COVERING FOR A SOLAR CELL WITH ELECTROCHROMIC FILTER

20230031986 · 2023-02-02

Assignee

Inventors

Cpc classification

International classification

Abstract

An arrangement includes a solar cell and a covering, wherein the covering covers the solar cell, at least on the side that is intended to be exposed to electromagnetic radiation of the sun. The covering has an electrochromic layer. The arrangement also has a control unit for controlling the electrochromic layer. The control unit is designed to control the transmittance of the electrochromic layer for electromagnetic radiation in a defined wavelength range by applying an electrical voltage to the electrochromic layer.

Claims

1. An arrangement, comprising: a solar cell, a cover , wherein the cover covers the solar cell at least on that side intended for irradiation with electromagnetic radiation from the sun, wherein the cover has an electrochromic layer, and a control unit for control of the electrochromic layer, wherein the control unit is configured to control transmittance of the electrochromic layer for electromagnetic radiation in a defined wavelength range by application of an electrical voltage to the electrochromic layer, wherein the solar cell includes an absorber for absorption of the electromagnetic radiation from the sun and the absorber has a perovskite structure, and wherein the arrangement has at least one further solar cell, and the solar cell and the further solar cell form a tandem solar cell.

2. The arrangement as claimed in claim 1, wherein controlling of the transmittance comprises discrete or infinite variation of the transmittance of the electrochromic layer.

3. The arrangement as claimed in claim 1 , wherein the control unit is capable of reducing or essentially suppressing transmission of photons having an energy of more than a predetermined value above an activation energy of the solar cell .

4. The arrangement as claimed in claim 1 , wherein the control unit is capable of reducing or essentially suppressing the transmission of photons having an energy of more than a predetermined value below an activation energy of the solar cell.

5. The arrangement as claimed in claim 1 , wherein the control unit is capable of essentially suppressing any transmission of electromagnetic radiation from the sun through the electrochromic layer.

6. The arrangement as claimed in claim 1 , wherein the control unit is provided with the-electrical energy required for its operation by the solar cell.

7. The arrangement as claimed in claim 1 , wherein the cover comprises a glass pane.

8. The arrangement as claimed in claim 1 , wherein the arrangement further comprises a frame that surrounds the cover for reinforcement and bracing of the cover.

9. A method of operating a solar cell, wherein the solar cell is protected by a cover, wherein the cover covers the solar cell at least on that side intended for irradiation with electromagnetic radiation from the sun, and wherein the cover has an electrochromic layer, the method comprising: applying an electrical voltage to the electrochromic layer by a control unit in order to control the-transmittance of the electrochromic layer for electromagnetic radiation in a defined wavelength range.

10. The method as claimed in claim 9, further comprising: in a preceding step, ascertaining a temperature of the solar cell is and controlling the transmittance depending on the ascertained temperature of the solar cell.

11. The method as claimed in claim 10, wherein the solar cell is a solar cell having an absorber having a perovskite structure, and the temperature of the solar cell is ascertained by impedance spectroscopy.

12. The arrangement as claimed in claim 7, wherein the glass pane comprises a toughened safety glass.

Description

BRIEF DESCRIPTION OF THE DRAWING

[0034] The invention is illustrated in detail by the appended drawing.

[0035] The figure shows:

[0036] FIG. 1: an arrangement comprising a solar cell, a cover with an electrochromic layer, and a control unit for controlling the electrochromic layer.

DETAILED DESCRIPTION OF THE INVENTION

[0037] FIG. 1 (also referred to as FIG. 1) shows a solar cell 10 with an absorber 101, a front-side contact 102 and a reverse-side contact 103. The solar cell 10 may, for example, be a perovskite solar cell. The absorber 101 for absorption of electromagnetic radiation from the sun (also referred to as “solar radiation”) in this case has a perovskite structure having the general structural formula ABX.sub.3. Specifically, for example, the material (CH.sub.3NH.sub.3)PbI.sub.3 has been found to be a suitable photoactive material. The front-side contact 102 is designed for electromagnetic radiation from a particular wavelength range for which the solar cell is designed, advantageously transparent. The reverse-side contact 103 may be configured over the full area and in a nontransparent manner (for example comprising an aluminum alloy). The front-side contact 102 and reverse-side contact 103 are each connected by electrical conductors 31. If there are multiple solar cells in a photovoltaic module (which is likely to be the case in reality), these solar cells are interconnected by means of electrical conductors.

[0038] The solar cell 10 is within a housing. The housing has a frame 40. The frame 40 may consist essentially of aluminum profiles. The frame 40 in FIG. 1 constitutes the side walls of the housing. On that side of the housing intended to face the electromagnetic radiation 2 from the sun is a cover 20. The cover comprises a glass pane, especially toughened safety glass. If multiple solar cells are present in the housing, the cover advantageously covers all the solar cells present in the housing. An electrochromic layer is applied on the inside of the glass pane. The electrochromic layer covers the entirety of the region of the glass pane facing the solar cell 10. The electrochromic layer is connected by means of electrical conductors 31 to a control unit 30 positioned at the base of the housing. The control unit 30 is configured to control the transmittance of the electrochromic layer for electromagnetic radiation 2 with a defined wavelength range by application of an electrical voltage to the electrochromic layer.

[0039] Thus, the arrangement 1 comprising the solar cell 10, the cover 20 with the electrochromic layer and the control unit for control of the electrochromic layer contains a ”switchable optical filter” that can specifically block or transmit photons from a particular wavelength range. By means of specific temporary adjustment of the transmittance of a particular wavelength range, it is thus possible to counteract overheating of the solar cell without having to accept greater losses in the energy yield of the solar cell than absolutely necessary.

[0040] List of reference numerals [0041] 1 arrangement [0042] 2 electromagnetic radiation [0043] 10 solar cell [0044] 101 absorber [0045] 102 front-side contact [0046] 03 reverse-side contact [0047] 20 cover [0048] 30 control unit [0049] 31 electrical conductor [0050] 40 frame