Nova Patents
USRE48299E

Illumination control network

Claim Score by NHIP

Read claim 9, the broadest

Abstract

The present invention addresses the problem of providing illumination in a manner that is energy efficient and intelligent. In particular, the present invention uses distributed processing across a network of illuminators to control the illumination for a given environment. The network controls the illumination level and pattern in response to light, sound, and motion. The network may also be trained according to uploaded software behavior modules, and subsets of the network may be organized into groups for illumination control and maintenance reporting.

USRE48299E, drawing sheet 1
Sheet 1 of 18

Term

1.6 yearsleft in the term

Expires 18 April 2028.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

22 claims: 9 independent, 13 dependent

  1. 1
    A lighting system comprising a plurality of illuminators displaced relative to each other, each of plural illuminators comprising:a light source;a sensor;a communications interface communicating with other illuminators in a network;a processor responsive to the sensor, the processor controlling the illuminator;the processors of plural illuminators configured to make illumination decisions through distributed processing across the network based on information exchange among the illuminators through the communication interfaces;and a plurality of radio-frequency gateways that allow isolated portions of the system to communicate with each other.
  2. 3
    A lighting system comprising a plurality of illuminators displaced relative to each other, each of plural illuminators comprising:a light source;a sensor;a communications interface communicating with other illuminators in a network;and a processor responsive to the sensor, the processor controlling the illuminator;the processors of plural illuminators configured to make illumination decisions through distributed processing across the network based on information exchange among the illuminators through the communication interfaces, wherein the processors forming the distributed network make lighting decisions according to a polling algorithm.
  3. 5
    A method for providing illumination comprising:at each of plural illuminators, emitting light from an illuminator, sensing stimuli with a sensor, and communicating with other illuminators through a communications interface;processing responses to the sensed stimuli across a distributed network of the plural illuminators to make illumination decisions;and using radio-frequency gateways that allow isolated portions of the distributed network to communicate with each other.
  4. 7
    A method for providing illumination comprising:at each of plural illuminators, emitting light from an illuminator, sensing stimuli with a sensor, and communicating with other illuminators through a communications interface;and processing responses to the sensed stimuli across a distributed network of the plural illuminators to make illumination decisions, wherein the processing across the distributed network makes lighting decisions according to a polling algorithm.
  5. 9
    Broadest claimClaim Score 81, broad(NHIP)A method for providing illumination comprising:at each of plural illuminators, emitting light from an illuminator, sensing stimuli with a sensor, and communicating with other illuminators through a communications interface;and processing responses to the sensed stimuli across a distributed network of the plural illuminators to make illumination decisions, wherein the processing comprises using a clock to control the timing of lighting decisions across the network.
  6. 10
    A method for providing illumination comprising:at each of plural illuminators, emitting light from an illuminator, sensing stimuli with a sensor, and communicating with other illuminators through a communications interface;and processing responses to the sensed stimuli across a distributed network of the plural illuminators to make illumination decisions, wherein the processing comprises responding to instructions for reduced emission at an illuminator by controlling emissions by neighboring illuminators to produce patterns of illumination.
  7. 11
    A method for providing illumination comprising:at each of plural illuminators, emitting light from an illuminator, sensing stimuli with a sensor, and communicating with other illuminators through a communications interface;and processing responses to the sensed stimuli across a distributed network of the plural illuminators to make illumination decisions, wherein the processing comprises learning reactions to stimuli according to a training set.
  8. 12
    An illuminator that acts as a node in a distributed mesh network comprising:an LED light source;a wireless communication interface;and control circuitry associated with the wireless communication interface and adapted to: receive a message addressed to a logical group of illuminators;determine if one or more neighboring illuminators belongs to the logical group of illuminators;forward the message to each of the one or more neighboring illuminators belonging to the logical group of illuminators;and control light emitted by the LED light source, wherein the illuminator is a mesh network node.
  9. 16
    An illuminator comprising:an LED light source having at least one LED;a wireless communication interface;processing circuitry;and a memory coupled to the processing circuitry, the memory storing instructions, which, when executed by the processing circuitry cause the illuminator to: assign a new identifier to the illuminator based on interaction with one or more other illuminators via the wireless communication interface such that the illuminator and the one or more other illuminators are each assigned different identifiers automatically without manual intervention;and control light emitted by the LED light source.