IP Library Granted Patent US 12,151,531
Granted Patent B2
US 12,151,531 · App. 17/730,242 · Granted Nov 26, 2024

Electronic control suspension system for a vehicle and a control method thereof

Inventor: Kyung Hyun Min (Seoul, KR)
Assignee: HL MANDO CORPORATION
B60G17/0165B60G2400/0511B60G2400/0512B60G2400/824B60G2401/14B60G2500/104B60G2800/012B60G2800/014
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Quick Facts
Patent No.
US 12,151,531
App. No.
17/730,242
Granted
Nov 26, 2024
Kind
B2
Abstract

An electronic control suspension system for a vehicle is proposed. The electronic control suspension system includes a detection unit detecting information on a road in front of the vehicle, an electronic control suspension which damping force is controlled by current, and a control unit is configured to adjust the damping force of the electronic control suspension according to the information detected by the detection unit.

Claims (36)

1. An electronic control suspension system for a vehicle, comprising:

a road detection unit detecting information on a condition of a road in front of the vehicle and detecting situation information on the road in front of the vehicle, wherein the situation information includes information on a turning state of the road in front of the vehicle;

a vehicle state detection unit detecting information on the vehicle, including an acceleration in a longitudinal, transverse, and vertical directions of a body of the vehicle, an acceleration in a vertical direction of wheels of the vehicle, and a height of a suspension damper;

an electronic control suspension which damping force is controlled by current; and

a control unit is configured to adjust the damping force of the electronic control suspension according to the information on the condition of the road detected by the road detection unit and the information on the vehicle detected by the vehicle state detection unit to control ride comfort of the vehicle, and configured to adjust the damping force of the electronic control suspension according to situation information on the road in front of the vehicle detected by the road detection unit and the information on the vehicle detected by the vehicle state detection unit to control a posture of the vehicle,

wherein the control unit is further configured to compare a current driving direction of the vehicle and the turning state of the road to determine whether an additional adjustment of a steering angle is required based on the comparison, and further configured to determine that the vehicle requires an anti-roll posture control when it is determined that the additional adjustment of the steering angle is required,

wherein the damping force of the electronic control suspension is controlled either in preference to the ride comfort of the vehicle than the posture of the vehicle or in preference to the posture of the vehicle than the ride comfort of the vehicle according to a preference priority setting.

2. The electronic control suspension system of claim 1 , wherein, when it is determined that the vehicle requires the anti-roll posture control, the control unit performs the anti-roll posture control by controlling the damping force of the electronic control suspension so as to prevent the vehicle from being rotated about a longitudinal axis thereof, based on the situation information detected by the road detection unit.

3. The electronic control suspension system of claim 1 , wherein the situation information includes information indicating whether it is necessary to accelerate or decelerate the vehicle on the road in front of the vehicle.

4. The electronic control suspension system of claim 3 , wherein the control unit controls the damping force of the electronic control suspension so as to prevent the vehicle from being rotated about a transverse axis thereof, based on the situation information detected by the road detection unit.

5. The electronic control suspension system of claim 1 , wherein the road detection unit is any one of a camera, a radar, and a lidar.

6. A method of controlling an electronic control suspension system for a vehicle, comprising:

detecting, by a road detection unit, information on a condition of a road in front of the vehicle and situation information on the road in front of the vehicle, wherein the situation information includes information on a turning state of the road in front of the vehicle;

detecting information on the vehicle by a vehicle state detection unit, including an acceleration in a longitudinal, transverse, and vertical directions of a body of the vehicle, an acceleration in a vertical direction of wheels of the vehicle, and a height of a suspension damper;

controlling a damping force of the electronic control suspension based on the information on the condition of the road and the information on the vehicle, thus controlling ride comfort of the vehicle; and

controlling the damping force of the electronic control suspension based on the situation information on the road and the information on the vehicle, thus controlling a posture of the vehicle,

comparing a current driving direction of the vehicle and the turning state of the road to determine whether an additional adjustment of a steering angle is required based on the comparison, and determining that the vehicle requires an anti-roll posture control when it is determined that the additional adjustment of the steering angle is required,

wherein the damping force of the electronic control suspension is controlled either in preference to the ride comfort of the vehicle than the posture of the vehicle or in preference to the posture of the vehicle than the ride comfort of the vehicle according to a preference priority setting.

7. The method of claim 6 , wherein the controlling of the ride comfort of the vehicle comprises:

determining whether there is a defect on the road in front of the vehicle according to the information on the condition of the road;

calculating a target damping force of the electronic control suspension depending on a defect degree of the road condition, when it is determined that there is the defect on the road in front of the vehicle; and

controlling current supplied to the electronic control suspension so that the electronic control suspension has the calculated target damping force.

8. The method of claim 6 , wherein the controlling of the posture of the vehicle comprises:

determining whether an anti-pitch posture control is required so as to prevent the vehicle from being rotated about a transverse axis of the vehicle, when the detected situation information on the road in front of the vehicle is information indicating whether it is necessary to accelerate or decelerate the vehicle on the road in front of the vehicle.

9. The method of claim 6 , wherein the controlling of the posture of the vehicle comprises:

when it is determined that the anti-roll posture control is required, calculating a target damping force of the electronic control suspension depending on a turning-state degree of the road in front of the vehicle; and

controlling current supplied to the electronic control suspension so that the electronic control suspension has the calculated target damping force.

10. The method of claim 8 , wherein the controlling of the posture of the vehicle comprises:

when it is determined that the anti-pitch posture control is required, calculating a target damping force of the electronic control suspension depending on a required acceleration or deceleration degree on the road in front of the vehicle; and

controlling current supplied to the electronic control suspension so that the electronic control suspension has the calculated target damping force.

11. The method of claim 6 , wherein the controlling of the ride comfort of the vehicle is performed prior to the controlling of the posture of the vehicle.

12. The method of claim 6 , wherein the controlling of the posture of the vehicle is performed prior to the controlling of the ride comfort of the vehicle.

13. The method of claim 6 , wherein the preference priority setting is selected by a user.

14. The electronic control suspension system of claim 1 , wherein the preference priority setting is selected by a user.

15. The electronic control suspension system of claim 1 , wherein the situation information on the road in front of the vehicle includes a width of the road in front of the vehicle, and the control unit is configured to adjust the damping force of the electronic control suspension according to the situation in formation including the width of the road in front of the vehicle.

16. The method of claim 6 , wherein the situation information on the road in front of the vehicle includes a width of the road in front of the vehicle, and the damping force of the electronic control suspension is controlled according to the situation in formation including the width of the road in front of the vehicle.

Assignments (2)
CHANGE OF NAME Recorded Dec 21, 2022
From: MANDO CORPORATION
To: HL MANDO CORPORATION
Reel/Frame 062202/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2022
From: MIN, KYUNG HYUN
To: MANDO CORPORATION
Reel/Frame 059748/0001 →
Priority Claims (1)
KR 10-2021-0060830 · May 11, 2021 · national
Continuity (1)
Related Publication 20220363102A1 · Nov 17, 2022