Drive train and operating method for a hybrid vehicle with an overrun-enabled forward gear
11117461 · 2021-09-14
Assignee
Inventors
Cpc classification
B60K2006/4825
PERFORMING OPERATIONS; TRANSPORTING
B60K6/547
PERFORMING OPERATIONS; TRANSPORTING
B60W10/06
PERFORMING OPERATIONS; TRANSPORTING
B60W2710/1005
PERFORMING OPERATIONS; TRANSPORTING
B60W2030/18081
PERFORMING OPERATIONS; TRANSPORTING
B60K6/383
PERFORMING OPERATIONS; TRANSPORTING
B60W20/30
PERFORMING OPERATIONS; TRANSPORTING
B60W2552/15
PERFORMING OPERATIONS; TRANSPORTING
B60K6/442
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/62
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
International classification
B60W10/06
PERFORMING OPERATIONS; TRANSPORTING
B60K6/547
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a drive train for a hybrid vehicle with an internal combustion engine, with a transmission and with an electric machine, wherein the electric machine is arranged between the internal combustion engine and the transmission. The drive train can be provided in a simple, economical and/or space-saving manner in that the transmission comprises at least one overrun-enabled forward gear transmitting traction torque only and at least one overrun-free forward gear. A hybrid vehicle can be operated with a drive train of this kind easily and efficiently in that, when an overrun-enabled forward gear transmitting only traction torque is engaged and while the vehicle speed lies below a certain engagement speed for an overrun-free forward gear and at least one criterion for the presence of a driving torque is established or satisfied, the transmission is shifted into the overrun-free forward gear.
Claims
1. A drive train for a hybrid vehicle with an internal combustion engine, with a transmission and with an electric machine, wherein the electric machine is arranged between the internal combustion engine and the transmission, wherein the transmission has at least one overrun-enabled forward gear transmitting only traction torque between the electric machine and at least one wheel of the hybrid vehicle and at least one overrun-free forward gear.
2. The drive train of claim 1, wherein the transmission has at least one overrun-enabled, low forward gear transmitting only traction torque and at least one overrun-free, higher forward gear.
3. The drive train of claim 1, wherein the drive train has a K0 clutch arranged between the internal combustion engine and the electric machine; wherein the K0 clutch is operable to recuperate energy by means of the electric machine and/or is closed to brake the vehicle by means of a drag torque by the internal combustion engine.
4. The drive train of claim 1, wherein the transmission is designed as one or more of a multi-stage transmission and a dual-clutch transmission.
5. An operating method for a hybrid vehicle with a drive train of claim 1, wherein, when an overrun-enabled forward gear of the transmission transmitting only traction torque is engaged and while the vehicle speed is below a certain engagement speed for an overrun-free forward gear of the transmission and at least one criterion for the presence of a driving torque is established or satisfied, the transmission is shifted into the overrun-free forward gear.
6. The operating method of claim 5, wherein, by shifting into the overrun-free forward gear, a drag torque is generated by one or more of the electric machine, to recuperate energy and to brake the vehicle, and by the internal combustion engine to brake the vehicle.
7. The operating method of claim 5, wherein one of more of the presence of a neutral accelerator pedal position, and the presence of a non-zero vehicle speed, and the presence of an inclination of a vehicle, and the presence of a difference in rotational speed ahead of and behind the freewheel is used as a criterion for the presence of a driving torque.
8. The operating method of claim 5, wherein the overrun-enabled forward gear transmitting only traction torque is maintained over a defined duration and the transmission is only shifted into the overrun-free forward gear when the at least one criterion for the presence of a driving torque is present or satisfied at the end of the defined duration and/or exceeds a certain threshold value for this.
9. The operating method of claim 5, wherein the charge level of a battery of the vehicle is established, wherein in the case of an incomplete charge of the battery, the transmission is shifted into the overrun-free forward gear to brake the vehicle using a drag torque through recuperation by the electric machine, and/or wherein in the case of a full charge of the battery, the vehicle is braked by a brake.
10. An operating method for a hybrid vehicle with a drive train with an internal combustion engine, a transmission, and an electric machine; wherein the electric machine is arranged between the internal combustion engine and the transmission; wherein, when an overrun-enabled forward gear of the transmission transmitting only traction torque is engaged and while a vehicle speed is below a certain engagement speed for an overrun-free forward gear of the transmission and at least one criterion for the presence of a driving torque is established or satisfied, the transmission is shifted into the overrun-free forward gear; wherein the drive train has a K0 clutch between the internal combustion engine and the electric machine, wherein the K0 clutch is opened to recuperate energy by means of the electric machine and/or is closed to brake the vehicle by means of a drag torque by the internal combustion engine.
11. An operating method for a hybrid vehicle with a drive train with an internal combustion engine, a transmission, and an electric machine; wherein the electric machine is arranged between the internal combustion engine and the transmission; wherein, when an overrun-enabled forward gear of the transmission transmitting only traction torque is engaged and while a vehicle speed is below a certain engagement speed for an overrun-free forward gear of the transmission and at least one criterion for the presence of a driving torque is established or satisfied, the transmission is shifted into the overrun-free forward gear; wherein the presence of an inclination of the vehicle is detected when, over a certain period of time, the inclination is on average greater than a certain inclination threshold value.
12. The operating method of claim 5, wherein, when no criterium for the presence of a driving torque is established or satisfied, the overrun-enabled forward gear transmitting only traction torque is maintained and, insofar as the vehicle speed is below the certain engagement speed) for the overrun-free forward gear, it is established once again whether at least one criterion for the presence of a driving torque is present or satisfied.
13. The operating method of claim 5, wherein the overrun-enabled forward gear transmitting only traction torque is a low forward gear of the transmission and the overrun-free forward gear is a higher forward gear of the transmission.
14. The operating method of claim 5, wherein the transmission is designed as one or more of a multi-stage transmission and as a dual-clutch transmission.
15. The drive train of claim 2, wherein the drive train has a K0 clutch arranged between the internal combustion engine and the electric machine; wherein the K0 clutch is operable to recuperate energy by means of the electric machine and/or is closed to brake the vehicle by means of a drag torque by the internal combustion engine.
16. The drive train of claim 2, wherein the transmission is designed as one or more of a multi-stage transmission and a dual-clutch transmission.
17. The drive train of claim 3, wherein the transmission is designed as one or more of a multi-stage transmission and a dual-clutch transmission.
18. The operating method of claim 6, wherein one of more of the presence of a neutral accelerator pedal position, and the presence of a non-zero vehicle speed, and the presence of an inclination of a vehicle, and the presence of a difference in rotational speed ahead of and behind the freewheel is used as a criterion for the presence of a driving torque.
19. The operating method of claim 6, wherein the overrun-enabled forward gear transmitting only traction torque is maintained over a defined duration and the transmission is only shifted into the overrun-free forward gear when the at least one criterion for the presence of a driving torque is present or satisfied at the end of the defined duration and/or exceeds a certain threshold value for this.
20. The operating method of claim 7, wherein the overrun-enabled forward gear transmitting only traction torque is maintained over a defined duration and the transmission is only shifted into the overrun-free forward gear when the at least one criterion for the presence of a driving torque is present or satisfied at the end of the defined duration and/or exceeds a certain threshold value for this.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In the FIG.:
(2)
(3)
DETAILED DESCRIPTION
(4) In a first aspect, the drive train has an internal combustion engine, a transmission and an electric machine. The electric machine is arranged functionally effectively between the internal combustion engine and the transmission.
(5) The transmission may, e.g., have at least one overrun-enabled forward gear transmitting only traction torque and at least one overrun-free forward gear.
(6) By using a freewheel that transmits traction torque, e.g., in the function of an overrunning clutch, as a switching element of a single, e.g., lower, gear, for example of the first forward gear, for example instead of a 1/N switching unit, the transmission and therefore the drive train may be produced or provided, e.g., its production optimized, in a simpler, more economical and/or more space-saving manner. For example, by using the freewheel for the gear equipped therewith, a sliding sleeve, a shift fork (1/N), a valve, a piston, a position sensor and/or a housing hole may be dispensed with.
(7) For example, the transmission may have at least one overrun-enabled, low, e.g., first, forward gear transmitting only traction torque and at least one overrun-free, higher, e.g., second, forward gear.
(8) In one embodiment, the drive train has a clutch, for example a K0 clutch, arranged functionally effectively between the internal combustion engine and the electric machine.
(9) In another embodiment, the transmission is designed as a multi-stage transmission and/or as a dual-clutch transmission. For example, the transmission may be designed as a dual-clutch transmission with a first sub-transmission that may be coupled via a first transmission coupling and a second second sub-transmission that may be coupled via a second transmission coupling. For example the at least one overrun-enabled, for example low, e.g., first, forward gear transmitting only traction torque may be assigned to the first sub-transmission and/or coupled via the first transmission coupling. The at least one overrun-free, for example higher, e.g., second, forward gear may be assigned, e.g., to the second sub-transmission and/or coupled via the second transmission coupling.
(10) The fact that the gear equipped with the freewheel can transmit only traction torque and, e.g., no driving torque can lead to a “change in driving behavior,” for example in the case of operating at crawl speed, stop-and-go traffic, maneuvering, in this, for example first, gear. This can now be solved in a simple and efficient manner by the operating method with the features of the method claims.
(11) The operating method may for example be designed for a hybrid vehicle with a drive train which has an internal combustion engine, a transmission and an electric machine, wherein the electric machine is arranged between the internal combustion engine and the transmission, as described above.
(12) For example, in the method, when an overrun-enabled, for example low, e.g., first, forward gear of the transmission transmitting only traction torque is engaged and while the vehicle speed lies below a certain engagement speed for an overrun-free, for example higher, e.g., second, forward gear of the transmission and at least one criterion for the presence of a driving torque is established or satisfied, the transmission is shifted into the overrun-free, for example higher, in particular second, forward gear.
(13) By shifting into the overrun-free, for example higher, in particular second, forward gear, a drag torque can now be generated which can be used, for example, to recuperate energy and/or to brake, for example by entraining the electric machine and/or the internal combustion engine. For example, the drag torque can be generated through a recuperation by the electric machine and/or by entraining the internal combustion engine.
(14) In one embodiment, the overrun-enabled, e.g., low, forward gear transmitting only traction torque is the first forward gear of the transmission and/or the overrun-free, e.g., higher, forward gear is the second forward gear of the transmission.
(15) In another embodiment, by shifting into the overrun-free, for example higher, e.g., second, forward gear, a drag torque is generated by the electric machine to recover energy and/or to brake the vehicle and/or by the internal combustion engine to brake the vehicle.
(16) In another embodiment, the presence of a neutral accelerator pedal position, meaning a non-actuated accelerator pedal, is used as a criterion for the presence of a driving torque.
(17) In another embodiment, the presence of a non-zero vehicle speed is used as a criterion for the presence of a driving torque.
(18) In another embodiment, the presence of an inclination, such as driving downhill, of the vehicle is used as a criterion for the presence of a driving torque. For example, the presence of an inclination, e.g., driving downhill, may be established by means of a sensor system and/or a shift in wheel load and/or route information and/or map data, such as from a navigation system. For example, the presence of an inclination, e.g., driving downhill, of the vehicle may be detected when, over a certain period of time, the inclination is on average greater than a certain inclination threshold value, for example in percent.
(19) In another embodiment, the presence of a difference in rotational speed ahead of and behind the freewheel is used as a criterion for the presence of a driving torque.
(20) The criteria described above for the presence of a driving torque can be used, for example, individually or in combination with each other.
(21) In another embodiment, the overrun-enabled, for example low, e.g., first, forward gear transmitting only traction torque is maintained over a defined duration and the transmission is only shifted into the overrun-free, for example higher, e.g., second, forward gear when the at least one criterion for the presence of a driving torque is still established or satisfied at the end of the defined duration, meaning drive operation is still present and/or a certain threshold value for this (for the duration) has been exceeded.
(22) In the context of the method, the transmission can generally in principle be shifted into the overrun-free, for example higher, such as second, forward gear when a driving torque is present in the overrun-enabled, for example low, such as first, forward gear transmitting only traction torque.
(23) In another embodiment, however, the charge level of a battery of the vehicle is established. For example, the “SOC” of the battery can be used to decide on a deceleration with the electric machine and/or the brake, such as wheel brake, of the vehicle.
(24) For example, in the case of an incomplete charge of the battery, the transmission can be shifted into the overrun-free, for example higher, e.g., second, forward gear to brake the vehicle using a drag torque through recuperation by the electric machine.
(25) In the case of a full charge of the battery, the vehicle can be braked, for example, by a brake, for example a wheel brake, of the vehicle. The overrun-enabled, for example low, such as first, forward gear transmitting only traction torque can thereby be maintained or the transmission can be shifted into the overrun-free, for example higher, such as second, forward gear. By shifting into the overrun-free, for example higher, such as second, forward gear, at least one drag torque can thereby also be used by the internal combustion engine to brake the vehicle and the wear of the vehicle brake can be reduced in this manner.
(26) In another embodiment—for example in which the drive train has a clutch, e.g., a K0 clutch, between the internal combustion engine and the electric machine—the clutch, e.g., the K0 clutch, is opened to recuperate energy by means of the electric machine and/or closed to brake the vehicle by means of a drag torque by the internal combustion engine.
(27) In another embodiment, when no criteria for the presence of a driving torque are established or satisfied, meaning no driving torque is established, the overrun-enabled, for example low, such as first, forward gear transmitting only traction torque is maintained, and when the vehicle speed lies below the certain engagement speed for the overrun-free, for example higher, such as second, forward gear, it is established once again whether at least one criterion for the presence of a driving torque is present or satisfied.
(28) The disadvantages mentioned at the outset are therefore avoided and corresponding advantages are achieved.
(29) There are now a plurality of opportunities to design and develop the drive train according to the present aspect and the operating method in a beneficial manner. For this purpose, reference is made initially to the claims that are subordinate to the independent apparatus claim and the independent method claim. In the following, another embodiment of the drive train and the operating method are described in greater detail with reference to the drawings and the accompanying description.
(30)
(31)
(32) The transmission G may be designed as a multi-stage transmission, for example as a dual-clutch transmission. Insofar as the transmission G is a dual-clutch transmission, the transmission G may, e.g., have a first sub-transmission that can be coupled via a first transmission coupling and a second sub-transmission that can be coupled via a second transmission coupling. For example, the at least one overrun-enabled, for example first, forward gear 1GF transmitting only traction torque can be assigned to the first sub-transmission and/or coupled via the first transmission coupling. The at least one overrun-free, for example second, forward gear 2G can, e.g., be assigned to the second sub-transmission and/or coupled via the second transmission coupling. Further forward gears and/or a backward gear can be present.
(33)
(34)
(35) Establishing whether the vehicle speed v.sub.F lies below a certain engagement speed v.sub.2G for the overrun-free, e.g., second, forward gear 2G and whether at least one criterion for the presence of a driving torque is present or satisfied can occur either with an open or with a closed clutch K0.
(36) Insofar as the transmission G is designed as a dual-clutch transmission and the overrun-enabled, e.g., first, forward gear 1G transmitting only traction torque is assigned to the first sub-transmission and the overrun-free, e.g., forward gear 2G is assigned to the second sub-transmission, the first transmission coupling can be closed and the second transmission coupling can be opened when the overrun-enabled forward gear 1G transmitting only traction torque is engaged.
(37)
(38) Optionally, the overrun-enabled, e.g., first, forward gear 1G transmitting only traction torque can be maintained over a defined duration Δt and the transmission is only shifted into the overrun-free, e.g., second, forward gear 2G when the at least one criterion for the presence of a driving torque is still present or established at the end of the defined duration Δt and/or exceeds a certain threshold value for this (for the duration).
(39)
(40)
REFERENCE NUMBER LIST
(41) VKM Internal combustion engine G Transmission EM Electric machine K0 K0 clutch 1GF Overrun-enabled first forward gear transmitting only traction torque 2G Overrun-free second gear v.sub.F Vehicle speed v.sub.2G Engagement speed for second forward gear FP Accelerator pedal position N Neutral position of the accelerator pedal
(42) The invention has been described in the preceding using various exemplary embodiments. Other variations to the disclosed embodiments can be understood and effected by those skilled in the art in practicing the claimed invention, from a study of the drawings, the disclosure, and the appended claims. In the claims, the word “comprising” does not exclude other elements or steps, and the indefinite article “a” or “an” does not exclude a plurality. A single processor, module or other unit or device may fulfil the functions of several items recited in the claims.
(43) The mere fact that certain measures are recited in mutually different dependent claims or embodiments does not indicate that a combination of these measures cannot be used to advantage. Any reference signs in the claims should not be construed as limiting the scope.