METHOD FOR OPERATING AN AUTOMATED DRIVE TRAIN OF A MOTOR VEHICLE AND AUTOMATED DRIVE TRAIN
20200116216 ยท 2020-04-16
Inventors
Cpc classification
F16D2500/10412
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/70217
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/30806
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/3111
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D48/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/316
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A method for operating an automated drive train of a motor vehicle in which, upon actuation of a service brake up to a standstill of the vehicle, a drive connection between the drive machine and at least one drive axle of the vehicle is automatically disengaged by disengaging a clutch. During release of the service brake, the drive connection is automatically engaged by engaging the clutch. Based on a selected gear step, a desired drive direction of the vehicle is determined, and, during the release of the service brake, is compared with an actual drive direction. If the desired drive direction matches the actual drive direction, the pressure in the clutch is increased according to a first modulation characteristic curve. However, if the desired drive direction is different from the actual drive direction, the pressure in the clutch is increased according to a second modulation characteristic curve.
Claims
1-11. (canceled)
12. A method of operating an automated drive train (20) of a motor vehicle (31), the method comprising: upon activation of a service brake (21) up to a standstill of the motor vehicle (31, 4), disengaging a clutch (24) to automatically disengage (5) a drive connection (26) between a drive machine (22) and at least one drive axle (23, 23) of the motor vehicle (31), and upon release of the service brake (21), engaging the clutch (24) to automatically engage (6) the drive connection (26), determining (8) a desired drive direction of the motor vehicle (31) based on a selected gear step, comparing, during the release of the service brake (21), the desired drive direction with an actual drive direction (10), if the desired drive direction matches the actual drive direction, increasing a pressure of the clutch (24) according to a first modulation characteristic curve (11), and if the desired drive direction is different than the actual drive direction, increasing the pressure of the clutch (24) according to a second modulation characteristic curve (13).
13. The method according to claim 12, wherein the increase of the pressure of the clutch (24) according to the second modulation characteristic chart is faster than the increase of the pressure of the clutch (24) according to the first modulation characteristic chart.
14. The method according to claim 12, further comprising detecting (1, 6), via a brake light sensor (28), the activation and the release of the service brake (21).
15. The method according to claim 12, further comprising comparing the desired drive direction with the actual drive direction (10) within a time window of 100 ms after the release of the service brake (21).
16. The method according to claim 12, further comprising increasing the pressure of the clutch (24) according to the first modulation characteristic curve (11), if the desired drive direction is different than the actual drive direction and, at a same time, a detected speed of the motor vehicle is below a threshold value (12).
17. The method according to claim 12, further comprising, following expiration of a predetermined time interval after the pressure of the clutch (24) was increased according to the second modulation characteristic curve, additionally comparing a further desired drive direction with a further actual drive direction (10), and if the further desired drive direction matches the further actual drive direction, increasing the pressure of the clutch (24) according to the first modulation characteristic curve (11).
18. An automated drive train (20) for a motor vehicle (31), the automated drive train (20) comprising: a service brake (21), a drive machine (22), at least one drive axle (23, 23), a clutch (24), a control unit (25), the control unit (25) being designed, during actuation of the service brake (21) to achieve standstill of the motor vehicle (31), to automatically disengage a drive connection (26), between the drive machine (22) and the at least a drive axle (23, 23) of the motor vehicle (31), by disengaging the clutch (24), and, during release of the service brake (21), to automatically engage again the drive connection (26) by engaging the clutch (24), and the control unit (25) being also designed to determine a desired drive direction of the motor vehicle (31) based on a selected gear step, to compare the desired drive direction with an actual drive direction during the release of the service brake (21), to increase a pressure at the clutch (24), according to a first modulation characteristic curve, when the desired drive direction matches the actual drive direction, and to increase the pressure at the clutch (24), according to a second modulation characteristic curve, when the desired drive direction is different than the actual drive direction.
19. The drive train according to claim 18, wherein the drive train is designed to execute a method comprising the steps of upon activation of the service brake (21) up to the standstill of the motor vehicle (31, 4), automatically disengaging (5) the drive connection (26) between the drive machine (22) and the at least one drive axle (23, 23) of the motor vehicle (31) by disengaging the clutch (24), and upon the release of the service brake (21), automatically engaging (6) the drive connection (26) by engaging the clutch (24); determining (8) the desired drive direction of the motor vehicle (31) based on a selected gear step; comparing the desired drive direction with the actual drive direction (10), during the release of the service brake (21); and if the desired drive direction matches the actual drive direction, increasing the pressure of the clutch (24) according to the first modulation characteristic curve (11); and if the desired drive direction is different than the actual drive direction, increasing the pressure of the clutch (24) according to the second modulation characteristic curve (13).
20. The drive train (20) according to claim 18 in combination with a computer program product which executes a method comprising the steps of, upon activation of the service brake (21) up to the standstill of the motor vehicle (31, 4), automatically disengaging (5) the drive connection (26) between the drive machine (22) and the at least one drive axle (23, 23) of the motor vehicle (31) by disengaging the clutch (24), and upon the release of the service brake (21), automatically engaging (6) the drive connection (26) by engaging the clutch (24); determining (8) the desired drive direction of the motor vehicle (31) based on a selected gear step; comparing the desired drive direction with the actual drive direction (10), during the release of the service brake (21); and if the desired drive direction matches the actual drive direction, increasing the pressure of the clutch (24) according to the first modulation characteristic curve (11); and if the desired drive direction is different than the actual drive direction, increasing the pressure of the clutch (24) according to the second modulation characteristic curve (13).
21. The drive train (20) according to claim 20 in combination with a data medium comprising the computer program product.
22. An agriculture or municipal utility vehicle (31) comprising: a drive train (20) having a service brake (21), a drive machine (22), at least one drive axle (23, 23), a clutch (24), a control unit (25), the control unit (25) being designed, during actuation of the service brake (21) to achieve standstill of the motor vehicle (31), to automatically disengage a drive connection (26) between the drive machine (22) and the at least a drive axle (23, 23) of the motor vehicle (31) by disengaging the clutch (24), and, during a release of the service brake (21), to automatically engage again the drive connection (26) by engaging the clutch (24), the control unit (25) also being designed to determine a desired drive direction of the motor vehicle (31) based on a selected gear step, to compare the desired drive direction with an actual drive direction during the release of the service brake (21), to increase a pressure at the clutch (24) according to a first modulation characteristic curve when the desired drive direction matches the actual drive direction, and to increase the pressure at the clutch (24) according to a second modulation characteristic curve when the desired drive direction is different than the actual drive direction
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0033] In the following, the invention is further explained based on the presented drawings.
[0034] These show:
[0035]
[0036]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0037] Same parts, functional units, and comparable components are all marked by the same reference characters. The parts, functional units, and comparable components are identically mentioned regarding their technical characteristics, unless the description describes explicitly or implicitly anything different.
[0038]
[0039]
REFERENCE CHARACTERS
[0040] 1 Activation of the Service brake [0041] 2 Detecting the activation of the Service brake [0042] 3 Determination of the Speed of the Motor Vehicle [0043] 4 Stand-still of the Motor Vehicle [0044] 5 Separation of the drive connection between a drive machine and at least a drive axle [0045] 6 Engaging of the drive connection [0046] 7 Reading of the selected gear step [0047] 8 Determination of the desired drive direction [0048] 9 Detecting the actual drive direction [0049] 10 Comparison of the desired drive direction with the actual drive direction [0050] 11 Using the first modulation characteristic curve if the desired drive direction and the actual drive direction match [0051] 12 Using the first modulation characteristic curve if the desired drive direction is different than the actual drive direction and the determined speed of the motor vehicle does not reach the threshold value [0052] 13 Using the second modulation characteristic curve when there is a difference between the desired drive direction and the actual drive direction and the determined speed of the motor vehicle reaches or exceeds the threshold value [0053] 20 Drive Train [0054] 21 Service brake [0055] 21, 21, 21, 21 Single Brake [0056] 22 Drive Motor, Diesel Motor [0057] 23, 23 Drive Axle [0058] 24 Clutch, Multi-Plate Clutch [0059] 25 Control Unit [0060] 26 Drive Connection [0061] 27, 27, 27, 27 Wheel Rotational Speed Sensors [0062] 28 Brake Light Sensor [0063] 29 Brake Pedal [0064] 30 Transmission Control Unit [0065] 31 Motor Vehicle