WO2013067569A1

Adaptable wireless power, light and automation system

Abstract

A power control unit (100) and method of use thereof for varying the supply of electricity to an electrical apparatus using a wireless communications link between a controller (20) and the power control unit (100). The power control unit (100) is adapted to alternatively communicate with the controller (20) using a non-peer-to- peer communications standard or a peer-to-peer communications standard such as Wi-Fi Direct.

WO2013067569A1, drawing sheet 1
Sheet 1 of 15

Term

No projected expiry on record.

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

88 claims: 9 independent, 79 dependent

  1. 1
    What is ciaimed is:1. A power control device for controlling an electrical apparatus through a wireless communications link with a personal controller so as to control a supply of electricity to the electrical apparatus, the personal controller having a processor, a user interface, and a wireless communications transceiver, said device comprising: a wireless control module operable for wireless communication with the personal controller, said wireless control module including an aerial, a wireless interface circuit, a wireless System on Chip (SoC) and a memory, said SoC including a radio transceiver and a microcontroller, said microcontroller being configured in a first mode to operate said wireless control module using a peer-to-peer communications standard to communicate with the personal controller, said microcontroller being configured in a second mode to operate said wireless control module using a non-peer-to-peer communications standard to communicate with a network access point in a WLAN;and a power control circuit configured to vary the supply of electricity to the electrical apparatus based at least in part on instructions communicated from the personal controller through said wireless control module.
  2. 17
    A power control device for controlling an electrical apparatus through a wireless communications link with a personal controller so as to control a supply of electricity to the electrical apparatus, the personal controller having a processor, a user interface, and a wireless communications transceiver, said device comprising:a plurality of wireless control modules operable for wireless communication with the personal controller, said wireless control modules each including an aerial, a wireless interface circuit, a wireless System on Chip (SoC), and a memory;a microcontroller configured to operate a first of said wireless control modules using a peer-to-peer communications standard to communicate with the personal controller, said microcontroller being configured to operate a second of said wireless control modules using a non-peer-to-peer communications standard to communicate with a network access point in a WLAN, said microcontroller being configured to operate said first and second wireless control modules either one at a time, or concurrently;and a power control circuit configured to vary the supply of electricity to the electrical apparatus based at least in part on instructions communicated from the personal controller through said control module.
  3. 23
    A method for remotely controlling an electrical apparatus to control a supply of electricity to the electrical apparatus, the method comprising:initiating in a first mode of communication a secure two-way, peer-to- peer wireless communications link between a personal controller and a power control device, the power control device controlling the supply of electricity to the electrical apparatus;receiving an instruction at the power control device to either: maintain the first mode of communication between the power control device and the personal controller;or change to a second mode of communication between the power control device and the personal controller utilizing a non-peer-to-peer communications link;receiving a command at the power control device from the personal controller using one of the modes of communication to vary the supply of electricity to the electrical apparatus;and varying the supply of electricity to the electrical apparatus in accordance with the command.
  4. 27
    A device for controlling an electrical apparatus through a wireless communications link with a personal controller, the personal controller having a processor, a user interface, and a wireless communications transceiver, said device comprising:a wireless control module operable for wireless communication with the personal controller, said wireless control module including an aerial, a wireless interface circuit, a wireless System on Chip (SoC) and a memory, said SoC including two radio transceivers and a microcontroller, said microcontroller being configured in a first mode to operate said wireless control module using a peer-to-peer communications standard to communicate with the personal controller, said microcontroller being configured in a second mode to operate said wireless control module using a non-peer-to-peer communications standard;and a control circuit configured to control the electrical apparatus based at least in part on instructions communicated from the personal controller through said wireless control module.
  5. 28
    A method for automatically adjusting at least one environmental control in a commercial or residential structure, comprising:electronically determining the geographic location of a personal controller;downloading an environmental control program to the personal controller, the environmental control program being configured based on the geographic location of the personal controller;and transferring at least a portion of the environmental control program to a power control unit having a microcontroller and a power control circuit configured to vary the supply of electricity to the environmental control.
  6. 45
    A system for automatically adjusting, with a personal controller, at least one environmental control in a commercial or residential structure, the system comprising:a wireless control module operable for wireless communication with the personal controller, said wireless control module including a microcontroller configured to operate said wireless control module using a peer-to-peer communications standard to communicate with the personal controller;and a power control circuit configured to vary the supply of electricity to the environmental control based at least in part on instructions communicated from the personal controller through said microcontroller of said wireless control module, the instructions being based at least in part on data that includes the geographic location of said wireless control module.
  7. 60
    A method for previewing a program configured to vary the supply of electricity to lighting in a lighting zone of a commercial or residential structure, comprising:establishing a peer-to-peer communications link between a personal controller and a power control unit having a microcontroller and a power control circuit adapted to vary the supply of electricity to the lighting incorporated in the lighting zone;entering time-based parameters into the personal controller to modify the program for controlling the lighting in the lighting zone, the program being configured to instruct the power control unit to vary the supply of electricity to the lighting at a real-time rate according to the time-based parameters entered through the personal controller;and transmitting a request from the personal controller to the power control unit to vary the supply of electricity to the lighting at a rate faster than the realtime rate of the program to preview the programmed variances in lighting.
  8. 69
    A system for controlling at least one electrical system wired into a commercial or residential structure through a wireless communications link with a personal controller so as to control a supply of electricity to the at least one electrical system, the personal controller having a processor, a user interface, and a wireless communications transceiver, said system comprising:a power control unit including: a wireless control module operable for wireless communication with the personal controller, said wireless control module including a microcontroller configured to operate said wireless control module using a peer-to-peer communications standard to communicate with the personal controller;and an internal power control circuit configured to vary the supply of electricity to the at least one electrical system based at least in part on instructions communicated from the personal controller through said wireless control module;an external power control circuit integrated into at least a portion of the wiring of the commercial or residential structure, said external power control circuit being configured to vary the supply of electricity to the at least one electrical system based at least in part on instructions communicated from the personal controller through said wireless control module;and a communications link between said power control unit and said external power control circuit, said microcontroller of said power control unit being configured to selectively operate said internal and external power control circuits.
  9. 78
    A system for actuating, with a personal controller, at least one closure mechanism for blocking access at an entryway, the system comprising:a wireless control module operable for wireless communication with the personal controller, said wireless control module including a microcontroller configured to operate said wireless control module using a peer-to-peer communications standard to communicate with the personal controller;and a power control circuit configured to vary the supply of electricity to the closure mechanism based at least in part on instructions communicated from the personal controller through said microcontroller of said wireless control module, said microcontroller being configured to negotiate with the personal controller whether the controller or said microcontroller will assume a group owner role while said wireless control module is linked to the personal controller.