Apparatus And Method To Protect Distribution Networks Against Overcurrents Caused By Faults In Residential Circuits
Disclosed herein are methods, apparatuses, and systems for protection of distribution networks against overcurrents caused by faults in residential circuits. In an embodiment, a smart meter monitors a circuit for a particular condition and may adjust the power to a circuit when the condition is detected. In an embodiment, when an overcurrent condition is detected in a residential circuit, the residential circuit may be disconnected by a smart meter from a distribution network before it is seen by a recloser and therefore may isolate an outage to a single home.
1 . A method comprising:
receiving a power attribute from a circuit to a building;
comparing a baseline condition to the monitored power attribute;
detecting that the baseline condition is met; and
adjusting power to the circuit entering into the building, based on the met baseline condition.
2 . The method of claim 1 , the building includes a residence.
3 . The method of claim 1 , the power attribute comprising at least one of a current, an active power, a reactive power, a voltage, a phase, or a frequency.
4 . The method of claim 1 , the adjustment of power to the circuit of the building comprising shutting off power to the circuit.
5 . The method of claim 1 , the baseline condition is based on at least one of a load signature or pattern, usage pattern, timing, threshold, or rate of change of the power attribute.
6 . The method of claim 1 , the baseline condition is dynamically changed based on analysis of the monitored power attribute over a time period.
7 . The method of claim 1 , wherein the baseline condition is reported to a recloser from a smart meter.
8 . A smart meter configured to:
receive a power attribute from a circuit to a building;
compare a baseline condition to the monitored power attribute;
detect that the baseline condition is met; and
adjust power to the circuit entering into the building, based on the met baseline condition.
9 . The smart meter of claim 8 , the building includes a residence.
10 . The smart meter of claim 8 , the power attribute comprises at least one of a current, an active power, a reactive power, a voltage, a phase, or a frequency.
11 . The smart meter of claim 8 , the adjustment of power to the circuit of the building comprising shutting off power to the circuit of the building.
12 . The smart meter of claim 8 , the adjustment of power to the circuit of the building comprising adjusting power to a device in the building.
13 . The smart meter of claim 8 , the baseline condition is dynamically changed based on analysis of the monitored power attribute over a time period.
14 . A system comprising:
a smart meter configured to:
receive a power attribute from a circuit to a building;
compare a baseline condition to the monitored power attribute;
detect that the baseline condition is met; and
adjust power to the circuit entering into the building, based on the met baseline condition; and
a server configured to receive data from the smart meter.
15 . The system of claim 14 , the baseline condition is dynamically changed based on analysis of the monitored power attribute over a time period.
16 . The system of claim 14 , wherein the server is configured to:
analyze power attribute data from a region; and
transmit an updated baseline condition to the smart meter based on the analyzed power attribute data from the region.
17 . The system of claim 14 , the power attribute comprising at least one of a current, an active power, a reactive power, a voltage, a phase, or a frequency.
18 . The system of claim 14 , the baseline condition based on at least one of a load signature or pattern, usage pattern, timing, threshold, or rate of change of the power attribute.
19 . The system of claim 14 , further comprising a recloser configured to communicate with the smart meter.
20 . The system of claim 14 , the adjustment of power to the circuit of the building comprising adjusting power to a device in the building.