IP Library Granted Patent US 8,138,690
Granted Patent B2
US 8,138,690 · App. 12/823,195 · Granted Mar 20, 2012

LED-based lighting methods, apparatus, and systems employing LED light bars, occupancy sensing, local state machine, and meter circuit

Assignee: Digital Lumens Incorporated
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Quick Facts
Patent No.
US 8,138,690
App. No.
12/823,195
Granted
Mar 20, 2012
Kind
B2
Abstract

In embodiments of the present invention, a method and system is provided for designing improved intelligent, LED-based lighting systems. The LED based lighting systems may include fixtures with one or more of rotatable LED light bars, integrated sensors, onboard intelligence to receive signals from the LED light bars and control the LED light bars, and a mesh network connectivity to other fixtures.

Claims (61)

1. A lighting fixture to provide variable occupancy-based lighting, the lighting fixture comprising:

a housing;

at least one occupancy sensor, disposed in or coupled to the housing, to provide occupancy information;

a plurality of light emitting diode (LED) light bars disposed in the housing to provide the variable occupancy-based lighting at a plurality of light levels;

a power management module (PMM), disposed in the housing and operatively coupled to the at least one occupancy sensor and the plurality of LED light bars, to adjust the variable occupancy-based lighting based at least in part on the occupancy information provided by the at least one occupancy sensor, the power management module including:

a memory to store lighting parameters, wherein the lighting parameters include at least an active power output level of the plurality of light levels and an inactive power output level of the plurality of light levels; and

a digital light agent controller to implement a state machine to analyze the occupancy information and control the plurality of LED light bars based on the lighting parameters in the memory so as to provide the variable occupancy-based lighting at the active power output level of the plurality of light levels or the inactive power output level of the plurality of light levels; and

a meter circuit, operatively coupled to the digital light agent controller and the plurality of LED light bars, to determine an energy usage by the plurality of LED light bars.

2. The lighting fixture of claim 1 , wherein the meter circuit includes a hardware meter circuit to measure the energy usage.

3. The lighting fixture of claim 1 , wherein the meter circuit performs a software measurement to determine the energy usage as a prediction based at least in part on operating states of the plurality of LED light bars.

4. The lighting fixture of claim 1 , wherein the digital light agent controller logs in the memory power measurements representing the energy usage determined by the meter circuit.

5. The lighting fixture of claim 1 , further comprising:

a network interface operatively coupled to the power management module,

wherein the power management module controls the network interface so as to transmit to at least one external device power measurements representing the energy usage determined by the meter circuit.

6. A system, comprising:

the lighting fixture of claim 5 ; and

the at least one external device,

wherein the at least one external device is a second lighting fixture according to claim 5 .

7. The lighting fixture of claim 1 , further comprising:

a real-time clock, operatively coupled to the power management module, to generate an output as a unit of time to facilitate tracking time-based operational modes associated with the lighting fixture.

8. The lighting fixture of claim 7 , wherein, upon implementation of the state machine, the digital light agent controller controls the plurality of LED light bars based on the lighting parameters in the memory and the output of the real-time clock so as to provide the variable occupancy-based lighting based at least in part on a time-of-day.

9. The lighting fixture of claim 7 , wherein the digital light agent controller records in the memory the occupancy information and related timelines, based on the output of the real-time clock, so as to maintain a database of historic data of lighting usage.

10. The lighting fixture of claim 9 , wherein, upon implementation of the state machine, the digital light agent controller controls the plurality of LED light bars based on the lighting parameters in the memory and the database of historic data of lighting usage in the memory so as to provide the variable occupancy-based lighting.

11. The lighting fixture of claim 10 , further comprising:

a network interface, operatively coupled to at least the power management module, to transmit to at least one external device, and/or receive from the at least one external device, at least one of:

the lighting parameters;

the occupancy information; and

the database of historic data.

12. The lighting fixture of claim 11 , wherein the network interface further transmits to the at least one external device the power measurements representing the energy usage determined by the meter circuit.

13. A system, comprising:

the lighting fixture of claim 12 ; and

the at least one external device,

wherein the at least one external device is a second lighting fixture according to claim 12 .

14. A lighting method to provide variable occupancy-based lighting in an environment, the lighting method comprising:

A) sensing an occupancy in the environment to provide occupancy information;

B) controlling a plurality of LED light bars to provide the variable occupancy-based lighting at a plurality of light levels, based at least in part on the occupancy information and/or lighting parameters, wherein the lighting parameters include at least an active power output level of the plurality of light levels and an inactive power output level of the plurality of light levels;

C) determining an energy usage by the plurality of LED light bars; and

D) transmitting to at least one external device power measurements representing the energy usage determined in C).

15. The method of claim 14 , further comprising:

E) logging in memory the power measurement representing the energy usage determined in E).

16. The method of claim 15 , further comprising:

F) storing in the memory the occupancy information and related timelines, based on an output of a real-time clock, so as to maintain a database of historic data of lighting usage,

wherein B) comprises:

B1) controlling the plurality of LED light bars to provide the variable occupancy-based lighting at the plurality of light levels, based at least in part on the occupancy information, the database of historic data, and/or the lighting parameters.

17. The method of claim 16 , wherein D) comprises:

transmitting to the at least one external device, and/or receiving from the at least one external device, at least one of:

the lighting parameters;

the occupancy information; and

the database of historic data.

18. The lighting method of claim 16 , wherein B1) comprises:

controlling the plurality of LED light bars based on the lighting parameters and the output of the real-time clock so as to provide the variable occupancy-based lighting based at least in part on a time-of-day.

19. A lighting fixture to provide variable occupancy-based warehouse and industrial lighting, the lighting fixture comprising:

A) a housing formed as a rectangular frame and including an integral sensor bay;

B) at least one occupancy sensor, disposed in the integral sensor bay, to provide occupancy information;

C) a plurality of rotatable light emitting diode (LED) light bars disposed in the housing to provide the variable occupancy-based warehouse and industrial lighting at a plurality of light levels and a plurality of foot-candle patterns, each LED light bar being arranged to rotate in the frame around a corresponding rotational axis to obtain a specific direction of light;

D) a power management module (PMM), disposed in the housing and operatively coupled to the at least one occupancy sensor and the plurality of rotatable LED light bars to adjust the variable occupancy-based warehouse and industrial lighting based at least in part on the occupancy information provided by the at least one occupancy sensor, the power management module including:

D1) a memory to store lighting parameters, wherein the lighting parameters include at least an active power output level of the plurality of light levels and an inactive power output level of the plurality of light levels; and

D2) a digital light agent controller to implement a state machine to analyze the occupancy information and control the plurality of rotatable LED light bars based on the lighting parameters in the memory and the analyzed occupancy information so as to provide the variable occupancy-based warehouse and industrial lighting at the active power output level of the plurality of light levels or the inactive power output level of the plurality of light levels;

E) a meter circuit, operatively coupled to the power management module and the plurality of LED light bars, to determine an energy usage by the plurality of LED light bars, wherein the power management module logs in the memory power measurements representing the energy usage determined by the meter circuit; and

F) a network interface, operatively coupled to at least the power management module, to transmit to at least one external device the power measurements representing the energy usage determined by the meter circuit.

20. The lighting fixture of claim 19 , wherein the meter circuit performs a software measurement to determine the energy usage as a prediction based at least in part on operating states of the plurality of LED light bars.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 19, 2021
From: DIGITAL LUMENS INCORPORATED
To: OSRAM SYLVANIA INC.
Reel/Frame 057229/0146 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2011
From: CHEMEL, BRIAN J.; PIPEGRAS, COLIN N.; KONDO, STEVE T.; JOHNSTON, SCOTT D.
To: DIGITAL LUMENS INCORPORATED
Reel/Frame 026868/0111 →
Continuity (11)
Continuation In Part 12423543 · Apr 14, 2009
Continuation In Part 12423361 · Apr 14, 2009
Provisional Application 61303608 · Feb 11, 2010
Provisional Application 61303278 · Feb 10, 2010
Provisional Application 61044591 · Apr 14, 2008
Provisional Application 61055727 · May 23, 2008
Provisional Application 61084367 · Jul 29, 2008
Provisional Application 61102159 · Oct 2, 2008
Provisional Application 61108698 · Oct 27, 2008
Provisional Application 61109009 · Oct 28, 2008
Related Publication 20100259931A1 · Oct 14, 2010