Nova Patents
EP1205331B1

Driving force control apparatus

Abstract

This record has no abstract on file.

EP1205331B1, drawing sheet 1
Sheet 1 of 39

Term

Term ended

Expired 9 November 2021, 4.9 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

38 claims: 25 independent, 13 dependent

  1. 1
    A driving force control apparatus for a vehicle having front and rear wheels with at least one of the front and rear wheels (1L, 1R, 3L, 3R) being a drive wheel driven by an internal combustion engine (2) that drives a generator (7), said driving force control apparatus comprising:a drive wheel slippage estimating section (steps S10, S20, 27FL, 27FR) configured to estimate if acceleration slippage is occurring in the drive wheel;and a generator control section (8) configured to control a generation load torque of the generator (7) to substantially correspond to an acceleration slippage magnitude of the drive wheel, when said drive wheel slippage estimating section (steps S10, S20) estimates acceleration slippage occurring in the drive wheel, characterized in that    said drive wheel slippage estimating section (steps S10 and S20) estimates if acceleration slippage is occurring from a comparison between a drive torque transferred from the internal combustion engine (2) to the drive wheel and a road surface reaction force limit torque of the drive wheel.
  2. 3
    The driving force control apparatus as recited in any one of claims 1 or 2, wherein    said generator control section (8) includes a generation load torque adjusting section (8A) configured to adjust the generation load torque of the generator (7), a surplus torque computing section (8E, steps S30-S50) configured to compute a surplus torque that substantially corresponds to a difference magnitude by which a drive torque transferred from the internal combustion engine (2) to the drive wheel exceeds a road surface reaction force limit torque of the drive wheel, and a generation load torque control section (8G) operatively coupled to said generation load torque adjusting section (8A) to control the generation load torque of the generator (7) to a torque value based on said surplus torque computed by said surplus torque computing section (8E, steps S30-S50).
  3. 6
    The driving force control apparatus as recited in any one of claims 1 to 5, further comprising    an electric motor (4) operatively driven by electrical power generated by said generator (7), said electric motor (4) being arranged to operatively drive at least one of the front and rear wheels which is a subordinate drive wheel (3L, 3R) that not driven by said internal combustion engine (2) which is a main drive wheel (1L, 1R).
  4. 13
    The driving force control apparatus as recited in any one of claims 10 to 12, further comprising a poor road estimating section (60) configured to estimate if detected road conditions are within a prescribed poor road range, said limit torque reset section (67) determining that the driving force of the subordinate drive wheel (3L, 3R) should be increased upon said poor road estimating section determining that the vehicle is traveling on a road within the prescribed poor road range.
  5. 14
    The driving force control apparatus as recited in any one of claims 10 to 13, further comprising an ascending road estimating section (60) configured to estimate if the vehicle is traveling on an ascending road, said limit torque reset section (67) determining that the driving force of the subordinate drive wheel (3L, 3R) should be increased upon said ascending road estimating section (60) determining that the vehicle is traveling on an ascending road.
  6. 15
    The driving force control apparatus as recited in any one of claims 10 to 14, further comprising a running resistance detecting section (60) configured to detect a running resistance of the vehicle, and said limit torque reset section (67) determining that the driving force of the subordinate drive wheel (3L, 3R) should be increased upon said running resistance detecting section (60) determining that the running resistance is greater than or equal to a prescribed value.
  7. 16
    The driving force control apparatus as recited in any one of claims 10 to 15, wherein    said limit torque reset section (67) resets the maximum limit torque value to a prescribed value only when the current road surface reaction force limit torque is smaller than a previous road surface reaction force limit torque.
  8. 17
    The driving force control apparatus as recited in any one of claims 10 to 16, wherein said limit torque reset section (67) resets the maximum limit torque value to the predetermined maximum limit torque when the vehicle is stopped.
  9. 18
    The driving force control apparatus as recited in any one of claims 10 to 17, wherein the predetermined maximum limit torque is the current road surface reaction force limit torque calculated by said limit torque calculating section.
  10. 22
    The driving force control apparatus as recited in any one of claims 19 to 21, further comprising a wheel grip limit estimating section (60, step S155) configured to compute a wheel grip limit estimation value for said main drive wheel (1L, 1R), and said acceleration slippage apprehension estimating section (60) estimating if there is an apprehension of acceleration slippage occurring based on an estimation made by said wheel grip limit estimating section (60, step S155).
  11. 23
    The driving force control apparatus as recited in any one of claims 19 to 22, further comprising a poor road estimating section (60, step S 150) configured to estimate if road conditions is within a prescribed poor road range, said acceleration slippage apprehension estimating section (60) estimating there is an apprehension of acceleration slippage occurring based on an estimation made by said poor road estimating section (60, step S150)
  12. 24
    The driving force control apparatus as recited in any one of claims 19 to 23, further comprising an ascending road estimating section (60, step S160) configured to estimate if the vehicle is traveling on an ascending road, said acceleration slippage apprehension estimating section (60) determining there is an apprehension of acceleration slippage occurring based on an estimation made by said ascending road estimating section (60, step S160).
  13. 25
    The driving force control apparatus as recited in any one of claims 19 to 24, further comprising a running resistance detecting section (60, step S165) configured to detect a running resistance of the vehicle, and said acceleration slippage apprehension estimating section (60) determining if there is an apprehension of acceleration slippage occurring based on the detection made by said running resistance detecting section (60, step S165).
  14. 26
    The driving force control apparatus as recited in any one of claims 6 to 25, further comprising:a requested torque detecting section (17a) configured to detect a requested driving torque inputted to said internal combustion engine (2);a low speed condition determining section (8E, step S100) configured to determine if a traveling speed of the vehicle is less than or equal to a prescribed speed;and a first low speed control section configured to control the torque of the generator (7) to match a generation load torque determined in accordance with the requested driving torque detected by said requested torque detecting section when said low speed condition determining section (8E, step S100) determines that the vehicle is in a low speed condition, said first low speed control section being configured to start when said low speed condition determining section (8E, step S100) determines that the vehicle is in a low speed condition, and starts said generator control section (8) when said low speed condition determining section (8E, step S100) determines that the vehicle is not in a low speed condition.
  15. 27
    The driving force control apparatus as recited in any one of claims 6 to 25, further comprising:a requested torque detecting section (17a) configured to detect a requested driving torque inputted to said internal combustion engine (2);and a low speed condition determining section (step S100) configured to determine if a traveling speed of the vehicle is less than or equal to a prescribed speed, said generator control section (8) calculates a first generation load torque accordance with the acceleration slippage magnitude of said main drive wheel (1L, 1R) when acceleration slippage of said main drive wheel (1L, 1R) is estimated to be occurring and when said low speed condition determining section (8E, step S100) determines that the vehicle is in a low speed condition, and calculates a second generation load torque in accordance with the requested driving torque detected by said requested torque detecting section, and controls the torque of said generator (7) to substantially correspond to the larger of the first and second generation load torques.
  16. 28
    The driving force control apparatus as recited in any one of claims 19, 26 and 27, wherein    said requested torque detecting section (17a) determines said requested driving torque based on an operation amount of an accelerator.
  17. 29
    The driving force control apparatus as recited in any one of claims 6, 19 to 25, further comprising:a weight distribution determining section (69) configured to determine a front and rear weight distribution of the vehicle;a low speed condition determining section (8E, step S100) configured to determine if a traveling speed of the vehicle is less than or equal to a prescribed speed;and a second low speed control section configured to control the torque of the generator (7) to match a generation load torque determined in accordance with the front and rear weight distribution determined by said determining section when said low speed condition determining section (step S100) determines that the vehicle is in a low speed condition, said second low speed control section starts when said low speed condition determining section (8E, step S100) determines that the vehicle is in a low speed condition, and starts said generator control section (8) when the vehicle is not in the low speed condition.
  18. 30
    The driving force control apparatus as recited in any one of claims 6, 19 to 25, further comprising:a weight distribution determining section (69) configured to determine the front and rear weight distribution of the vehicle;and a low speed condition determining section (8E, step S100) configured to determine if a traveling speed of the vehicle is less than or equal to a prescribed speed, said generator control section (8) calculates a first generation load torque in accordance with the acceleration slippage magnitude of said main drive wheel (1L, 1R) when acceleration slippage of said main drive wheel (1L, 1R) is estimated to be occurring acceleration slippage and when said low speed condition determining section (step S100) determines that the vehicle is in a low speed condition, calculates a second generation load torque in accordance with the front and rear weight distribution determined by said weight distribution determining section, and controls the torque of the generator (7) to match the larger of the first and second generation load torques.
  19. 31
    The driving force control apparatus as recited in any one of claims 6, 19 to 30, further comprising:a subordinate drive wheel slippage estimating section (steps S1000-S1030) configured to estimate acceleration slippage occurring in the subordinate drive wheel (3L, 3R);and an electric motor torque limiting section (8H, steps S1040-S1080, S1200, S1210) configured to starts when said subordinate drive wheel slippage estimating section (steps S1000 to S1030) determines that acceleration slippage is occurring in the subordinate drive wheel (3L, 3R), said electric motor torque limiting section (8H) limiting the torque of the generator (7) by adjusting a field current of said electric motor (4) such that torque transferred to the subordinate drive wheel (3L, 3R) from said electric motor (4) does not exceed the road surface reaction force limit torque of the subordinate drive wheel (3L, 3R).
  20. 32
    The driving force control apparatus as recited in any one of claims 6, 19 to 31, further comprising:a battery (30);a subordinate drive wheel slippage estimating section (step S1300) configured to estimate acceleration slippage occurring in the subordinate drive wheel (3L, 3R);and an electrical power distributing section (31) configured to distribute to said battery (30) a portion of the electrical power supplied to said electric motor (4) from said generator (7) when said subordinate drive wheel slippage estimating section determines that acceleration slippage is occurring in the subordinate drive wheel (3L, 3R).
  21. 33
    The driving force control apparatus as recited in any one of claims 6, 19 to 32, further comprising:a slippage condition estimating section (step S1500) configured to estimate a slippage condition of the subordinate drive wheel (3L, 3R);and an internal combustion engine output control section (8M) configured to lower an output torque of said internal combustion engine (2) in accordance with an acceleration slippage magnitude of the slippage condition detected by said slippage condition detecting section torque regardless of an acceleration operation on said internal combustion engine (2).
  22. 34
    The driving force control apparatus as recited in any one of claims 6, 19 to 33, further comprising:a slippage condition detecting section (step S1500) configured to detect a slippage condition of the subordinate drive wheel (3L, 3R);a clutch section (12) configured to transfer torque to the subordinate drive wheel (3L, 3R) from said electric motor (4);and a transfer torque section (8L) configured to adjust a torque transferred to the subordinate drive wheel (3L, 3R) by said clutch section (12) in accordance with an acceleration slippage magnitude of the slippage condition detected by said slippage condition detecting section (step S1500)
  23. 35
    The driving force control apparatus as recited in any one of claims 3 to 34, further comprising:an internal combustion engine output limiting section (steps S310-S330) configured to start when said surplus torque computed by said surplus torque computing section (8E, steps S30-S50) exceeds a load capacity of the generator (7), and said internal combustion engine output limiting section (steps S310-S330) lowering an engine output torque of the internal combustion engine (2) based on a magnitude of a value obtained by subtracting a torque determined based on the load capacity of the generator (7) from said surplus torque regardless of an acceleration operation on said internal combustion engine (2).
  24. 36
    The driving force control apparatus as recited in any one of claims 3 to 35, further comprising:a battery (49) configured to supply electrical power to an electric motor (4);a supply power adjusting section (65) that adjusts the magnitude of electrical power supplied from said battery (49) to said electric motor (4);an acceleration request detecting section (step S340) configured to detect an acceleration request operation;an acceleration condition detecting section (step S350) configured to detect the acceleration condition of the vehicle;and a battery power increasing section (step S520) that starts upon determining that said internal combustion engine output limiting section (step S310-S330) has started, said battery power increasing section (65) increasing, via said supply power adjusting section (65), the magnitude of electrical power supplied to said electric motor (4) from said battery (49) by a magnitude in accordance with the magnitude by which said internal combustion engine output limiting section reduced said output torque, upon determining that the rotational speed of the subordinate drive wheel (3L, 3R) is being controlled proportionally to an acceleration request based on the detection values of said acceleration request detecting section (step S340) and said acceleration condition detecting section (step S350).
  25. 38
    The driving force control apparatus as recited in claims 36 or 37, wherein    said acceleration condition detecting section (step S350) detects the acceleration condition of the vehicle based on at least one of the wheel speed of the subordinate drive wheel (3L, 3R), the wheel acceleration of the subordinate drive wheel (3L, 3R), and the longitudinal acceleration of the vehicle.
Independent claims25