Constant engine torque strategy for an improved catalyst heating phase
US-2024262341-A1 · Aug 8, 2024 · US
US11260862B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11260862-B2 |
| Application number | US-202017032503-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 25, 2020 |
| Priority date | Apr 3, 2020 |
| Publication date | Mar 1, 2022 |
| Grant date | Mar 1, 2022 |
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A method for controlling an engine clutch of an electrified vehicle is provided to easily engage and disengage an engine clutch by applying a launch engagement control method that utilizes power from both of an engine and a motor in accordance with the variation of the number of revolutions per hour of the engine and the usage rate of electrical energy by a motor to engage the engine clutch in a terrain mode and by applying a control method that disengages an engine clutch early in accordance with the number of revolutions per hour of the engine and the shaft torque of the engine clutch in the terrain mode.
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What is claimed is: 1. A method of controlling an engine clutch of a vehicle, the method comprising: checking, by a controller, whether a driving mode of the vehicle has been selected as a terrain mode; checking, by the controller, whether a variation of a number of revolutions per hour of an engine is greater than a first reference value and whether a usage rate of electrical energy per hour of a motor is greater than a second reference value, upon determining that the terrain mode has been selected; adjusting, by the controller, an engagement condition of the engine clutch for launch acceleration, upon determining that the variation of the number of revolutions per hour of the engine is greater than the first reference value and the usage rate of electrical energy per hour of the motor is greater than the second reference value; and engaging, by the controller, the engine clutch through a launch engagement control method when the engagement condition of the engine clutch for launch acceleration is adjusted. 2. The method of claim 1 , wherein the adjusting of an engagement condition of the engine clutch for launch acceleration includes: a control process of increasing a third reference value of an engine RPM, which is configured to be synchronized with a motor speed, to a predetermined level; a control process of adjusting a fourth reference value for a driving load and an acceleration variation of the vehicle to a predetermined level; and a battery state of charge (SOC) reference value correction control process of decreasing a fifth reference value for a battery SOC to a predetermined level. 3. The method of claim 2 , wherein the control process of increasing the third reference value of an engine RPM, which is configured to be synchronized with a motor speed, to a predetermined level is performed to satisfy a condition for applying the launch engagement control method of engaging the engine clutch. 4. The method of claim 2 , wherein the control process of adjusting the fourth reference value for a driving load and an acceleration variation of the vehicle to a predetermined level is performed to satisfy a condition for applying the launch engagement control method of engaging the engine clutch. 5. The method of claim 2 , wherein the battery SOC reference value correction control process of decreasing the fifth reference value for a battery SOC to a predetermined level is performed to engage the engine clutch through the launch engagement control method. 6. The method of claim 2 , wherein when the third reference value of an engine RPM, which is configured to be synchronized with a motor speed, is configured to be increased to a predetermined level, the fourth reference value for a driving load and an acceleration variation of the vehicle is adjusted to a predetermined level, and the fifth reference value for a battery SOC is decreased to a predetermined level, the engine clutch is engaged by the launch engagement control method. 7. The method of claim 1 , wherein the launch engagement control method includes: a step in which the engine clutch is engaged through slip control of the engine clutch and engine torque is transmitted to the motor; and a step in which motor power is assisted by electrical energy stored and transmitted to the motor after a battery is charged by a charging operation of a hybrid starter generator according to an operation of the engine, or electrical energy produced by a charging operation of the hybrid starter generator is directly transmitted to the motor through an inverter and motor power is assisted. 8. The method of claim 1 , further including: checking, by the controller, whether the driving mode of the vehicle is maintained as the terrain mode; checking, by the controller, whether a variation of the number of revolutions per hour of the engine has exceeded the first reference value with the engine clutch engaged and whether shaft torque of the engine clutch is greater than a fifth reference value, upon determining that the terrain mode is maintained; and performing, by the controller, control for stopping engine clutch anti-disengagement control or control for forcibly disengaging the engine clutch when the variation of the number of revolutions per hour of the engine is greater than the first reference value and the shaft torque of the engine clutch is greater than the fifth reference value. 9. The method of claim 8 , wherein hydraulic pressure supplied to the engine clutch is stopped and the engine clutch is disengaged early by the control for stopping engine clutch anti-disengagement control or the control for forcibly disengaging the engine clutch. 10. The method of claim 8 , wherein when the control for stopping engine clutch anti-disengagement control or the control for forcibly disengaging the engine clutch is performed, control for increasing an inclination of engine torque and an inclination of hydraulic pressure for disengaging the engine clutch is performed by the controller to disengage the engine clutch. 11. A vehicle comprising: an engine and a motor; an engine clutch mounted between the engine and the motor and selectively transmitting engine power therebetween; and a controller including a processor and a non-transitory storage medium containing program instructions that, when executed by the processor, perform: checking whether a driving mode of the vehicle has been selected as a terrain mode; checking whether a variation of a number of revolutions per hour of the engine is greater than a first reference value and whether a usage rate of electrical energy per hour of the motor is greater than a second reference value, upon determining that the terrain mode has been selected; adjusting an engagement condition of the engine clutch for launch acceleration, upon determining that the variation of the number of revolutions per hour of the engine is greater than the first reference value and the usage rate of electrical energy per hour of the motor is greater than the second reference value; and engaging the engine clutch through a launch engagement control when the engagement condition of the engine clutch for launch acceleration is adjusted. 12. The vehicle of claim 11 , wherein the adjusting of an engagement condition of the engine clutch for launch acceleration includes: a control process of increasing a third reference value of an engine RPM, which is configured to be synchronized with a motor speed, to a predetermined level; a control process of adjusting a fourth reference value for a driving load and an acceleration variation of the vehicle to a predetermined level; and a battery state of charge (SOC) reference value correction control process of decreasing a fifth reference value for a battery SOC to a predetermined level. 13. The vehicle of claim 12 , wherein the control process of increasing the third reference value of an engine RPM, which is configured to be synchronized with a motor speed, to a predetermined level is performed to satisfy a condition for applying the launch engagement control method of engaging the engine clutch. 14. The vehicle of claim 12 , wherein the control process of adjusting the fourth reference value for a driving load and an acceleration variation of the vehicle to a predetermined level is performed to satisfy a condition for applying the launch engagement control method of engaging the engine clutch. 15. The vehicle of claim 12 , wherein the battery SOC reference value correction control process of decreasing the fifth reference value for a battery SOC to a predetermined level is performed to engage the engine clut
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