IP Library › Granted Patent US 8,878,563
Granted Patent B2
US 8,878,563 · App. 13/272,610 · Granted Nov 4, 2014

System and apparatus for arc detection and location in solar arrays

Inventor: Steven Andrew Robbins (Calabasas, CA)
Assignee: Steven Andrew Robbins
H01L31/02021Y02E10/50G01R31/1227
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Quick Facts
Patent No.
US 8,878,563
App. No.
13/272,610
Granted
Nov 4, 2014
Kind
B2
Abstract

A system and apparatus for detecting and locating an arc fault in a photovoltaic solar power array. A plurality of capacitors divide strings of photovoltaic cells into a series of magnetic loops. When an arc fault occurs within one of the loops, a time-varying magnetic field is produced, with flux lines emanating from the area enclosed by the loop. At least three magnetic field sensors arranged at locations in or around the solar power array detect the spectral signature of the arc fault, and send related data to a computer via a communication network. The computer analyzes the data from the sensors to determine the location of the arc fault.

Claims (24)

1. A system for detecting and locating arc faults in a solar power array, comprising:

a solar power array having at least one string for converting light into electricity, each string comprising one or more segments connected in series, and each segment consisting of a plurality of photovoltaic (PV) cells connected in series;

a plurality of capacitors, each connected in parallel with a segment of PV cells to form a magnetic loop for producing a time-varying magnetic field in response to an arc fault within the magnetic loop;

at least three magnetic field sensors for detecting the time-varying magnetic field produced by the magnetic loop;

a computer having data defining the location of each magnetic field sensor in relation to the solar power array, for determining the location of the arc fault by analyzing data from the magnetic field sensors; and

a communication network for linking the magnetic field sensors to the computer.

2. The system of claim 1 , wherein each magnetic field sensor:

acquires data representing magnetic field intensity in a plurality of frequencies; and

analyzes the acquired data to detect relative changes in magnetic field intensity versus frequency approximating the spectral signature typical of an arc fault.

3. The system of claim 1 , wherein the communication network comprises a cable carrying information from at least one magnetic field sensor to the computer.

4. The system of claim 1 , wherein the communication network comprises a means for communicating information to the computer via radio waves.

5. The system of claim 1 , wherein the communication network comprises a means for communicating information to the computer via at least one power line.

6. A solar power module comprising:

one or more segments comprising a plurality of photovoltaic (PV) cells connected in series for converting light into electricity;

one or more capacitors, each connected in parallel with a segment of PV cells to form a magnetic loop for producing a time-varying magnetic field in response to an arc fault within the magnetic loop;

a magnetic field sensor for detecting the time-varying magnetic field produced by at least one magnetic loop;

a network interface coupled to the magnetic field sensor for communicating with a computer; and

a power supply for powering the magnetic field sensor and the network interface.

7. The solar power module of claim 6 , wherein each magnetic field sensor:

acquires data representing magnetic field intensity in a plurality of frequencies; and

analyzes the acquired data to detect relative changes in magnetic field intensity versus frequency approximating the spectral signature typical of an arc fault.

8. The solar power module of claim 6 , wherein the network interface comprises a means for communicating information to the computer via radio waves.

9. The solar power module of claim 6 , wherein the network interface comprises a means for communicating information to the computer via at least one power line.

10. The solar power module of claim 6 , wherein the power supply receives power from at least one of the PV cells.

Continuity (1)
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