EP1538019B1

Automotive lane deviation prevention apparatus

Abstract

This record has no abstract on file.

EP1538019B1, drawing sheet 1
Sheet 1 of 46

Term

Term ended

Expired 3 December 2024, 1.8 years ago.

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

20 claims: 12 independent, 8 dependent

  1. 1
    An automotive lane deviation prevention (LDP) apparatus comprising:a road-surface irregularities detector (22FL-22RR, S4) that detects whether a host vehicle is in a state where the host vehicle is travelling on road-surface irregularities formed on or close to a lane marking line and arranged along the lane marking line;a picture image pick-up device (13) for lane-marker recognition;an actuator (7) capable of decelerating the host vehicle;and a control unit (8) configured to be electronically connected to the road-surface irregularities detector (22FL-22RR, S4), the picture image pick-up device (13), and the actuator (7) for LDP control purposes;the control unit (8) comprising: a vehicle deceleration control section (S12;S24;S33) that executes, in a lane-marker unrecognizable state where the lane marking line cannot be detected, vehicle deceleration control to actively decelerate the host vehicle when the host vehicle is in the state where the host vehicle is travelling on the road-surface irregularities.
  2. 4
    The LDP apparatus as claimed in claims 2 or 3, wherein:the road-surface irregularities detector (22FL-22RR, S4) determines that the host vehicle is in the state where the host vehicle is travelling on the road-surface irregularities, when the wheel speed is fluctuating at a substantially constant time period determined based on a host vehicle speed (V).
  3. 5
    The LDP apparatus as claimed in either one of claims 2 through 4, further comprising:a host vehicle's position information detector (13, 14) that detects position information regarding a position of the host vehicle on a map, wherein the road-surface irregularities detector (22FL-22RR, S4) determines, based on the host vehicle's position information and the wheel speeds, that the host vehicle is in the state where the host vehicle is travelling on the road-surface irregularities, when the wheel speed of the host vehicle, travelling on a driving lane, is fluctuating.
  4. 7
    The LDP apparatus as claimed in either one of claims 1 through 6, further comprising:a picture image pick-up device (13) that picks up a picture image in front of the host vehicle;and a lane marker detector (14) that detects a lane marking line on a driving lane of the host vehicle, based on the picture image picked up by the picture image pick-up device (13), wherein the control unit (8) further comprises: a lane-deviation tendency detection section (S8) that determines, based on a host vehicle's lateral deviation estimated based the lane marking line, whether the host vehicle is in a state where there is an increased tendency for the host vehicle to deviate from the driving lane or in a state where there is a less tendency for the host vehicle to deviate from the driving lane;and an LDP control section (510, 813-S15;S22, S14-S15;S31, S34-S36) that executes yaw moment control by which the host vehicle's lane deviation tendency is avoided, when the host vehicle is in the state where there is an increased tendency for the host vehicle to deviate from the driving lane.
  5. 9
    The LDP apparatus as claimed in claims 7 or 8, further comprising:a vehicle's driving state and traveling-path condition detector ( 14-16) that detects at least a driving state (φ) of the host vehicle, wherein the control unit (8) comprises a control allotted rate decision section (S11;S32) that determines, based on the driving state (φ), a control allotted rate (Rxg) of vehicle deceleration control to yaw moment control, and the vehicle deceleration control and the yaw moment control are executed based on the control allotted rate (Rxg).
  6. 11
    The LDP apparatus as claimed in either one of claims 7 through 10, wherein:the control unit (8) further comprises: a lane-marker unrecognizable state detection section (S1, S21) that determines whether the host vehicle is in a lane-marker unrecognizable state where the lane marking line cannot be detected by the picture image pick-up device (13) or in a lane-marker recognizable state where the lane marking line can be detected by the picture image pick-up device (13), wherein the vehicle deceleration control section (S24) fixes a vehicle-deceleration-control controlled variable (Xgs) to a preset constant value (XgsL), when the lane-marker unrecognizable state detection section (S1, S21) determines that the host vehicle is in the lane-marker unrecognizable state and additionally the road-surface irregularities detector (22FL-22RR, S4) determines that the host vehicle is in the state where the host vehicle is travelling on the road-surface irregularities.
  7. 12
    The LDP apparatus as claimed in either one of claims 7 through 10, wherein:the control unit (8) further comprises: a lane-marker unrecognizable state detection section (S1, S21) that determines whether the host vehicle is in a lane-marker unrecognizable state where the lane marking line cannot be detected by the picture image pick-up device (13) or in a lane-marker recognizable state where the lane marking line can be detected by the picture image pick-up device (13);and a virtual-deviation-estimate based lane-deviation possibility estimation section that estimates, based on a virtual deviation estimate (XSv) estimated based on historical data (φo, Xo, βo) concerning a vehicle's driving state and a traveling-path condition of the host vehicle, all obtained just before a transition from the lane-marker recognizable state to the lane-marker unrecognizable state, whether the host vehicle is in a state where there is a high possibility for the host vehicle to deviate from the driving lane or in a state where there is a low possibility for the host vehicle to deviate from the driving lane, wherein the vehicle deceleration control section (S24) fixes a vehicle-deceleration-control controlled variable (Xgs) to a preset constant value (XgsL), when the virtual-deviation-estimate based lane-deviation possibility estimation section determines that the host vehicle is in the state where there is a high possibility for the host vehicle to deviate from the driving lane in the lane-marker unrecognizable state and additionally the road-surface irregularities detector (22FL-22RR, S4) determines that the host vehicle is in the state where the host vehicle is travelling on the road-surface irregularities.
  8. 13
    The LDP apparatus as claimed in either one of claims 9 through 12, wherein:the vehicle's driving state and travelling-path condition detector (14-16) that detects a host vehicle speed (V), a yaw angle (φ) with respect to a sense of a driving lane of the host vehicle, a lateral displacement (X) of the host vehicle from a central axis of the driving lane, and a curvature (β) of , the host vehicle's driving lane;the lane-deviation tendency detection section (S8) estimates a future lateral-displacement estimate (XS) based on the host vehicle speed (V), the yaw angle (φ), the lateral displacement (X), and the curvature (β);and the lane-deviation tendency detection section (S8) determines that the host vehicle is in the state where there is an increased tendency for the host vehicle to deviate from the driving lane, when an absolute value (|XS|) of the future lateral-displacement estimate (XS) is greater than or equal to a predetermined lateral-displacement criterion (X C ).
  9. 14
    The LDP apparatus as claimed in either one of claims 7 through 13, further comprising:a braking/driving force control device (7, 12) that controls braking/driving forces of the road wheels, wherein the LDP control section (S10, S13-S15;S22, S14-S15;S31, S34-S36) comprises a braking/driving force controlled variable calculation section (S14-515;S35-S36) that calculates a braking/driving force controlled variable (Pi, TrqDS) of each of the road wheels so that a yaw moment is produced in a direction in which the host vehicle's lane-deviation tendency is avoided, when the lane-deviation tendency detection section (S8) determines that the host vehicle is in the state where there is an increased tendency for the host vehicle to deviate from the driving lane;and the braking/driving force control device (7, 12) controls the braking/driving forces of the road wheels, responsively to the braking/driving force controlled variables calculated.
  10. 16
    The LDP apparatus as claimed in claims 14 or 15, wherein:the braking/driving force controlled variable calculation section (S14-S15;S35-S36) calculates the braking/driving force controlled variables of the respective road wheels, based on a desired yaw moment (Ms) calculated based on a difference (XS-Xc) between the future lateral-displacement estimate (XS) and the predetermined lateral-displacement criterion (Xc).
  11. 17
    The LDP apparatus as claimed in either one of claims 7 through 13, further comprising:a steering control device (28, 31) that controls a steering torque applied to a steering system of the host vehicle independently of a driver's steering action, wherein the LDP control section (S31, S34-S36) comprises a steering torque controlled variable calculation section (S31, S34, S36) that calculates a steering torque controlled variable (Tsstr) of the steering system so that a yaw moment is produced in a direction in which the host vehicle's lane-deviation tendency is avoided, when the lane-deviation tendency detection section (S8) determines that the host vehicle is in the state where there is an increased tendency for the host vehicle to deviate from the driving lane;and the steering control device (28, 31) controls the steering torque applied to the steering system, responsively to the steering torque controlled variable (Tsstr) calculated.
  12. 18
    A, method of preventing lane deviation of a host vehicle employing braking force actuators that adjust braking forces applied to respective road wheels, the method comprising:(a 1 ) detecting whether a host vehicle is in a state where the host vehicle is travelling on road-surface irregularities formed on or close to a lane marking line and arranged along the lane marking line;(a 2 ) detecting the lane marking line by a picture image pick-up device (13) for lane marker recognition;and (b) executing, in a lane-marker unrecognizable state where the lane marking line cannot be detected, vehicle deceleration control actively decelerating the host vehicle when the host vehicle is in the state where the host vehicle is travelling on the road-surface irregularities.