FOOD PREPARATION APPARATUS AND METHOD FOR FOOD PREPARATION
20230304674 · 2023-09-28
Inventors
- Javier Lasobras Bernad (EJEA DE LOS CABALLEROS (ZARAGOZA), ES)
- Sergio Llorente Gil (Zaragoza, ES)
- Gonzalo Lopez Nicolas (Zaragoza, ES)
- Carlos Sagües Blázquiz (Zaragoza, ES)
Cpc classification
F24C1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24C15/2021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F24C15/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24C1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A food preparation apparatus, in particular a cooktop apparatus, having a sensor unit which is provided in order to receive image data of a preparation region, having an additional sensor unit which is provided in order to receive additional image data of the preparation region and having a control unit for analyzing the image data. In order to increase user convenience and to achieve precise replication of a food preparation process, according to the invention the control unit is provided in order to also analyze, in at least one operating state, in addition to the image data formed as 3D image data, the additional image data in order to generate a digital twin of a situation in the preparation region, in particular of a food preparation process in the preparation region.
Claims
1-12. (canceled)
13. A food preparation apparatus, comprising: a sensor unit designed to record image data of a preparation region; an additional sensor unit designed to record additional image data of the preparation region; and a control unit designed to evaluate the image data embodied as 3D image data and to evaluate in at least one operating state the additional image data to generate a digital twin of a situation in the preparation region.
14. The food preparation apparatus of claim 13, constructed in a form of a hob apparatus.
15. The food preparation apparatus of claim 13, wherein the control unit generates the digital twin of a food preparation process in the preparation region.
16. The food preparation apparatus of claim 13, wherein the control unit is designed to output in the at least one operating state the digital twin to a user.
17. The food preparation apparatus of claim 13, wherein the control unit is designed to output in the at least one operating state, based on a result of the evaluation of the image data and additional image data, a proposal relating to a food preparation step to a user.
18. The food preparation apparatus of claim 13, wherein the control unit is designed to adapt in the at least one operating state, based on a result of the evaluation of the image data and additional image data, a food preparation parameter of a food preparation process.
19. The food preparation apparatus of claim 13, wherein the control unit is designed to evaluate in at least one operating state the image data to determine a degree of emissions of an object in the preparation region.
20. The food preparation apparatus of claim 13, wherein the sensor unit is designed to record a photo.
21. The food preparation apparatus of claim 20, wherein the control unit is designed to evaluate the image data to determine a degree of emissions of an object in the preparation region by determining a color value based on the photo.
22. The food preparation apparatus of claim 21, wherein the control unit is designed to assign the color value to a predefined color value range which is assigned a predefined degree of emissions.
23. The food preparation apparatus of claim 13, wherein the sensor unit is designed to record RGB-D image data of the preparation region.
24. The food preparation apparatus of claim 13, wherein the additional sensor unit is designed to record IR image data of the preparation region.
25. A kitchen appliance, comprising a food preparation apparatus, said food preparation apparatus comprising a sensor unit designed to record image data of a preparation region, an additional sensor unit designed to record additional image data of the preparation region, and a control unit designed to evaluate the image data embodied as 3D image data and to evaluate in at least one operating state the additional image data to generate a digital twin of a situation in the preparation region.
26. The kitchen appliance of claim 25, constructed in a form of an extractor hood.
27. The kitchen appliance of claim 25, wherein the control unit is designed to output in the at least one operating state, based on a result of the evaluation of the image data and additional image data, a proposal relating to a food preparation step to a user.
28. The kitchen appliance of claim 25, wherein the control unit is designed to evaluate in at least one operating state the image data to determine a degree of emissions of an object in the preparation region.
29. The kitchen appliance of claim 28, wherein the sensor unit is designed to record a photo, said control unit designed to determine the degree of emissions of the object in the preparation region by determining a color value based on the photo.
30. The kitchen appliance of claim 29, wherein the control unit is designed to assign the color value to a predefined color value range which is assigned a predefined degree of emissions.
31. A method for food preparation, said method comprising: recording image data embodied as 3D image data, and additional image data of a preparation region; and evaluating the image data and the additional image data to generate a digital twin of a situation in the preparation region.
32. The method of claim 31, wherein the digital twin is generated of a food preparation process in the preparation region.
Description
[0026] In the drawings:
[0027]
[0028]
[0029]
[0030]
[0031]
[0032] Only one of the objects present multiple times in the figures is provided with a reference character in each case.
[0033]
[0034] The food preparation apparatus 10 has a sensor unit 12. The sensor unit 12 records image data of a preparation region 14. The sensor unit 12 records a photo of the preparation region 14, which is shown in
[0035] The food preparation apparatus 10 has an additional sensor unit 16. The additional sensor unit 16 records additional image data of the preparation region 14. The additional sensor unit 16 records IR image data of the preparation region 14. The additional sensor unit 16 is embodied as an IR camera. The sensor unit 12 and the additional sensor unit 16 together form a camera unit that is integrated into the kitchen appliance 22.
[0036] The preparation region 14 is embodied as a hob. Alternatively or additionally, the preparation region 14 could be embodied as part of a countertop. An object 20 is arranged in the preparation region 14. The object 20 is embodied as a cooking pot. Cooking water and three eggs are located in the cooking pot.
[0037] The food preparation apparatus 10 has a control unit 18. The control unit 18 is embodied as a processor. The control unit 18 evaluates the image data and the additional image data to generate a digital twin of a situation in the preparation region 14. The control unit 18 evaluates the image data and the additional image data to ascertain food preparation parameters, which together embody the digital twin. The control unit 18 evaluates the image data to ascertain a size, shape, number, color and movement of objects in the cooking region 14. The control unit 18 evaluates the additional image data to ascertain a temperature of objects in the preparation region 14. The control unit 18 outputs the digital twin to a user via an output unit 24 of the kitchen appliance 22, which is shown in
[0038] The situation in the preparation region 14 is embodied as part of a food preparation process. The food preparation process is embodied as boiling eggs. The control unit 18 outputs the digital twin via the output unit 24 as a number of eggs, an amount of cooking water, a set heating power level and a cooking time until now. Alternatively, the situation could be embodied as part of any given other food preparation process, such as roasting, cooking, mixing etc. for example, and the digital twin could be output in the form of any given food preparation parameters, such as a browning, a weight, a volume, a stirring duration, a roasting duration etc. for example.
[0039] The control unit 18 outputs to the user, based on a result of the evaluation of the image data and additional image data, a proposal relating to a food preparation step via the output unit 24, which is shown in
[0040] Based on the result of the evaluation of the image data and additional image data, the control unit 18 adapts a food preparation parameter of a food preparation process. If the result of the evaluation of the image data and additional image data is that the user has modified a food preparation parameter shown in
[0041] The control unit 18 evaluates the image data to determine a degree of emissions of the object 20 in the preparation region 14. The determining of the degree of emissions comprises determining a color value on the basis of the photo. The color value is embodied as a sum of color coordinates L*, a* and b* in a Lab color space. The control unit 18 assigns the color value to one of two predefined color value ranges. The two predefined color value ranges do not overlap one another. Together, the two predefined color value ranges embody an overall color value range. A predefined first color value range is assigned a predefined first degree of emissions. The predefined first color value range is assigned to a first type of object. The first type of object is embodied as metallic cookware. The first type of object is assigned a predefined first degree of emissions. The predefined first degree of emissions corresponds to a common degree of emissions for metallic cookware known to the person skilled in the art. A predefined second color value range is assigned a predefined second degree of emissions. The predefined second color value range is assigned to a second type of object. The second type of object is embodied as coated cookware. The predefined second degree of emissions corresponds to a common degree of emissions for coated cookware known to the person skilled in the art. The determining of a degree of emissions is used to roughly distinguish between metallic cookware arranged in the preparation region 14 and coated cookware arranged in the preparation region 14. The control unit 18 identifies the object 20 as an item of metallic cookware on the basis of the determining of the color value. The control unit 18 uses the IR image data and the predefined first degree of emissions to determine the temperature of the object 20.
[0042] In
REFERENCE CHARACTERS
[0043] 10 food preparation apparatus [0044] 12 sensor unit [0045] 14 preparation region [0046] 16 additional sensor unit [0047] 18 control unit [0048] 20 object [0049] 22 kitchen appliance [0050] 24 output unit [0051] 26 storage unit [0052] 100 recording step [0053] 110 evaluation step [0054] 120 output step