IP Library › Granted Patent US 9,728,978
Granted Patent B2
US 9,728,978 · App. 14/536,927 · Granted Aug 8, 2017

Power management using reduced power to selected loads

Inventors: Rhonda Dibachi (Harbor City, CA); Farzad Dibachi (Harbor City, CA)
Assignee: Noribachi Corporation
H02J4/00H02J7/00H02J7/35H02J3/32Y02E10/566Y10T307/305Y10T307/344Y10T307/527Y10T307/62
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Quick Facts
Patent No.
US 9,728,978
App. No.
14/536,927
Granted
Aug 8, 2017
Kind
B2
Abstract

A system includes a solar power subsystem that receives power from one or more solar power arrays. A storage control subsystem is coupled to the solar power subsystem to charge a battery from the power received by the solar power subsystem. A grid power control subsystem having an AC to DC converter receives power from a power grid and provides DC voltage to the storage control subsystem. A balance of system control system controls the amount of power received from the power grid as a function of a load, battery charge and received power by the solar power subsystem. The solar array and battery may be sized to provide sufficient power under normal operating conditions, with power being drawn from the grid during abnormal operation conditions.

Claims (34)

1. A method comprising:

using received power to charge a battery;

applying power from the battery to power multiple loads;

monitoring power consumed by loads; and

supplying a reduced power to selected loads as a function of a predetermined priority for each DC load, power received, and available battery power.

2. The method of claim 1 and further comprising:

monitoring a battery drain rate;

determining expected power to be received;

determining if the battery has sufficient power to power the loads as a function of the determined expected power to be received to sufficiently power the loads at reduced power and recharge the battery; and

drawing power from the grid if sufficient expected power to be received is not expected.

3. The method of claim 1 and further comprising monitoring a battery drain rate to determine available battery power.

4. The method of claim 3 and further comprising:

determining expected power to be received; and

determining the available battery power as a function of the expected power to be received.

5. The method of claim 4 and further comprising determining if the available battery power is sufficient to power the loads at reduced power.

6. The method of claim 1 and further comprising:

determining if the battery has sufficient power to power the loads at reduced power; and

drawing power from the grid if sufficient expected power to be received is not expected.

7. The method of claim 1 wherein the received power is received from a solar array.

8. A method comprising:

applying power from a battery and received power to power multiple direct current (DC) loads;

monitoring power consumed by the DC loads;

supplying a reduced power to selected DC loads as a function of power received and available battery power; and

turning off selected DC loads when insufficient power is available.

9. The method of claim 8 wherein power is reduced to selected DC loads as a function of time of day.

10. The method of claim 8 and further comprising charging the battery using the received power, wherein the battery is charged in accordance with a charge profile for the battery dependent on battery size and chemistry.

11. The method of claim 8 and further comprising:

determining if the battery has sufficient power to power the loads at reduced power; and

drawing power from the grid if sufficient power to be received is not expected.

12. A method comprising:

using received power to charge a battery;

applying power from the battery to power multiple direct current (DC) loads;

monitoring power consumed by the DC loads; and

supplying a reduced power to selected DC loads as a function of a predetermined priority for each DC load, power received, and available battery power.

Continuity (3)
Continuation 13328871 · Dec 16, 2011
Continuation 12564623 · Sep 22, 2009
Related Publication 20150061386A1 · Mar 5, 2015