Remote power unit, direct current power system and direct current power system fault detection method
US-2020136428-A1 · Apr 30, 2020 · US
US11088544B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11088544-B2 |
| Application number | US-201916518844-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 22, 2019 |
| Priority date | Feb 28, 2018 |
| Publication date | Aug 10, 2021 |
| Grant date | Aug 10, 2021 |
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An intermediate power supply unit for distributing lower voltage power to remote devices is disclosed. The intermediate power supply unit includes a higher voltage power input configured to receive power distributed by a power source and a power coupling circuit configured to couple the higher voltage power input to a plurality of power coupling outputs. If it is determined that a wire coupling the power source to the higher voltage power input is touched, the higher voltage power input is decoupled from the power coupling outputs. The intermediate power supply unit also includes a power converter circuit configured to convert voltage on higher voltage inputs to a lower voltage applied to one or more lower voltage outputs. The power converter circuit is also configured to distribute power from the one or more lower voltage outputs over a power conductor coupled to an assigned remote device.
Opening claim text (preview).
What is claimed is: 1. A method of operating an intermediate power supply unit in a power distribution system to distribute power from a power source to a plurality of remote units, comprising: coupling a higher voltage power input of the intermediate power supply unit to a plurality of power coupling outputs; decoupling the higher voltage power input of the intermediate power supply unit from the plurality of power coupling outputs in order to determine that a power conductor coupling the power source to the higher voltage power input is touched; converting voltage on one or more higher voltage inputs of a power converter circuit to a lower voltage applied to one or more lower voltage outputs of the power converter circuit where the lower voltage is lower than the higher voltage; and distributing power from the one or more lower voltage outputs of the power converter circuit over a power conductor configured to be coupled to an assigned remote unit among the plurality of remote units. 2. The method of claim 1 , further comprising: receiving a remote power connection signal indicating to decouple the higher voltage power input from the plurality of power coupling outputs; and decoupling the higher voltage power input from the plurality of power coupling outputs in response to the remote power connection signal. 3. The method of claim 2 , further comprising: demultiplexing, by an input multiplexing circuit coupled between the higher voltage power input and the plurality of power coupling outputs, an input management signal and the power distributed by the power source from the higher voltage power input. 4. The method of claim 2 , further comprising: multiplexing, by an output multiplexing circuit coupled between a plurality of power converters and the one or more lower voltage outputs, an output management signal and the power from the one or more lower voltage outputs to be sent to the assigned remote unit among the plurality of remote units. 5. A method of operating an intermediate power supply unit to distribute power from a power source to a plurality of remote units in a distribution system, comprising: coupling a higher voltage power input of the intermediate power supply unit to a plurality of power coupling outputs; decoupling the higher voltage power input of the intermediate power supply unit from the plurality of power coupling outputs in order to determine that a power conductor coupling the power source to the higher voltage power input is touched; converting voltage on one or more higher voltage inputs of a power converter circuit to a lower voltage applied to one or more lower voltage outputs of the power converter circuit where the lower voltage is lower than the higher voltage; distributing power from the one or more lower voltage outputs of the power converter circuit over a power conductor configured to be coupled to an assigned remote unit among the plurality of remote units; and combining power received from the higher voltage power input and one or more additional higher voltage power inputs. 6. The method of claim 5 , further comprising: receiving a remote power connection signal indicating to decouple the higher voltage power input from the plurality of power coupling outputs; and decoupling the higher voltage power input from the plurality of power coupling outputs in response to the remote power connection signal. 7. The method of claim 5 , further comprising: demultiplexing, by an input multiplexing circuit coupled between the higher voltage power input and the plurality of power coupling outputs, an input management signal and the power distributed by the power source from the higher voltage power input. 8. The method of claim 5 , further comprising: multiplexing, by an output multiplexing circuit coupled between a plurality of power converters and the one or more lower voltage outputs, an output management signal and the power from the one or more lower voltage outputs to be sent to the assigned remote unit among the plurality of remote units. 9. The method of claim 5 , wherein distributing power from the one or more lower voltage outputs of a plurality of power converters over the power conductor configured to be coupled to the assigned remote unit among the plurality of remote units further comprises distributing communications signals together with the power conductor configured to be coupled to the assigned remote unit among the plurality of remote units. 10. A method of operating an intermediate power supply unit to distribute power from a power source to a plurality of remote units in a distribution system, comprising: coupling a higher voltage power input of the intermediate power supply unit to a plurality of power coupling outputs; decoupling the higher voltage power input of the intermediate power supply unit from the plurality of power coupling outputs in order to determine that a power conductor coupling the power source to the higher voltage power input is touched; converting voltage on one or more higher voltage inputs of a power converter circuit to a lower voltage applied to one or more lower voltage outputs of the power converter circuit where the lower voltage is lower than the higher voltage; distributing power from the one or more lower voltage outputs of the power converter circuit over a power conductor configured to be coupled to an assigned remote unit among the plurality of remote units; and receiving a remote power connection signal indicating to decouple the higher voltage power input from the plurality of power coupling outputs. 11. The method of claim 10 , further comprising: demultiplexing, by an input multiplexing circuit coupled between the higher voltage power input and the plurality of power coupling outputs, an input management signal and the power distributed by the power source from the higher voltage power input. 12. The method of claim 11 , further comprising decoupling the higher voltage power input from the plurality of power coupling outputs in response to the remote power connection signal. 13. The method of claim 10 , further comprising: multiplexing, by an output multiplexing circuit coupled between a plurality of power converters and the one or more lower voltage outputs, an output management signal and the power from the one or more lower voltage outputs to be sent to the assigned remote unit among the plurality of remote units. 14. The method of claim 13 , further comprising decoupling the higher voltage power input from the plurality of power coupling outputs in response to the remote power connection signal. 15. A method of operating an intermediate power supply unit to distribute power from a power source to a plurality of remote units in a distribution system, comprising: coupling a higher voltage power input of the intermediate power supply unit to a plurality of power coupling outputs; decoupling the higher voltage power input of the intermediate power supply unit from the plurality of power coupling outputs in order to determine that a power conductor coupling the power source to the higher voltage power input is touched; converting voltage on one or more higher voltage inputs of a power converter circuit to a lower voltage applied to one or more lower voltage outputs of the power converter circuit where the lower voltage is lower than the higher voltage; distributing power from the one or more lower voltage outputs of the power converter circuit over a power conductor configured to be coupled to an assigned remote unit among the plurality of remote units; demultiplexing an input management signal an
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