ELECTRIC VEHICLE DRIVE SYSTEM AND ELECTRIC VEHICLE
20220379683 · 2022-12-01
Assignee
Inventors
- Xiong Hu (Shenzhen, CN)
- Zhengyi Tang (Shenzhen, CN)
- Hu Zhong (Shanghai, CN)
- Xueyu Mei (Shanghai, CN)
- Huan Wang (Shenzhen, CN)
- Yanzhong WANG (Dongguan, CN)
Cpc classification
B60K2025/005
PERFORMING OPERATIONS; TRANSPORTING
B60H1/00421
PERFORMING OPERATIONS; TRANSPORTING
B60L15/2054
PERFORMING OPERATIONS; TRANSPORTING
B60K2001/001
PERFORMING OPERATIONS; TRANSPORTING
B60H1/00392
PERFORMING OPERATIONS; TRANSPORTING
B60L1/003
PERFORMING OPERATIONS; TRANSPORTING
B60K17/02
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/88
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
B60K1/00
PERFORMING OPERATIONS; TRANSPORTING
B60H1/3222
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60H1/00
PERFORMING OPERATIONS; TRANSPORTING
B60K17/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An electric vehicle drive system and an electric vehicle. The electric vehicle drive system includes a powertrain and a transmission system. The powertrain includes a first power output mechanism and a second power output mechanism. One end of the transmission system is connected to the first power output mechanism, and the other end is configured to be connected to an air-conditioner compressor. The second power output mechanism is configured to drive the electric vehicle to travel. The powertrain in the electric vehicle drive system can also drive the air-conditioner compressor when driving the electric vehicle, to reduce a quantity of components inside the electric vehicle, thereby reducing space occupancy and costs.
Claims
1. An electric vehicle drive system, comprising: a powertrain comprising a first power output mechanism and a second power output mechanism; and a transmission system, wherein the first power output mechanism is connected to the transmission system, the transmission system is configured to be connected to an air-conditioner compressor in an electric vehicle, the first power output mechanism is configured to drive, through the transmission system, the air-conditioner compressor to work, and the second power output mechanism is configured to drive the electric vehicle to travel.
2. The electric vehicle drive system according to claim 1, wherein the powertrain further comprises: a drive motor; and a transmission comprising an input shaft, a countershaft, and an output axle shaft that are in transmission connection, wherein one end of the input shaft is connected to the drive motor, the first power output mechanism comprises the input shaft and the countershaft, and the second power output mechanism comprises the output axle shaft; the transmission system further comprises: two connection mechanisms; and one transmission mechanism, wherein two ends of one connection mechanism are respectively connected to the other end of the input shaft and the transmission mechanism, two ends of the other connection mechanism are respectively connected to the countershaft and the transmission mechanism, and the transmission mechanism is configured to be connected to the air-conditioner compressor.
3. The electric vehicle drive system according to claim 2, wherein the connection mechanism can be configured as one of an integral shaft, a button, a slide, a one-way clutch, a two-way clutch, or a synchro and the transmission mechanism can be configured as one of a gear transmission mechanism, a belt transmission mechanism, or a chain transmission mechanism.
4. The electric vehicle drive system according to claim 3, wherein both the two connection mechanisms are two-way clutches, and the transmission mechanism is a gear transmission mechanism; in the two connection mechanisms, the connection mechanism connected to the input shaft is a one-way clutch, the transmission mechanism is a belt transmission mechanism; and the connection mechanism connected to the countershaft is either a two-way clutch or an integral shaft.
5. The electric vehicle drive system according to claim 1, wherein the powertrain further comprises: a drive motor; and a transmission comprising an input shaft, a countershaft, and an output axle shaft that are in transmission connection, one end of the input shaft is connected to the drive motor, the first power output mechanism comprises the input shaft or the countershaft, the second power output mechanism comprises the output axle shaft; and the transmission system further comprises: one connection mechanism; and one transmission mechanism, wherein one end of the connection mechanism is connected to the other end of the input shaft or the countershaft, the other end of the connection mechanism is connected to the transmission mechanism, and the transmission mechanism is configured to be connected to the air-conditioner compressor; or one end of the transmission mechanism is connected to the other end of the input shaft or the countershaft, the other end of the transmission mechanism is connected to the connection mechanism, and the connection mechanism is configured to be connected to the air-conditioner compressor.
6. The electric vehicle drive system according to claim 5, wherein the connection mechanism can be configured as one of an integral shaft, a button, a slide, a one-way clutch, a two-way clutch, or a synchro; and the transmission mechanism can be configured as one of a gear transmission mechanism, a belt transmission mechanism, or a chain transmission mechanism.
7. The electric vehicle drive system according to claim 6, wherein the connection mechanism is a two-way clutch, and the transmission mechanism is a belt transmission mechanism.
8. The electric vehicle drive system according to claim 1, wherein the powertrain further comprises: a drive motor; and a transmission comprising an input shaft, a countershaft, and an output axle shaft that are in transmission connection, one end of the input shaft is connected to the drive motor, the first power output mechanism comprises the input shaft or the countershaft, the second power output mechanism comprises the output axle shaft, the transmission system comprises one connection mechanism, wherein one end of the connection mechanism is connected to the other end of the input shaft or the countershaft, and the other end of the connection mechanism is configured to be connected to the air-conditioner compressor; or the transmission system comprises one transmission mechanism, wherein one end of the transmission mechanism is connected to the other end of the input shaft or the countershaft, and the other end of the transmission mechanism is configured to be connected to the air-conditioner compressor.
9. The electric vehicle drive system according to claim 8, wherein the connection mechanism can be configured as one of an integral shaft, a button, a slide, a one-way clutch, a two-way clutch, or a synchro; and the transmission mechanism can be configured as one of a gear transmission mechanism, a belt transmission mechanism, or a chain transmission mechanism.
10. The electric vehicle drive system according to claim 9, wherein the connection mechanism is a two-way clutch, and the transmission mechanism is a belt transmission mechanism.
11. The electric vehicle drive system according to claim 1, wherein the powertrain further comprises: a drive motor; and a transmission comprising an input shaft and an output axle shaft, and one end of the input shaft is connected to the drive motor, the second power output mechanism comprises the output axle shaft, the drive motor is a dual output shaft motor, one output shaft of the dual output shaft motor is connected to the transmission, the first power output mechanism comprises the other output shaft of the dual output shaft motor, the transmission system comprises one connection mechanism, one end of the connection mechanism is connected to the other output shaft, and the other end of the connection mechanism is configured to be connected to the air-conditioner compressor.
12. The electric vehicle drive system according to claim 11, wherein the connection mechanism can be configured as one of a slide, a clutch, a synchro, or a belt transmission mechanism.
13. The electric vehicle drive system according to claim 12, wherein the connection mechanism is a two-way clutch.
14. The electric vehicle drive system according to claim 2, wherein the transmission is one of a single-speed transmission, a two-speed transmission, or a multi-speed transmission; and a neutral gear mechanism is disposed on the transmission, and the neutral gear mechanism is disposed on the input shaft, the countershaft, the output shaft, or a differential assembly in the transmission.
15. The electric vehicle drive system according to claim 8, wherein the transmission is a single-speed transmission and a neutral gear mechanism is disposed on the single-speed transmission, wherein the neutral gear mechanism is a synchro disposed on the input shaft, the neutral gear mechanism is a clutch disposed on the countershaft, or the neutral gear mechanism is a clutch or a synchro disposed on the output shaft or a differential assembly.
16. An electric vehicle, comprising an electric vehicle drive system, wherein the electric vehicle drive system comprises: a powertrain comprising a first power output mechanism and a second power output mechanism; and a transmission system, wherein the first power output mechanism is connected to the transmission system, the transmission system is configured to be connected to an air-conditioner compressor in an electric vehicle, the first power output mechanism is configured to drive, through the transmission system, the air-conditioner compressor to work, and the second power output mechanism is configured to drive the electric vehicle to travel.
17. The electric vehicle according to claim 16, wherein the powertrain further comprises a drive motor; and a transmission comprising an input shaft, a countershaft, and an output axle shaft that are in transmission connection, one end of the input shaft is connected to the drive motor, the first power output mechanism comprises the input shaft and the countershaft, the second power output mechanism comprises the output axle shaft, and the transmission system comprises: two connection mechanisms; and one transmission mechanism, wherein two ends of one connection mechanism are respectively connected to the other end of the input shaft and the transmission mechanism; two ends of the other connection mechanism are respectively connected to the countershaft and the transmission mechanism; and the transmission mechanism is configured to be connected to the air-conditioner compressor.
18. The electric vehicle according to claim 17, wherein the connection mechanism can be configured as one of an integral shaft, a button, a slide, a one-way clutch, a two-way clutch, or a synchro; and the transmission mechanism can be configured as one of a gear transmission mechanism, a belt transmission mechanism, or a chain transmission mechanism.
19. The electric vehicle according to claim 18, wherein both the two connection mechanisms are two-way clutches, and the transmission mechanism is a gear transmission mechanism; in the two connection mechanisms, the connection mechanism connected to the input shaft is a one-way clutch, and the transmission mechanism is a belt transmission mechanism; and the connection mechanism connected to the countershaft is either a two-way clutch or an integral shaft.
20. The electric vehicle according to claim 16, wherein the powertrain further comprises a drive motor; and a transmission comprising an input shaft, a countershaft, and an output axle shaft that are in transmission connection, one end of the input shaft is connected to the drive motor, the first power output mechanism comprises the input shaft or the countershaft, and the second power output mechanism comprises the output axle shaft; and the transmission system comprises: one connection mechanism; and one transmission mechanism, wherein one end of the connection mechanism is connected to the other end of the input shaft or the countershaft, the other end of the connection mechanism is connected to the transmission mechanism, and the transmission mechanism is configured to be connected to the air-conditioner compressor; or one end of the transmission mechanism is connected to the other end of the input shaft or the countershaft, the other end of the transmission mechanism is connected to the connection mechanism, and the connection mechanism is configured to be connected to the air-conditioner compressor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0041] To make the objectives, solutions, and advantages clearer, the following further describes the embodiments in detail with reference to the accompanying drawings.
[0042] Terms used in the following embodiments are merely intended to describe but are not intended as limiting. As used herein, singular expressions “one”, “a”, “the”, “the foregoing”, “this”, and “the one” are also intended to include expressions such as “one or more”, unless the contrary is clearly indicated in its context.
[0043] Reference to “one embodiment” or “some embodiments” or the like means that one or more embodiments include a particular feature, structure, or characteristic described in combination with the embodiment. Thus, phrases “in one embodiment”, “in some embodiments”, “in some other embodiments”, “in some additional embodiments”, and the like do not necessarily mean reference to a same embodiment, but mean “one or more embodiments, but not all embodiments”, unless otherwise emphasized. The terms “include”, “contain”, “have”, and their variants all mean “include but are not limited to”, unless otherwise emphasized.
[0044] With the development of an electric vehicle, requirements for comfort and endurance mileage of the electric vehicle are increasingly high, and disposition of an air conditioner is an important manifestation of comfort. However, when an air conditioner is disposed inside the electric vehicle, a drive motor configured to drive an air-conditioner compressor needs to be separately disposed. The drive motor occupies a part of space inside the electric vehicle. In addition, the air-conditioner compressor is driven by one separate drive motor, and therefore power consumption of the electric vehicle is increased, and endurance mileage of the electric vehicle is reduced.
[0045] Based on the problems above, an embodiment may provide an electric vehicle drive system. Referring to
[0046] In some embodiments, the powertrain 1 may include a drive motor and a transmission. The transmission is connected to an output shaft of the drive motor, the first power output mechanism may be disposed on the drive motor or the transmission, and the second power output mechanism is connected to an output end of the transmission. The transmission system 2 may include a transmission mechanism and/or at least one connection mechanism. The connection mechanism can be configured as one of an integral shaft, a button, a slide, a one-way clutch, a two-way clutch, or a synchro. The transmission mechanism can be configured as a gear transmission mechanism, a belt transmission mechanism, or a chain transmission mechanism. The transmission is one of a single-speed transmission, a two-speed transmission, or a multi-speed transmission.
[0047] Referring to
[0048] Referring to
[0049] When the electric vehicle normally travels, the drive motor 10 rotates forward, so that power is transmitted to the two-speed transmission 11 through the input shaft 40 of the two-speed transmission 11, and the power is output to an output axle shaft 110 (the second power output mechanism) of the two-speed transmission 11 through transmission of a gear inside the two-speed transmission 11, to be supplied to the electric vehicle for traveling. If an air conditioner needs to be turned on, and a rotational speed of the drive motor 10 is relatively low and meets a rotational speed requirement of the air-conditioner compressor 3, the two-way clutch connected to the input shaft 40 of the two-speed transmission 11 is engaged, and the two-way clutch connected to the countershaft 41 of the two-speed transmission 11 is disengaged, so that power output by the drive motor 10 drives, through the input shaft 40 of the two-speed transmission 11, the two-way clutch connected to the input shaft 40 to rotate, and the power is transmitted to the air-conditioner compressor 3 through the gear transmission mechanism, to drive the air-conditioner compressor 3 to operate. If an air conditioner needs to be turned on, and a rotational speed of the drive motor 10 is higher than a rotational speed requirement of the air-conditioner compressor 3, the two-way clutch connected to the input shaft 40 of the two-speed transmission 11 is disengaged, and the two-way clutch connected to the countershaft 41 of the two-speed transmission 11 is engaged, so that power output by the drive motor 10 drives, through the countershaft 41 of the two-speed transmission 11, the two-way clutch connected to the countershaft 41 to rotate, and the power is transmitted to the air-conditioner compressor 3 after a transmission rotational speed is reduced through the gear transmission mechanism, to drive the air-conditioner compressor 3 to work.
[0050] In addition, when the electric vehicle is in a reverse state, to protect the air-conditioner compressor 3 from reversely rotating, both the two-way clutches are enabled to be in a disengaged state.
[0051] When the vehicle is in a parked state, the two-speed transmission 11 is in a neutral gear state. If the air conditioner needs to be turned on, the drive motor 10 rotates forward to drive the input shaft 40 of the two-speed transmission 11 to rotate, the two-way clutch connected to the input shaft 40 is engaged, and the two-way clutch connected to the countershaft 41 of the two-speed transmission 11 is disengaged, so that power output by the drive motor 10 can be transmitted to the air-conditioner compressor 3 through the two-way clutch connected to the input shaft 40.
[0052] Referring to
[0053] When the electric vehicle normally travels forward, the drive motor 10 rotates forward, so that power is transmitted to the single-speed transmission 11, and the power is output to an output axle shaft 110 (the second power output mechanism) of the single-speed transmission 11 through transmission of a gear inside the single-speed transmission 11, to drive the electric vehicle to travel forward. If an air conditioner needs to be turned on, the one-way clutch connected to the input shaft 40 of the single-speed transmission 11 is disengaged, and the two-way clutch connected to the countershaft 41 of the single-speed transmission 11 is engaged, so that power output by the drive motor 10 drives, through the countershaft 41 of the single-speed transmission 11, the two-way clutch to rotate, and the power is transmitted to the air-conditioner compressor 3 after a rotational speed is changed through the belt transmission mechanism, to drive the air-conditioner compressor 3 to operate.
[0054] When the electric vehicle is in a reverse state, the drive motor 10 reversely rotates, the one-way clutch is engaged, and the two-way clutch connected to the countershaft 41 of the single-speed transmission 11 is disengaged. In this case, the air-conditioner compressor 3 can normally operate. In this way, power output by the drive motor 10 is transmitted to the one-way clutch through the input shaft 40 of the single-speed transmission 11, to drive, through the belt transmission mechanism, the air-conditioner compressor 3 to operate.
[0055] When the electric vehicle is in a parked state, if the air conditioner needs to be turned on, the single-speed transmission 11 is in a neutral gear state, the drive motor 10 reversely rotates, the drive motor 10 drives the input shaft 40 of the single-speed transmission 11 to rotate, the one-way clutch connected to the input shaft 40 is in an engaged state, and the two-way clutch connected to the countershaft 41 of the single-speed transmission 11 is disengaged, so that power can be transmitted to the air-conditioner compressor 3 through the one-way clutch and the belt transmission mechanism.
[0056] Referring to
[0057] When the electric vehicle normally travels forward, the drive motor 10 rotates forward, so that power is transmitted to the two-speed transmission 11, and the power is transmitted to an output axle shaft 110 (the second power output mechanism) of the two-speed transmission 11 through transmission of a gear inside the two-speed transmission 11, to drive the electric vehicle to travel forward. If an air conditioner needs to be turned on, the one-way clutch connected to the input shaft 40 is disengaged, and the belt transmission mechanism is engaged, so that power output by the drive motor 10 is transmitted to the belt transmission mechanism through the countershaft 41 of the two-speed transmission 11 and the integral shaft connected to the countershaft 41, and the power is transmitted to the air-conditioner compressor 3 after a rotational speed is changed through the belt transmission mechanism, to drive the air-conditioner compressor 3 to operate.
[0058] When the electric vehicle is in a reverse state, the drive motor 10 reversely rotates. In this case, the one-way clutch connected to the input shaft 40 of the two-speed transmission 11 is engaged, and the belt transmission mechanism is disengaged, so that power of the drive motor 10 is transmitted to the one-way clutch through the input shaft 40 of the two-speed transmission 11, and is transmitted to the air-conditioner compressor 3 through the belt transmission mechanism, to drive the air-conditioner compressor 3 to rotate. In this way, the air-conditioner compressor 3 can normally operate when the electric vehicle is driven in reverse.
[0059] When the electric vehicle is in a parked state and the air conditioner needs to be turned on, the two-speed transmission 11 is in a neutral gear, the drive motor 10 reversely rotates, the one-way clutch connected to the input shaft 40 of the two-speed transmission 11 is engaged, and the belt transmission mechanism is disengaged. In this case, the input shaft 40 of the two-speed transmission 11 is driven to rotate, and the input shaft 40 drives the one-way clutch to rotate, so that power can be transmitted to the air-conditioner compressor 3 through the one-way clutch and the belt transmission mechanism, to enable the air-conditioner compressor 3 to operate.
[0060] Referring to
[0061] Referring to
[0062] When the electric vehicle normally travels forward, the drive motor 10 rotates forward, so that power is transmitted to the two-speed transmission 11, and the power is output to an output axle shaft 110 (the second power output mechanism) of the two-speed transmission 11 through transmission of a gear inside the two-speed transmission 11, to be supplied to the electric vehicle for traveling forward. If an air conditioner needs to be turned on, the two-way clutch connected to the input shaft 40 of the two-speed transmission 11 is engaged, so that power output by the drive motor 10 drives, through the input shaft 40 of the two-speed transmission 11, the two-way clutch to rotate, and the power is transmitted to the air-conditioner compressor 3 after a rotational speed is changed through the belt transmission mechanism, to drive the air-conditioner compressor 3 to operate.
[0063] When the electric vehicle is in a reverse state, the drive motor 10 reversely rotates. To protect the air-conditioner compressor 3 from reversely rotating, the two-way clutch connected to the two-speed transmission 11 is disengaged.
[0064] When the electric vehicle is in a parked state, if the air conditioner needs to be turned on, the two-speed transmission 11 is enabled to be in a neutral gear, the drive motor 10 rotates forward to drive the input shaft of the two-speed transmission 11 to rotate, and the two-way clutch is engaged, so that power of the drive motor 10 can be transmitted to the belt transmission mechanism through the two-way clutch, and then transmitted to the air-conditioner compressor 3.
[0065] Referring to
[0066] When the electric vehicle normally travels forward, the drive motor 10 rotates forward, so that power is transmitted to the single-speed transmission 11, and the power is transmitted to an output axle shaft 110 (the second power output mechanism) of the single-speed transmission 11 through transmission of a gear inside the single-speed transmission 11, to drive the electric vehicle to travel forward. If an air conditioner needs to be turned on, the two-way clutch connected to the belt transmission mechanism is engaged, so that power output by the drive motor 10 is transmitted to the belt transmission mechanism through the countershaft 41 of the single-speed transmission 11, and the power is transmitted to the two-way clutch after a rotational speed is changed through the belt transmission mechanism, to drive the air-conditioner compressor 3 to operate.
[0067] When the electric vehicle is in a reverse state, the drive motor 10 reversely rotates. To protect the air-conditioner compressor 3 from reversely rotating, the two-way clutch connected to the belt transmission mechanism needs to be disengaged.
[0068] When the electric vehicle is in a parked state, if the air conditioner needs to be turned on, the single-speed transmission 11 is in a neutral gear state, the drive motor 10 rotates forward to drive the countershaft 41 of the single-speed transmission 11 to rotate, and the two-way clutch connected to the belt transmission mechanism is engaged, so that power output by the drive motor is transmitted to the belt transmission mechanism through the countershaft 41 of the single-speed transmission 11, and the power is transmitted to the two-way clutch after a rotational speed is changed through the belt transmission mechanism, to drive the air-conditioner compressor 3 to operate.
[0069] Referring to
[0070] Referring to
[0071] When the electric vehicle normally travels forward, the drive motor 10 rotates forward, so that power is transmitted to the single-speed transmission 11, and the power is transmitted to an output axle shaft 110 (the second power output mechanism) of the single-speed transmission 11 through transmission of a gear inside the single-speed transmission 11, to drive the electric vehicle to travel forward. If an air conditioner needs to be turned on, the two-way clutch connected to the countershaft 41 of the single-speed transmission 11 is engaged, so that power output by the drive motor 10 drives, through the countershaft 41 of the single-speed transmission 11, the two-way clutch to rotate, to drive the air-conditioner compressor 3 to operate.
[0072] When the electric vehicle is in a reverse state, the drive motor 10 reversely rotates. To protect the air-conditioner compressor 3 from reversely rotating and reduce a loss of the air-conditioner compressor 3, the two-way clutch connected to the countershaft 41 of the single-speed transmission 11 is disengaged.
[0073] When the electric vehicle is in a parked state, if the air conditioner needs to be turned on, the single-speed transmission 11 is in a neutral gear state, the drive motor 10 rotates forward, and the two-way clutch connected to the countershaft 41 of the single-speed transmission 11 is engaged, so that power output by the drive motor 10 drives, through the countershaft 41 of the single-speed transmission 11, the two-way clutch to rotate, to drive the air-conditioner compressor 3 to operate.
[0074] Referring to
[0075] When the vehicle normally travels forward, the drive motor 10 rotates forward, so that power is transmitted to the single-speed transmission 11, and the power is transmitted to an output axle shaft 110 (the second power output mechanism) of the single-speed transmission 11 through transmission of a gear inside the single-speed transmission 11, to drive the electric vehicle to travel forward. If an air conditioner needs to be turned on, the belt transmission mechanism connected to the countershaft 41 of the single-speed transmission 11 is engaged, so that power output by the drive motor 10 is transmitted to the belt transmission mechanism through the countershaft 41 of the single-speed transmission 11, to drive the air-conditioner compressor 3 connected to the belt transmission mechanism to operate.
[0076] When the electric vehicle is in a reverse state, the drive motor 10 reversely rotates. To protect the air-conditioner compressor 3 from reversely rotating and reduce a loss of the air-conditioner compressor 3, the belt transmission mechanism connected to the countershaft 41 of the single-speed transmission 11 is disengaged, so that power cannot be transmitted to the air-conditioner compressor 3. In this case, the air-conditioner compressor 3 does not work.
[0077] When the electric vehicle is in a parked state, if the air conditioner needs to be turned on, the single-speed transmission 11 may be enabled to be in a neutral gear state, the drive motor 10 rotates forward to drive the countershaft 41 of the single-speed transmission 11 to rotate, and the belt transmission mechanism connected to the countershaft 41 of the single-speed transmission 11 is engaged, so that power output by the drive motor 10 is transmitted to the belt transmission mechanism through the countershaft 41 of the single-speed transmission 11, to drive the air-conditioner compressor 3 connected to the belt transmission mechanism to operate.
[0078] Referring to
[0079] When the electric vehicle normally travels forward, the dual output shaft motor rotates forward, so that the output shaft of the dual output shaft motor transmits power to the two-speed transmission 11, and the power is transmitted to an output axle shaft 110 (the second power output mechanism) of the two-speed transmission 11 through transmission of a gear inside the two-speed transmission 11, to drive the electric vehicle to travel forward. If an air conditioner needs to be turned on, the two-way clutch connected to the other output shaft of the dual output shaft motor is engaged, and the other output shaft of the dual output shaft motor drives the two-way clutch to rotate, to drive the air-conditioner compressor 3 to operate.
[0080] When the vehicle is in a reverse state, the dual output shaft motor reversely rotates. To protect the air-conditioner compressor 3 from reversely rotating and reduce a loss of the air-conditioner compressor 3, the two-way clutch connected to the other output shaft of the dual output shaft motor is disengaged.
[0081] When the vehicle is in a parked state, if the air conditioner needs to be turned on, the two-speed transmission 11 is in a neutral gear state, the two-way clutch connected to the other output shaft of the dual output shaft motor is engaged, and the other output shaft of the dual output shaft motor drives the two-way clutch to rotate, to drive the air-conditioner compressor 3 to operate.
[0082] It should be noted that the transmission further includes a neutral gear mechanism, so that the transmission can be in a neutral gear state. When the transmission system 2 includes one connection mechanism or one transmission mechanism and the transmission is a single-speed transmission, the neutral gear mechanism is a synchro disposed on the input shaft, the neutral gear mechanism is a clutch disposed on the countershaft, or the neutral gear mechanism is a clutch or a synchro disposed on the output shaft or a differential assembly.
[0083] An electric vehicle may have the electric vehicle drive system in any one of the foregoing solutions. When driving the electric vehicle to travel, a powertrain in this electric vehicle can also drive an air-conditioner compressor to work, thereby reducing power consumption of the electric vehicle. In addition, no motor needs to be separately disposed for the air-conditioner compressor, thereby saving space inside the electric vehicle.
[0084] The foregoing descriptions are merely implementations but are not intended to limit the scope of the embodiments. Any variation or replacement readily figured out by a person skilled in the art shall fall within the scope of the embodiments.