This Patent Applications claims priority from Italian Patent Application No. 102021000013679 filed on May 26, 2021, the entire disclosure of which is incorporated herein by reference.
The invention relates to a vehicle provided with two electric motors.
A vehicle can be provided with one single electric motor or with several electric motors (in which case, the drive is a full electric drive) or it can be provided with one or more electric motors combined with a combustion engine (in which case, the drive can be a full electric drive, a combustion drive or a hybrid drive).
The electric motor (or each electric motor) is mechanically connected to the drive wheels and is electrically connected to a power storage system through the interposition of an electronic power converter (namely, an “inverter”), which turns DC power (on the side connected to the storage system) into AC power (on the side connected to the electric motor) and vice versa.
When the nominal power of the electric motor is relatively high, the electronic power converter needs to be provided with a liquid cooling system in order to prevent the electronic power components (namely, the electronic components through which electric current affecting the stator windings of the electric motor flows) from excessively heating.
Patent applications US2003067748A1 and WO2018235049A1 describe respective examples of an electronic power converter (namely, an inverter) cooled by a liquid and designed for an electric motor of a vehicle.
The object of the invention is to provide a vehicle provided with two electric motors, which is also provided with a liquid cooling system, which is, at the same time, effective (namely, ensures that the work temperature of the electronic power components never is too high), efficient (namely, uses a small cooling liquid flow rate) and compact.
According to the invention, there is provided a vehicle provided with two electric motors according to the appended claims.
The appended claims describe preferred embodiments of the invention and form an integral part of the description.
The invention will now be described with reference to the accompanying drawings showing a non-limiting embodiment thereof, wherein:
In
The vehicle 1 comprises an electric powertrain system 3, which is arranged in a front position (namely, is connected to the two front drive wheels 2), and an electric powertrain system 3, which is arranged in a rear position (namely, is connected to the two rear drive wheels 2), is structurally identical to the electric powertrain system 3 arranged in a front position and is mechanically independent of and separate from the electric powertrain system 3 arranged in a front position.
According to a different embodiment which is not shown herein, the vehicle 1 comprises one single electric powertrain system 3 (arranged in a front position or arranged in a rear position) and, therefore, it only has two drive wheels 2; in this embodiment, the vehicle 1 could also comprise a combustion powertrain system connected to the drive wheels 2 that do not receive the motion from the electric powertrain system 3 and the combustion powertrain system could be provided with a further electric motor 4 connected to the drive shaft of an internal combustion engine.
Each electric powertrain system 3 comprises a pair of reversible electric motors 4 (i.e. which can work both as eclectic motor, absorbing electrical energy and generating a mechanical torque, and as electric generator, absorbing mechanical energy and generating electrical energy) provided with respective shafts and a pair of drivetrains 5, which connect the electric motors 4 (namely, the shafts of the electric motors 4) to the corresponding drive wheels 2 without the interposition of a clutch.
According to
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Each electronic power converter 6 comprises two gate control devices (not shown), which are arranged above the corresponding groups 10 of power modules 11 and, hence, are arranged at the two ends of the container 9. Each gate control device is connected to the gates of the transistors of the power modules 10 of the corresponding group 11. The gate control devices also include current sensors, which measure the intensity of the alternating current flowing through the power modules 10.
Each electronic power converter 6 comprises a control unit (not shown), which controls the operation of the entire electronic power converter 6 and is directly connected to the two gate control devices. Namely, there is an electric (physical) connection between the control unit and the two gate control devices and there is a further electric (physical) connection between the two gate control devices and the power modules 10. In each electronic power converter 6, the entire control logic is implemented in the control unit, which is the “brain” of the electronic power converter 6.
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Each electronic power converter 6 comprises a cooling system 14 provided with a chamber 15, which is obtained inside the container 9 and where a cooling liquid is caused to flow. According to
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The containing wall 19 preferably comprises two through openings 21, which reproduce in negative the shape of the capacitors 12 and are closed by the capacitors 12 in a sealed manner (typically, through the interposition of a gasket visible in
In the embodiment shown in the accompanying figures, each electronic power converter 6 has two groups 11 of power modules 10 and, hence, two capacitors 12; according to a different embodiment which is not shown herein, each electronic power converter 6 has only one group 11 of power modules 10 and, hence, one single capacitor 12.
The embodiments described herein can be combined with one another, without for this reason going beyond the scope of protection of the invention.
The vehicle 1 described above has numerous advantages.
First of all, the cooling system 14 of the electronic power converter 6 of the vehicle 1 described above is extremely effective, namely is capable of ensuring that the work temperature of the power modules 10 and of the capacitors 12 never is too high.
Furthermore, the cooling system 14 of the electronic power converter 6 of the vehicle 1 described above is very efficient, for it uses a reduced cooling liquid flow rate.
Finally, the electronic power converter 6 of the vehicle 1 described above is extremely compact and ensures low costs as well as a small manufacturing complexity.
Number | Date | Country | Kind |
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102021000013679 | May 2021 | IT | national |
Number | Name | Date | Kind |
---|---|---|---|
8169780 | Yoshino | May 2012 | B2 |
9345150 | Fukumasu | May 2016 | B2 |
9608528 | Nakazawa | Mar 2017 | B2 |
9722531 | Singh | Aug 2017 | B2 |
9769962 | Huang | Sep 2017 | B2 |
9844168 | Jeon | Dec 2017 | B2 |
10461656 | Okubo | Oct 2019 | B2 |
10512198 | Okazaki | Dec 2019 | B2 |
11026353 | Birdeanu | Jun 2021 | B2 |
11071233 | Robert | Jul 2021 | B1 |
11596088 | Zhou | Feb 2023 | B2 |
11864357 | Zhou | Jan 2024 | B2 |
20030067748 | Tamba et al. | Apr 2003 | A1 |
20190126773 | Chung | May 2019 | A1 |
20220379701 | Lo Calzo | Dec 2022 | A1 |
20220385202 | Shirai | Dec 2022 | A1 |
20240042952 | Fukuchi | Feb 2024 | A1 |
Number | Date | Country |
---|---|---|
3819158 | May 2021 | EP |
2017092192 | Jun 2017 | WO |
2018235049 | Dec 2018 | WO |
Entry |
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Extended European Search Report for Application No. 22174663.9 dated Oct. 27, 2022. |
Italian Search Report for Application No. 102021000013679, completed Feb. 11, 2022, 9 pages. |
Number | Date | Country | |
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20220379701 A1 | Dec 2022 | US |