IP Library › Granted Patent US 12,579,817
Granted Patent B2
US 12,579,817 · App. 18/337,243 · Granted Mar 17, 2026

Vehicle control device and control method thereof for camera view control based on surrounding environment information

Inventor: Dong Cheol Jo (Cheonan-si, KR)
Assignees: Hyundai Motor Company; Kia Corporation
G06V20/56B60W30/18145B60W40/105B60W2420/403B60W2420/408
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Quick Facts
Patent No.
US 12,579,817
App. No.
18/337,243
Granted
Mar 17, 2026
Kind
B2
Abstract

An embodiment vehicle control device includes a LiDAR sensor mounted in a vehicle and configured to sense an environment surrounding the vehicle, an audio video navigation (AVN) unit mounted in the vehicle and configured to generate an event signal when a predetermined event area is sensed during driving of the vehicle, and a processor configured to acquire information on the environment surrounding the vehicle based on LiDAR data obtained by the LiDAR sensor and the event signal and to control a view angle of a camera mounted in the vehicle in response to the information on the environment.

Claims (41)

1 . A vehicle control device, comprising:

a LiDAR sensor mounted in a vehicle and configured to sense an environment surrounding the vehicle;

an audio video navigation (AVN) device mounted in the vehicle and configured to generate an event signal in response to an event area being sensed during driving of the vehicle; and

a processor configured to acquire information on the environment surrounding the vehicle based on LiDAR data obtained by the LiDAR sensor and the event signal and to control a view angle of a camera mounted in the vehicle in response to the information on the environment, wherein the processor is further configured to adjust the event area based on whether a speed of the vehicle is equal to or greater than a predetermined cornering speed.

2 . The device of claim 1 , wherein the camera is configured to provide blind spot image data to the AVN device, the blind spot image data photographed while rotating under the control of the processor.

3 . The device of claim 2 , further comprising an internal display device configured to display the blind spot image data provided from the camera.

4 . The device of claim 1 , wherein the AVN device comprises a display device configured to display blind spot image data provided from the camera.

5 . The device of claim 1 , wherein the processor comprises:

a first controller comprising at least one algorithm to obtain the information on the environment surrounding the vehicle based on the LiDAR data and the event signal; and

a second controller electrically connected to the camera, and configured to receive a first rotation angle control signal or a second rotation angle control signal from the first controller, and to adjust the view angle of the camera based on the first rotation angle control signal or the second rotation angle control signal.

6 . The device of claim 5 , wherein the first controller is configured to calculate initial information of the vehicle using the at least one algorithm, and to acquire the information on the environment surrounding the vehicle by collecting vehicle speed information of the vehicle from the initial information of the vehicle.

7 . The device of claim 5 , wherein the processor is configured to acquire a data set by using the LiDAR data, and generate an event flag by using the data set.

8 . The device of claim 5 , wherein the event area includes a first area which is an entry area of the event area and a second area which is an exit area of the event area.

9 . The device of claim 8 , wherein the first controller is configured to adjust the event area based on a result from analyzing a location condition of the vehicle located in the event area and the speed of the vehicle.

10 . A vehicle control device, comprising:

a LiDAR sensor mounted in a vehicle and configured to sense an environment surrounding the vehicle;

an audio video navigation (AVN) device mounted in the vehicle and configured to generate an event signal in response to an event area being sensed during driving of the vehicle; and

a processor configured to acquire information on the environment surrounding the vehicle based on LiDAR data obtained by the LiDAR sensor and the event signal and to control a view angle of a camera mounted in the vehicle in response to the information on the environment, wherein the processor is further configured to adjust the event area based on a result from analyzing a location condition of the vehicle located in the event area and a speed of the vehicle, to maintain the event area when the speed of the vehicle is within a predetermined cornering speed and the location condition is satisfied, and to adjust the event area when the speed of the vehicle is equal to or greater than the predetermined cornering speed and the location condition is satisfied.

11 . A control method for a vehicle control device, the control method comprising:

sensing an environment surrounding a vehicle using a LiDAR sensor mounted in the vehicle;

generating an event signal in response to an event area being sensed while the vehicle is driven;

adjusting the event area based on whether a speed of the vehicle is equal to or greater than a predetermined cornering speed;

acquiring information on the environment surrounding the vehicle based on LiDAR data sensed by the LiDAR sensor and the event signal under control of a processor mounted in the vehicle; and

controlling a view angle of a camera mounted in the vehicle in response to the information on the environment.

12 . The control method of claim 11 , wherein acquiring the information on the environment surrounding the vehicle comprises:

capturing blind spot (BS) image data by the camera being rotated under control of the processor; and

outputting the captured BS image data.

13 . The control method of claim 12 , wherein acquiring the information on the environment surrounding the vehicle further comprises displaying the BS image data.

14 . The control method of claim 11 , wherein acquiring the information on the environment surrounding the vehicle comprises acquiring the information on the environment surrounding the vehicle based on the LiDAR data and the event signal.

15 . The control method of claim 14 , wherein the processor comprises a first controller and a second controller, and wherein controlling the view angle of the camera comprises:

receiving a first rotation angle control signal or a second rotation angle control signal from the first controller under the control of the second controller; and

adjusting the view angle of the camera based on the first rotation angle control signal or the second rotation angle control signal.

16 . The control method of claim 14 , wherein acquiring the information on the environment surrounding the vehicle comprises:

calculating initial information of the vehicle; and

acquiring the information on the environment by collecting vehicle speed information of the vehicle in the initial information of the vehicle.

17 . The control method of claim 14 , wherein generating the event signal comprises acquiring a data set by using the LiDAR data under the control of the processor and generating an event flag by using the data set.

18 . The control method of claim 14 , wherein the event area comprises a first area that is an entry area of the event area and a second area that is an exit area of the event area.

19 . The control method of claim 18 , wherein acquiring the information on the environment surrounding the vehicle comprises adjusting the event area based on a result from analyzing a location condition of the vehicle located in the event area and the speed of the vehicle.

20 . The control method of claim 19 , wherein adjusting the event area comprises:

maintaining the event area in response to the speed of the vehicle being within a predetermined cornering speed and the location condition being satisfied; and

adjusting the event area in response to the speed of the vehicle being equal to or greater than the predetermined cornering speed and the location condition being satisfied.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2023
From: JO, DONG CHEOL
To: HYUNDAI MOTOR COMPANY; KIA CORPORATION
Reel/Frame 063986/0270 →
Priority Claims (1)
KR 10-2022-0107538 · Aug 26, 2022 · national
Continuity (1)
Related Publication 20240071091A1 · Feb 29, 2024
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