EP3524902A1

Mirror for a solar reflector, method of mirror assembly and management system in a solar field

Abstract

The present invention relates to a mirror for a solar reflector comprising at least one sensor integrated in the body of the mirror itself, the body of the mirror being understood as all the layers that comprise the same. Furthermore, integrating at least one processor in the body of the mirror, associated with the sensor, gives rise to an intelligent device and thus, to an intelligent mirror or smart mirror. The invention also relates to a method of assembly of the mirror itself and to a management system for mirrors that make up a solar field.

EP3524902A1, drawing sheet 1
Sheet 1 of 11

Term

11 yearsto projected expiry

Projected expiry 10 October 2037, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

36 claims: 27 independent, 9 dependent

  1. 1
    A mirror (20) for a solar reflector, made up of a body with a reflecting layer (2), a first transparent protective layer (1) and at least one second protective layer (3), characterized in that it comprises:- At least one sensor (4) integrated in the body of the mirror (20) during a manufacturing stage of the mirror itself (20) prior to supplying for installation in the solar reflector, said sensor (4) forming part of the body of said mirror (20) by being partially arranged in and/or between one of the layers (2, 1, 3) thereof (20), - Means of connection for transferring data, and - Sensor (4) power supply means.
  2. 4
    The mirror according to any of the preceding claims, characterized in that the means of connection are integrated in the body of the mirror (20).
  3. 5
    The mirror according to any of the preceding claims, characterized in that the power supply means are integrated in the body of the mirror (20).
  4. 6
    The mirror according to any of the preceding claims, characterized in that the sensor comprises a processor for processing the acquired data and sending the results of the processing through the means of connection to the control unit.
  5. 7
    The mirror according to any of the preceding claims, characterized in that the means of connection are wireless means.
  6. 8
    The mirror according to any of the preceding claims, characterized in that the power supply means are wireless means.
  7. 9
    The mirror according to any of claims 1 to 8 characterized in that the power supply means consist of a battery or another power storage device.
  8. 10
    The mirror according to any of claims 1 to 8, characterized in that the power supply means consist of a photovoltaic cell integrated in the body of the mirror.
  9. 11
    The mirror according to any of the preceding claims, characterized in that at least one sensor can be selected from among a camera or artificial vision device, and/or those that detect mirror breakage by means of an integrated wire or cable, and/or measure the level of dirt on the mirror, and/or measure the tilt of the mirror, and/or measure the orientation of the mirror, and/or measure atmospheric or meteorological conditions, and/or detect the position of the sun, and/or measure the geometrical quality of the mirror, and/or identify the mirror, and/or measure the temperature, and/or measure the position of the mirror, and/or measure vibration levels, and/or carry out safety and surveillance operations, and/or identify the mirror for monitoring and control thereof.
  10. 14
    The mirror according to any of the preceding claims, characterized in that a sensor is integrated, at least partially, in at least one of the layers, either the reflecting or the protective layer.
  11. 15
    The mirror according to any of the preceding claims, characterized in that the body of the mirror comprises the first protective layer (1) located above the reflecting layer (2), with a sensor (4) arranged between said first protective layer (1) and the reflecting layer (2).
  12. 16
    The mirror according to any of the preceding claims, characterized in that the body of the mirror comprises the second protective layer located below the reflecting layer with a sensor arranged between said second layer and the reflecting layer.
  13. 17
    The mirror according to any of the preceding claims, characterized in that the reflecting layer (2) comprises a discontinuity in a determined area so that the sensor (4) faces the first protective layer (1), when the sensor (4) is located behind said reflecting layer.
  14. 18
    The mirror according to any of the preceding claims, characterized in that the sensor is fully integrated in said layers.
  15. 19
    The mirror according to any of the preceding claims, characterized in that the layer in which a sensor is integrated, surrounds said sensor.
  16. 20
    A solar reflector, characterized in that it comprises at least one mirror according to claims 1 to 19.
  17. 21
    A method for assembling a mirror (20) for a solar reflector, of the type having a mirror body with at least one reflecting layer (2), a first transparent protective layer (1) and at least one second protective layer (3), characterized in that it incorporates a stage for integrating a sensor (4) in the body of the mirror, which consists in arranging the sensor (4) in and/or between one of the layers (2, 1, 3) of said mirror (20) prior to supplying the mirror (20) for installation thereof in the reflector.
  18. 23
    The method according to claims 21 or 22, characterized in that at least one sensor (4) is located above and/or below and/or passing through the reflecting layer (2) in the integration stage.
  19. 24
    The method according to any of claims 21 to 22, characterized in that , in the integration stage, a housing is created in the first transparent protective layer (1) and the sensor (4) is located in said housing, and in a subsequent stage, the reflecting layer (2) is applied below said first protective layer (1) and thereafter a second protective layer (3) is arranged below the reflecting layer (2), or alternatively the reflecting layer is applied on the second protective layer and subsequently these are joined with the first protective layer.
  20. 25
    The method according to any of claims 21 to 22, characterized in that , in the integration stage, a housing is created in the second protective layer (3) and the sensor (4) is located in said housing, and in a subsequent stage, the reflecting layer (2) is applied on said second protective layer (3) and thereafter the first protective layer (1) is arranged on the reflecting layer (2), or alternatively the reflecting layer is applied on the first protective layer prior to joining these with the second protective layer.
  21. 26
    The method according to any of claims 21 to 22, characterized in that , in the integration stage, a housing is created in a second ulterior protective layer and the sensor (4) is located in said housing, and then a mirror, comprising three layers thereof, i.e., the second protective layer (3) thereof with the reflecting layer (2) and the first protective layer (1), is arranged on said second ulterior protective layer.
  22. 28
    The method according to any of claims 21 to 27, characterized in that means of connection for transferring data between the sensor (4) and the solar reflector control unit, and/or sensor (4) power supply means, are positioned at the same time as the sensor (4).
  23. 29
    The method according to any of claims 21 to 28, characterized in that it incorporates a stage for integrating a processor in the body of the mirror (20), which consists in arranging the processor in and/or between one of the layers (2, 1, 3) of said mirror (20) prior to supplying the mirror (20) for installation thereof in the reflector.
  24. 30
    A smart mirror interaction and management system for solar reflectors comprising at least one mirror according to any of claims 1 to 19, located in a solar reflector and at least one processor external to said mirror, said mirror being connected with the at least one external processor by means of connection for transmitting and/or exchanging data and information between the mirror and the external processor and/or between the external processor and the mirror.
  25. 32
    The system according to any of claims 30 to 31, characterized in that the external processor is the processor of a smart device of an operator and/or a central control unit of the solar plant and/or a control unit of a second reflector.
  26. 33
    The system according to any of claims 30 to 32, characterized in that it is configured to:- Generate information of interest including signals for other components of the solar plant including other mirrors, and/or - Collect information on itself and on the surroundings thereof, and/or - Exchange the collected information among the processors, and/or - Analyze the available information, and/or - Generate information based on the available information, and/or - Transmit the new available information, and/or - Generate instructions for itself or for other components.
  27. 34
    A smart solar field, characterized in that it comprises:- at least one mirror according to any of claims 1 to 19, located in a first solar reflector, and - at least one processor external to said first reflector, said mirror being connected directly or indirectly with at least said external processor.
Independent claims27