Configurable mesh network for an electrical switching system
US-10418824-B2 · Sep 17, 2019 · US
US11283266B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11283266-B2 |
| Application number | US-201916570461-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 13, 2019 |
| Priority date | Jan 27, 2014 |
| Publication date | Mar 22, 2022 |
| Grant date | Mar 22, 2022 |
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Systems and methods for the creation of a centrally controlled DC and AC power rail system within a structure. The rails utilize a centralized controller along with a plurality of distributed controllers to allow for power in the rails to be selectively distributed or not distributed to outlets attached to the rails. This allows for power to be distributed without the need for users to utilize hardwired switches, but to instead utilize generally wireless switch modules, which may be implemented in hardware and/or software to control the outlets. It also allows for devices designed to utilize DC power to be directly supplied with such power from the DC power rail without the need to include onboard AC-DC converters with each device.
Opening claim text (preview).
The invention claimed is: 1. A power control system for a structure, the system comprising: a central controller electrically connected to a remote DC distributed controller; a main breaker connecting said central controller to an AC power source, said central controller including: an AC to DC power converter; and a computer for transferring instructions; wherein, said central controller is configured to transmit instructions and DC power to said DC distributed power controller; an outlet connected to said DC distributed power controller and including a coupler for connection to a device utilizing DC power; a switch module operatively associated with said outlet so that when said switch module is activated: said module transmits a signal to said central controller; said signal is converted by said computer into an instruction; said instruction is sent by said central controller to said DC distributed power controller; and power to said outlet is altered from its present state by said DC distributed power controller based on said instruction, while power to other outlets in said plurality of outlets is maintained in its present state. 2. The power control system of claim 1 wherein said AC power source comprises a municipal power grid. 3. The power control system of claim 1 wherein said main breaker comprises a circuit breaker or a fuse box. 4. The power control system of claim 1 wherein said switch module comprises a hardware switch. 5. The power control system of claim 4 wherein said switch module is disconnected from said AC power source. 6. The power control system of claim 1 wherein said switch module comprises a mobile device. 7. The power control system of claim 1 wherein said switch module comprises a computer. 8. The power control system of claim 7 wherein said switch module is disconnected from said AC power source. 9. The power control system of claim 1 wherein said power to said outlet is altered from said present state in a non-binary fashion. 10. The power control system of claim 1 wherein said power to said outlet is altered from said present state by moving from a first binary state to an opposed binary state. 11. A power control system for a structure, the system comprising: a central controller electrically connected to a remote AC distributed controller; a main breaker connecting said central controller to an AC power source, said central controller including: a computer for transferring instructions; wherein, said central controller is configured to transmit instructions and AC power to said AC distributed power controller; a plurality of outlets, each of said outlets: connected to said AC distributed power controller; and including a coupler for connection to a device utilizing AC power; a plurality of switch modules, each of said modules being operatively associated with at least one of said outlets so that when said module is activated: said module transmits a signal to said central controller; said signal is converted by said computer into an instruction; said instruction is sent by said central controller to said AC distributed power controller; and power to said outlet is altered from its present state by said AC distributed power controller based on said instruction, while power to other outlets in said plurality of outlets is maintained in its present state. 12. The power control system of claim 11 wherein said AC power source comprises a municipal power grid. 13. The power control system of claim 11 wherein said main breaker comprises a circuit breaker or a fuse box. 14. The power control system of claim 11 wherein said switch module comprises a hardware switch. 15. The power control system of claim 14 wherein said switch module is disconnected from said AC power source. 16. The power control system of claim 11 wherein said switch module comprises a mobile device. 17. The power control system of claim 11 wherein said switch module comprises a computer. 18. The power control system of claim 17 wherein said switch module is disconnected from said AC power source. 19. The power control system of claim 11 wherein said power to said outlet is altered from said present state in a non-binary fashion. 20. The power control system of claim 11 wherein said power to said outlet is altered from said present state by moving from a first binary state to an opposed binary state.
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