Claims
- 1. A drive train for a motor vehicle, comprising a first drive source, a second drive source, a hydrodynamic torque converter, an automatic gearbox and respective control facilities associated with these components, and a higher-level drive train control unit which comprises the following control modules: a driver and situation detection facility, a state control facility and a torque management system.
- 2. The drive train according to claim 1, wherein the following functions are performed by the higher-level drive train control unit: a start-stop mode of operation for the motor vehicle, a drive source torque amplification, rolling of the motor vehicle in the case of a drive train with a friction-free connection, and regenerative braking operation.
- 3. The drive train according to claim 1, wherein a crawl mode of operation for the motor vehicle is controlled by the higher-level drive train control unit.
- 4. The drive train according to claim 1, wherein the higher-level drive train control unit is provided with a driver and driving situation detection facility which serves in the event of detection of deceleration or downhill travel to cause the drive train not to be opened and the converter bridging clutch to be closed, with the result that the battery of the motor vehicle is charged by the crankshaft starter generator.
- 5. The drive train according to claim 1, wherein the second drive source takes the form of a crankshaft starter generator.
- 6. A method for controlling a drive train for a motor vehicle, which comprises a first drive source, hydrodynamic torque converter and an automatic gearbox, comprising the steps of:
when the first drive source is at a standstill and the motor vehicle is at a standstill and a drive train control unit is in a preparatory state for a start, activating a hydraulic pump, ensuring that the drive train has a friction-free connection, issuing a command enabling starting of the drive source by a gearbox control unit to the drive train control unit, when the drive train control unit is in the preparatory state for a drive-off operation, closing the drive train and engaging a target gear, making a check as to whether the gearbox capacity exceeds a predefined limit value, and if this is the case, sending an enabling command for the drive-off operation and the gearbox capacity to the drive train state control unit and, thus, assuming the drive-off state.
- 7. The method according to claim 6, wherein the gearbox is opened by the gearbox control unit and after re-starting the first drive source the automatic gearbox is shifted from idling into a forward drive stage, whereupon the motor vehicle drives away.
- 8. The method according to claim 6, wherein the gearbox, after it has received the command from the higher-level drive train control unit to establish a frictional connection, makes known to the latter how much torque the gearbox is able to accept, and a corresponding torque is then delivered by the drive source of the motor vehicle.
- 9. The method according to claim 6, wherein the amplification of the drive source torque is increased by the torque converter by virtue of the fact that this is open initially and thus also amplifies the torque of the crankshaft starter generator and produces an additionally increased drive-off torque.
- 10. A method for controlling a drive train for a motor vehicle, comprising the steps of:
activating a hydraulic pump if a drive source is at a standstill and the motor vehicle is at a standstill and a drive train control unit is in a preparatory state for a start, ensuring that the drive train has a friction-free connection, issuing a command by a gearbox control unit to the drive train control unit which starts the drive source, closing the drive train and engaging a target gear if the drive train control unit is in the preparatory state for a drive-off operation, checking as to whether a gearbox capacity exceeds a predefined limit value, and if this is the case, sending an enabling command for the drive-off operation and sending the gearbox capacity to the drive train state control unit.
- 11. The method according to claim 10, wherein the gearbox is opened by the gearbox control unit and after re-starting the drive source the gearbox is shifted from idling into a forward drive stage, whereupon the motor vehicle drives away.
- 12. The method according to claim 10, wherein the gearbox, after it has received the command from the higher-level drive train control unit to establish a frictional connection, makes known to the latter how much torque the gearbox is able to accept, and a corresponding torque is then delivered by the drive source of the motor vehicle.
- 13. The method according to claim 10, wherein the amplification of a drive source torque is increased by a torque converter by virtue of the fact that this is open initially and thus also amplifies the torque of the crankshaft starter generator and produces an additionally increased drive-off torque.
Priority Claims (1)
Number |
Date |
Country |
Kind |
10161299.0 |
Dec 2001 |
DE |
|
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation of copending International Application No. PCT/DE02/04559 filed Dec. 12, 2002 which designates the United States, and claims priority to German application no. 101 61 299.0 filed Dec. 13, 2001.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/DE02/04559 |
Dec 2002 |
US |
Child |
10863034 |
Jun 2004 |
US |