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Electric power take-off

專利號(hào)
US11996725B1
公開(kāi)日期
2024-05-28
申請(qǐng)人
Ford Global Technologies, LLC(US MI Dearborn)
發(fā)明人
Stuart C. Salter; Toussaint Carpenter; Brendan Francis Diamond; Ryan O'Gorman; David Celinske
IPC分類
H02J7/00
技術(shù)領(lǐng)域
epto,hv,dcdc,battery,voltage,converter,vehicle,in,equipment,variable
地域: MI MI Dearborn

摘要

A system and method for providing electric power take-off from a high-voltage electric battery to a plurality of external devices includes: receiving a first request from a first external device having a first priority for a supply of power from an electric power take-off connector at a first voltage, a first current, and a first variance tolerance; receiving a second request from a second external device having a second priority for supply of power at a second voltage, a second current, and a second variance tolerance; and assigning available power from the high-voltage battery, via a high voltage (HV) variable direct-current to direct-current (DCDC) converter and a current regulator in electrical communication with the high-voltage battery, to the first and second external devices based upon their respective priorities and variance tolerances.

說(shuō)明書(shū)

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In another implementation, the system may further include instructions executable by the processor such that the computing device is programmed assign available power to the first and second external devices sequentially.

In an implementation, a first electric power take-off connector may be provided for the first external device and a second electric power take-off connector may be provided for the second external device, and the system may further include instructions executable by the processor such that the computing device is programmed to assign available power to the first and second external devices concurrently when the first voltage and the second voltage are identical.

In another implementation, data may be exchanged with external devices wirelessly.

In yet another implementation, data may be exchanged with external devices over a controller area network (CAN) or Ethernet.

In an implementation, the HV variable DCDC converter may operate between 12 volts and 800 volts.

In yet another implementation, the instructions executable by the processor may be programmed to arbitrate available power to the first external device using the HV variable DCDC converter and the current regulator and to the second external device using a second HV variable DCDC converter and a second current regulator.

權(quán)利要求

1
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