EP1762452A2

Engine starting control device and method

Abstract

An engine of a hybrid vehicle is lift started by reducing a rotational speed of a motor/generator of the hybrid vehicle by adjusting a gearshift ratio of a transmission coupled to the motor/generator, and engaging a clutch to couple the engine, while in a stopped state, to the rotating motor/generator for imparting the rotation to the engine.

EP1762452A2, drawing sheet 1
Sheet 1 of 31

Term

Term ended

Projected expiry passed 6 September 2026, 0 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

17 claims: 16 independent, 1 dependent

  1. 1
    A drive device for a hybrid vehicle, comprising:an engine and a motor/generator;a first clutch disposed between the engine and the motor/generator and operable to change a transfer torque capacity therebetween;a second clutch disposed between the motor/generator and a drive wheel and operable to change a transfer torque capacity therebetween;anda control device operable to control the engine, the motor/generator, the first clutch and the second clutch;wherein the control device: is arranged to select an electric operation mode by releasing the first clutch while engaging the second clutch and a hybrid operation mode by engaging both the first clutch and the second clutch;comprises a first clutch engagement control means for starting the engine by engagement progression of the first clutch when changing modes during operation from the electric operation mode to the hybrid operation mode;comprises a second clutch engagement control means that causes a slip engagement of the second clutch when starting the engine;andcomprises a motor/generator control means for controlling the motor/generator so that the motor/generator operates so as to maintain the slip engagement.
  2. 2
    A device is claimed in claim 1, wherein the second clutch engagement control means is arranged to cause a slip engagement of the second clutch so as to reach a transfer torque capacity equivalent to the target drive force corresponding to the vehicle drive state.
  3. 4
    A device as claimed in any preceding claim comprising an automatic transmission disposed between the motor/generator and the drive wheel, whereby one of the clutches in the automatic transmission that governs the torque transfer is used as the second clutch.
  4. 5
    A device as claimed in any preceding claim, wherein the motor/generator control means is arranged to control the motor/generator torque so as to be close to the sum of the slip torque portion of the first clutch required at the start of the engine and the slip torque portion of the second clutch that is the vehicle drive force when starting the engine by the engagement progression of the first clutch while slip-engaging the second clutch.
  5. 6
    A device as claimed in any preceding claim, wherein the motor/generator control means is arranged to raise the torque of the motor/generator to accompany the rise in the slip torque due to the engagement progression of the first clutch.
  6. 7
    A device as claimed in any preceding claim, wherein the motor/generator control means is arranged to use slip servo control of the motor/generator so that the second clutch achieves a prescribed slipped state when starting the engine by the engagement progression of the first clutch while slip-engaging the second clutch.
  7. 8
    A device as claimed in any preceding claim, wherein the motor/generator control means comprises a disturbance observer that regards other torque that acts on the motor/generator, besides the motor/generator torque, as disturbance, estimates such disturbance, and adds a disturbance estimation value to the motor/generator torque to perform disturbance compensation.
  8. 9
    A device as claimed in any preceding claim, wherein the second clutch engagement control means and the motor/generator control means are arranged to begin the slip of the second clutch after reducing the transfer torque capacity of the second clutch to approximately the target second clutch transfer torque within the transfer torque range of the second clutch in which EV mode can be realized when starting the engine.
  9. 10
    A device as claimed in any preceding claim, wherein the second clutch engagement control means is arranged to increase the transfer torque capacity of the second clutch according to the increase of the engine load demand and to reduce it according to the reduction of the engine load demand when engaging the slip of the second clutch.
  10. 11
    A device as claimed in any preceding claim, wherein the first clutch engagement control means is arranegd to set the transfer torque capacity of the first clutch to be greater than the friction of the engine at the time of starting the engine.
  11. 12
    A device as claimed in any preceding claim, wherein the second clutch engagement control means is arranged to set the target second clutch transfer torque to a value within a range of values obtained by subtracting the friction portion of the engine from the maximum torque of the motor/generator during the time until the engine is started.
  12. 13
    A device as claimed in any preceding claim, wherein the first clutch engagement control means is arranged to set the target first clutch transfer torque to a value within a range of values obtained by subtracting the target second clutch transfer torque from the maximum torque of the motor/generator during the time until the engine is started.
  13. 14
    A device as claimed in any preceding claim, wherein the motor/generator control means is arranged to:a) reduce the motor/generator torque when the engine rotation speed overshoots the motor/generator rotation speed so that it accompanies the reversal in the rotational difference between the engine rotation speed and the motor/generator rotation speed;and/orb) increase the motor/generator torque immediately after engagement of the first clutch from a state in which the engine rotation speed is higher than the motor/generator rotation speed, and reduce the motor/generator torque immediately after engagement of the first clutch from a state in which the engine rotation speed is lower than the motor/generator rotation speed.
  14. 15
    A method of switching operation modes of a drive device for a hybrid vehicle, comprising:selecting an electric operation mode by releasing a first clutch disposed between an engine and a motor/generator while engaging a second clutch disposed between the motor/generator and a drive wheel, or a hybrid operation mode by engaging both the first clutch and the second clutch;starting the engine by engagement progression of the first clutch when changing modes during operation from the electric operation mode to the hybrid operation mode;causing a slip engagement of the second clutch to prevent the transfer torque fluctuation of the first clutch that accompanies the starting of the engine from being transferred to the drive wheel;andcontrolling the motor/generator so that the motor/generator operates so as to maintain the slip engagement.
  15. 16
    A method as claimed in any preceding claim wherein causing the slip engagement comprises causing the slip engagement of the second clutch so as to reach a transfer torque capacity equivalent to the target drive force corresponding to the vehicle drive state.
  16. 17
    A vehicle having a device or adapted to use a method as claimed in any preceding claim.