IP Library Granted Patent US 10,773,640
Granted Patent B2
US 10,773,640 · App. 16/328,709 · Granted Sep 15, 2020

Method and apparatus for automatically adjusting luminance of vehicle tail light

Inventor: Gyeongjune Park (Sejong, KR)
B60Q1/30B60Q1/00B60Q9/008B60W40/105B60W2420/40B60W2420/54B60W2420/60B60W2554/801
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Quick Facts
Patent No.
US 10,773,640
App. No.
16/328,709
Granted
Sep 15, 2020
Kind
B2
Abstract

The present invention provides a method and an apparatus for dynamically controlling the luminance of a tail light of a vehicle tail lamp in response to a change in the difference of speed between a vehicle and a vehicle therebehind, and for preventing a collision between the traveling vehicles. In addition, the apparatus comprises: a tail light operating unit, which slowly or rapidly becomes brighter up to a predetermined brightness as the speed difference between the vehicle and the vehicle behind gradually becomes larger, and slowly or rapidly becomes darker down to a predetermined brightness as the speed difference between the vehicle and the vehicle behind gradually becomes smaller; a speed sensing unit for measuring the speed of the vehicle; a rear speed sensing unit for measuring the speed of the vehicle therebehind; and a control unit for automatically adjusting the luminance of the tail light by controlling the tail light operating unit when the vehicle therebehind is traveling faster than the vehicle.

Claims (28)

1. A method of warning a following vehicle using luminance of a tail light on a rear side of a vehicle and a difference of a speed between the vehicle and the following vehicle, the method comprising the steps of:

automatically adjusting a maximum brightness value of the tail light on the rear side of the vehicle, wherein the maximum brightness value is slowly or rapidly increased in response to an increase of the speed of the vehicle and the maximum brightness value is slowly or rapidly decreased in response to a decrease of the speed of the vehicle so as to change the maximum brightness value of the tail light in accordance with the speed of the vehicle,

determining whether the speed of the following vehicle is higher than the speed of the vehicle while automatically adjusting the range of the maximum brightness value of the tail light of the vehicle; and

adjusting luminance of the tail light on the rear side of the vehicle when the speed of the following vehicle is higher than the speed of the vehicle,

wherein the adjusting of the luminance of the tail light comprises the steps of:

determining a change of the difference of the speed between the vehicle and the following vehicle for a predetermined period of time so as to determine whether the difference of the speed between the vehicle and the following vehicle increases or decreases;

increasing the luminance of the tail light when the difference of the speed between the vehicle and the following vehicle increases, wherein the speed of increasing the luminance is controlled in response to an increasing rate of the difference of the speed between the vehicle and the following vehicle, wherein the luminance of the tail light is rapidly increased when the difference of the speed between the vehicle and the following vehicle is rapidly increased and the luminance of the tail light is slowly increased when the difference of the speed between the vehicle and the following vehicle is slowly increased; and

decreasing the luminance of the tail light when the difference of the speed between the vehicle and the following vehicle decreases, wherein the speed of decreasing the luminance is controlled in response to a decreasing rate of the difference of the speed between the vehicle and the following vehicle, wherein the luminance of the tail light is rapidly decreased when the difference of the speed between the vehicle and the following vehicle is rapidly decreased and the luminance of the tail light is slowly decreased when the difference of the speed between the vehicle and the following vehicle is slowly decreased.

2. The method according to claim 1 , further comprising the step of selecting ON/OFF of a tail light luminance automatic adjustment operation of the vehicle through an option switch.

3. The method according to claim 1 , further comprising the step of determining, before determining whether the difference of the speed between the vehicle and the following vehicle, whether an engine of the vehicle is ON.

4. The method according to claim 1 , further comprising the step of determining, before determining whether the difference of the speed between the vehicle and the following vehicle, whether a distance between the vehicle and the following vehicle is within a preset section.

5. The method according to claim 1 , wherein after the tail light luminance automatic adjustment operation begins, the operation state is maintained until the distance between the vehicle and the following vehicle exceeds a preset section or the speed of the vehicle becomes higher than the speed of the following vehicle.

6. An apparatus for warning a following vehicle using luminance of a tail light on a rear side of a vehicle and a difference of a speed between the vehicle and the following vehicle, the apparatus comprising:

a speed sensing unit sensing a speed of the vehicle;

a rear speed sensing unit sensing a speed of the following vehicle;

a luminance range conversion unit automatically adjusting a maximum brightness value of the tail light on the rear side of the vehicle, wherein the maximum brightness value is slowly or rapidly increased in response to an increase of the speed of the vehicle and the maximum brightness value is slowly or rapidly decreased in response to a decrease of the speed of the vehicle so as to change the maximum brightness value of the tail light in accordance with the speed of the vehicle;

a tail light driving unit selecting ON/OFF of a tail light luminance automatic adjustment operation of the vehicle and adjusting the luminance of the tail light in response to the increase or decrease of a speed difference between the vehicle and the following vehicle; and

a control unit controlling the speed sensing unit, the rear speed sensing unit, the luminance range conversion unit, and the tail light driving unit, and creating a control signal to control the tail light driving unit when a speed of the following vehicle is higher than a speed of the vehicle,

wherein the luminance of the tail light is increased when the difference of the speed between the vehicle and the following vehicle increases, wherein the speed of increasing the luminance is controlled in response to an increasing rate of the difference of the speed between the vehicle and the following vehicle, wherein the luminance of the tail light is rapidly increased when the difference of the speed between the vehicle and the following vehicle is rapidly increased and the luminance of the tail light is slowly increased when the difference of the speed between the vehicle and the following vehicle is slowly increased,

wherein the luminance of the tail light is decreased when the difference of the speed between the vehicle and the following vehicle decreases, wherein the speed of decreasing the luminance is controlled in response to a decreasing rate of the difference of the speed between the vehicle and the following vehicle, wherein the luminance of the tail light is rapidly decreased when the difference of the speed between the vehicle and the following vehicle is rapidly decreased and the luminance of the tail light is slowly decreased when the difference of the speed between the vehicle and the following vehicle is slowly decreased.

7. The apparatus according to claim 6 , further comprising a distance sensing unit sensing a distance to the following vehicle, wherein the control unit is configured to measure a distance between the vehicle and the following vehicle through the distance sensing unit, determine whether the distance between the vehicle and the following vehicle is within a preset section, and determine the difference of the speed between the vehicle and the following vehicle through the speed sensing unit and the is rear speed sensing unit when the distance between the vehicle and the following vehicle is within the preset section.

8. The apparatus according to claim 6 , wherein the control unit controls the tail light driving unit to maintain, after the tail light luminance automatic adjustment operation begins, the distance operation state until the distance between the vehicle and the following vehicle exceeds a preset section or and determine the vehicle becomes higher than the speed of the following vehicle.

9. The apparatus according to claim 6 , wherein the rear speed sensing unit uses any one of a vehicle to everything (V2X) technique and a sensor, wherein

when the rear speed sensing unit uses the V2X technique, a speed measured by a communication technique between vehicles or between a vehicle and a thing is used, and when the rear speed sensing unit uses the sensor, any one of an ultrasonic sensor, an infrared sensor and a Doppler sensor is used.

10. The apparatus according to claim 7 , wherein the distance sensing unit uses any one of a vehicle to everything (V2X) technique and a sensor, wherein

when the distance sensing unit uses the V2X technique, a distance measured by a communication technique between vehicles or between a vehicle and a thing is used, and when the distance sensing unit uses the sensor, the sensor is any one of an ultrasonic sensor, an infrared sensor and a Doppler sensor.

11. The apparatus according to claim 6 , wherein the tail light driving unit controls change of a duty ratio in a PWM control method.

12. The apparatus according to claim 6 , further comprising an option switch for selectively blocking power supplied to the tail light driving unit to selectively block an operation of the apparatus for automatically adjusting luminance of the tail light on a rear side of a vehicle.

Priority Claims (2)
KR 10-2016-0111861 · Aug 31, 2016 · national
KR 10-2017-0000987 · Jan 3, 2017 · national
Continuity (1)
Related Publication 20190193626A1 · Jun 27, 2019
Cited By (1)
US 12,307,893