WO2017096027A1

Method and system for utilizing a device's user location to monitor and control the device power usage

Abstract

The invention pertains to a method and system which utilizes individual lighting fixtures and electrical plug controls to provide a rigorous and ubiquitous grid of sensors within or around a facility or facilities. The system utilizes a variety of parameters at the tag, lighting and plug controllers and central processor level to provide unique location and tracking information on objects, equipment, and personnel in the facility. The unique aspects of the system provide higher spatial and temporal accuracy and the ability to track high spatial densities of devices.

WO2017096027A1, drawing sheet 1
Sheet 1 of 11

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

25 claims: 2 independent, 23 dependent

  1. 1
    CLAIMS1 . A system for detecting and generating data reflecting locations of a plurality of subjects comprising:a first power controller module, said first power controller module including first power input means, first power output means, and intervening, operably connected, first integral power switching means, said first integral power switching means being configured for actuation by a first integral power management module operably connected with said first integral power switching means, said first integral power management module including integral first actuation signal detection and actuation means configured for, in accordance with commands and operational parameters, upon detection of a first actuating signal, actuating said integral power switching means to alter power output through said first power output means from a first power output level to a second power output level;said first integral power control module having integral, operably integrated first memory means for storing said commands and operational parameters for effecting said altering of said first power output through said first power output means, said first memory means being operably connected with said first integral actuation signal detection and actuation means;wherein said first integral actuation signal detection and actuation means is configured for actuation by a first actuation signal from a first RF device, said first actuation signal including a first identification component for identifying a said first actuating signal as a said first actuation signal;wherein said first integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said first actuation signal, reacting other than in response to a said first actuation signal;and said first integral power management module being further configured for receiving, through network communications interface means, said commands and operational parameters from a remote management system for programing said integral power management module.
  2. 2
    The system of Claim 1 wherein said commands and operational parameters further include functionality for recording in said first memory means and reporting to said remote management system the signal strength of a received first actuation signal.
  3. 3
    The system of Claim 1 wherein said first integral actuation signal detection and actuation means is further configured for actuation by a second actuation signal from a second RF device, said second actuation signal including a second identification component for identifying a said second actuating signal as a said second actuation signal;wherein said first integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said second actuation signal, reacting other than in response to a said second actuation signal.
  4. 4
    The system of Claim 1 further comprising:a second power controller module, said second power controller module including second power input means, second power output means, and intervening, operably connected, second integral power switching means, said second integral power switching means being configured for actuation by a second integral power management module operably connected with said second integral power switching means, said second integral power management module including integral second actuation signal detection and actuation means configured for, in accordance with commands and operational parameters, upon detection of a second actuating signal, actuating said integral power switching means to alter power output through said second power output means from a second power output level to a second power output level;said second integral power control module having integral, operably integrated second memory means for storing second commands and operational parameters for effecting said altering of said second power output through said second power output means, said second memory means being operably connected with said second integral actuation signal detection and actuation means;wherein said second integral actuation signal detection and actuation means is configured for actuation by said first actuation signal from said first RF device;wherein said second integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said first actuation signal, reacting other than in response to a said first actuation signal;and said second integral power management module being further configured for receiving, through second network communications interface means, said second commands and operational parameters from said remote management system for programing said second integral power management module;wherein said second commands and operational parameters further include functionality for recording in said second memory means and reporting to said remote management system the signal strength of a received first actuation signal;and wherein said remote management system is configured with program logic for estimating and reporting a location of said first RF device based, at least in part, on said first signal strength.
  5. 5
    The system of Claim 4 further comprising:a third power controller module, said third power controller module including third power input means, third power output means, and intervening, operably connected, third integral power switching means, said third integral power switching means being configured for actuation by a third integral power management module operably connected with said third integral power switching means, said third integral power management module including integral third actuation signal detection and actuation means configured for, in accordance with commands and operational parameters, upon detection of a third actuating signal, actuating said integral power switching means to alter power output through said third power output means from a third power output level to a third power output level;said third integral power control module having integral, operably integrated third memory means for storing third commands and operational parameters for effecting said altering of said third power output through said third power output means, said third memory means being operably connected with said third integral actuation signal detection and actuation means;wherein said third integral actuation signal detection and actuation means is configured for actuation by said first actuation signal from said first RF device;wherein said third integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said first actuation signal, reacting other than in response to a said first actuation signal;and said third integral power management module being further configured for receiving, through third network communications interface means, said third commands and operational parameters from said remote management system for programing said third integral power management module;wherein said third commands and operational parameters further include functionality for recording in said third memory means and reporting to said remote management system the signal strength of a received first actuation signal.
  6. 6
    The system of Claim 4 wherein said second integral actuation signal detection and actuation means is further configured for actuation by a second actuation signal from a second RF device, said second actuation signal including a second identification component for identifying a said second actuating signal as a said second actuation signal;wherein said second integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said second actuation signal, reacting other than in response to a said second actuation signal.
  7. 7
    The system of Claim 5 wherein said third integral actuation signal detection and actuation means is further configured for actuation by a second actuation signal from a second RF device, said second actuation signal including a second identification component for identifying a said second actuating signal as a said second actuation signal;wherein said third integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said second actuation signal, reacting other than in response to a said second actuation signal.
  8. 8
    The system of Claim 5 wherein said second integral actuation signal detection and actuation means is further configured for actuation by a second actuation signal from a second RF device, said second actuation signal including a second identification component for identifying a said second actuating signal as a said second actuation signal;wherein said second integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said second actuation signal, reacting other than in response to a said second actuation signal;said third integral actuation signal detection and actuation means is further configured for actuation by a second actuation signal from a second RF device, said second actuation signal including a second identification component for identifying a said second actuating signal as a said second actuation signal;and wherein said third integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said second actuation signal, reacting other than in response to a said second actuation signal.
  9. 9
    The system of Claim 1 further comprising:a said first RF device that is a first active RFI D transmitter, said first active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said first actuation signal;wherein said first active RFID transmitter is configured for transmitting of first said actuation signal including said first identification component for identifying a said first actuating signal as a said first actuation signal.
  10. 10
    The system of Claim 4 further comprising:a said first RF device that is a first active RFI D transmitter, said first active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said first actuation signal;wherein said first active RFID transmitter is configured for transmitting of first said actuation signal including said first identification component for identifying a said first actuating signal as a said first actuation signal.
  11. 11
    1 1 . The system of Claim 5 further comprising:a said first RF device that is a first active RFI D transmitter, said first active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said first actuation signal;wherein said first active RFID transmitter is configured for transmitting of first said actuation signal including said first identification component for identifying a said first actuating signal as a said first actuation signal.
  12. 12
    The system of Claim 6 further comprising:a said first RF device that is a first active RFI D transmitter, said first active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said first actuation signal;wherein said first active RFID transmitter is configured for transmitting of first said actuation signal including said first identification component for identifying a said first actuating signal as a said first actuation signal. a said second RF device that is a second active RFID transmitter, said second active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said second actuation signal;wherein said second active RFID transmitter is configured for transmitting of said second actuation signal including said second identification component for identifying a said second actuating signal as a said second actuation signal.
  13. 13
    The system of Claim 8 further comprising:a said first RF device that is a first active RFID transmitter, said first active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said first actuation signal;wherein said first active RFID transmitter is configured for transmitting of first said actuation signal including said first identification component for identifying a said first actuating signal as a said first actuation signal. a said second RF device that is a second active RFID transmitter, said second active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said second actuation signal;wherein said second active RFID transmitter is configured for transmitting of said second actuation signal including said second identification component for identifying a said second actuating signal as a said second actuation signal.
  14. 14
    A method for detecting and generating data reflecting locations of a plurality of subjects comprising the steps of:selecting and placing in a substantially stationary position a proximity monitoring device;selecting a remote management system that is configured for wireless communication with said proximity monitoring device, whereby said remote management and said proximity monitoring device exchange data;said proximity monitoring device comprising: a first power controller module, said first power controller module including first power input means, first power output means, and intervening, operably connected, first integral power switching means;said first integral power switching means being configured for actuation by a first integral power management module operably connected with said first integral power switching means, said first integral power management module including integral first actuation signal detection and actuation means configured for, in accordance with commands and operational parameters, upon detection of a first actuating signal, actuating said integral power switching means to alter power output through said first power output means from a first power output level to a second power output level, said commands and operational parameters further including functionality for recording in said first memory means and reporting to a remote management system the signal strength of a received first actuation signal;said first integral power control module having integral, operably integrated first memory means for storing said commands and operational parameters for effecting said altering of said first power output through said first power output means, said first memory means being operably connected with said first integral actuation signal detection and actuation means;wherein said first integral actuation signal detection and actuation means is configured for actuation by a first actuation signal from a first RF device, said first actuation signal including a first identification component for identifying a said first actuating signal as a said first actuation signal;wherein said first integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said first actuation signal, reacting other than in response to a said first actuation signal;andsaid first integral power management module being further configured for receiving, through network communications interface means, said commands and operational parameters from a remote management system for programing said integral power management module;actuating said proximity monitoring device;and actuating said remote management system;
  15. 15
    The method of Claim 14 wherein said commands and operational parameters further include functionality for recording in said first memory means and reporting to said remote management system the signal strength of a received first actuation signal.
  16. 16
    The method of Claim 14 wherein said first integral actuation signal detection and actuation means is further configured for actuation by a second actuation signal from a second RF device, said second actuation signal including a second identification component for identifying a said second actuating signal as a said second actuation signal;wherein said first integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said second actuation signal, reacting other than in response to a said second actuation signal.
  17. 17
    The system of Claim 14 further comprising the steps of selecting and actuating:a second power controller module, said second power controller module including second power input means, second power output means, and intervening, operably connected, second integral power switching means, said second integral power switching means being configured for actuation by a second integral power management module operably connected with said second integral power switching means, said second integral power management module including integral second actuation signal detection and actuation means configured for, in accordance with commands and operational parameters, upon detection of a second actuating signal, actuating said integral power switching means to alter power output through said second power output means from a second power output level to a second power output level;said second integral power control module having integral, operably integrated second memory means for storing second commands and operational parameters for effecting said altering of said second power output through said second power output means, said second memory means being operably connected with said second integral actuation signal detection and actuation means;wherein said second integral actuation signal detection and actuation means is configured for actuation by said first actuation signal from said first RF device;wherein said second integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said first actuation signal, reacting other than in response to a said first actuation signal;and said second integral power management module being further configured for receiving, through second network communications interface means, said second commands and operational parameters from said remote management system for programing said second integral power management module;wherein said second commands and operational parameters further include functionality for recording in said second memory means and reporting to said remote management system the signal strength of a received first actuation signal;and wherein said remote management system is configured with program logic for estimating and reporting a location of said first RF device based, at least in part, on said first signal strength.
  18. 18
    The method of Claim 17 further comprising the steps of selecting and actuating:a third power controller module, said third power controller module including third power input means, third power output means, and intervening, operably connected, third integral power switching means, said third integral power switching means being configured for actuation by a third integral power management module operably connected with said third integral power switching means, said third integral power management module including integral third actuation signal detection and actuation means configured for, in accordance with commands and operational parameters, upon detection of a third actuating signal, actuating said integral power switching means to alter power output through said third power output means from a third power output level to a third power output level;said third integral power control module having integral, operably integrated third memory means for storing third commands and operational parameters for effecting said altering of said third power output through said third power output means, said third memory means being operably connected with said third integral actuation signal detection and actuation means;wherein said third integral actuation signal detection and actuation means is configured for actuation by said first actuation signal from said first RF device;wherein said third integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said first actuation signal, reacting other than in response to a said first actuation signal;and said third integral power management module being further configured for receiving, through third network communications interface means, said third commands and operational parameters from said remote management system for programing said third integral power management module;wherein said third commands and operational parameters further include functionality for recording in said third memory means and reporting to said remote management system the signal strength of a received first actuation signal.
  19. 19
    The method of Claim 17 wherein said second integral actuation signal detection and actuation means is further configured for actuation by a second actuation signal from a second RF device, said second actuation signal including a second identification component for identifying a said second actuating signal as a said second actuation signal;wherein said second integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said second actuation signal, reacting other than in response to a said second actuation signal.
  20. 20
    The method of Claim 18 wherein said third integral actuation signal detection and actuation means is further configured for actuation by a second actuation signal from a second RF device, said second actuation signal including a second identification component for identifying a said second actuating signal as a said second actuation signal;wherein said third integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said second actuation signal, reacting other than in response to a said second actuation signal.
  21. 21
    The method of Claim 17 wherein said second integral actuation signal detection and actuation means is further configured for actuation by a second actuation signal from a second RF device, said second actuation signal including a second identification component for identifying a said second actuating signal as a said second actuation signal;wherein said second integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said second actuation signal, reacting other than in response to a said second actuation signal;said third integral actuation signal detection and actuation means is further configured for actuation by a second actuation signal from a second RF device, said second actuation signal including a second identification component for identifying a said second actuating signal as a said second actuation signal;and wherein said third integral actuation signal detection and actuation means is configured for, upon detecting signals that are other than said second actuation signal, reacting other than in response to a said second actuation signal.
  22. 22
    The method of Claim 14 further wherein said first RF device is a first active RFID transmitter, said first active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said first actuation signal;and wherein said first active RFID transmitter is configured for transmitting of first said actuation signal including said first identification component for identifying a said first actuating signal as a said first actuation signal.
  23. 23
    The system of Claim 18 wherein a said first RF device that is a first active RFID transmitter, said first active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said first actuation signal;wherein said first active RFID transmitter is configured for transmitting of first said actuation signal including said first identification component for identifying a said first actuating signal as a said first actuation signal.
  24. 24
    The wherein of Claim 19 wherein a said first RF device that is a first active RFID transmitter, said first active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said first actuation signal;and wherein said first active RFID transmitter is configured for transmitting of first said actuation signal including said first identification component for identifying a said first actuating signal as a said first actuation signal.
  25. 25
    The method system of Claim 20 wherein:a said first RF device that is a first active RFID transmitter, said first active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said first actuation signal;wherein said first active RFID transmitter is configured for transmitting of first said actuation signal including said first identification component for identifying a said first actuating signal as a said first actuation signal;a said second RF device that is a second active RFID transmitter, said second active RFID transmitter being configured for substantially, continuously repetitive transmitting of a said second actuation signal;and wherein said second active RFID transmitter is configured for transmitting of said second actuation signal including said second identification component for identifying a said second actuating signal as a said second actuation signal.
Independent claims25