IP Library Granted Patent US 9,677,769
Granted Patent B2
US 9,677,769 · App. 13/755,685 · Granted Jun 13, 2017

Flexible sequence control and method for automated cleaning system of a cooking device

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Quick Facts
Patent No.
US 9,677,769
App. No.
13/755,685
Granted
Jun 13, 2017
Kind
B2
Abstract

Disclosed is a cooking device having a flexible sequence control for automatic cleaning of an oven cavity. A customizing aspect allows for the inputting of values for a combination of parameters of a cleaning system. These parameters may include degree of soiling, cleaning time, energy consumption, water consumption, cleaner consumption, rinse agent consumption, and/or overall cost of cleaning. The sets of parameters can be entered, saved and recalled, or deleted. While setting values of the parameters, any undefined parameter(s) are automatically changed accordingly to achieve an optimal result. Unreasonable or impossible combinations of parameters are blocked. The parameters may be visualized as user friendly touch-activated bars. Selection can be made from several optimizing options, such as cost optimization, time optimization, resource optimization, and ecological optimization that reduce the consumption of resources.

Claims (64)

1. An oven comprising:

an oven cavity;

a cleaning system that cleans said oven cavity;

a user interface; and

a controller having a processor that executes instructions that cause said processor to perform operations of:

presenting, on the user interface, a plurality of cleaning parameters, wherein each of said plurality of cleaning parameters is scalable and individually adjustable by a user via the user interface;

receiving, via the user interface, values for at least two of the plurality of user-scalable and individually user-adjustable cleaning parameters for cleaning said oven cavity at the time of cleaning;

presenting, on user interface, a plurality of optimization options;

receiving, via the user interface, an optimization option;

determining an optimization result for the plurality of cleaning parameters using said received optimization option; and

displaying said optimization result for the plurality of cleaning parameters.

2. The oven of claim 1 , wherein said optimization result is selected from the group consisting of: optimized values for said plurality of cleaning parameters, conflict recognition between two or more of said plurality of cleaning parameters, conflict avoidance recommendation for parameters in conflict, and combinations of any of the foregoing.

3. The oven of claim 1 , wherein said optimization option is selected from the group consisting of: cost optimization, energy consumption optimization, time optimization, resource optimization, water consumption optimization, cleaner consumption optimization, rinse agent consumption optimization, and combinations of any of the foregoing.

4. The oven of claim 1 , wherein said plurality of cleaning parameters is selected from the group consisting of: energy consumption, soiling level, time duration, water consumption, cleaner consumption, rinse agent consumption, cleaning cost, cleaning temperature, oven fan speed, water pressure, water hardness, and combinations of any of the foregoing.

5. The oven of claim 1 , wherein said optimization result for the set of values of said plurality of cleaning parameters comprises optimized values for said plurality of cleaning parameters, and wherein said controller uses said optimized values to operate said cleaning system to perform a cleaning procedure to clean said oven cavity.

6. The oven of claim 5 , wherein said operations further comprise:

presenting on said user interface an option for a user to adjust one of said optimized values to obtain an adjusted optimized value;

presenting on said user interface after said cleaning procedure is completed an option for said user to request saving said optimized values with said adjusted optimized value; and

storing said optimized values with said adjusted optimized value in a memory.

7. The oven of claim 6 , wherein said operations further comprise:

presenting on said user interface a cleaning result rating feature; and

presenting on said user interface a recommendation of changing one or more of said optimized values if said user enters a rating of unsatisfactory.

8. A method of customizing a cleaning procedure for an oven comprising:

an oven cavity;

a cleaning system that cleans said oven cavity;

a user interface; and

a controller having a processor which executes instructions that cause said processor to perform operations of:

presenting, on the user interface, a plurality of cleaning parameters, wherein each of said plurality of cleaning parameters is scalable and individually adjustable by a user via the user interface;

receiving, via the user interface, values for at least two of the plurality of user-scalable and individually user-adjustable cleaning parameters for cleaning said oven cavity at the time of cleaning;

presenting, on user interface, a plurality of optimization options;

receiving, via the user interface, an optimization;

determining an optimization result for the plurality of cleaning parameters using said received optimization option; and

displaying said optimization result for the plurality of cleaning parameters.

9. The method of claim 8 , wherein said optimization result is selected from the group consisting of: optimized values for said plurality of cleaning parameters, conflict recognition between two or more of said plurality of cleaning parameters, conflict avoidance recommendation for parameters in conflict, and combinations of any of the foregoing.

10. The method of claim 8 , wherein said optimization option is selected from the group consisting of: cost optimization, energy consumption optimization, time optimization, resource optimization, water consumption optimization, cleaner consumption optimization, rinse agent consumption optimization, and combinations of any of the foregoing.

11. The method of claim 8 , wherein said plurality of cleaning parameters is selected from the group consisting of: energy consumption, soiling level, time duration, water consumption, cleaner consumption, rinse agent consumption, cleaning cost, cleaning temperature, oven fan speed, water pressure, water hardness, and combinations of any of the foregoing.

12. The method of claim 8 , wherein said optimization result for the set of values of said plurality of cleaning parameters comprises optimized values for said plurality of cleaning parameters, and wherein said controller uses said optimized values to operate said cleaning system to perform a cleaning procedure to clean said oven cavity.

13. The method of claim 12 , wherein said operations further comprise:

presenting on said user interface an option for a user to adjust one of said optimized values to obtain an adjusted optimized value;

presenting on said user interface after said cleaning procedure is completed an option for said user to request saving said optimized values with said adjusted optimized value; and

storing said optimized values with said adjusted optimized value in said memory.

14. The method of claim 13 , wherein said operations further comprise:

presenting on said user interface a cleaning result rating feature; and

presenting on said user interface a recommendation of changing one or more of said optimized values if said user enters a rating of unsatisfactory.

15. A system for use in setting and performing automatic cleaning of a cooking device, said system comprising a user interface and a controller comprising a processor that executes instructions that causes the processor to perfume the operations of:

presenting, on the user interface, a plurality of cleaning parameters, wherein each of said plurality of cleaning parameters is scalable and individually adjustable by a user via the user interface;

receiving, via the user interface, values for at least two of the plurality of user-scalable and individually user-adjustable cleaning parameters for cleaning said oven cavity at the time of cleaning;

receiving, via the user interface, an optimization option;

determining an optimization result for the plurality of cleaning parameters using said received optimization option; and

displaying said optimization result for the set of said plurality of cleaning parameters.

16. The system of claim 15 , wherein said optimization result is selected from the group consisting of: optimized values for said plurality of cleaning parameters, conflict recognition between two or more of said plurality of cleaning parameters, conflict avoidance recommendation for the parameters in conflict, and combinations of any of the foregoing.

17. The system of claim 15 , wherein said optimization option is selected from the group consisting of: cost optimization, energy consumption optimization, time optimization, resource optimization, water consumption optimization, cleaner consumption optimization, rinse agent consumption optimization, and combinations of any of the foregoing.

18. The system of claim 15 , wherein said plurality of cleaning parameters is selected from the group consisting of: energy consumption, soiling level, time duration, water consumption, cleaner consumption, rinse agent consumption, cleaning cost, cleaning temperature, oven fan speed, water pressure, water hardness, and combinations of any of the foregoing.

19. The system of claim 16 , wherein said optimization result for the set of values of said plurality of cleaning parameters comprises optimized values for said plurality of cleaning parameters, and wherein said controller uses said optimized values to operate said cleaning system to perform a cleaning procedure to clean said oven cavity.

20. The system of claim 19 , wherein said operations further comprise:

presenting on said user interface an option for a user to adjust one of said optimized values to obtain an adjusted optimized value;

presenting on said user interface after said cleaning procedure is completed an option for said user to request saving said optimized values with said adjusted optimized value; and

storing said optimized values with said adjusted optimized value in a memory.

21. The system of claim 20 , wherein said operations further comprise:

presenting on said user interface a cleaning result rating feature; and

presenting on said user interface a recommendation of changing one or more of said optimized values if said user enters a rating of unsatisfactory.

22. The oven of claim 1 , wherein, wherein each of said plurality of cleaning parameters is scalable and individually adjustable via the user interface by touch activation.

23. The method of claim 8 , wherein, wherein each of said plurality of cleaning parameters is scalable and individually adjustable via the user interface by touch activation.

24. The system of claim 15 , wherein, wherein each of said plurality of cleaning parameters is scalable and individually adjustable via the user interface by touch activation.

Assignments (4)
RELEASE OF SECURITY INTEREST IN UNITED STATES PATENTS Recorded Aug 2, 2022
From: JPMORGAN CHASE BANK, N.A.
To: APPLIANCE SCIENTIFIC, INC.; CLEVELAND RANGE, LLC; THE DELFIELD COMPANY, LLC; ENODIS CORPORATION; GARLAND COMMERCIAL INDUSTRIES LLC; MANITOWOC FOODSERVICE COMPANIES, LLC; FRYMASTER L.L.C.
Reel/Frame 061053/0411 →
MERGER Recorded Sep 23, 2021
From: CONVOTHERM ELEKTROGERATE GMBH
To: WELBILT DEUTSCHLAND GMBH
Reel/Frame 057575/0603 →
MERGER Recorded Sep 23, 2021
From: CONVOTHERM ELEKTROGERATE GMBH
To: WELBILT DEUTSCHLAND GMBH
Reel/Frame 057595/0493 →
SECURITY INTEREST Recorded Mar 25, 2016
From: APPLIANCE SCIENTIFIC, INC.; CLEVELAND RANGE, LLC; THE DELFIELD COMPANY, LLC; ENODIS CORPORATION; GARLAND COMMERCIAL INDUSTRIES LLC; MANITOWOC FOODSERVICE COMPANIES, LLC; FRYMASTER L.L.C.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 038263/0001 →