Device for shunting current from photovoltaic circuit near the open circuit voltage and/or disconnecting solar module of a solar system
US-9472691-B2 · Oct 18, 2016 · US
US10218182B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10218182-B2 |
| Application number | US-201615272911-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 22, 2016 |
| Priority date | Sep 22, 2016 |
| Publication date | Feb 26, 2019 |
| Grant date | Feb 26, 2019 |
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A photovoltaic system includes voltage limiting devices that are connected in series. A voltage limiting device clips a corresponding photovoltaic string to limit a voltage of the photovoltaic string. Unclipping of clipped photovoltaic strings is coordinated by a central controller or in a distributed fashion by the voltage limiting devices based on monitored string conditions.
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What is claimed is: 1. A photovoltaic system comprising: a plurality of voltage limiting devices that are connected in series; a plurality of photovoltaic strings, each of the photovoltaic strings comprising series-connected solar cells, wherein a voltage of each of the photovoltaic strings is configured to be clipped or unclipped by a corresponding voltage limiting device; and a central controller configured to send a synchronization signal to synchronize unclipping of voltages of photovoltaic strings that are clipped by corresponding clipped voltage limiting devices, wherein the clipped voltage limiting devices are configured to unclip at substantially the same time in synchronization with the synchronization signal. 2. The photovoltaic system of claim 1 , wherein the synchronization signal is transmitted over a power line communication connection. 3. The photovoltaic system of claim 1 , wherein the synchronization signal is transmitted over a wireless connection. 4. The photovoltaic system of claim 1 , wherein the synchronization signal is transmitted over a wired connection. 5. The photovoltaic system of claim 1 , further comprising: a photovoltaic inverter that is configured to convert direct current generated by solar cells of the plurality of photovoltaic strings to alternating current for delivery to a power grid. 6. The photovoltaic system of claim 1 , wherein the plurality of photovoltaic strings forms a first group of photovoltaic strings that are connected in series, and the first group of photovoltaic strings is in parallel with a second group of photovoltaic strings that are connected in series. 7. The photovoltaic system of claim 6 , further comprising: a voltage bus, wherein the first group of photovoltaic strings and the second group of photovoltaic strings are connected in parallel across the voltage bus. 8. The photovoltaic system of claim 1 , wherein each of the voltage limiting devices comprises a switch that is closed by the voltage limiting device when clipping a corresponding photovoltaic string. 9. A method of operating voltage limiting devices of a photovoltaic system, the method comprising: clipping, by a first voltage limiting device, a voltage of a first photovoltaic string that comprises a first set of series-connected solar cells; clipping, by a second voltage limiting device, a voltage of a second photovoltaic string that comprises a second set of series-connected solar cells; sending a synchronization signal to a plurality of voltage limiting devices that include the first and second voltage limiting devices and that are connected in series; and responsive to receiving the synchronization signal, the first voltage limiting device unclipping the voltage of the first photovoltaic string and the second voltage limiting device unclipping the voltage of the second photovoltaic string at substantially the same time. 10. The method of claim of claim 9 , wherein the synchronization signal is sent by a central controller to the plurality of voltage limiting devices. 11. The method of claim 10 , wherein the first and second voltage limiting devices receive the synchronization signal over a wireless connection. 12. The method of claim 10 , wherein the first and second voltage limiting devices receive the synchronization signal over a power line communication connection. 13. The method of claim 10 , wherein the first and second voltage limiting devices receive the synchronization signal over a wired connection. 14. A photovoltaic system comprising: a first voltage limiting device that is configured to clip a voltage of a first photovoltaic string, the first voltage limiting device being configured to clip the voltage of the first photovoltaic string, and to monitor a string current through the first photovoltaic string and a second photovoltaic string ; and a second voltage limiting device that is in series with the first voltage limiting device, the second voltage limiting device being configured to clip a voltage of the second photovoltaic string, and to monitor the string current through the first photovoltaic string and the second photovoltaic string, wherein, responsive to detecting that the string current through the first photovoltaic string and the second photovoltaic string is reversing, the first voltage limiting device is configured to unclip the voltage of the first photovoltaic string and the second voltage limiting device is configured to unclip the voltage of the second photovoltaic string. 15. The photovoltaic system of claim 14 , wherein the first and second voltage limiting devices form a first group of series-connected voltage limiting devices that is across a voltage bus. 16. The photovoltaic system of claim 15 , further comprising a second group of series-connected voltage limiting devices that is across the voltage bus and in parallel with the first group of series-connected voltage limiting devices. 17. The photovoltaic system of claim 14 , further comprising a photovoltaic inverter that converts direct current generated by solar cells of the first and second photovoltaic strings to alternating current. 18. The photovoltaic system of claim 14 , wherein the second voltage limiting device comprises: a switch that is across opposing ends of the second photovoltaic string; and a control unit that is configured to control the switch. 19. The photovoltaic system of claim 18 , wherein to unclip the second photovoltaic string, the control unit opens the switch to release a limit on the voltage of the second photovoltaic string.
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