IP Library Granted Patent US 9,607,393
Granted Patent B2
US 9,607,393 · App. 14/575,493 · Granted Mar 28, 2017

Multiple panel luminaires for light-based communication

Inventors: Christian Breuer (Newburyport, MA); Anant Aggarwal (Waltham, MA); Barry Stout (Beverly, MA); Bernhard Siessegger (Danvers, MA)
Assignee: OSRAM SYLVANIA Inc.
G06T7/0081G01C3/08G01C21/206G01S1/70G01S5/163G01S11/12G06K9/34G06K9/6218H04B10/0795H04B10/114H04B10/116H04B10/1149H04B10/501H04B10/502H04B10/516H04J3/10H04J14/086G06T2207/10004G06T2207/20021
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Quick Facts
Patent No.
US 9,607,393
App. No.
14/575,493
Granted
Mar 28, 2017
Kind
B2
Abstract

Multiple panel luminaires for light-based communication (LCom) and related techniques of use are disclosed. Each luminaire panel may comprise at least one solid-state light source, where the light sources are configured to output light. The luminaire may also include at least one modulator configured to modulate the light output of the light sources to allow for emission of LCom signals. The luminaire may also include a controller configured to synchronize timing of the LCom signals. In some cases, one panel may be configured to emit an LCom signal that is the inverse or duplicate of the LCom signal emitted from another panel. Panel signal inversion may be used to maintain a relatively constant level of light output from the luminaire and/or to create a virtual fiducial to provide orientation information. Using a multiple panel luminaire to transmit data may also result in improved data transmission rates and transmission reliability.

Claims (26)

1. A luminaire comprising:

a frame;

a plurality of panels arranged within the frame, each panel being independently controllable and comprising at least one solid-state light source, wherein the light sources of each panel are configured to output light;

at least one modulator configured to modulate the light output of the light sources of the panels to allow for emission of light-based communication (LCom) signals; and

a controller configured to synchronize timing of the LCom signals, such that a first LCom signal emitted from a first one of the panels is synchronized to a second LCom signal emitted from a second one of the panels, wherein the first and second LCom signals are simultaneously emitted and inverse to each other, and wherein a data rate of data emitted by the luminaire is lower when the LCom signals comprise orientation information than when the LCom signals do not comprise orientation information.

2. The luminaire of claim 1 , wherein the total light output of the luminaire is maintained at a relatively constant level, such that the light output variance is not perceptible by human vision.

3. The luminaire of claim 1 , wherein each panel emits its own LCom signal, and any emitted LCom signal is attributable to a specific one of the panels.

4. The luminaire of claim 1 , wherein the first panel and a third one of the panels simultaneously emit the first LCom signal and a third LCom signal, respectively, and the second panel and a fourth one of the panels simultaneously emit the second LCom signal and a fourth LCom signal, respectively.

5. The luminaire of claim 1 , wherein data emitted from the luminaire is divided amongst at least four panels of the plurality.

6. The luminaire of claim 1 , wherein the data rate is at least twice as fast compared to a single panel luminaire.

7. The luminaire of claim 1 , wherein the LCom signals are emitted via visible light.

8. A system comprising the luminaire of claim 1 and further comprising at least one mobile computing device configured to receive and interpret the LCom signals.

9. A method of controlling a luminaire, the method comprising:

modulating light output from solid-state light sources to allow for emission of light-based communication (LCom) signals, the light sources included in a plurality of panels within a frame of the luminaire, wherein each panel is independently controllable and comprises at least one solid-state light source; and

synchronizing timing of the LCom signals, such that a first LCom signal emitted from a first one of the panels is synchronized to a second LCom signal emitted from a second one of the panels, wherein the first and second LCom signals are simultaneously emitted and inverse to each other, and wherein a data rate of data emitted by the luminaire is lower when the LCom signals comprise orientation information than when the LCom signals do not comprise orientation information.

10. The method of claim 9 , wherein the total light output of the luminaire is maintained at a relatively constant level, such that the light output variance is not perceptible by human vision.

11. The method of claim 9 , wherein the first panel and a third one of the panels simultaneously emit the first LCom signal and a third LCom signal, respectively, and the second panel and a fourth one of the panels simultaneously emit the second LCom signal and a fourth LCom signal, respectively.

12. The method of claim 9 , further comprising dividing data emitted from the luminaire amongst at least four panels of the plurality.

13. The method of claim 9 , wherein the LCom signals are emitted via visible light.

14. A non-transitory computer program product encoded with instructions that, when executed by one or more processors, causes a process to be carried out, the process comprising:

modulate light output from solid-state light sources to allow for emission of light-based communication (LCom) signals, the light sources included in a plurality of panels within a frame of a luminaire, wherein each panel is independently controllable and comprises at least one solid-state light source; and

synchronize timing of the LCom signals, such that a first LCom signal emitted from a first one of the panels is synchronized to a second LCom signal emitted from a second one of the panels, wherein the first and second LCom signals are simultaneously emitted and inverse to each other, and wherein a data rate of data emitted by the luminaire is lower when the LCom signals comprise orientation information than when the LCom signals do not comprise orientation information.

15. The computer program product of claim 14 , wherein the total light output of the luminaire is maintained at a relatively constant level.

16. The computer program product of claim 14 , wherein the first panel and a third one of the panels simultaneously emit the first LCom signal and a third LCom signal, respectively, and the second panel and a fourth one of the panels simultaneously emit the second LCom signal and a fourth LCom signal, respectively.

17. The computer program product of claim 14 , the process further comprising:

divide data emitted from the luminaire amongst at least four panels of the plurality.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2014
From: STOUT, BARRY; BREUER, CHRISTIAN; AGGARWAL, ANANT; SIESSEGGER, BERNHARD
To: OSRAM SYLVANIA INC.
Reel/Frame 034549/0751 →
Continuity (6)
Provisional Application 61970305 · Mar 25, 2014
Provisional Application 61970307 · Mar 25, 2014
Provisional Application 61970310 · Mar 25, 2014
Provisional Application 61970321 · Mar 25, 2014
Provisional Application 61970325 · Mar 25, 2014
Related Publication 20150280829A1 · Oct 1, 2015