EP4094547A1 - Umgebungslichterfassung mittels zweier innerhalb einer leuchte angeordneten lichtsensoren - Google Patents
Umgebungslichterfassung mittels zweier innerhalb einer leuchte angeordneten lichtsensorenInfo
- Publication number
- EP4094547A1 EP4094547A1 EP21707182.8A EP21707182A EP4094547A1 EP 4094547 A1 EP4094547 A1 EP 4094547A1 EP 21707182 A EP21707182 A EP 21707182A EP 4094547 A1 EP4094547 A1 EP 4094547A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- light
- housing
- lamp
- processing device
- sensors
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
Links
Classifications
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B45/00—Circuit arrangements for operating light-emitting diodes [LED]
- H05B45/10—Controlling the intensity of the light
- H05B45/12—Controlling the intensity of the light using optical feedback
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B47/00—Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
- H05B47/10—Controlling the light source
- H05B47/105—Controlling the light source in response to determined parameters
- H05B47/11—Controlling the light source in response to determined parameters by determining the brightness or colour temperature of ambient light
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B20/00—Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
- Y02B20/40—Control techniques providing energy savings, e.g. smart controller or presence detection
Definitions
- the present invention relates to a luminaire with at least two light sensors, a lighting system with at least one such luminaire and a method for operating such a luminaire, in particular a method for detecting the ambient light of such a luminaire.
- Light sensors are used in buildings, in particular rooms, as well as in Lrei to adjust the brightness of a lamp with at least one light source.
- a light sensor is used in order to be able to set a brightness at one point in a room, such as a workstation, in accordance with a setpoint brightness of a workstation illuminated by a lamp.
- at least one light sensor must be arranged in the vicinity of the luminaire in such a way that the light sensor can detect or measure the ambient light of the luminaire and consequently the light at the workstation.
- the detection result or measurement result is then typically transmitted from the light sensor to the luminaire and used as an instantaneous value of the brightness at the workplace in order to set the brightness of the luminaire to a setpoint value.
- a lighting system comprising a light sensor and a lamp with at least one light source
- the light sensor can be damaged without special protective measures, for example due to vandalism. This could be avoided by arranging the light sensor in a suitable housing that offers protection against vandalism.
- this is associated with costs and increases the dimensions of a single light sensor.
- the light sensor can be damaged or even destroyed by penetrating luminosity, and light detection by the light sensor can be impaired or impossible due to contamination. This can also be avoided by arranging the light sensor in a suitable housing, but this again leads to the disadvantages of increased costs and enlarged dimensions of the light sensor.
- the tightness of the luminaire can also be impaired, especially if the detection results of the light sensor are transmitted by wire, since leaks can occur at the transition between a cable for wired transmission and the lamp housing. This can be avoided in that appropriate provisions are made for connecting the cable to the lamp housing, so that the tightness of the lamp is not impaired. However, this is again associated with corresponding effort and costs.
- One way of overcoming the above disadvantages would be to arrange the light sensor directly inside the housing of the luminaire.
- the light sensor would be protected against vandalism, dirt and luminosity through the housing of the light. Learner, the tightness of the luminaire could no longer be impaired by a cable as a wired transmission path from a light sensor arranged outside the housing to the luminaire housing.
- the disadvantage of this possibility is that a light sensor arranged within the lamp housing would not only detect the ambient light, but also the light that is emitted or emitted within the lamp housing by the at least one lamp of the lamp. As a result, the brightness of the light emitted by the luminaire could not be regulated on the basis of the detected instantaneous brightness of the ambient light with regard to a setpoint brightness.
- a luminaire is provided with a housing having a diffusing screen as a light-emitting surface, with at least one illuminant which is arranged inside the housing in such a way that it is set up to emit light through the diffusing screen to the outside of the housing, and with at least two Light sensors arranged within the housing and configured to detect light are provided.
- the at least two light sensors have different detection areas and are set up to detect light, the detection area of the first of the at least two light sensors being such that light emitted by the at least one illuminant and reflected on at least one wall of the housing interior is detected.
- the present invention proposes to arrange at least two light sensors with different detection areas inside the housing of a lamp (to be integrated into the lamp housing) in order to detect the light entering or entering the inside of the lamp housing through the diffuser from outside the housing or to be able to measure.
- at least one first light sensor of the at least two light sensors is set up to detect or measure light that is emitted by the at least one lamp of the lamp and is reflected on at least one wall of the interior of the lamp.
- the detection area of the at least one first light sensor is set in such a way that the first light sensor detects light emitted by the at least one illuminant and reflected on at least one wall of the housing interior, or that in the detection area of the first light sensor emitted by the at least one illuminant and on Light reflected from at least one wall of the interior of the housing is incident on the first light sensor.
- the at least one wall of the housing interior is in particular at least one side wall or side wall of the housing interior.
- the at least one first light sensor of the at least two light sensors is therefore set up in particular to detect scattered light inside the housing.
- the detection range of the at least one first light sensor is set in particular such that the first light sensor is scattered light Detected inside of the housing or that in the detection area of the first light sensor, scattered light falls on the first light sensor inside the housing.
- the luminaire is advantageous because the arrangement of the at least two light sensors inside the housing eliminates the disadvantages described above with regard to a light sensor arranged outside the luminaire. Learner can detect the least two light sensors inside the housing due to their different detection areas the light entering from outside the luminaire housing through the diffuser into the interior of the housing and consequently the ambient light of the luminaire.
- the luminaire according to the invention therefore enables the light emitted by the at least one illuminant of the luminaire to be set to a brightness to achieve a target brightness on the basis of the detected ambient light of the luminaire without the disadvantages described above occurring.
- diffuser can be used as a synonym for the term "diffuser”.
- detection area of a light sensor is understood to mean the area inside the housing within which the light sensor can detect light. I. E. a light sensor does not detect any light that is present outside the detection range of the light sensor or that falls outside the detection range on the light sensor.
- the terms “emitted light” and “emitted light” can be used synonymously for the term “emitted light” and the term “incident light” can be used synonymously for the term “incoming light”.
- the at least two light sensors preferably have different detection angles.
- the housing is preferably set up to provide protection against moisture, in particular splash water, and soiling, in particular dust.
- the at least one light emitting means comprises or corresponds to at least one light emitting diode (LED), such as organic light emitting diode, inorganic light emitting diode, light emitting diode with secondary excitation, etc. for example fluorescent tubes, gas discharge lamps, energy saving lamps, etc.
- LED light emitting diode
- J hotodetektor and “optoelectronic sensor” can be used as synonyms for the term “J ⁇ ichtensor”.
- An example of a light sensor is a photocell, a CMOS sensor, a CCD sensor, a photodiode, etc.
- the at least two light sensors can correspond to different types of light sensors.
- the at least two light sensors arranged in the interior of the luminaire housing are preferably identical light sensors which have different detection areas in the interior of the luminaire housing.
- the luminaire comprises two light sensors, a first light sensor detecting light emitted by the at least one light source and reflected on at least one wall of the interior of the housing.
- the detection area of the first light sensor of the two light sensors is set in such a way that the first light sensor detects light emitted by the at least one light source and reflected on at least one wall of the interior of the housing or that in the detection area of the first light sensor emitted by the at least one light source and Light reflected on at least one wall of the interior of the housing is incident on the first light sensor.
- the detection range of the first light sensor is selected such that an emerging or incident light from outside the housing through the diffuser into the housing interior and emitted by the one illuminant and at the To detect the diffuser and light reflected on at least one wall of the housing interior.
- the detection range of the at least one first light sensor is set in such a way that the first light sensor from outside the housing through the diffuser into the interior of the housing and light emitted by the one light source and reflected on the diffuser and on at least one wall of the housing interior Detects light or that in the detection area of the first light sensor from outside the housing through the diffuser into the interior of the housing, light emitted by the one illuminant and reflected on the diffuser and on at least one wall of the inside of the housing falls on the first light sensor.
- a second of the at least two light sensors is preferably set up to exclusively detect light from the area of the diffusing screen.
- the detection area of the at least one second light sensor is preferably set in such a way that the second light sensor only detects light from the area of the diffuser or that in the detection area of the second light sensor only light from the area of the diffuser falls on the second light sensor.
- the luminaire comprises two light sensors, a second light sensor of the two light sensors preferably being set up to only detect light from the area of the diffuser.
- the at least two light sensors are preferably arranged within the housing (inside the housing) in such a way that they have the different detection areas.
- the different detection areas of the at least two light sensors are preferably achieved by the arrangement or positioning of the at least two light sensors in the interior of the housing.
- the different detection areas of the at least two light sensors in the interior of the housing can be achieved in that the at least two light sensors are arranged at different positions or locations in the interior of the housing.
- at least one light sensor of the at least two light sensors preferably has a mechanical and / or optical device that is designed to change the detection area of the at least one light sensor, in particular to enlarge and / or reduce it, so that the at least two light sensors the have different detection areas.
- At least one light sensor of the at least two light sensors has a mechanical device for reducing its own detection area and / or an optical device for enlarging its own detection area, so that the at least two light sensors have the different detection areas.
- the mechanical and / or optical device preferably comprises or corresponds to a mechanical device that is set up to reduce the detection area of a light sensor and / or an optical device that is set up to enlarge the detection area of a light sensor.
- the mechanical device is preferably a diaphragm.
- the mechanical device is not limited to a diaphragm and can also be configured differently.
- the optical device is preferably a diffusing screen. However, the optical device is not limited to a diffuser and can also be configured differently.
- the at least one lighting means and the at least two light sensors are preferably arranged on one surface.
- the at least one lighting means and the at least two light sensors are arranged in one plane on the surface.
- the area preferably corresponds to a printed circuit board. That is to say, the at least one lighting means and the at least two light sensors are preferably arranged on a printed circuit board. In particular, the at least one lighting means and the at least two light sensors are arranged in one plane on the circuit board.
- the luminaire preferably also has a processing device, the processing device being set up on the basis of by the at least two light sensors recorded detection values to determine the ambient light of the luminaire.
- the luminaire also has a processing device which is set up to process the detection values of the at least two light sensors in order to determine the ambient light of the luminaire.
- the processing device is preferably arranged within the housing of the lamp.
- the processing device is preferably arranged on the surface, in particular on the printed circuit board.
- the processing device is preferably a processor, a microprocessor, a controller, a microcontroller, an application-specific integrated circuit (ASIC) or any combination of these elements.
- ASIC application-specific integrated circuit
- the processing device is preferably set up to determine the light emitted by the one illuminant on the basis of detection values detected by the at least one first light sensor in order to determine the ambient light of the lamp.
- the processing device is set up to determine the ambient light of the luminaire on the basis of the detection values detected by the at least one second light sensor and the determined light emitted by the one lighting means.
- the processing device is preferably set up to determine the ambient light of the luminaire using mathematical models and / or comparative measurements of known light situations in the area surrounding the luminaire.
- the processing device is preferably set up to process the detection values of the at least two light sensors using mathematical models / algorithms and / or comparative measurements of known light situations around the luminaire in order to determine the ambient light of the luminaire.
- the mathematical models / algorithms and / or comparison measurements are preferably stored in a memory of the luminaire, preferably the processing device, which the processing device can access.
- the processing device can in particular write data to the memory and read data from the memory.
- the mathematical models / algorithms and / or comparison measurements which are preferably stored in the memory, can be fed to the processing device from outside the luminaire.
- the processing device is set up to generate at least one characteristic curve on the basis of the comparison measurements and to determine the ambient light of the lamp using the at least one characteristic curve.
- the processing device is set up in particular to generate at least one characteristic curve on the basis of the comparison measurements and to process the detection values of the at least two light sensors using the at least one characteristic curve in order to determine the ambient light of the lamp.
- the processing device preferably stores the at least one characteristic curve in the memory.
- the processing device is preferably set up to control the light output of the at least one luminous means.
- the processing device is preferably set up to control, preferably to dim, the light output of the at least one luminous means on the basis of the detection values, preferably the determined ambient light.
- the processing device is preferably set up to determine the ambient light on the basis of the detection values of the at least two light sensors and to control, in particular to dim, the light output of the at least one luminous means on the basis of the determined ambient light.
- the processing device is preferably set up to infer the brightness in the vicinity of the lamp on the basis of the detection values, in particular on the basis of the determined ambient light of the lamp, and the light output of the at least one on the basis of the brightness of the environment of the lamp To control lighting means in such a way that a brightness setpoint for the environment is achieved.
- the brightness setpoint can be supplied externally to the processing device and / or stored in the memory of the luminaire.
- the light output of the at least one light source of the lamp can be regulated so that the light output of the lamp can be changed, in particular dimmed, by changing the brightness setpoint.
- the processing device is preferably set up to control the light output of the at least one luminous means on the basis of at least one control command, such as a dimming value, for example.
- the processing device is set up in particular to receive or receive the at least one control command from the outside or from the outside of the lamp.
- a lighting system with at least one lamp according to the invention described above and with a processing device which is set up to control the light output of the at least one lamp is provided.
- the above description of the lamp according to the invention is also applicable to the at least one lamp of the lighting system according to a further aspect of the present invention.
- the processing device is preferably designed in accordance with the processing device of a lamp according to the invention described above.
- the processing device preferably corresponds to the processing device of a lamp according to the invention described above.
- the processing device of the lighting system is preferably a processor, a microprocessor, a controller, a microcontroller, a application specific integrated circuit (ASIC) or any combination of these elements.
- ASIC application specific integrated circuit
- the processing device of the lighting system is preferably set up to receive detection values of the at least two spruce sensors of the at least one humidity directly or indirectly via the processing device of the humidity.
- the processing device of the lighting system is preferably set up to control the spruce release of the at least one dampening agent of the at least one moisture, in particular to control the at least one moisture based on the detection values of the at least two spruce sensors.
- a method for operating an above-described humidity according to the invention in particular a method for detecting the ambient light of a above-described humidity according to the invention, is provided, the method having the following method steps: Detecting the humidity by means of the at least two spruce sensors different detection areas within the housing, from spruce, which occurs from outside the housing through the diffuser into the inside of the housing; and detecting, by a first of the at least two spruce sensors, spruce that is dispensed by the at least one dampening solution and is reflected on at least one wall of the interior of the housing.
- the above description of the lamp according to the invention is correspondingly applicable to the method according to a further aspect of the present invention.
- the method preferably has the following method step: Detecting, by the at least one first light sensor of the at least two light sensors, of light that enters the interior of the housing from outside the housing through the diffuser, and of light that is emitted by the one illuminant and is reflected on the diffuser and on at least one wall of the housing interior.
- the method preferably has the following method step: Detection, by at least one second light sensor of the at least two light sensors, of exclusively light from the area of the diffuser.
- the method has the following method step: detecting, by at least one second light sensor of the at least two light sensors, exclusively light that enters the interior of the housing from outside the housing through the diffuser, and light that is emitted by the at least one illuminant and is reflected on the lens.
- the luminaire preferably also has a processing device, and the method preferably has the following further method step: Determination, by the processing device, of the ambient light of the luminaire on the basis of detection values detected by the at least two light sensors.
- the method preferably has the following method step: determining, by the processing device, the light emitted by the one lamp on the basis of detection values recorded by the at least one first light sensor in order to determine the ambient light of the lamp.
- the method preferably has the following method step: Determination, by the processing device, of the ambient light of the lamp on the basis of the detection values recorded by the at least one second light sensor and the determined light emitted by the one lamp.
- the method preferably has the following method step: determining, by the processing device, the ambient light of the luminaire Use of mathematical models and / or comparative measurements of known lighting situations around the luminaire.
- the method preferably has the following method step: controlling, by the processing device, the light output of the at least one luminous means on the basis of the detection values, preferably on the basis of the ambient light determined.
- the method has the following method step: dimming, by the processing device, the light output of the at least one luminous means on the basis of the detection values, preferably on the basis of the ambient light determined.
- Figure 1 is a schematic side view of a preferred embodiment of a lamp according to the invention.
- Figure 2 is a schematic representation of a further preferred embodiment
- Embodiment of a lamp according to the invention Embodiment of a lamp according to the invention.
- FIG. 3 shows a schematic representation of a preferred embodiment of a lighting system according to the invention.
- Figure 4 is a schematic representation of a further preferred embodiment
- Embodiment of a lighting system according to the invention Embodiment of a lighting system according to the invention.
- Figure 1 shows a schematic side view of a preferred embodiment of a lamp according to the invention.
- the above description of the lamp according to one aspect of the present invention is correspondingly applicable to the lamp 1 in FIG.
- the luminaire 1 shown in FIG. 1 comprises a housing 2 (luminaire housing), a diffuser 3, four illuminants 4, two light sensors S1 and S2 and a printed circuit board 5.
- the luminaire 1 can also have fewer or more illuminants (at least one illuminant) and more than two light sensors (at least two light sensors), so that the number of illuminants and light sensors of the luminaire 1 in FIG Explanation of a preferred embodiment of a lamp according to the invention is used.
- the lighting means 4 and the two light sensors S1 and S2 can be designed as described above with regard to the luminaire according to one aspect of the present invention.
- the four illuminants 4 and the two light sensors S1 and S2 are arranged on the circuit board 5 of the luminaire within the housing 2 (luminaire housing) of the luminaire 1. That is, the four illuminants 4 and the two light sensors S1 and S2 are arranged within the luminaire housing 2. In particular, the lighting means 4 and the light sensors S1 and S2 are arranged next to one another or in a row on the circuit board.
- the luminaire 1 has the diffusing screen 3 as a light-emitting surface, so that the light emitted by the lighting means 4 is emitted or radiated through the diffusing screen 3 to the outside of the housing 2. This then corresponds to the light output of the lamp 1. Consequently, the lighting means 4 are arranged inside the housing 2 of the lamp 1, in particular on the circuit board 5, in such a way that they are set up to output light through the diffuser 3 to the outside of the housing 2.
- the two light sensors S1 and S2 have different detection areas B1 and B2. These different detection areas B1 and B2 are achieved by a different arrangement of the two light sensors S1 and S2 in the interior of the housing. According to FIG. 1, the two light sensors S1 and S2 also have different detection angles w1 and w2. The different detection areas B1 and B2 are consequently also achieved in that at least one of the two light sensors S1 and S2 has a mechanical and / or optical Device (not shown in FIG. 1) which is set up to change the detection area of the at least one light sensor, in particular to reduce and / or enlarge it.
- the mechanical and / or optical device can be designed as described above with regard to the luminaire according to one aspect of the present invention.
- the different detection areas B1 and B2 can also be achieved by a different arrangement of the two light sensors S1 and S2 in the interior of the housing.
- the two light sensors S1 and S2 preferably have the same detection angles w1 and w2.
- at least one light sensor of the two light sensors S1 and S2 can have a mechanical and / or optical device that is designed to change, in particular to reduce and / or enlarge, the detection area of the at least one light sensor.
- the first light sensor S1 is set up to detect light E r 2 that is emitted by the lighting means 4 and is reflected on at least one wall of the interior of the lamp 1.
- the detection area B1 of the first light sensor S1 is set in such a way that the first light sensor S1 detects light that is emitted by the lighting means 4 and reflected on at least one wall of the interior of the housing.
- the first light sensor S1 is set up to detect light E t entering or entering the interior of the housing from outside the housing 2 through the lens 3, light E ri emitted or emitted by the lighting means 4 and reflected on the lens 3 and through the lighting means 4 to detect light E r 2 emitted and reflected on at least one wall of the interior of the housing.
- the at least one wall of the interior of the housing is in particular at least one side wall or side wall of the interior of the housing.
- the light falling on the first light sensor S1 in the detection area B1 of the first light sensor S1 is thus composed of light E t which enters the interior of the housing from outside the housing 2 through the diffuser 3; through the Light E ri emitted by lighting means 4 and reflected on diffusing screen 3 as well as light E r 2 emitted by lighting means 4 and reflected on at least one wall of the interior of the housing.
- the light E ri emitted by the lighting means 4 and reflected on the diffuser 3 and the light E r 2 emitted by the lighting means 4 and reflected on at least one wall of the housing interior do not contribute to the illumination of the surroundings by the lamp 1.
- the light E ri emitted by the luminous means 4 and reflected on the diffuser 3 and the light E r 2 emitted by the luminous means 4 and reflected on at least one wall of the housing interior can also be referred to as scattered light.
- the first light sensor S1 is therefore set up to detect scattered light inside the housing. In other words, it is the detection area B1 of the first light sensor
- the 51 is set in such a way that the first light sensor S1 detects scattered light inside the housing or that scattered light inside the housing falls on the first light sensor S1 in the detection area B1 of the first light sensor S1.
- the second light sensor S2 is set up to only detect light from the area of the diffuser 3. That is to say, the second light sensor S2 is set up to detect light exclusively from the area of the diffuser 3.
- the detection area B2 of the second light sensor S2 is set in such a way that the second light sensor S2 only detects light from the area of the lens 3 or that in the detection area B2 of the second light sensor S2 only light from the area of the lens 3 onto the second light sensor S2 falls.
- the detection area B2 of the second light sensor S2 is set such that in the detection area B2 of the second light sensor S2, light E r 2 emitted by the lighting means 4 and reflected on one or more walls of the interior of the housing does not hit the second light sensor
- the second light sensor S2 is specifically designed to only detect light E t entering the interior of the housing from outside the housing 2 through the diffusing screen 3 and light E ri emitted by the lighting means 4 and reflected on the diffusing screen 3. That is, the light falling on the second light sensor S2 in the detection area B2 of the second light sensor S2 is composed of light E t which enters the interior of the housing from outside the housing 2 through the diffuser 3; and light E ri emitted by the lighting means 4 and reflected on the diffusing screen 3.
- the two light sensors S1 and S2 are set up to display their detection results, i. H. To provide or supply detection values to a processing device which can then determine the ambient light of the lamp 1 on the basis of these detection values detected by the two light sensors S1 and S2.
- the luminaire 1 preferably comprises such a processing device. Such a lamp is shown in Ligur 2.
- the two light sensors S1 and S2 are set up in particular to provide their detection results externally or to the outside of the luminaire housing.
- Figure 2 shows a schematic representation of a further preferred embodiment of a lamp according to the invention.
- the lamp 1 shown in Ligur 2 corresponds to the lamp shown in Ligur 1.
- the above description of the luminaire from Ligur 1 is therefore also applicable to luminaire 1 from Ligur 2.
- the luminaire 1 in FIG. 2 differs from the luminaire in FIG. 1 in that the luminaire 1 in FIG. 2 has a processing device 6.
- the processing device 6 can be designed like the processing device described with regard to the lamp according to one aspect of the present invention.
- the processing device 6 can be a process, a microprocessor, a controller, a microcontroller, an application-specific integrated circuit (ASIC) or any combination of these elements.
- ASIC application-specific integrated circuit
- the processing device 6 of the lamp 1 is arranged outside the housing 2 of the lamp 1.
- the processing device 6 can also be arranged inside the housing 2, that is to say in the interior of the housing of the lamp 1.
- the processing device 6 can be arranged on the circuit board 5.
- the two light sensors S1 and S2 are set up to supply the processing device 6 with their detection values or detection results (cf. lines between the light sensors S1, S2 and the processing device 6).
- the processing device 6 is then set up to determine the ambient light of the lamp 1 on the basis of the detection values that were detected by the two light sensors S1 and S2. In other words, the processing device 6 is set up to process the detection values detected by the two light sensors S1 and S2 in order to determine the ambient light of the lamp 1.
- the processing device 6 is set up to determine the light emitted by the lighting means 4 on the basis of detection values which the first light sensor S1 detects. In other words, the processing device 6 is set up to determine the light emitted by the lighting means 4 on the basis of the detection result of the first light sensor S1.
- the detection values or the detection result of the first light sensor S1 allow a conclusion to be drawn about the light emitted by the lighting means 4.
- the first light sensor Sl detects As already stated above, the light E t entering from outside the housing 2 through the diffuser 3 into the interior of the luminaire 1 and the light E ri and E emitted by the illuminant 4 and reflected on the diffuser 3 and on at least one wall of the interior of the housing r 2.
- the processing device 6 is set up to determine, on the basis of the detection result of the first light sensor S1, the light component E r 2 of the light detected by the first light sensor S1, which is emitted by the lighting means 4 and reflected on at least one wall of the interior of the housing. The processing device 6 is then set up to determine the light emitted or emitted by the lighting means 4 on the basis of this determined light component E r 2. In other words, the processing device 6 is then set up to infer the light emitted or emitted by the lighting means 4 on the basis of this determined light component E r 2.
- the walls of the interior of the housing of the lamp 1 are designed in such a way that the light E r 2 emitted by the illuminants 4 and reflected on at least one wall of the interior of the housing differs from the light E ri emitted by the illuminants 4 and reflected on the diffuser 3 .
- the processing device 6 is set up to determine the ambient light of the lamp on the basis of the detection values detected by the second light sensor S2 and the light emitted by the lighting means 4, which was determined on the basis of the detection values detected by the first light sensor S1. In other words, the processing device 6 is set up to determine the ambient light of the lamp on the basis of the detection result of the second light sensor S2 and the light component determined on the basis of the detection result of the first light sensor S1, which is emitted by the lighting means 4.
- the detection values or the detection result of the second light sensor S2 allow a conclusion to be drawn about the light E t entering from outside the luminaire housing 2 through the diffuser 3 into the interior of the housing and consequently about the ambient light of the luminaire 1.
- the second light sensor S2 detects how already stated above, exclusively light from the area of the diffuser 3. D. h. the second light sensor S2 detects exclusively from outside the housing 2 light E t emerging through the diffusing screen 3 into the interior of the housing and light E ri emitted by the lighting means 4 and reflected on the diffusing screen 3.
- the processing device 6 is set up, on the basis of the light component determined on the basis of the detection result of the first light sensor St, which is emitted by the lighting means 4, the light component that enters the interior of the housing from outside the housing 2 through the diffuser 3 to determine light detected by the second light sensor S2.
- the light detected by the second light sensor S2 corresponds to the light E t emerging from outside the housing 2 through the diffuser 3 into the interior of the housing, as well as the light that is emitted by the lighting means 4 and reflected on the diffuser 3.
- the processing device 6 is then set up on the basis of the light determined on the basis of the detection result of the first light sensor St, which is emitted by the lighting means 4, as well as the detection result of the second light sensor S2 on the outside of the housing 2 through the diffuser 3 light E t entering the interior of the housing and thus inferring the ambient light of the lamp 1.
- the processing device 6 is set up to determine the ambient light of the luminaire 1 using mathematical models / algorithms and / or comparative measurements of known light situations in the surroundings of the luminaire 1. In other words, the processing device 6 is set up to carry out the above-described processing of the detection values of the two light sensors St and S2 using mathematical models / algorithms and / or comparative measurements of known light situations around the luminaire 1 in order to determine the ambient light of the luminaire 1.
- the mathematical models / algorithms and / or comparative measurements of known light situations in the surroundings of the luminaire 1 are stored in a memory of the luminaire 1 (not shown in Ligur 2), which the processing device 6 can access.
- the processing device 6 can in particular write data to the memory and read data from the memory.
- the memory is preferably part of the processing device 6. Additionally or alternatively, the mathematical models / algorithms and / or comparative measurements can be fed to the processing device 6 from outside the luminaire 1, and these are preferably stored in the memory.
- the processing device 6 is set up to generate at least one characteristic curve on the basis of the comparison measurements and to determine the ambient light of the lamp 1 using the at least one characteristic curve. Consequently, the processing device 6 is set up to carry out the above-described processing of the detection values of the two light sensors S1 and S2 using the at least one characteristic curve in order to determine the ambient light of the luminaire 1.
- the processing device 6 can store the at least one characteristic curve in the memory.
- the luminaire 1 With the luminaire 1 according to the invention, it is thus possible to ensure correct detection of the ambient light of the luminaire 1 for different dimming levels or dimming values of the light output of the illuminants 4 as well as reflective light components that change over time in the interior of the luminaire 1.
- the processing device 6 is in particular also set up to control or adjust the light output of the lighting means 4 of the luminaire 1 (cf. lines between the lighting means 4 and the processing device 6).
- the processing device 6 is set up to control the light output of the lighting means 4 on the basis of the determined ambient light of the lamp 1. In other words, the processing device 6 is set up to control the light output of the lighting means 4 on the basis of the detection values of the two light sensors S1 and S2. I. E. the processing device 6 is set up to process the detection values of the two light sensors S1 and S2 as described above in order to determine the ambient light of the luminaire 1 and to control the light output of the illuminants 4 on the basis of the determined ambient light.
- the processing device 6 is set up to infer the brightness of the surroundings of the lamp 1 on the basis of the determined ambient light of the lamp 1 and to control the light output of the lighting means 4 on the basis of the brightness of the surroundings of the lamp 1 in such a way that a brightness setpoint value for the environment is reached.
- the processing device 6 is set up to determine the brightness of the surroundings of the lamp 1 on the basis of the determined ambient light of the lamp 1 and to regulate the light output of the lighting means 4 on the basis of the determined ambient brightness with regard to a brightness setpoint.
- the processing device 6 is thus set up to regulate the light output of the lighting means 4.
- the brightness setpoint can be fed to the processing device 6 from the outside or from outside the lamp 1 and / or be stored in the memory of the lamp 1 (not shown in FIG. 2).
- the firing output of the dampening solution 4 and consequently the firing output of the moisture 1 can be changed, in particular dimmed.
- the processing device 6 is preferably set up to control the spruce delivery of the dampening solution 4 on the basis of at least one control command, such as a dimming value, the processing device 6 being set up to receive the at least one control command from the external or from outside the humidity 1 to get fed or to receive.
- a dimming value such as a dimming value
- the processing device 6 can in particular also be set up to provide or transmit the detection results or detection values of the two firing sensors St and S2 and / or the determined ambient light of the humidity 1 to the external or to the outside of the humidity 1.
- the processing device 6 can be set up to send the detection results of the two firing sensors St and S2 and / or the determined ambient light of the humidity 1 to at least one further processing device or control device, such as a global processing device of a lighting system in which the humidity 1 is arranged can be to provide or transmit the moisture 1 externally or to the outside.
- FIG. 4 shows a lighting system 8 with a humidity 1 according to FIG. 2 and a global processing device 9.
- the processing device 6 is part of the luminaire 1.
- the processing device 6 can, however, also not be part of the luminaire 1 and consequently be an external processing device 6 (not shown in FIG. 2). This case is shown in FIG.
- FIG. 3 shows a schematic representation of a preferred embodiment of a lighting system according to the invention.
- the lighting system 8 comprises a lamp 1 and a processing device 7, the processing device 7 being set up to receive detection values from the light sensors St and S2 of the lamp 1 directly and to determine the ambient light of the lamp 1 on the basis of these.
- the processing device 7 is also set up to control the light output of the lighting means 4, in particular on the basis of the determined ambient light.
- the lamp 1 of the lighting system 8 of the Ligur 3 corresponds to the lamp shown in Ligur 1, so that the above description of the lamp of the Ligur 1 is also applicable to the lamp 1 of the lighting system 8 of the Ligur 3.
- the lamp 1 of the lighting system 8 of the Ligur 3 consequently no further statements are made, but reference is only made to the above description of the lamp of the Ligur 1 in order to avoid repetition.
- the processing device 7 of the lighting system 8 of the Ligur 3 corresponds to the processing device of the lamp shown in Ligur 2, so that the above description of the processing device of the lamp shown in Ligur 2 also applies to the processing device 7 of the lighting system 8 of the Ligur 3.
- the processing device 7 of the Ligurian 3 essentially only the differences to the processing device of the Ligurian 2 are described below shown in order to avoid repetition. For the rest, reference is made to the above description of the processing device in FIG.
- the processing device 7 is arranged outside the lamp 1 and forms the lighting system 8 with it.
- the lighting system 8 can also have more than just one lamp, the processing device 7 then being set up to control the multiple lamps, in particular to be controlled in the same way as the lamp 1.
- At least one lamp of the further optional lamps of the lighting system 8 can be designed like the lamp 1 shown in FIG.
- the processing device 7 of the lighting system 8 of FIG. 3 is set up in the same way as the processing device 6 of FIG To control light output of the lighting means 4 of the lamp 1 on the basis of the determined ambient light and / or at least one external control command.
- the processing device 7 can in particular also be set up to transfer the detection results or detection values of the two light sensors St and S2 and / or the determined ambient light of the lamp 1 to a further optional device of the lighting system 8, such as a further processing device or control device or a further luminaire, to provide or to transfer.
- the processing device 7 can preferably also be set up to control the light output of at least one further lamp on the basis of the detection results or detection values of the two light sensors St and S2 and / or the determined ambient light of the lamp 1, for the reason that the lighting system 8 in addition to the lamp 1 also has at least one further lamp.
- FIG. 4 shows a schematic representation of a further preferred embodiment of a lighting system according to the invention.
- the above description of the lighting system according to a further aspect of the present invention is correspondingly applicable to the lighting system 8 in FIG.
- the lighting system 8 of FIG. 4 differs from the lighting system of FIG. 3 in that the humidity 1 of the lighting system 8 of FIG. 4, like the humidity shown in FIG. 2, has a processing device 6.
- the humidity 1 of the lighting system 8 in FIG. 4 corresponds to the humidity shown in FIG. 2, so that the above description of the humidity in FIG. 1 and the above description of the humidity in FIG. 2 also apply to the humidity 1 of the lighting system 8 in FIG.
- the humidity 1 of the lighting system 8 of FIG. 4 no further explanations are made, rather reference is only made to the above description of the humidity of FIG. 1 and the above description of the humidity of FIG. 2 in order to avoid repetition.
- the lighting system 8 shown in FIG. 4 comprises, in addition to the moisture 1, a processing device 9, which can also be referred to as a global processing device.
- the processing device 6 of the humidity 1 is set up to provide or transmit the detection results or detection values of the two firing sensors St and S2 and / or the determined ambient light of the humidity 1 to the external or to the outside of the humidity 1 to the global processing device 9.
- the global processing device 9 is thus set up to receive detection values from the firing sensors St and S2 indirectly, namely via the processing device 6 of the humidity 1.
- the global processing device 9 is preferably set up to supply the processing device 6 of the humidity 1 with at least one control command and / or a brightness setpoint in order to control the spruce release of the dampening solution 4 of the moisture 1 and consequently the spruce release of the humidity 1.
- the global processing device 9 is set up to control the light output of the lamp 1 on the basis of detection results or detection values of the two light sensors S1 and S2 of the lamp 1 and / or the determined ambient light of the lamp 1.
- the lighting system 8 of the Ligur 4 can also have more than just one lamp, the global processing device 9 then being set up to control the multiple lamps.
- the global processing device 9 is then set up to control the multiple lights in the same way as the light 1.
- At least one lamp of the further optional lamps of the lighting system 8 can be designed like the lamp 1 shown in Ligur 4 or like the lamp shown in Ligur 1.
- the global processing device 9 can preferably also be set up to control the light output of at least one further lamp for the
- the lighting system 8 has at least one further lamp in addition to the lamp 1.
Landscapes
- Circuit Arrangement For Electric Light Sources In General (AREA)
- Non-Portable Lighting Devices Or Systems Thereof (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102020104754.1A DE102020104754A1 (de) | 2020-02-24 | 2020-02-24 | Umgebungslichterfassung mittels zweier innerhalb einer Leuchte angeordneten Lichtsensoren |
| PCT/EP2021/053775 WO2021170455A1 (de) | 2020-02-24 | 2021-02-16 | Umgebungslichterfassung mittels zweier innerhalb einer leuchte angeordneten lichtsensoren |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4094547A1 true EP4094547A1 (de) | 2022-11-30 |
Family
ID=74673185
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP21707182.8A Withdrawn EP4094547A1 (de) | 2020-02-24 | 2021-02-16 | Umgebungslichterfassung mittels zweier innerhalb einer leuchte angeordneten lichtsensoren |
Country Status (6)
| Country | Link |
|---|---|
| US (1) | US12144074B2 (de) |
| EP (1) | EP4094547A1 (de) |
| CN (1) | CN115053632B (de) |
| AT (1) | AT17491U1 (de) |
| DE (1) | DE102020104754A1 (de) |
| WO (1) | WO2021170455A1 (de) |
Citations (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20140354150A1 (en) * | 2013-05-31 | 2014-12-04 | Smart Fos, Inc. | Systems and Methods for Providing a Self-Adjusting Light Source |
Family Cites Families (21)
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| US7758234B1 (en) | 2005-10-03 | 2010-07-20 | Pass & Seymour, Inc. | Electrical lighting device |
| JP4378257B2 (ja) * | 2004-10-13 | 2009-12-02 | 有限会社滝沢電気工事 | 太陽追尾システム |
| US7950832B2 (en) * | 2006-02-23 | 2011-05-31 | Panasonic Electric Works Co., Ltd. | LED luminaire |
| JP5362725B2 (ja) * | 2007-09-11 | 2013-12-11 | コーニンクレッカ フィリップス エヌ ヴェ | アンビエント光補償センサ及び手順 |
| DE102009010180A1 (de) * | 2009-02-23 | 2010-10-28 | Osram Gesellschaft mit beschränkter Haftung | Leuchtvorrichtung mit mindestens einer Halbleiterlichtquelle |
| DE102009011688A1 (de) | 2009-03-04 | 2010-09-09 | Ledon Lighting Jennersdorf Gmbh | Lichtmaschine mit variabler Lichtemission nach dem Tageslichtrhythmus |
| US9041295B2 (en) * | 2009-04-09 | 2015-05-26 | Tridonic Jennersdorf Gmbh | Integrated LED and sensor device |
| DE102010026564B4 (de) * | 2010-07-08 | 2024-08-29 | HELLA GmbH & Co. KGaA | Verfahren zum Detektieren der Sichtverhältnisse außerhalb eines Kraftfahrzeuges |
| DE102011084180B3 (de) * | 2011-10-07 | 2013-01-31 | BSH Bosch und Siemens Hausgeräte GmbH | Vorrichtung zur Detektion von Ablagerungen in einem Innenraum eines Haushaltsgeräts und Haushaltsgerät |
| JP6190463B2 (ja) | 2012-10-16 | 2017-08-30 | フィリップス ライティング ホールディング ビー ヴィ | 感知される光レベルに対する異なる貢献度を区別する照明センサ |
| JP6025120B2 (ja) * | 2013-02-26 | 2016-11-16 | パナソニックIpマネジメント株式会社 | 照明装置 |
| EP2900037A1 (de) * | 2014-01-22 | 2015-07-29 | ams AG | Optische Sensorschaltung, Leuchttafel und Verfahren zum Betreiben einer optischen Sensorschaltung |
| US10470267B2 (en) * | 2013-11-22 | 2019-11-05 | Ideal Industries Lighting Llc | Ambient light regulation methods |
| US9474128B2 (en) * | 2014-08-15 | 2016-10-18 | Phase Final, Inc. | Lighting device with ambient light sensor |
| US9347828B1 (en) * | 2014-11-27 | 2016-05-24 | Hui Zhao | Method for detecting ambient light brightness and apparatus for achieving the method |
| DE102015100977A1 (de) * | 2015-01-23 | 2016-07-28 | Vorwerk & Co. Interholding Gmbh | Gerät zur Bearbeitung einer Oberfläche |
| US9854642B2 (en) * | 2015-05-18 | 2017-12-26 | DMF, Inc. | Daylight harvesting light fixture and control system for same |
| TWM523106U (zh) * | 2015-08-07 | 2016-06-01 | 高準精密工業股份有限公司 | 光學裝置 |
| DE202015105150U1 (de) * | 2015-09-30 | 2017-01-02 | Zumtobel Lighting Gmbh | Längliche Leucht-Anordnung mit Sensor |
| EP3343246A1 (de) * | 2016-12-30 | 2018-07-04 | Xenomatix NV | System zur charakterisierung der umgebung eines fahrzeugs |
| CN110770802A (zh) * | 2017-06-19 | 2020-02-07 | 昕诺飞控股有限公司 | 传感器组件和包括这种传感器组件的设备. |
-
2020
- 2020-02-24 DE DE102020104754.1A patent/DE102020104754A1/de active Pending
- 2020-04-06 AT ATGM50074/2020U patent/AT17491U1/de not_active IP Right Cessation
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2021
- 2021-02-16 CN CN202180012809.4A patent/CN115053632B/zh active Active
- 2021-02-16 US US17/801,366 patent/US12144074B2/en active Active
- 2021-02-16 WO PCT/EP2021/053775 patent/WO2021170455A1/de not_active Ceased
- 2021-02-16 EP EP21707182.8A patent/EP4094547A1/de not_active Withdrawn
Patent Citations (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20140354150A1 (en) * | 2013-05-31 | 2014-12-04 | Smart Fos, Inc. | Systems and Methods for Providing a Self-Adjusting Light Source |
Also Published As
| Publication number | Publication date |
|---|---|
| US12144074B2 (en) | 2024-11-12 |
| AT17491U1 (de) | 2022-06-15 |
| CN115053632A (zh) | 2022-09-13 |
| US20230077494A1 (en) | 2023-03-16 |
| DE102020104754A1 (de) | 2021-08-26 |
| CN115053632B (zh) | 2024-10-29 |
| WO2021170455A1 (de) | 2021-09-02 |
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