VEHICLE HEADLIGHT WITH A DEVICE FOR DETERMINING ROAD CONDITIONS AND A SYSTEM FOR MONITORING ROAD CONDITIONS
20170072834 · 2017-03-16
Assignee
Inventors
Cpc classification
F21S41/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60W2422/00
PERFORMING OPERATIONS; TRANSPORTING
G08G1/096758
PHYSICS
B60W2420/40
PERFORMING OPERATIONS; TRANSPORTING
F21S41/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G08G1/096716
PHYSICS
G01N21/4738
PHYSICS
B60Q1/0023
PERFORMING OPERATIONS; TRANSPORTING
G08G1/096775
PHYSICS
International classification
B60Q1/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A vehicle headlight comprising: a lighting unit, a reflector and a headlight glass; a device for determining road conditions, said device being provided in the interior of the vehicle headlight behind the headlight glass and comprising: an infrared transmitter configured for emitting light at predetermined wavelengths through the headlight glass onto a road surface; a detection unit configured for detecting the light emitted by the infrared transmitter and reflected by the road surface through the headlight glass; a processing unit configured for determining surface parameters of the road surface on the basis of the light detected by the detection unit.
Claims
1. A vehicle headlight comprising: a lighting unit, a reflector and a headlight glass; a device for determining road conditions, said device being provided in the interior of the vehicle headlight behind the headlight glass and comprising: an infrared transmitter configured for emitting light at predetermined wavelengths through the headlight glass onto a road surface; a detection unit configured for detecting the light emitted by the infrared transmitter and reflected by the road surface through the headlight glass; a processing unit configured for determining surface parameters of the road surface on the basis of the light detected by the detection unit.
2. The vehicle headlight according to claim 1, wherein the device is attached directly to the inner side of the headlight glass.
3. The vehicle headlight according to claim 1, wherein the device is replaceable.
4. The vehicle headlight according to claim 1, wherein the processing unit is configured for determining the surface parameters of the road surface at least 100 times per second, in particular at least 400 times per second.
5. The vehicle headlight according to claim 1, wherein the device additionally comprises a pulse unit configured for pulsing the light emitted by the infrared transmitter such that the resultant pulses have a maximum duration of 500 s, in particular a maximum duration of 100 s, and/or no-pulse periods of maximum 500 s, in particular of maximum 100 s.
6. The vehicle headlight according to claim 1, wherein, in said device, the infrared transmitter is configured for transmitting light with at least two predetermined different wavelengths or from at least two predetermined different wavelength regions.
7. The vehicle headlight according to claim 6, wherein each of the different wavelengths lies in the infrared region, wherein the infrared transmitter is additionally able to emit a reference wavelength for the purpose of calibration, wherein the reference wavelength also lies in the infrared region.
8. The vehicle headlight according to claim 1, wherein the surface parameters comprise one or a plurality of parameters for wetness, ice thickness, snow thickness, water film thickness, the ice-to-water ratio, the freezing temperature of an ice-water mixture, the salt content of an ice-water mixture and the coefficient of friction.
9. The vehicle headlight according to claim 1, wherein the device additionally comprises an interface for an exchange of data with the Internet and/or a mobile computer unit and/or a mobile radio unit.
10. The vehicle headlight according to claim 9, wherein the interface may comprise a Bluetooth interface and/or a CAN interface and/or an RS485 interface and/or an interface typical of motor vehicles.
11. A vehicle, in particular a passenger car or a motor truck, comprising at least one vehicle headlight according to claim 1.
12. The vehicle according to claim 11, further comprising a wireless data connection unit configured for transmitting data to another vehicle, and a control unit configured for transmitting data acquired by means of the device for determining road conditions to said other vehicle via the data connection unit.
13. A system for monitoring road conditions, comprising a vehicle according to claim 11 and an internet server connected to the device for determining road conditions for the purpose of an exchange of data and a computer unit connected via the internet server to said device for the purpose of an exchange of data.
14. The vehicle headlight according to claim 4, wherein the device additionally comprises a pulse unit configured for pulsing the light emitted by the infrared transmitter such that the resultant pulses have a maximum duration of 500 s, in particular a maximum duration of 100 s, and/or no-pulse periods of maximum 500 s, in particular of maximum 100 s.
15. The vehicle headlight according to claim 4, wherein, in said device, the infrared transmitter is configured for transmitting light with at least two predetermined different wavelengths or from at least two predetermined different wavelength regions.
16. The vehicle headlight according to claim 5, wherein, in said device, the infrared transmitter is configured for transmitting light with at least two predetermined different wavelengths or from at least two predetermined different wavelength regions.
17. The vehicle headlight according to claim 15, wherein each of the different wavelengths lies in the infrared region, wherein the infrared transmitter is additionally able to emit a reference wavelength for the purpose of calibration, wherein the reference wavelength also lies in the infrared region.
18. The vehicle headlight according to claim 16, wherein each of the different wavelengths lies in the infrared region, wherein the infrared transmitter is additionally able to emit a reference wavelength for the purpose of calibration, wherein the reference wavelength also lies in the infrared region.
19. A vehicle, in particular a passenger car or a motor truck, comprising at least one vehicle headlight according to claim 4.
20. A vehicle, in particular a passenger car or a motor truck, comprising at least one vehicle headlight according to claim 5.
Description
SHORT DESCRIPTION OF THE FIGURES
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION
[0028]
[0029] In the following embodiments, an LED unit is used as an infrared transmitter. This should be considered as an example and other suitable infrared transmitters may be used alternatively.
[0030] The vehicle headlight 3 is outlined in more detail in
[0031] The device 11 will be explained in more detail making reference to
[0032] The LED unit 13 may be controlled via a pulse unit 19. The pulse unit 19 may be connected to the LED unit via a line 19A.
[0033] The LED unit 13 transmits with the aid of the LEDs 13L light through the headlight glass 9. The light emitted by the LED unit 13 in this way falls on the roadway surface where it is reflected.
[0034]
[0035] The detection unit 17 may be connected to an interface 18 via a line 17A. The interface 18 may comprise a CAN interface or some other interface typical of motor vehicles, so that the signals provided by the detection unit 17 can be subjected to further processing.
[0036]