SYSTEM FOR THE PREPARATION OF AT LEAST ONE FOOD PRODUCT AND METHOD FOR OPERATING THE RELEVANT SYSTEM
20190086096 ยท 2019-03-21
Assignee
Inventors
Cpc classification
H05B6/6447
ELECTRICITY
F24C7/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The invention relates to a system for the preparation of at least one food product (2) as well as a method for the same, wherein the system (1, 50) comprises a cooking chamber (3), in which the food product (2) can be prepared.
Claims
1. A system for the preparation of at least one food product, comprising a cooking chamber in which the food product can be prepared, an object detection for the automatic determination of input parameters of the food product, a control unit, which determines cooking data based upon the input parameters, an energy unit to perform an energy supply specific to the food product into the cooking chamber dependent upon the cooking data.
2. The system according to claim 1, wherein the input parameter is at least one of the following parameters of the food product: size weight type quantity temperature position in the cooking chamber.
3. The system according to claim 1, wherein the cooking data determines a preparation provision for cooking the food product, wherein the cooking data is at least one of the following parameters: cooking duration cooking temperature.
4. The system according to claim 1, wherein the system is a cooking device, which comprises at least the cooking chamber or the energy unit or the object detection.
5. The system according to claim 1, wherein the object detection comprises at least one camera, by means of which at least one input parameter can be determined.
6. The system according to claim 5, wherein multiple cameras are provided.
7. The system according to claim 2, wherein the object detection comprises at least the control unit or a device for measuring at least one input parameter.
8. The system according to claim 2, wherein the object detection is formed in such a way that the object detection determines the weight via the determined input parameters.
9. The system according to claim 1, wherein the device is a scale.
10. The system according to claim 1, wherein a database is provided, from which functional data for determining the cooking data can be read-out by the control unit, or from which cooking data can be read-out by the control unit.
11. The system according to claim 1, wherein the cooking device comprises walls, which delimit the cooking chamber.
12. The system according to claim 1, wherein the energy unit is arranged in at least one wall, wherein the energy unit comprises a plurality of energy elements, which are arranged in or on the at least one wall in such a way that a planar energy unit results.
13. The system according to claim 12, wherein the planar energy unit is adjusted to the dimensions of the at least one wall, in which or on which the energy unit is arranged, wherein the planar energy unit corresponds to at least 50% of the dimension of the at least one wall, preferably the planar energy unit corresponds to at least 80% of the dimension of the at least one wall.
14. The system according to claim 1, wherein the energy element is formed as an antenna, by means of which energy as a high-frequency radiation can be emitted into the cooking chamber.
15. The system according to claim 14, wherein the antennas are formed in such a way that they can be controlled individually, so that a plurality of cooking chamber zones are created in the cooking chamber.
16. The system according to claim 1, wherein the cooking device comprises a display, by means of which at least at least one input parameter or cooking data can be displayed.
17. The system according to claim 1, wherein a cloud is provided, which comprises at least the database or the control unit.
18. The system according to claim 1, the object detection is effected outside the cooking chamber.
19. The system according to claim 1, the object detection is a mobile object detection device, by means of which at least partially input parameters can be determined outside the cooking chamber, wherein the object detection device comprises communication interfaces, so that a data communication is possible at least between the cloud or the cooking device or the control unit.
20. The system according to claim 1, wherein the object detection comprises a light source for illumination of the cooking chamber.
21. The system according to claim 1, wherein a thermal insulation is provided between the object detection and the cooking chamber.
22. A method of operating a system for a preparation of at least one food product located in a cooking chamber, comprising an object detection which automatically determines input parameters of the food product, a control unit which determines cooking data based upon the input parameters, an energy unit which supplies energy specific to the food product into the cooking chamber dependent upon the cooking data.
23. The method according to claim 22, wherein the input parameter is at least one of the following parameters of the food product: size, weight, type, quantity, temperature, position in the cooking chamber, wherein the cooking data determines a preparation provision for cooking the food product, wherein the cooking data is at least one of the following parameters: cooking duration, cooking temperature.
24. The method according to claim 22, wherein a database comprises functional data, which are at least partially in correlation with the input parameters, wherein at least input parameters or cooking data is/are determined from the functional data.
25. The method according to claim 23, wherein the object detection determines at least the input parameters type or size of the food product, and the input parameter weight is calculated in consideration of functional data.
26. The method according to claim 23, wherein the object detection at least determines or measures at least the input parameters type or size or weight of the food product.
27. The method according to claim 22, wherein the energy unit comprises a plurality of energy elements, so that energy can be continuously supplied to the cooking chamber, wherein energy can be supplied to the cooking chamber in such a way, dependent upon at least the input parameters or the cooking data, that multiple cooking chamber zones are created, which can be operated with different cooking data.
28. The method according to claim 22, wherein the object detection is in data communication with an external unit, in order to capture at least the input parameters or cooking data or pictures of the food product during the cooking process and send it to the external unit, wherein the external unit is at least a mobile computer or a mobile phone or a tablet computer or a display device.
Description
[0040] Further advantages, features, and details of the invention result from the following description, in which multiple exemplary embodiments of the invention are described in detail with reference to the drawings. The features mentioned in the claims and description can each per se or in any combination be essential to the invention. The Figures show in:
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[0054] The input parameters 100 can be the following parameters of the food product 2: size 101 of the food product 2, weight 102 of the food product 2, type 103 of the food product 2, quantity 104 of the food product, temperature of the food product 2 as well as position 106 of the food product 2 in the cooking chamber 3.
[0055] The listed parameters are not to be understood as a complementary list here.
[0056] The cooking data 110 determines a preparation provision for cooking the food product 2, wherein the cooking data 110 can be at least one of the following parameters: cooking duration 111 and cooking temperature 112. In the present exemplary embodiment, the system 1, 50 is a cooking device 50 which is formed as an oven, wherein the cooking device 50 comprises walls 51 that define the cooking chamber 3. Alternatively, the inventive idea also includes that the cooking chamber 3 is configured to be open, i.e. no walls delimit the cooking chamber 3. According to
[0057] The object detection 10 can comprise, for example, at least one camera 14, by means of which at least one of the aforementioned input parameters 100 can be determined. It is conceivable, for example, that the object detection 10 is configured with one or multiple 2D cameras or 3D cameras, in order to determine the input parameters 11 in an efficient manner. In one possible embodiment of the invention, the object detection 10 detects the size of the food product 2. The system of the cooking device 50 can additionally detect the type 103 of the food product 2, the quantity 104 of the food product 2 as well as further input parameters 100, which have been mentioned here already, for example, from the data of the object detection 10. The weight 102 can likewise be determined through the object detection 10, wherein, for example via a database 120 according to
[0058] As a result, the cooking data 110 can be determined, wherein the control unit 20 provides this cooking data 110 subsequently to the energy unit 30 in accordance with
[0059] It is shown according to
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[0061] Regardless of whether the object detection 10 determines all input parameters 100 or one input parameter 102 is at least partially determined by the device 40, all input parameters 100 are handed over to the control unit 20, which determines the cooking data 111, 112 dependent upon the input parameters 100, which is schematically shown in
[0062] The energy unit 30 can be integrated in a wall 51, for example.
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[0065] Advantageously, the object detection 10 comprises a thermal insulation 13, see
[0066] For example, in accordance with
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[0068] According to
[0069] The features described in
LIST OF REFERENCE CHARACTERS
[0070] 1, 50 System [0071] 2 Food product [0072] 3 Cooking chamber [0073] 4 Cooking chamber zone [0074] 5 Cooking chamber zone [0075] 10 Object detection [0076] 12 Communication interlace [0077] 13 Thermal insulation [0078] 14 Camera [0079] 15 Light source [0080] 20 Control unit [0081] 30 Energy unit [0082] 31 Energy element [0083] 40 Device (weight measurement) [0084] 50 Oven, cooking device [0085] 51 Walls [0086] 52 Bottom [0087] 53 Side wall [0088] 54 Ceiling [0089] 55 Display [0090] 56 Interlace [0091] 60 Cloud [0092] 70 External unit [0093] 100 Input parameter [0094] 101 Size [0095] 102 Weight [0096] 103 Type [0097] 104 Quantity [0098] 105 Temperature [0099] 106 Position in the cooking chamber [0100] 110 Cooking data [0101] 111 Cooking duration [0102] 112 Cooking temperature [0103] 120 Database [0104] 130 Functional data