Synchronized light control over a wireless network

US2016255698A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016255698-A1
Application numberUS-201615055298-A
CountryUS
Kind codeA1
Filing dateFeb 26, 2016
Priority dateFeb 27, 2015
Publication dateSep 1, 2016
Grant date

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A light control and data interface module (LCDIM) is used to control an LED based illumination device. The LCDIM includes a transceiver that receives communication signals from one or more sensor modules. The signals may include an indication of an identity of the one or more sensor modules and elapsed time since a triggering event was detected. One or more processors are configured to receive the communication signal and to determine a delay time to trigger a lighting control response. The one or more processors are further configured to cause the transmission of a command signal to a power converter coupled to the LCDIM to implement the lighting control response.

First claim

Opening claim text (preview).

What is claimed is: 1 . A light control and data interface module, comprising: one or more processors; a transceiver configured to receive a first communication signal from one or more sensor modules, the first communication signal including an indication of an identity of the one or more sensor modules and a first elapsed time since a triggering event was detected by the one or more sensor modules; and a non-transitory, computer readable medium storing instructions that when executed by the one or more processors cause the one or more processors to: receive the first communication signal from the transceiver; determine a delay time to trigger a lighting control response based on a difference between a desired delay time to trigger the lighting control response and the first elapsed time; and transmit a command signal that implements the lighting control response to a power converter coupled to the light control and data interface module after the delay time to trigger the lighting control response has elapsed, wherein the power converter is configured to supply an electrical current to an LED based light engine in response to the command signal. 2 . The light control and data interface module of claim 1 , further comprising: an amount of memory storing the desired delay time to trigger a lighting control event, wherein the desired delay time to trigger the lighting control event is a desired elapsed time between the triggering event detected by the one or more sensor modules and a change in an amount of light emitted by the LED based light engine. 3 . The light control and data interface module of claim 1 , wherein the non-transitory, computer readable medium also stores instructions that when executed by the one or more processors cause the light control and data interface module to: transmit a second communication signal from the transceiver of the light control and data interface module, the second communication signal including the indication of the identity of the one or more sensor modules and a second elapsed time since the triggering event was detected by the one or more sensor modules, wherein the second elapsed time is a sum of the first elapsed time and a time elapsed between the receiving of the first communication signal and the transmitting of the second communication signal. 4 . The light control and data interface module of claim 1 , wherein the indication of the identity of the one or more sensor modules includes any of a sensor identification number, an indication of an address of the one or more sensor modules on a wireless network, and an indication of the triggering event. 5 . The light control and data interface module of claim 4 , wherein the indication of the identity of the one or more sensor modules further includes an indication of a group of which the one or more sensor modules is a part and an indication of a type of sensor. 6 . The light control and data interface module of claim 1 , wherein the one or more sensor modules is any of a presence sensor, a light sensor, an acoustic sensor, a motion sensor, a pressure sensor, a humidity sensor, a gas monitoring (CO2, CO, etc.) sensor and a vibration sensor. 7 . The light control and data interface module of claim 1 , wherein the transceiver is further configured to receive a second communication signal from the one or more sensor modules, the second communication signal including an indication of an identity of the one or more sensor modules and an indication that a triggering event was not detected by the one or more sensor modules. 8 . The light control and data interface module of claim 1 , wherein the transceiver is further configured to receive a second communication signal from the one or more sensor modules, the second communication signal including the indication of the identity of the one or more sensor modules and a second elapsed time since the triggering event was detected by the one or more sensor modules, wherein the second elapsed time is greater than the first elapsed time. 9 . The light control and data interface module of claim 8 , wherein the second communication signal also includes an indication of a cumulative number of successive communications from the one or more sensor modules indicating the triggering event detected by the one or more sensor modules. 10 . The light control and data interface module of claim 1 , wherein the first communication signal is encrypted. 11 . The light control and data interface module of claim 1 , wherein the non-transitory, computer readable medium also stores instructions that when executed by the one or more processors cause the one or more processors to: determine the lighting control response based at least in part on the indication of an identity of the one or more sensor modules. 12 . The light control and data interface module of claim 11 , wherein the lighting control response includes any of a fade-on rate, a target intensity level, a persistence time, and a fade-off rate. 13 . The light control and data interface module of claim 11 , wherein the non-transitory, computer readable medium also stores instructions that when executed by the one or more processors cause the one or more processors to: receive an indication of the identity of the one or more sensor modules, an identity of the light control and data interface module, and at least one light control rule including at least one parameter that defines at least a portion of the lighting control response. 14 . The light control and data interface module of claim 13 , wherein the indication of the identity of the one or more sensor modules, the identity of the light control and data interface module, and the at least one light control rule are received from a mobile electronic device. 15 . The light control and data interface module of claim 1 , wherein the first elapsed time since the triggering event was detected by the one or more sensor modules is determined based at least in part on a predetermined estimate of a communication latency between the one or more sensor modules and the light control and data interface module. 16 . The light control and data interface module of claim 1 , wherein the first elapsed time since the triggering event was detected by the one or more sensor modules is determined based at least in part on a number of received packets buffered in the light control and data interface module. 17 . A mobile communications device, comprising: one or more processors; a camera module configured to capture one or more images of a plurality of LED based illumination devices within an environment; and a non-transitory, computer readable medium storing instructions that when executed by the one or more processors cause the one or more processors to: identify a presence of the plurality of LED based illumination devices based on the one or more images; and communicate a signal indicative of at least one light control rule to each of the plurality of LED based illumination devices, wherein the at least one light control rule is indicative of a desired lighting response of each of the plurality of LED based illumination devices to a signal received from the sensor module indicative of a triggering event detected by a sensor module. 18 . The mobile communications device of claim 17 , wherein the signal is also indicative of a network identity of the sensor module and a network identity of each of the plurality of LED based illumination devices. 19 . The mobile communications device of claim 17

Assignees

Inventors

Classifications

  • Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction · CPC title

  • Self-organising networks, e.g. ad-hoc networks or sensor networks · CPC title

  • Controlling the colour of the light · CPC title

  • one node acting as a reference for the others · CPC title

  • via wireless transmission · CPC title

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Frequently asked questions

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What does patent US2016255698A1 cover?
A light control and data interface module (LCDIM) is used to control an LED based illumination device. The LCDIM includes a transceiver that receives communication signals from one or more sensor modules. The signals may include an indication of an identity of the one or more sensor modules and elapsed time since a triggering event was detected. One or more processors are configured to receive …
Who is the assignee on this patent?
Xicato Inc
What technology area does this patent fall under?
Primary CPC classification H05B33/0854. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Sep 01 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).