IP Library Granted Patent US 11,445,153
Granted Patent B2
US 11,445,153 · App. 17/243,698 · Granted Sep 13, 2022

Load control system having a visible light sensor

Inventor: James P. Steiner (Royersford, PA)
Assignee: Lutron Technology Company LLC
H04N7/188G05B19/048G06V10/462G06V10/56G06V40/20H05B47/105H05B47/11H05B47/115H05B47/18H05B47/19G05B2219/23153G06V10/467
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Quick Facts
Patent No.
US 11,445,153
App. No.
17/243,698
Granted
Sep 13, 2022
Kind
B2
Abstract

A sensor for sensing environmental characteristics of a space may include a visible light sensing circuit for recording an image of the space and a control circuit responsive to the visible light sensing circuit. The control circuit may detect an occupancy or vacancy condition in the space in response to the visible light sensing circuit, and measure a light level in the space in response to the visible light sensing circuit. The control circuit may also include a low-energy occupancy sensing circuit for detecting an occupancy condition in the space. The control circuit may disable the visible light sensing circuit when the space is vacant. The control circuit may detect an occupancy condition in the space in response to the low-energy occupancy sensing circuit and subsequently enable the visible light sensing circuit. The visible light sensor may be configured in a way that protects the privacy of the occupants of the space.

Claims (58)

1. A sensor comprising:

a visible light sensing circuit comprising an image recording circuit configured to record at least one image of a space, wherein the visible light sensing circuit is configured to detect a vacancy condition in the space;

an occupancy sensing circuit configured to detect an occupancy condition in the space, wherein the occupancy sensing circuit is configured to consume less power than the image recording circuit when powered; and

a control circuit configured to enable the image recording circuit in response to the occupancy condition, wherein the control circuit is configured to:

detect, while the image recording circuit is enabled, the vacancy condition in the space, and

disable the image recording circuit in response to the vacancy condition being detected.

2. The sensor of claim 1 , wherein the control circuit is configured to detect that the occupancy condition is maintained in the space in response to the visible light sensing circuit.

3. The sensor of claim 2 , wherein the control circuit is configured to detect that the occupancy condition is maintained by determining that an occupant is within a bounded area of the at least one image.

4. The sensor of claim 3 , wherein the control circuit is configured to detect the vacancy condition in the space in response to the occupant crossing a boundary of the bounded area to exit the bounded area.

5. The sensor of claim 2 , wherein the control circuit is configured to apply a mask to focus on a region of interest of the at least one image to detect that the occupancy condition is maintained within the region of interest.

6. The sensor of claim 2 , wherein the control circuit is configured to detect that the occupancy condition is maintained by applying a first mask to focus on a first region of interest of the at least one image using a first sensitivity and applying a second mask to focus on a second region of interest of the at least one image using a second sensitivity.

7. The sensor of claim 1 , wherein the image recording circuit comprises a camera, and wherein the visible light sensing circuit comprises an image processor.

8. The sensor of claim 7 , wherein the occupancy sensing circuit comprises a passive infrared sensing circuit.

9. The sensor of claim 1 , further comprising:

a communication circuit configured to transmit and receive messages;

wherein the control circuit is configured to transmit a first message that indicates the occupancy condition and a second message that indicates the vacancy condition via the communication circuit.

10. The sensor of claim 1 , wherein the control circuit is configured to apply a mask to focus on a region of interest of the at least one image, and to count a number of occupants within the region of interest.

11. The sensor of claim 1 , wherein the control circuit is configured to apply a mask to focus on a region of interest of the at least one image, and to count a number of occupants entering and exiting the region of interest.

12. The sensor of claim 1 , wherein the control circuit is configured to operate in a plurality of modes for operating differently in each mode, wherein the plurality of modes comprises a daylight glare mode, a daylighting mode, a color temperature mode, or an occupancy/vacancy mode, and wherein the control circuit is configured to detect the occupancy condition via the occupancy sensing circuit and the vacancy condition via the image recording circuit while operating in the occupancy/vacancy mode.

13. The sensor of claim 12 , wherein when the control circuit is operating in the daylight glare mode the control circuit is further configured to:

identify an intensity of light presented at a task area within the at least one image; and

based on the intensity of light presented on the task area being representative of sunlight, adjust a motorized window treatment so that the intensity of light representative of sunlight is prevented from presenting at the task area.

14. The sensor of claim 12 , wherein when the control circuit is operating in the daylighting mode the control circuit is further configured to:

identify an intensity of light presented at a task area within the at least one image of the space;

adjust an intensity level of a light source presented at the task area;

monitor the adjustment of the intensity level of the light source presented at the task area in the at least one image until the intensity of light presented at the task area is a preferred intensity of the light to be presented at the task area; and

stop the adjustment of the intensity level of the light source presented at the task area in the at least one image when the intensity of light presented at the task area is a preferred intensity of the light to be presented at the task area.

15. The sensor of claim 12 , wherein when the control circuit is operating in the color temperature mode the control circuit is further configured to:

identify a first color temperature presented at a region of interest within the at least one image;

adjust a light source to present a second color temperature at the region of interest within the at least one image;

monitor the adjustment of the light source; and

stop the adjustment of the light source when the color temperature presented at the region of interest is a preferred color temperature to be presented at the region of interest.

16. A method comprising:

recording, via an image recording circuit of a visible light sensing circuit, at least one image of a space, wherein the visible light sensing circuit is configured to detect a vacancy condition in the space;

detecting, via an occupancy sensing circuit, an occupancy condition in the space, wherein the occupancy sensing circuit is configured to consume less power than the image recording circuit when powered;

enabling the image recording circuit in response to the occupancy condition being detected;

detecting, while the image recording circuit is enabled, the vacancy condition in the space; and

disabling the image recording circuit in response to the vacancy condition being detected.

17. The method of claim 16 , further comprising detecting that the occupancy condition is maintained in the space in response to the visible light sensing circuit.

18. The method of claim 17 , wherein detecting that the occupancy condition is maintained is based on a determination that an occupant is within a bounded area of the at least one image.

19. The method of claim 18 , wherein the vacancy condition in the space is detected in response to the occupant crossing a boundary of the bounded area to exit the bounded area.

20. The method of claim 17 , wherein detecting that the occupancy condition is maintained comprises applying a first mask to focus on a first region of interest of the at least one image using a first sensitivity and applying a second mask to focus on a second region of interest of the at least one image using a second sensitivity.

21. The method of claim 16 , wherein the image recording circuit comprises a camera, and wherein the visible light sensing circuit comprises an image processor.

22. The method of claim 21 , wherein the occupancy sensing circuit comprises a passive infrared sensing circuit.

23. The method of claim 16 , further comprising:

operating in a plurality of modes for operating differently in each mode, wherein the plurality of modes comprises a daylight glare mode, a daylighting mode, a color temperature mode, or an occupancy/vacancy mode, wherein the occupancy condition and the vacancy condition are detected while operating in the occupancy/vacancy mode.

24. The method of claim 23 , further comprising:

identifying an intensity of light presented at a task area within the at least one image; and

based on the intensity of light presented on the task area being representative of sunlight, adjusting a motorized window treatment so that the intensity of light representative of sunlight is prevented from presenting at the task area.

25. A non-transitory computer-readable storage medium comprising executable instructions stored thereon that, when executed by a control circuit, cause the control circuit to:

record, via an image recording circuit of a visible light sensing circuit, at least one image of a space, wherein the visible light sensing circuit is configured to detect a vacancy condition in the space;

detect, via an occupancy sensing circuit, an occupancy condition in the space, wherein the occupancy sensing circuit is configured to consume less power than the image recording circuit when powered;

enable the image recording circuit in response to the occupancy condition being detected;

detect, while the image recording circuit is enabled, the vacancy condition in the space; and

disable the image recording circuit in response to the vacancy condition being detected.

26. The non-transitory computer-readable storage medium of claim 25 , wherein the executable instructions further cause the control circuit to detect that the occupancy condition is maintained in the space in response to the visible light sensing circuit.

27. The non-transitory computer-readable storage medium of claim 26 , wherein detecting that the occupancy condition is maintained is based on a determination that an occupant is within a bounded area of the at least one image.

28. The non-transitory computer-readable storage medium of claim 27 , wherein the vacancy condition in the space is detected in response to the occupant crossing a boundary of the bounded area to exit the bounded area.

Continuity (5)
Continuation 16790334 · Feb 13, 2020
Continuation 16280797 · Feb 20, 2019
Division 15374928 · Dec 9, 2016
Provisional Application 62266370 · Dec 11, 2015
Related Publication 20210250555A1 · Aug 12, 2021