1-10. (canceled)
11. A cooking appliance apparatus, comprising:
a power unit,
a communication unit configured to receive at least one information item from a data network, and
a control unit operably connected to the communication unit and configured to change at least one operating parameter of the power unit at least as a function of the at least one information item.
12. The cooking appliance apparatus of claim 11, constructed in the from of a cooktop apparatus.
13. The cooking appliance apparatus of claim 11, wherein the at least one operating parameter is a power parameter, which sets a maximum power of the power unit.
14. The cooking appliance apparatus of claim 11, wherein the communication unit is configured to connect the control unit to an intelligent power network.
15. The cooking appliance apparatus of claim 11, further comprising an input unit configured to input the at least one operating parameter of the power unit.
16. The cooking appliance apparatus of claim 15, wherein the control unit is operably connected to the input unit to receive the at least one information item and to change the at least one operating parameter of the power unit at least as a function of the at least one information item.
17. The cooking appliance apparatus of claim 11, further comprising an output unit configured to output the at least one operating parameter of the power unit.
18. The cooking appliance apparatus of claim 17, wherein the control unit is configured to output a current value of the at least one operating parameter by way of the output unit.
19. The cooking appliance apparatus of claim 11, wherein the communication unit is configured at least partially as a single piece with the control unit.
20. A method, comprising:
receiving at least one information item from a data network of a cooking appliance apparatus; and
changing at least one operating parameter of a power unit of the cooking appliance apparatus at least as a function of the at least one information item.
21. The method of claim 20, wherein the at least one operating parameter is a power parameter, which sets a maximum power of the power unit.
22. The method of claim 20, further comprising inputting the at least one operating parameter of the power unit by way of an input unit of the cooking appliance apparatus.
23. The method of claim 20, further comprising outputting the at least one operating parameter of the power unit by way of an output unit of the cooking appliance apparatus.
24. The method of claim 23, wherein the outputting step includes outputting a current value of the at least one operating parameter by way of the output unit.
25. A cooking appliance, comprising a cooking appliance apparatus having a power unit, a communication unit configured to receive at least one information item from a data network, and a control unit operably connected to the communication unit and configured to change at least one operating parameter of the power unit at least as a function of the at least one information item.
26. The cooking appliance of claim 25, constructed in the form of a cooktop.
27. The cooking appliance of claim 25, wherein the at least one operating parameter is a power parameter, which sets a maximum power of the power unit.
28. The cooking appliance of claim 25, wherein the communication unit is configured to connect the control unit to an intelligent power network.
29. The cooking appliance of claim 25, wherein the cooking appliance apparatus includes an input unit configured to input the at least one operating parameter of the power unit.
30. The cooking appliance of claim 29, wherein the control unit is operably connected to the input unit to receive the at least one information item and to change the at least one operating parameter of the power unit at least as a function of the at least one information item.
31. The cooking appliance of claim 25, wherein the cooking appliance apparatus includes an output unit configured to output the at least one operating parameter of the power unit.
32. The cooking appliance of claim 31, wherein the control unit is configured to output a current value of the at least one operating parameter by way of the output unit.
33. The cooking appliance of claim 25, wherein the communication unit is configured at least partially as a single piece with the control unit.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A method of generating a mosaic representation of a target image, the mosaic representation incorporating a plurality of source images, the method comprising the steps of:
a) loading the target image into a computer;
b) generating a database having a library of source images;
c) dividing the target image into multiple tile regions;
d) selecting a source image from the library;
e) comparing the selected source image with each of the tile regions, wherein the comparing comprises calculating figures of visual difference between the selected source image and the tile regions using a processor;
e) comparing the selected source image with each of the tile regions, wherein the comparing comprises calculating figures of visual difference between the selected source image and the tile regions using a processor;
f) selecting a tile region with a high measurement of visual similarity based on the figures of visual difference to place the selected source image;
g) positioning the selected source image in the mosaic at the selected tile region; and
h) repeating steps d) to g) until the mosaic representation is complete.
2. The method according to claim 1 wherein a single source image is selected from the library and wherein a single tile region is located having the highest visual similarity.
3. The method according to claim 1 wherein multiple source images are selected from the library and wherein for each of the source images a tile region is located having a high visual similarity.
4. The method according to claim 1 wherein the source images are subjected to digital image processing to increase the visual similarity.
5. The method according to claim 4 wherein the digital image processing is applied after a region has been located for the source image.
6. The method according to claim 4 wherein the digital image processing is applied before a region has been located for the source image.
7. The method according to claim 4 wherein the digital image processing includes a cropping stage.
8. The method according to claim 4 wherein the digital image processing includes adjustment of brightness andor contrast.
9. The method according to claim 4 wherein the digital image processing includes adjustment of colour.
10. The method according to claim 4 wherein parameter ranges of the digital imaging processing are determined individually for each source image.
11. The method according to claim 4 wherein parameter ranges of the digital imaging processing are set jointly for multiple source images.
12. The method according to claim 1, with the additional step of producing multiple versions of a source image for use in generating a mosaic representation of a master image, the mosaic representation incorporating a plurality of source images by using the versions of the source images, each of the versions being produced by applying one or more digital image processing schemes to the source image.
13. The method according to claim 12 wherein generating the mosaic comprises of a) selecting a tile region of the master image b) comparing the multiple versions of the source image with the tile region; c) searching through the multiple versions to select a candidate version having a high visual similarity with the tile region; d) using the selected version in replacement of the source image in the mosaic image representation.
14. The method according to claim 12 wherein the digital image processing schemes comprise of a cropping stage.
15. The method according to claim 12 wherein the digital image processing schemes comprise of an adjustment of brightness andor contrast.
16. The method according to claim 12 wherein the digital image processing schemes comprise of an adjustment of color.
17. The method according to claim 12, wherein the digital image processing schemes are applied before a region has been located for the source image.
18. The method according to claim 12, wherein the digital image processing schemes are applied after a region has been located for the source image.
19. The method according to claim 12 wherein parameter ranges of the digital imaging processing are set individually for each source image.
20. The method according to claim 12 wherein parameter ranges of the digital imaging processing are set jointly for all source images.
21. The method according to claim 1 with the additional step of generating a subject matter index for source images used in a mosaic representation of a master image, the source images being positioned in tile regions of the mosaic representation based on visual similarity compared with corresponding regions of the master image, the method comprising the steps of: a) dividing the master image into multiple tile regions; b) assigning a co-ordinate to the location of each tile region; c) providing a title for the subject matter or each source image; and d) preparing a list of co-ordinates for each title.
22. A method for generating a mosaic representation of a target image, the mosaic representation incorporating a plurality of source images, the method comprising the steps of:
a) loading the target image into a computer;
b) generating a database having a library of source images;
c) dividing the target image into multiple generally complex tile regions;
d) selecting a tile region of the target image;
e) selecting one or more source images from the library;
f) for each of the selected one or more source images, producing multiple versions of the source image by applying one or more digital image processing schemes to the source image, each of the versions being generally of a same size and generally of a different appearance;
g) comparing each of the multiple versions of the source image with for the selected tile region, wherein the comparing comprises calculating figures of visual difference between the multiple versions of the source image and the selected tile region using a processor;
h) for the selected tile region, selecting a version from the multiple versions of the source image, that has a high measurement of visual similarity based on the figures of visual difference;
i) positioning the selected version with the high measurement of visual similarity in the mosaic at the selected tile region;
j) repeating steps e) to i) for all the tile regions.
23. The method according to claim 22 wherein the different appearance is attained by a cropping stage in the digital image processing schemes.
24. The method according to claim 22 wherein the different appearance is attained by adjustment of brightness andor contrast in the digital image processing schemes.
25. The method according to claim 22 wherein the different appearance is attained by adjustment of color in the digital image processing schemes.
26. The method according to claim 22, wherein the digital image processing schemes are applied before a region has been located for the source image.
27. The method according to claim 22, wherein the digital image processing schemes are applied after a region has been located for the source image.
28. The method according to claim 22 wherein parameter ranges or the digital image processing are set individually for each source image.
29. The method according to claim 22 wherein parameter ranges of the digital image processing are set jointly for all source images.