IP Library › Granted Patent US 11,990,866
Granted Patent B2
US 11,990,866 · App. 17/276,567 · Granted May 21, 2024

PV-device having reduced aging

Inventors: Maximilian Fleischer (Hohenkirchen, DE); Roland Pohle (Herdweg, DE); Elfriede Simon (Munich, DE); Oliver von Sicard (Munich, DE)
Assignee: Siemens Energy Global GmbH & Co. KG
H02S50/10G01K7/16G01K2217/00
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Quick Facts
Patent No.
US 11,990,866
App. No.
17/276,567
Granted
May 21, 2024
Kind
B2
Abstract

A photovoltaic device having a perovskite PV cell having reduced aging. The internal temperature of the perovskite PV cell, or a measure thereof, is determined using a measurement of an electrical parameter. In the case that it is detected that the corresponding measured value exceeds a threshold value, i.e., that the internal temperature is too high, the operating conditions of the perovskite PV cell are adjusted to the effect that the internal temperature reduces again. This can be achieved, for example, by an input resistance of power electronics of the perovskite PV cell being adjusted such that lower ohmic losses occur, as a result of the correspondingly altered electric currents.

Claims (47)

1. A photovoltaic (PV) device comprising:

a perovskite PV cell for converting light impinging on the perovskite PV cell into an electrical output voltage U 1 , and

an arrangement for ascertaining a gauge for an internal temperature of the perovskite PV cell,

wherein the arrangement is designed, at least in a measuring state of the PV device, to measure an electrical parameter PARAM(t 1 ) of the perovskite PV cell and to ascertain the gauge for the instantaneous internal temperature T(t 1 ) of the perovskite PV cell from the measured parameter PARAM(t 1 ),

wherein the electrical parameter PARAM is a cyclovoltammogram ascertainable with the aid of the method of cyclovoltammetry,

wherein the measured cyclovoltammogram CYCL(t 1 ) represents the gauge for the instantaneous internal temperature T(t 1 ) that is to be ascertained.

2. The PV device as claimed in claim 1 ,

wherein the arrangement is designed to compare the ascertained gauge for the instantaneous internal temperature of the perovskite PV cell with a threshold value, and,

for a specific case in which the ascertained gauge for the instantaneous internal temperature T(t 1 ) exceeds the threshold value, to adjust operating conditions of the perovskite PV cell in such a way that the internal temperature of the perovskite PV cell falls.

3. The PV device as claimed in claim 2 ,

wherein the arrangement is designed to operate a power electronics unit of the PV device, which at least in a normal operating state of the PV device converts the electrical output voltage U 1 provided by the perovskite PV cell when impinged upon by light into an output voltage U 2 that can be accessed at an output of the power electronics unit, in such a way that in the specific case, through adjusting an input resistance of the power electronics unit of the PV device, an electrical current resulting in the presence of an output voltage U 1 of the perovskite PV cell is reduced.

4. The PV device as claimed in claim 1 ,

wherein the arrangement for ascertaining the gauge for the instantaneous internal temperature of the perovskite PV cell comprises:

an electrical energy source, and

a control unit for operating the PV device, including the energy source,

wherein the control unit is designed

to operate the energy source in the measuring state in such a way that to measure the electrical parameter PARAM, the applied voltage, powered by the electrical energy source, is present at the perovskite PV cell and/or at its light-sensitive component, across an electrical terminal of the perovskite PV cell,

to measure a response of the perovskite PV cell to the applied voltage,

to determine the electrical parameter PARAM from the response in combination with the applied voltage.

5. The PV device as claimed in claim 1 ,

wherein the arrangement for ascertaining the gauge for the instantaneous internal temperature T(t 1 ) of the perovskite PV cell comprises:

a power electronics unit of the PV device, and

a control unit of the PV device for operating the PV device, including the power electronics unit,

wherein the control unit is designed to operate the power electronics unit in the measuring state in such a way that

to measure the electrical parameter PARAM, the power electronics unit, powered by an electrical energy source integrated into the power electronics unit, provides the applied voltage to the perovskite PV cell, and/or to its light-sensitive component, across an electrical terminal of the perovskite PV cell,

a response of the perovskite PV cell to the applied voltage is measured,

the electrical parameter PARAM is determined from the response in combination with the applied voltage.

6. The PV device as claimed in claim 1 ,

wherein the arrangement is designed to determine the gauge for the instantaneous internal temperature T(t 1 ) on the basis of a model from the measured electrical parameter PARAM(t 1 ).

7. The PV device as claimed in claim 1 ,

wherein the electrical parameter PARAM is a peak of the cyclovoltammogram.

8. A method for operating a PV device as claimed in claim 1 for slowing an aging of the perovskite PV cell of the PV device, the method comprising:

selecting one of a plurality of voltage waveforms,

measuring the electrical parameter PARAM of the perovskite PV cell in the measuring state of the PV device based on an applied voltage associated with the selected voltage waveform, and

ascertaining the gauge for the instantaneous internal temperature T(t 1 ) of the perovskite PV cell from the measured parameter PARAM(t 1 ).

9. The method as claimed in claim 8 , further comprising:

comparing the ascertained gauge for the instantaneous internal temperature T of the perovskite PV cell with a threshold value, and

for a specific case in which the ascertained gauge for the instantaneous internal temperature exceeds the threshold value, adjusting operating conditions of the perovskite PV cell in such a way that the internal temperature falls.

10. The method as claimed in claim 9 ,

wherein for the specific case, by adjusting an input resistance of a power electronics unit of the PV device, a current resulting in the presence of an output voltage U 1 of the perovskite PV cell is reduced.

11. The method as claimed in claim 8 ,

wherein to measure the electrical parameter PARAM, the applied voltage is provided to the perovskite PV cell, and/or to its light-sensitive component, a response of the perovskite PV cell to the applied voltage is measured, and the electrical parameter PARAM is determined from the response in combination with the applied voltage.

12. The method as claimed in claim 11 ,

wherein a power electronics unit of the PV device is used in order to provide the applied voltage to the perovskite PV cell and/or to measure the response of the perovskite PV cell to the applied voltage.

13. A method for operating a PV device as claimed in claim 1 for slowing an aging of the perovskite PV cell of the PV device, the method comprising:

measuring the electrical parameter PARAM of the perovskite PV cell in the measuring state of the PV device, and

ascertaining the gauge for the instantaneous internal temperature T(t 1 ) of the perovskite PV cell from the measured parameter PARAM(t 1 ).

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2021
From: FLEISCHER, MAXIMILIAN; POHLE, ROLAND; SIMON, ELFRIEDE; VON SICARD, OLIVER
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 056459/0402 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2021
From: SIEMENS AKTIENGESELLSCHAFT
To: SIEMENS ENERGY GLOBAL GMBH & CO. KG
Reel/Frame 056459/0432 →
Priority Claims (1)
DE 10 2018 216 607.2 · Sep 27, 2018 · national
Continuity (1)
Related Publication 20220052639A1 · Feb 17, 2022