteristic diagrams or by means of the results of test series. The determination of the pivot angle can thus be carried out in an analytic or in an empiric manner.
[0027] In the illustration of
[0028]
[0029]
[0030] Dozer blade 2 and the plow 2 feature a respective longitudinal axis of the working implement L3, L4. The essential parts of the trailer coupling devices 2, 2 are designed in such a way that they can be pivoted in relation to vehicle 1, so that they can be adjusted to the respective working conditions. Thus, the respective pivot angle 4, 5 changes in dependence of the pivoting position of the respective trailer coupling device 2, 2.
[0031] According to
[0032] By means of an example, only one transmitter 5 is provided for the determining of pivot angle 5. It also emits an electromagnetic field F. Transmitter 5 is arranged on the longitudinal axis of the working implement L4 of the plow 2. Two receivers 4, 4 are intended in the vicinity of coupling 3 with a distance to the longitudinal vehicle axis L1. The field strength of the electromagnetic field F emitted by transmitter 5, which is detected by the respective receivers 4, 4, varies in dependence of the pivot angle 5. The respectively detected field strengths are transmitted to the evaluation device 6 by the receivers 4, 4, where the pivot angle 5 is determined by means of it. The positions of the receivers 4, 4 and of the transmitters 5, 5 can be exchanged with each other in both cases in
[0033] As it is shown in
[0034] The transmitters 5, 5 preferably emit a unique identification code with their respective electromagnetic field F. Thus, based on each electromagnetic field F, it is possible to identify the transmitter 5, 5 that is emitting the respective field. In addition to the field strength, receiver 4, 4 can also identify the associated unique identification code. It is thus possible to determine the field strength of the electromagnetic field F of each transmitter 5, 5 at the location of the receiver 4. This information of the unique field strengths can then be used e.g. by means of generally known trigonometric calculations, etc., to determine the pivot angle .
[0035] For the power supply, the transmitters 5, 5 and/or the receivers 4, 4 are connected to the respective electrical system of vehicle 1 or of trailer coupling device 2. Alternatively, they can respectively be operated with batteries or have an own electrical generator to produce the electrical energy necessary to operate (energy harvesting).
[0036] It is to be noted, that is not only possible to determine a pivot angle between the respective vehicle 1 and the trailer coupling device 2, 2 by means of the presented pivot angle detection device, but that if necessary, it is also possible to determine a spacial position between the vehicle 1 and the trailer coupling device 2, 2. This can be used in particular to maneuver vehicle 1 towards the respective trailer coupling device 2, 2 in order to couple it to vehicle 1. The pivot angle can also be an inclination angle between vehicle 1 and trailer coupling device 2, 2 or the respective longitudinal axes L1, L2, L3, L4, LD. In this way, it is possible to determine if e.g. plow 2 or dozer blade 2 in
REFERENCE SYMBOLS
[0037] 1 Vehicle [0038] 2, 2 Trailer Coupling Device, Working Implement [0039] 3, 3 Coupling [0040] 4, 4 Receiver [0041] 5, 5 Transmitter [0042] 6 Evaluation Device [0043] 7 Pivot Plate [0044] A1, A2 Distance [0045] F Electromagnetic Field [0046] L1 Longitudinal Vehicle Axis [0047] L2 Longitudinal Trailer Axis [0048] L3, L4 Longitudinal Axis of the Working Implement [0049] Ld Longitudinal Axis of the Pivot Plate [0050] , 1, 2, 3, 4, 5 Pivot Angles