IP Library Granted Patent US 11,183,969
Granted Patent B2
US 11,183,969 · App. 16/269,403 · Granted Nov 23, 2021

Testing of a photovoltaic panel

Inventors: Meir Adest (Modiin, IL); Guy Sella (Bitan Aharon, IL); Lior Handelsman (Givatayim, IL); Yoav Galin (Ra'anana, IL); Amir Fishelov (Tel Aviv, IL); Meir Gazit (Ashkelon, IL); Tzachi Glovinsky (Petah Tikva, IL); Yaron Binder (Shoham, IL)
Assignee: Solaredge Technologies Ltd.
H02S50/10G01R27/02G01R31/40H01L31/02021H02M3/10H02M7/48Y02E10/50
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Quick Facts
Patent No.
US 11,183,969
App. No.
16/269,403
Filed
Feb 6, 2019
Granted
Nov 23, 2021
Kind
B2
Art Unit
2858
USPC
324/761.01
Abstract

A method for testing a photovoltaic panel connected to an electronic module. The electronic module includes an input attached to the photovoltaic panel and a power output. The method activates a bypass to the electronic module. The bypass provides a low impedance path between the input and the output of the electronic module. A current is injected into the electronic module thereby compensating for the presence of the electronic module during the testing. The current may be previously determined by measuring a circuit parameter of the electronic module. The circuit parameter may be impedance, inductance, resistance or capacitance.

Claims (31)

1. A system comprising:

a photovoltaic (PV) panel comprising a PV positive output terminal and a PV negative output terminal;

a buck boost converter comprising a positive input terminal, a negative input terminal, a positive output terminal, and a negative output terminal, wherein the PV positive output terminal and the PV negative output terminal are respectively connected to the positive input terminal of the buck boost converter and the negative input terminal of the buck boost converter; and

a bypass link directly connected between the positive input terminal of the buck boost converter and the positive output terminal of the buck boost converter, the bypass link comprising a first switch,

wherein the first switch comprises an activated state and a deactivated state, and

wherein, when the first switch is in the activated state, the bypass link provides a low impedance path between the PV positive output terminal and the postive output terminal of the buck boost converter.

2. The system of claim 1 wherein the first switch is a solid state switch.

3. The system of claim 1 wherein the buck boost converter is configured to convert power received from the positive PV output terminal and the negative PV output terminal of the PV panel.

4. The system of claim 1 wherein the first switch is configured to be activated based on a malfunction in the buck boost converter.

5. The system of claim 1 wherein the bypass link further comprises one or more switches serially connected to the first switch.

6. The system of claim 1 wherein the first switch is activated by applying an electromagnetic signal.

7. The system of claim 1 wherein the bypass link is activated in response to a communication signal.

8. An apparatus comprising:

a buck boost converter comprising a positive input terminal a negative input terminal, a positive output terminal, and a negative output terminal wherein the buck boost converter is configured to convert power from the positive input terminal and the negative input terminal to the positive output terminal and the negative output terminal; and

a bypass link directly coupled between the positive input terminal of the buck boost converter and the positive output terminal of the buck boost converter, the bypass link comprising a first switch, wherein the first switch comprises an activated state and a deactivated state,

wherein when the first switch is activated, the bypass link provides a low impedance path between the positive input terminal and the positive output termial.

9. The apparatus of claim 8 wherein the first switch is activated responsive to an electronic malfunction in the buck boost converter.

10. The apparatus of claim 8 wherein the buck boost converter is connected to a photovoltaic panel.

11. The apparatus of claim 8 wherein the first switch is a solid state switch.

12. The apparatus of claim 8 wherein the bypass link further comprises one or more switches serially connected to the first switch.

13. The apparatus of claim 8 wherein the bypass link is activated by applying a signal.

14. The apparatus of claim 8 wherein the bypass link is activated in response to a communication signal.

15. A method comprising:

harvesting power from a photovoltaic panel;

converting the harvested power from a positive input terminal of a buck boost converter and a negative input terminal of the buck boost converter to a positive output terminal of the buck boost converter and a negative output terminal of the buck boost converter; and

bypassing the buck boost converter by activating a switch of a bypass link, wherein the bypass link is directly coupled between the positive input terminal of the buck boost converter and the positive output terminal of the buck boost converter, and wherein the activating the switch of the bypass link provides a low impedance path between the positive input terminal of the buck boost converter and the positive output terminal of the buck boost converter.

16. The method of claim 15 wherein the switch is activated responsive to an electronic malfunction of the buck boost converter.

17. The method of claim 16 further comprising deactivating the switch.

18. The method according to claim 17 wherein the deactivating comprises communicating with the buck boost converter.

19. The method of claim 17 wherein the deactivating comprises opening the switch.

20. The method of claim 15 wherein the switch is activated responsive to a communication signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2021
From: ADEST, MEIR; SELLA, GUY; HANDELSMAN, LIOR; GALIN, YOAV; FISHELOV, AMIR; GAZIT, MEIR; GLOVINSKY, TZACHI; BINDER, YARON
To: SOLAREDGE TECHNOLOGIES LTD.
Reel/Frame 057093/0462 →
Continuity (5)
Division 13015219 · Jan 27, 2011
Continuation In Part 12314115 · Dec 4, 2008
Provisional Application 61039050 · Mar 24, 2008
Provisional Application 60992589 · Dec 5, 2007
Related Publication 20190173424A1 · Jun 6, 2019