COMMUNICATIONS SYSTEM FOR A MOTOR VEHICLE
20200263847 · 2020-08-20
Inventors
- Mathias Drüppel (Lippstadt, DE)
- David Duhme (Lippetal, DE)
- Kai Ehlert (Büren, DE)
- Bernd FISCHER (Altenbeken, DE)
- Julien Hansen (Delmenhorst, DE)
- Marc KAUP (Paderborn, DE)
- Lukas Pörtner (Witten, DE)
- Claas Tebrügge (Rhede, DE)
- Benjamin WILLEKE (Paderborn, DE)
- Jan-Henning Willrodt (Hamburg, DE)
Cpc classification
F21S41/125
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q1/0017
PERFORMING OPERATIONS; TRANSPORTING
F21S41/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/141
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S41/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q1/00
PERFORMING OPERATIONS; TRANSPORTING
F21S41/141
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Communications system for motor vehicles are provided, that comprise a plurality of transmission devices and a plurality of receiver devices where the transmission devices, individually or together, feature several light sources that are able to emit at least light with a first wavelength spectrum and light with a second wavelength spectrum. The transmission devices feature means of modulation that can effect modulation of the light such that information can be transmitted via the light. Receiver devices can capture the emitted light and extract the information from the captured light. The communications system is designed in such a way that the light with the first wavelength spectrum is used for the transmission of information in a first category and the light with the second wavelength spectrum is used for the transmission of information in a second category.
Claims
1. A communications system for motor vehicles, the system comprising: a plurality of transmission devices, for sending out individually or together, at least light with a first wave length spectrum and light with a second wave length spectrum, said plurality of transmission devices including a means of modulation that effects modulation of the light such that information can be transmitted by means of the light; a plurality of receiver devices that capture the emitted light and extract from the captured light the transmitted information, wherein the light with the first wave length spectrum is used for the transmission of information in a first category and the light with the second wave length spectrum is used for transmission of information in a second category.
2. The communications system in accordance with claim 1, wherein light with a third wavelength spectrum is used for the transmission of information in a third category.
3. The communications system in accordance with claim 1, wherein the first category and the second category as well as any at least one further category are related to at least one of warnings and sensor data and traffic data and infotainment and/or entertainment.
4. The communications system in accordance with claim 2, wherein the light with a first wavelength spectrum is red light, the light with a second wavelength spectrum is green light and the light with a third wavelength spectrum is blue light.
5. The communications system in accordance with claim 2, wherein blue light is used for the transmission of warnings, red light is used for the transmission of at least one of sensor data and traffic data, and green light is used for the transmission of Infotainment and/or entertainment.
6. A transmission device for a communications system, the transmission device comprising at least one light source that emits light when the transmission device is in operation, means of modulation that effect modulation of the light emitted by the at least one light source such that information can be transmitted by means of the light, wherein the light from the at least one light source is modulated for information transmission only when the information to be transmitted belongs to a category corresponding to a wavelength spectrum of the light from the at least one light source.
7. The transmission device in accordance with claim 6, wherein the at least one light source takes the form of at least one of light emitting diode (LED) and a laser.
8. The transmission device in accordance with claim 6, wherein the transmission device comprises several light sources, where during operation of the transmission device, at least a first one of the several light sources transmits red light, at least a second one of the several light sources transmits green light, and at least a third one of the several light sources transmits blue light.
9. The transmission device in accordance with claim 7, wherein the transmission device comprises means of mixing the light emitted by the light sources such that white light is emitted by the transmission device.
10. A receiver device for use with a transmission device of claim 6 in a communications system, the receiver device comprising: sensor means to capture light emitted by the at least one light source of the transmission device, and evaluation means that extracts information transmitted via the captured light through demodulation and decoding.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Reference is now made more particularly to the drawings, which illustrate the best presently known mode of carrying out the invention and wherein similar reference characters indicate the same parts throughout the views.
[0018]
[0019]
DETAILED DESCRIPTION OF THE DRAWINGS
[0020] In the figures, identical and functionally identical parts have the same reference signs.
[0021] The embodiment of an inventive transmission device that can be seen from
[0022] The embodiment of the transmission device comprises three light sources 1, 2, 3 that feature different wavelength spectra. In this context, for example, the light source 1 can emit red-colored light, the light source 2 can emit green-colored light and the light source 3 can emit blue-colored light.
[0023] The light sources 1, 2, 3 can, in particular, take the form of light emitting diodes (LEDs). There is, however, also the possibility for the light sources 1, 2, 3 to take the form of lasers, preferentially laser diodes.
[0024] The transmission device further comprises means of modulation and means of encoding that are combined in one component 4. The means of modulation and the means of encoding can use a data signal 5, that is, for example, output by the onboard computer of a motor vehicle, to modulate and encode a voltage signal 6, 7, 8 for actuation of the light sources 1, 2, 3.
[0025] Furthermore, the component 4 can also provide for means of control that, depending on the category of the information in the data signal to be transmitted, modulate and encode the voltage signal 6, 7, 8 for the corresponding light sources 1, 2, 3. For example, when a warning is to be transmitted, the voltage signal 8 for the light source 3 that emits blue-colored light can be modulated and encoded for information transmission. For example, when sensor data or traffic data are to be transmitted, the voltage signal 6 for the light source 1 that emits red-colored light can be modulated and encoded for information transmission. For example, when infotainment is to be transmitted, the voltage signal 7 for the light source 2 that emits green-colored light can be modulated and encoded for information transmission.
[0026] In this respect, the modulation scheme and the encoding scheme can be selected such that the light emitted by the light emitting diodes 1, 2, 3 in its entirety gives the impression of white light. With the modulation of the individual voltage signals 6, 7, 8, the frequency can be selected such that the human eye sees a constant intensity. If information is to be transmitted via only one of the color channels, the voltage signals 6, 7, 8 are not modulated for the other channels so that the corresponding light sources 1, 2, 3, shine unmodulated in order to maintain the impression of the color white.
[0027] The transmission device comprises, as the means of mixing the light emitted by the individual light sources 1, 2, 3, a fiber coupler 9 and three optical fibers 10, 11, 12 that link the light sources 1, 2, 3 with the fiber coupler 9. The light emitted by the three light sources 1, 2, 3 is mixed by the fiber coupler 9 resulting in white light. The transmission device further comprises an optical fiber 13 exiting from the fiber coupler 9 on the output side from the exit aperture 14 of which white light 15 is emitted.
[0028] The light emitted by the transmission device can be used both for illumination purposes and for communication between vehicles.
[0029] The embodiment shown in
[0030] The color filters 19, 20, 21 divide the light into the channels corresponding to the three colors. In doing so, it is possible for the light to be demodulated and decoded in the evaluation means 22 linked to the photodiodes 16, 17, 18. In the evaluation means 22, the individual voltage signals can, if necessary, be amplified prior to demodulation and decoding. The demodulated and decoded signals can be compounded into a data signal 23 that can be further processed.
[0031] The receiver device can, for example, be arranged in a motor vehicle that is driving in front of the motor vehicle with the inventive transmission device.
LIST OF REFERENCE SIGNS
[0032] 1, 2, 3 Light source [0033] 4 Component with means of modulation and means of encoding [0034] 5 Data signal [0035] 6, 7, 8 Voltage signal [0036] 9 Fiber coupler 10, [0037] 11, 12 Optical fiber [0038] 13 Optical fiber [0039] 14 Exit aperture [0040] 15 White light 16, 17, [0041] 18 Photodiode 19, [0042] 20, 21 Color filter [0043] 22 Evaluation means [0044] 23 Data signal