Cooking utensil control method and device, equipment and storage medium

Through intelligent judgment and automatic adjustment of firepower, the problem of users needing to manually adjust firepower multiple times under the cooking function is solved, and the cooking effect and efficiency are improved.

CN120167802APending Publication Date: 2025-06-20ZHEJIANG SHAOXING SUPOR DOMESTIC ELECTRICAL APPLIANCE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202311766507.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-20
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

Under the steaming and cooking function, users need to manually adjust the firepower state multiple times, which may cause users to fail to adjust in time, resulting in lower cooking effects.

Method used

By determining the target boiling point temperature of the cooking appliance, the heating assembly is controlled to perform heat treatment until the temperature reaches the target boiling point. Then, based on the current temperature and the target boiling point temperature, the target firepower status of the heating component is intelligently judged, and the firepower size is automatically adjusted.

Benefits of technology

It improves the cooking effect, reduces the number of times the user manually adjusts the firepower, ensures that the firepower status is always within the appropriate range, and improves the efficiency and quality of cooking.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120167802A_ABST
    Figure CN120167802A_ABST
Patent Text Reader

Abstract

The embodiment of the invention provides a control method and device of a cooking utensil, equipment and a storage medium, and the method comprises the steps: determining a target boiling point temperature corresponding to the cooking utensil, controlling a heating assembly to heat the cooking utensil until the temperature of the cooking utensil reaches the target boiling point temperature, after it is detected that the current temperature of the cooker is smaller than the target boiling point temperature, the target firepower state of the heating assembly is determined according to the current temperature and the target boiling point temperature, and the firepower state of the heating assembly is adjusted to the target firepower state. According to the method, the cooking effect is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application belongs to the technical field of cooking equipment control, and particularly relates to a control method, device, equipment and storage medium for a cooking appliance. Background Art

[0002] Currently, a cooking appliance may include a cookware assembly and a heating assembly. It is necessary to manually adjust the regulator of the heating assembly by the user to control the magnitude of the firepower state to achieve cooking requirements.

[0003] The cooking equipment can be pre-set with multiple intelligent cooking functions, such as steaming function, stir-frying function, etc. In the steaming function, the user may need to manually adjust the firepower state multiple times, and there may be a situation where the user fails to adjust the firepower state in time, resulting in a lower cooking effect. Summary of the Invention

[0004] Embodiments of this application relate to a control method, device, equipment and storage medium for a cooking appliance, which are used to solve the defect in the prior art that in the steaming function, the user may need to manually adjust the firepower state multiple times, and there may be a situation where the user fails to adjust the firepower state in time, resulting in a lower cooking effect.

[0005] In a first aspect, embodiments of this application provide a control method for a cooking appliance, the cooking appliance includes a cookware assembly and a heating assembly, and the method includes:

[0006] The cooking appliance includes a cookware assembly and a heating assembly, and the method includes:

[0007] Determine the target boiling point temperature corresponding to the cooking appliance;

[0008] Control the heating assembly to perform a heating process on the cooking appliance until the temperature of the cookware assembly reaches the target boiling point temperature;

[0009] After detecting that the current temperature of the cookware assembly is less than the target boiling point temperature, determine the target firepower state of the heating assembly according to the current temperature and the target boiling point temperature;

[0010] Adjust the firepower state of the heating assembly to the target firepower state.

[0011] In a possible implementation manner, determining the target firepower state of the heating assembly according to the current temperature and the target boiling point temperature includes:

[0012] Determine the current firepower state, and the current firepower state is a low-fire state, a medium-fire state or a high-fire state;

[0013] If the current heating state is the low - fire state or the high - fire state, determine the target heating state of the heating component according to the current heating state, the current temperature, and the target boiling temperature.

[0014] If the current heating state is the medium - fire state, obtain the previous heating state of the heating component, and determine the target heating state of the heating component according to the current heating state, the current temperature, the target boiling temperature, and the previous heating state.

[0015] In a possible implementation manner, the current heating state is the low - fire state; determining the target heating state of the heating component according to the current heating state, the current temperature, and the target boiling temperature includes:

[0016] If the current temperature is greater than or equal to the target boiling temperature, determine that the target heating state is the low - fire state;

[0017] If the current temperature is less than the target boiling temperature, determine that the target heating state is the medium - fire state.

[0018] In a possible implementation manner, the current heating state is the high - fire state; determining the target heating state of the heating component according to the current heating state, the current temperature, and the target boiling temperature includes:

[0019] Determine the difference between the target boiling temperature and the first preset temperature as the first temperature;

[0020] If the current temperature is greater than or equal to the first temperature, determine that the target heating state is the medium - fire state;

[0021] If the current temperature is less than the first temperature, determine that the target heating state is the high - fire state.

[0022] In a possible implementation manner, the current heating state is the medium - fire state and the previous heating state is the low - fire state; determining the target heating state of the heating component according to the current heating state, the current temperature, the target boiling temperature, and the previous heating state includes:

[0023] Determine the difference between the target boiling temperature and the second preset temperature as the second temperature;

[0024] If the current temperature is less than or equal to the second temperature, determine that the target heating state is the high - fire state;

[0025] If the current temperature is greater than the second temperature, determine whether the current temperature is less than the target boiling temperature;

[0026] If so, determine that the target heating state is the medium - fire state;

[0027] If not, obtain the minimum temperature after switching from the low - fire state to the medium - fire state, and the boiling duration in the medium - fire state, and obtain the first difference between the target boiling point temperature and the minimum temperature; when the boiling duration is greater than or equal to the duration corresponding to the first difference, determine that the target heating state is the low - fire state, and when the boiling duration is less than the duration corresponding to the first difference, determine that the target heating state is the medium - fire state.

[0028] In a possible implementation manner, the current heating state is the medium - fire state, and the previous heating state is the low - fire state; determining the target heating state of the heating component according to the current heating state, the current temperature, the target boiling point temperature, and the previous heating state includes:

[0029] Determine the difference between the target boiling point temperature and the second preset temperature as the second temperature;

[0030] If the current temperature is less than or equal to the second temperature, determine that the target heating state is the high - fire state;

[0031] If the current temperature is greater than the second temperature, obtain the current analog - to - digital (AD) value corresponding to the current temperature, and determine whether the current AD value is greater than or equal to the average AD value corresponding to the target boiling point. If so, determine that the target heating state is the low - fire state; if not, determine that the target heating state is the medium - fire state.

[0032] In a possible implementation manner, the current heating state is the medium - fire state, and the previous heating state is the high - fire state; determining the target heating state of the heating component according to the current heating state, the current temperature, the target boiling point temperature, and the previous heating state includes:

[0033] Determine whether the current temperature is greater than or equal to the target boiling point temperature;

[0034] If not, determine that the target heating state is the medium - fire state;

[0035] If so, obtain the current time and the first time corresponding to when switching to the high - fire state, determine the target duration according to the current time, the first time, and a preset coefficient, obtain the boiling duration in the medium - fire state, and when the boiling duration is greater than or equal to the target duration, determine that the target heating state is the low - fire state, and when the boiling duration is less than the target duration, determine that the target heating state is the medium - fire state.

[0036] In a possible implementation, the current heating state is the medium-fire state, and the previous heating state is the high-fire state; determining the target heating state of the heating component according to the current heating state, the current temperature, the target boiling point temperature, and the previous heating state includes:

[0037] Obtain the current AD value corresponding to the current temperature;

[0038] Judge whether the current AD value is greater than or equal to the maximum AD value corresponding to the target boiling point;

[0039] If not, determine that the target heating state is the medium-fire state;

[0040] If so, determine that the target heating state is the low-fire state.

[0041] In a possible implementation, determining the target boiling point temperature corresponding to the cooking appliance includes:

[0042] When the cooking function of the heating component is the target function, adjust the heating state of the heating component to the high-fire state;

[0043] When the current temperature is greater than the preset threshold, obtain the initial moment and the temporary boiling point temperature, and judge whether the current temperature is greater than the temporary boiling point temperature after a preset period;

[0044] If so, set the current temperature as the temporary boiling point temperature, and determine the current moment as the initial moment, and judge whether the current temperature is greater than the temporary boiling point temperature after a preset period;

[0045] If not, obtain the current moment, determine the target boiling duration according to the current moment and the initial moment, when the target boiling duration is greater than or equal to the preset duration, determine the temporary boiling point temperature as the target boiling point temperature, when the target boiling duration is less than the preset duration, judge whether the current temperature is greater than the temporary boiling point temperature after a preset period.

[0046] In a second aspect, an embodiment of the present application provides a control device for a cooking appliance, the cooking appliance includes a cookware assembly and a heating assembly, and the device includes:

[0047] A first determination module, configured to determine the target boiling point temperature corresponding to the cooking appliance;

[0048] A control module, configured to control the heating assembly to perform a heating process on the cooking appliance until the temperature of the cookware assembly reaches the target boiling point temperature;

[0049] A second determination module, configured to determine a target firing state of the heating component according to the current temperature and the target boiling temperature after detecting that the current temperature of the cookware assembly is less than the target boiling temperature;

[0050] An adjustment module, configured to adjust the firing state of the heating component to the target firing state.

[0051] In a possible implementation manner, the second determination module is specifically configured to:

[0052] Determine the current firing state, where the current firing state is a low-fire state, a medium-fire state, or a high-fire state;

[0053] If the current firing state is the low-fire state or the high-fire state, determine the target firing state of the heating component according to the current firing state, the current temperature, and the target boiling temperature;

[0054] If the current firing state is the medium-fire state, obtain the previous firing state of the heating component, and determine the target firing state of the heating component according to the current firing state, the current temperature, the target boiling temperature, and the previous firing state.

[0055] In a possible implementation manner, the current firing state is the low-fire state; the second determination module is specifically configured to:

[0056] If the current temperature is greater than or equal to the target boiling temperature, determine that the target firing state is the low-fire state;

[0057] If the current temperature is less than the target boiling temperature, determine that the target firing state is the medium-fire state.

[0058] In a possible implementation manner, the current firing state is the high-fire state; the second determination module is specifically configured to:

[0059] Determine the difference between the target boiling temperature and a first preset temperature as a first temperature;

[0060] If the current temperature is greater than or equal to the first temperature, determine that the target firing state is the medium-fire state;

[0061] If the current temperature is less than the first temperature, determine that the target firing state is the high-fire state.

[0062] In a possible implementation manner, the current firing state is the medium-fire state, and the previous firing state is the low-fire state; the second determination module is specifically configured to:

[0063] Determine the difference between the target boiling point temperature and the second preset temperature as the second temperature;

[0064] If the current temperature is less than or equal to the second temperature, determine the target firing state as the high-fire state;

[0065] If the current temperature is greater than the second temperature, determine whether the current temperature is less than the target boiling point temperature;

[0066] If so, determine the target firing state as the medium-fire state;

[0067] If not, obtain the minimum temperature after switching from the low-fire state to the medium-fire state and the boiling duration in the medium-fire state, and obtain the first difference between the target boiling point temperature and the minimum temperature; when the boiling duration is greater than or equal to the duration corresponding to the first difference, determine the target firing state as the low-fire state, and when the boiling duration is less than the duration corresponding to the first difference, determine the target firing state as the medium-fire state.

[0068] In a possible implementation manner, the current firing state is the medium-fire state and the previous firing state is the low-fire state; the second determination module is specifically configured to:

[0069] Determine the difference between the target boiling point temperature and the second preset temperature as the second temperature;

[0070] If the current temperature is less than or equal to the second temperature, determine the target firing state as the high-fire state;

[0071] If the current temperature is greater than the second temperature, obtain the current analog-to-digital (AD) value corresponding to the current temperature, and determine whether the current AD value is greater than or equal to the average AD value corresponding to the target boiling point. If so, determine the target firing state as the low-fire state; if not, determine the target firing state as the medium-fire state.

[0072] In a possible implementation manner, the current firing state is the medium-fire state and the previous firing state is the high-fire state; the second determination module is specifically configured to:

[0073] Determine whether the current temperature is greater than or equal to the target boiling point temperature;

[0074] If not, determine the target firing state as the medium-fire state;

[0075] If so, obtain the current moment and the first moment corresponding to the switch to the high-fire state. Determine the target duration according to the current moment, the first moment, and a preset coefficient. Obtain the boiling duration in the medium-fire state. When the boiling duration is greater than or equal to the target duration, determine the target fire state as the low-fire state. When the boiling duration is less than the target duration, determine the target fire state as the medium-fire state.

[0076] In a possible implementation manner, the current fire state is the medium-fire state, and the previous fire state is the high-fire state. The second determination module is specifically configured to:

[0077] Obtain the current AD value corresponding to the current temperature;

[0078] Determine whether the current AD value is greater than or equal to the maximum AD value corresponding to the target boiling point;

[0079] If not, determine the target fire state as the medium-fire state;

[0080] If so, determine the target fire state as the low-fire state.

[0081] In a possible implementation manner, the first determination module is specifically configured to:

[0082] When the cooking function of the heating component is the target function, adjust the fire state of the heating component to the high-fire state;

[0083] When the current temperature is greater than a preset threshold, obtain the initial moment and the temporary boiling point temperature, and determine whether the current temperature is greater than the temporary boiling point temperature after a preset period;

[0084] If so, set the current temperature as the temporary boiling point temperature, and determine the current moment as the initial moment. Determine whether the current temperature is greater than the temporary boiling point temperature after a preset period;

[0085] If not, obtain the current moment. Determine the target boiling duration according to the current moment and the initial moment. When the target boiling duration is greater than or equal to the preset duration, determine the temporary boiling point temperature as the target boiling point temperature. When the target boiling duration is less than the preset duration, determine whether the current temperature is greater than the temporary boiling point temperature after a preset period.

[0086] In a third aspect, an embodiment of the present application provides an electronic device, including: a memory and a processor;

[0087] The memory stores computer program instructions;

[0088] The processor executes the computer program instructions stored in the memory to implement the method according to any one of the first aspect.

[0089] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium storing computer program instructions, which are used to implement the method according to any one of the first aspect when executed by a processor.

[0090] In a fifth aspect, an embodiment of the present application provides a computer program product including a computer program, which implements the method according to any one of the first aspect when executed by a processor.

[0091] An embodiment of the present application provides a control method, device, equipment and storage medium for a cooking appliance. In this method, by determining the target boiling point temperature corresponding to the cooking appliance, the heating component is controlled to perform a heating process on the cooking appliance until the temperature of the cooking appliance reaches the target boiling point temperature. After detecting that the current temperature of the cooking appliance is lower than the target boiling point temperature, the target firepower state of the heating component is determined according to the current temperature and the target boiling point temperature, and the firepower state of the heating component is adjusted to the target firepower state. In this way, the target firepower state is intelligently judged based on the current temperature of the cookware assembly, and the firepower is automatically adjusted, improving the cooking effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0092] In order to more clearly illustrate the technical solutions in the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0093] Figure 1 It is a schematic structural diagram of a cooking appliance provided by an embodiment of the present application;

[0094] Figure 2 It is a combined schematic diagram of a cookware assembly and a heating component provided by an embodiment of the present application;

[0095] Figure 3 It is another combined schematic diagram of a cookware assembly and a heating component provided by an embodiment of the present application;

[0096] Figure 4 It is a display schematic diagram of a firepower display component provided by an embodiment of the present application;

[0097] Figure 5 It is a position schematic diagram of a temperature sensor provided by an embodiment of the present application;

[0098] Figure 6Schematic diagram of the position of another temperature sensor provided by an embodiment of the present application;

[0099] Figure 7 Schematic flow chart of a control method for a cooking appliance provided by an embodiment of the present application;

[0100] Figure 8 Schematic flow chart of another control method for a cooking appliance provided by an embodiment of the present application;

[0101] Figure 9 Schematic flow chart of yet another control method for a cooking appliance provided by an embodiment of the present application;

[0102] Figure 10 Schematic flow chart of another control method for a cooking appliance provided by an embodiment of the present application;

[0103] Figure 11 Schematic flow chart of yet another control method for a cooking appliance provided by an embodiment of the present application;

[0104] Figure 12 Schematic flow chart of another control method for a cooking appliance provided by an embodiment of the present application;

[0105] Figure 13 Schematic flow chart of yet another control method for a cooking appliance provided by an embodiment of the present application;

[0106] Figure 14 Schematic flow chart of another control method for a cooking appliance provided by an embodiment of the present application;

[0107] Figure 15 Schematic diagram of the structure of a control device for a cooking appliance provided by an embodiment of the present application;

[0108] Figure 16 Schematic diagram of the structure of an electronic device provided by an embodiment of the present application.

[0109] Through the above-mentioned drawings, specific embodiments of the present application have been shown, and there will be more detailed descriptions hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. Detailed implementation manners

[0110] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the following will clearly and completely describe the technical solutions in the embodiments of this application with reference to the accompanying drawings in the embodiments of this application. Apparently, the described embodiments are some, but not all, of the embodiments of this application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of this application without creative efforts shall fall within the scope of protection of this application.

[0111] It should be noted that although the terms "first", "second", etc. are used in the embodiments of this application to describe various pieces of information, such information should not be limited to these terms. These terms are only used to distinguish the same type of information from each other. Optionally, without departing from the scope of this application, the first piece of information may also be referred to as the second piece of information, and similarly, the second piece of information may also be referred to as the first piece of information.

[0112] It should be understood that the terms "comprising" and "including" indicate the presence of the previously mentioned features, steps, and operations, but do not exclude the presence, occurrence, or addition of one or at least one other feature, step, or operation. The term "and / or" used in this application may be interpreted inclusively, or mean any one or any combination. Optionally, "A and / or B" means "any one of the following: A; B; A and B". Additionally, the character " / " in this text generally indicates that the related objects before and after are in an "or" relationship.

[0113] Figure 1 It is a schematic structural diagram of a cooking appliance provided for the embodiments of this application. Please refer to Figure 1 , Figure 1 It may include a cooking appliance. The cooking appliance may include a cookware assembly 101, a heating assembly 102, a firepower display assembly 103, and a temperature sensor 104. Among them, the heating assembly 102 and the firepower display assembly 103 may be provided on the heating base of the cooking appliance, and the temperature sensor 104 may be provided inside the cookware assembly 101.

[0114] The cookware assembly 101 may include a cookware body and a lid. The cookware assembly 101 may implement a plurality of preset cooking functions. For example, the cooking functions may be a stir-frying function, a soup-making function, a hot pot function, etc. When in use, ingredients may be placed into the cookware body, the lid is closed on the cookware body, and the cookware body is located on the heating surface of the heating assembly 102, and the heating assembly 102 may heat the cookware body.

[0115] The heating assembly 102 may be an induction cooker or a halogen cooker. The heating assembly 102 may be an electric heating element, etc., and the heating assembly 102 may be used to heat cookware, etc.

[0116] Next, it may be combined with Figure 2 and Figure 3Describe different combined forms of the cookware assembly 101 and the heating assembly 102.

[0117] Figure 2 The following is a combined schematic diagram of a cookware assembly and a heating assembly provided by an embodiment of the present application. Please refer to Figure 2 , Figure 2 It may include a cookware assembly 101 and a heating assembly 102, and the cookware assembly 101 and the heating assembly 102 are separable. The cookware assembly 101 and the heating assembly 102 can be connected by means such as short-range wireless communication connection or contact connection, so that the heating assembly 102 heats the cookware assembly 101.

[0118] Figure 3 The following is another combined schematic diagram of a cookware assembly and a heating assembly provided by an embodiment of the present application. Please refer to Figure 3 , Figure 3 It may include a cookware assembly 101 and a heating assembly 102, and the cookware assembly 101 and the heating assembly 102 are integrated.

[0119] The fire power display component 103 can be arranged on the upper surface of the heating base. The fire power display component 103 can be used to show the current fire power state of the heating assembly 102 to the user. The current fire power state may include low fire, medium fire, and high fire. The display mode of the fire power display component 103 may include indicator light display, triangular light belt display, and display screen fire power display, etc.

[0120] Next, multiple display modes of the fire power display component will be described in conjunction with Figure 4 the following.

[0121] Figure 4 The following is a display schematic diagram of a fire power display component provided by an embodiment of the present application. Figure 4 It may include three display modes of the fire power display component.

[0122] The first fire power display mode can be indicator light display. If the current fire power state is the low fire state, the display state of the indicator light corresponding to the low fire is the lit state; if the current fire power state is the medium fire state, the display state of the indicator light corresponding to the medium fire is the lit state; if the current fire power state is the high fire state, the display state of the indicator light corresponding to the high fire is the lit state.

[0123] The second fire power display mode can be triangular light belt display. If the current fire power state is the low fire state, the display state of the indicator light belt corresponding to the low fire is the lit state; if the current fire power state is the medium fire state, the display state of the indicator light belt corresponding to the medium fire is the lit state; if the current fire power state is the high fire state, the display state of the indicator light belt corresponding to the high fire is the lit state.

[0124] The third way of firepower display can be the firepower display on the display screen. The display screen can display the value corresponding to the firepower state.

[0125] The temperature sensor 104 can be a Negative Temperature Coefficient (NTC) sensor, or other types of temperature sensors, which are not limited here.

[0126] Next, the setting position of the temperature sensor 104 will be described in combination with Figure 5 and Figure 6 .

[0127] Figure 5 FIG. is a schematic diagram of the position of a temperature sensor provided by an embodiment of the present application. Please refer to Figure 5 , Figure 5 It may include a cookware assembly 101, a temperature sensor 104, and a sensor sealing structure 105. The sensor sealing structure 105 can be located around the temperature sensor. The sensor sealing structure 105 can be used to prevent medium leakage and external pollutants from entering the interior of the sensor. Among them, the temperature sensor 104 can be arranged on the side wall inside the pot body. The height inside the cookware can be L1, and the distance from the temperature sensor 104 to the bottom inside the cookware can be L2.

[0128] Figure 6 FIG. is another schematic diagram of the position of a temperature sensor provided by an embodiment of the present application. Please refer to Figure 6 , Figure 6 It may include a cookware assembly 101, a temperature sensor 104, and a sensor sealing structure 105. The sensor sealing structure 105 can be located around the temperature sensor. The sensor sealing structure 105 can be used to prevent medium leakage and external pollutants from entering the interior of the sensor. Among them, the temperature sensor 104 can be arranged at the bottom inside the pot body. The height of the temperature sensor 104 can be the same as that of the bottom inside the cookware, or higher than that of the bottom inside the cookware.

[0129] In the related art, it is necessary to manually adjust the regulator of the heating component by the user to control the magnitude of the firepower state to achieve the cooking requirements.

[0130] The cooking device can preset multiple intelligent cooking functions, such as steaming function, stir-frying function, etc. In the steaming function, the user may need to manually adjust the firepower state multiple times, and there may be a situation where the user fails to adjust the firepower state in time, resulting in a lower cooking effect.

[0131] To solve the above technical problems, an embodiment of the present application provides a control method for a cooking appliance. By determining the boiling point temperature of the environment where the cooking appliance is located, the heating component is controlled to heat the cooking appliance, the current temperature of the cookware component is obtained in real time, and according to the current temperature and the target boiling point temperature, the target firepower state of the heating component is determined, and the firepower state of the heating component is adjusted to the target firepower state. In this way, through the current temperature of the cookware component, the target firepower state is intelligently judged, and the firepower size is automatically adjusted, improving the cooking effect.

[0132] Next, the technical solutions shown in the present application will be described in detail through specific embodiments. It should be noted that the following several embodiments can exist independently or be combined with each other. For the same or similar content, it will not be repeated in different embodiments.

[0133] Figure 7 It is a schematic flowchart of a control method for a cooking appliance provided by an embodiment of the present application. The execution subject of the embodiment of the present application can be a cooking appliance or a control device provided in the cooking appliance. The control device can be implemented by software or by a combination of software and hardware. Refer to Figure 7 , the method includes:

[0134] S701. Determine the target boiling point temperature corresponding to the cooking appliance.

[0135] The target boiling point temperature can be the temperature corresponding to the highest boiling point that the environment where the cooking appliance is located can reach. For example, when the cooking appliance is in a plateau environment more than 3,700 meters above sea level, the target boiling point temperature is about 87 degrees.

[0136] When the cooking function of the heating component is the target function, the firepower state of the heating component can be adjusted to the high-fire state, and the current temperature of the cooker is obtained in real time through the temperature sensor. When the current temperature stabilizes at a temperature value and reaches the preset duration, the temperature value is determined as the target boiling point temperature corresponding to the cooking appliance.

[0137] S702. Control the heating component to heat the cooking appliance until the temperature of the cooker reaches the target boiling point temperature.

[0138] The temperature of the cooker can be obtained through the temperature sensor.

[0139] The regulator of the heating component can be controlled to heat the cooking appliance, and the current temperature of the cooker is obtained in real time through the temperature sensor to judge whether the current temperature of the cooker reaches the target boiling point temperature until the temperature of the cooker reaches the target boiling point temperature.

[0140] S703. After detecting that the current temperature of the cooker is lower than the target boiling point temperature, determine the target heating power state of the heating component according to the current temperature and the target boiling point temperature.

[0141] The target heating power state can be a low-fire state, a medium-fire state, or a high-fire state.

[0142] It is possible to determine whether the current temperature of the cooker is lower than the target boiling point temperature. If so, determine the current heating power state, and according to the current heating power state, the current temperature, and the target boiling point temperature, determine the target heating power state of the heating component; if not, determine the target heating power state of the heating component to be the low-fire state.

[0143] Optionally, the target heating power state of the heating component can be determined according to the current temperature and the target boiling point temperature in the following manner: Determine the current heating power state; if the current heating power state is the low-fire state or the high-fire state, then according to the current heating power state, the current temperature, and the target boiling point temperature, determine the target heating power state of the heating component; if the current heating power state is the medium-fire state, then obtain the previous heating power state of the heating component, and according to the current heating power state, the current temperature, the target boiling point temperature, and the previous heating power state, determine the target heating power state of the heating component.

[0144] Among them, the current heating power state can be the low-fire state, the medium-fire state, or the high-fire state.

[0145] S704. Adjust the heating power state of the heating component to the target heating power state.

[0146] The heating power state of the heating component can be adjusted to the target heating power state through the control device, so that the heating component heats the cooking appliance according to the target heating power state.

[0147] The control method of the cooking appliance provided in this embodiment determines the target boiling point temperature corresponding to the cooking appliance, controls the heating component to heat the cooking appliance until the temperature of the cooker reaches the target boiling point temperature. After detecting that the current temperature of the cooker is lower than the target boiling point temperature, determine the target heating power state of the heating component according to the current temperature and the target boiling point temperature, and adjust the heating power state of the heating component to the target heating power state. In this way, the target heating power state is intelligently judged through the current temperature of the cookware assembly, and the heating power is automatically adjusted, improving the cooking effect.

[0148] Next, in combination with Figures 8 to 13 the embodiments shown, the process of determining the target heating power state of the heating component for different current heating power states will be described in detail.

[0149] Case 1: The current heating power state is the low-fire state.

[0150] In combination with Figure 8In the illustrated embodiment, the process of determining the target heating state of the heating component according to the current temperature and the target boiling point temperature under the current heating state will be further described in detail.

[0151] Figure 8 The flowchart of another control method for a cooking appliance provided by an embodiment of the present application is shown. Based on the above embodiment, reference may be made to Figure 8 for a detailed description of this method. The method includes:

[0152] S801. Determine whether the current temperature is greater than or equal to the target boiling point temperature.

[0153] If so, execute S802;

[0154] If not, execute S803.

[0155] The current temperature can be obtained in real time through a temperature sensor to determine whether the current temperature is greater than or equal to the target boiling point temperature.

[0156] S802. Determine that the target heating state is the low-fire state.

[0157] When the current temperature is greater than or equal to the target boiling point temperature, it can be determined that the target heating state is the low-fire state, so that the heating component heats the cooking appliance in the low-fire state, making the cooking appliance in a state of maintaining a gentle boil with low fire, and the fire display component can display the indicator light or display value corresponding to the low-fire state.

[0158] S803. Determine that the target heating state is the medium-fire state.

[0159] When the current temperature is less than the target boiling point temperature, it can be determined that the target heating state is the medium-fire state, so that the heating component heats the cooking appliance in the medium-fire state, making the cooking appliance in a state of medium-fire heating, and the fire display component can display the indicator light or display value corresponding to the medium-fire state.

[0160] The implementation content of each step in the embodiment of the present application may refer to the description of the corresponding step or operation in the above method embodiment, and the repeated content will not be elaborated.

[0161] For the control method of the cooking appliance provided in this embodiment, if the current heating state is the low-fire state, it is determined whether the current temperature is greater than or equal to the target boiling point temperature. When the current temperature is greater than or equal to the target boiling point temperature, it is determined that the target heating state is the low-fire state; when the current temperature is less than the target boiling point temperature, it is determined that the target heating state is the medium-fire state. In this way, through the current temperature of the cookware component, the target heating state is intelligently judged, and the fire power is automatically adjusted, improving the cooking effect.

[0162] Case 2: The current heating state is the high-fire state.

[0163] Combined with Figure 9 the embodiments shown, the process of determining the target firing state of the heating component according to the current temperature and the target boiling point temperature under the current firing state will be further described in detail.

[0164] Figure 9 It is a schematic flowchart of another control method for a cooking appliance provided by an embodiment of the present application. On the basis of the above embodiments, reference can be made to Figure 9 for a detailed description of this method. The method includes:

[0165] S901. Determine the difference between the target boiling point temperature and the first preset temperature as the first temperature.

[0166] The first preset temperature can be a preset temperature value. For example, the first preset temperature is 1 degree.

[0167] For example, assume that the target boiling point temperature is 91 degrees, the first preset temperature is 1 degree, and the first temperature is 90 degrees.

[0168] S902. Determine whether the current temperature is greater than or equal to the first temperature.

[0169] If so, execute S903;

[0170] If not, execute S904.

[0171] The current temperature can be obtained in real time through a temperature sensor to determine whether the current temperature is greater than or equal to the first temperature.

[0172] For example, assume that the first temperature is 90 degrees, and determine whether the current temperature is greater than or equal to 90 degrees.

[0173] S903. Determine the target firing state as the medium-fire state.

[0174] When the current temperature is greater than or equal to the first temperature, the target firing state can be determined as the medium-fire state, so that the heating component heats the cooker according to the medium-fire state, making the cooker in the medium-fire heating state, and the firing display component can display the indicator light or display value corresponding to the medium-fire state.

[0175] S904. Determine the target firing state as the high-fire state.

[0176] When the current temperature is less than the first temperature, the target firing state can be determined as the high-fire state, so that the heating component heats the cooker according to the high-fire state, making the cooker in the high-fire heating state, and the firing display component can display the indicator light or display value corresponding to the high-fire state.

[0177] For the implementation details of each step in the embodiments of the present application, reference may be made to the descriptions of the corresponding steps or operations in the above method embodiments, and repeated content will not be elaborated.

[0178] For the control method of the cooking appliance provided in this embodiment, if the current fire power state is the high-fire state, the difference between the target boiling point temperature and the first preset temperature is determined as the first temperature; if the current temperature is greater than or equal to the first temperature, the target fire power state is determined to be the medium-fire state; if the current temperature is less than the first temperature, the target fire power state is determined to be the high-fire state. In this way, the target fire power state is intelligently judged based on the current temperature of the cookware assembly, and the fire power is automatically adjusted, improving the cooking effect.

[0179] Case 3: The current fire power state is the medium-fire state, and the previous fire power state is the low-fire state.

[0180] Combined with Figure 10 the embodiments shown, a method for determining the target fire power state of the heating component according to the current fire power state, the current temperature, the target boiling point temperature, and the previous fire power state will be further described in detail.

[0181] Figure 10 It is a schematic flow chart of another control method of the cooking appliance provided in the embodiments of the present application. Based on the above embodiments, reference may be made to Figure 10 , and this method will be described in detail. This method includes:

[0182] S1001. Determine the difference between the target boiling point temperature and the second preset temperature as the second temperature.

[0183] The second preset temperature can be a preset temperature value. For example, the second preset temperature is 5 degrees.

[0184] For example, assume the target boiling point temperature is 91 degrees, the second preset temperature is 5 degrees, and the second temperature is 86 degrees.

[0185] S1002. Judge whether the current temperature is less than or equal to the second temperature.

[0186] If so, execute S1003;

[0187] If not, execute S1004.

[0188] The current temperature can be obtained in real time through a temperature sensor to judge whether the current temperature is less than or equal to the second temperature.

[0189] S1003. Determine the target fire power state as the high-fire state.

[0190] When the current temperature is less than or equal to the second temperature, determine the target firepower state as the high-fire state, so that the heating component heats the cooker according to the high-fire state, making the cooker in the high-fire heating state, and the firepower display component can display the indicator light corresponding to the high-fire state or the displayed value.

[0191] S1004. Determine whether the current temperature is less than the target boiling point temperature.

[0192] If so, execute S1005;

[0193] If not, execute S1006.

[0194] The current temperature can be obtained in real time through the temperature sensor to determine whether the current temperature is less than or equal to the target boiling point temperature.

[0195] S1005. Determine the target firepower state as the medium-fire state.

[0196] When the current temperature is less than the target boiling point temperature, the target firepower state can be determined as the medium-fire state, so that the heating component heats the cooker according to the medium-fire state, making the cooker in the medium-fire heating state, and the firepower display component can display the indicator light corresponding to the medium-fire state or the displayed value.

[0197] S1006. Obtain the minimum temperature after switching from the low-fire state to the medium-fire state, and the boiling duration in the medium-fire state, and obtain the first difference between the target boiling point temperature and the minimum temperature.

[0198] The minimum temperature can be the minimum temperature among the multiple temperatures collected after switching from the low-fire state to the medium-fire state.

[0199] The boiling duration can be the duration when the temperature of the cooker reaches the target boiling point temperature in the medium-fire state.

[0200] The first difference can be the difference between the target boiling point temperature and the minimum temperature. The first difference can be used to determine the temperature change degree of the cooker after switching from the low-fire state to the medium-fire state. The larger the first difference, the greater the temperature change degree of the cooker. The temperature change degree can be used to determine the situation of adding ingredients to the cooker. The more ingredients are added, the greater the temperature change degree.

[0201] The multiple temperature values after switching from the low-fire state to the medium-fire state can be obtained from the temperature sensor, and the minimum temperature and the boiling duration in the medium-fire state can be determined from the multiple temperature values.

[0202] S1007. Determine whether the boiling duration is greater than or equal to the duration corresponding to the first difference.

[0203] If so, execute S1008;

[0204] If not, execute S1005.

[0205] The duration corresponding to the first difference may be the number of minutes corresponding to the first difference.

[0206] For example, the first difference may be 5, and the duration corresponding to the first difference may be 5 minutes.

[0207] S1008. Determine that the target fire power state is the low fire state.

[0208] When the boiling duration is greater than or equal to the duration corresponding to the first difference, it can be determined that the target fire power state is the low fire state, so that the heating component heats the cooker according to the low fire state, making the cooker in the low fire heating state, and the fire power display component can display the indicator light or display value corresponding to the low fire state.

[0209] For the implementation content of each step in the embodiments of the present application, reference may be made to the description of the corresponding steps or operations in the above method embodiments, and repeated content will not be elaborated.

[0210] In the control method of the cooking appliance provided in this embodiment, by taking the difference between the target boiling point temperature and the second preset temperature as the second temperature; if the current temperature is less than or equal to the second temperature, it is determined that the target fire power state is the high fire state; if the current temperature is greater than the second temperature, it is judged whether the current temperature is less than the target boiling point temperature; if so, it is determined that the target fire power state is the medium fire state; if not, the minimum temperature after switching from the low fire state to the medium fire state and the boiling duration in the medium fire state are obtained, and the first difference between the target boiling point temperature and the minimum temperature is obtained; when the boiling duration is greater than or equal to the duration corresponding to the first difference, it is determined that the target fire power state is the low fire state, and when the boiling duration is less than the duration corresponding to the first difference, it is determined that the target fire power state is the medium fire state. In this way, by the current temperature of the pot component, the target fire power state is intelligently judged, and the fire power size is automatically adjusted, improving the cooking effect.

[0211] Combined with Figure 11 the embodiments shown, another method for determining the target fire power state process of the heating component according to the current fire power state, current temperature, target boiling point temperature and last fire power state is further described in detail.

[0212] Figure 11 It is a flowchart of another control method of the cooking appliance provided in the embodiments of the present application. On the basis of the above embodiments, reference may be made to Figure 11 , and this method is described in detail. This method includes:

[0213] S1101. Take the difference between the target boiling point temperature and the second preset temperature as the second temperature.

[0214] The execution process of S1101 can refer to the execution process of S1001, which will not be elaborated here.

[0215] S1102. Determine whether the current temperature is less than or equal to the second temperature.

[0216] If so, execute S1103;

[0217] If not, execute S1104.

[0218] The execution process of S1102 can refer to the execution process of S1002, which will not be elaborated here.

[0219] S1103. Determine that the target firepower state is the high-fire state.

[0220] The execution process of S1103 can refer to the execution process of S1003, which will not be elaborated here.

[0221] S1104. Obtain the current analog-to-digital (AD) value corresponding to the current temperature, and determine whether the current AD value is greater than or equal to the average AD value corresponding to the target boiling point.

[0222] If so, execute S1105;

[0223] If not, execute S1106.

[0224] The current analog-to-digital (AD) value can be the value corresponding to the conversion of the voltage analog quantity of the current temperature to a digital quantity. Each degree Celsius corresponds to a range of AD values, and each AD value corresponds to a numerical value. For example, for 100 degrees Celsius, the corresponding AD value range is 335 - 342.

[0225] The average AD value can be the average value between the lowest value and the highest value of the AD value range corresponding to a certain degree Celsius. For example, assuming that the AD value range corresponding to 100 degrees Celsius is 335 - 342, the average AD value corresponding to 100 degrees Celsius can be 338.5.

[0226] S1105. Determine that the target firepower state is the low-fire state.

[0227] When the current AD value is greater than or equal to the average AD value corresponding to the target boiling point, it can be determined that the target firepower state is the low-fire state, so that the heating component heats the cooker in the low-fire state, making the cooker in the low-fire heating state, and the firepower display component can display the indicator light corresponding to the low-fire state or the display value.

[0228] S1106. Determine that the target firepower state is the medium-fire state.

[0229] When the current AD value is less than the average AD value corresponding to the target boiling point, the target heating state can be determined as the medium-fire state, so that the heating component heats the cooker according to the medium-fire state, making the cooker in the medium-fire heating state, and the fire display component can display the indicator light or display value corresponding to the medium-fire state.

[0230] For the implementation content of each step in the embodiments of the present application, reference may be made to the description of the corresponding steps or operations in the above method embodiments, and the repeated content will not be elaborated.

[0231] In the control method of the cooking appliance provided in this embodiment, the difference between the target boiling point temperature and the second preset temperature is determined as the second temperature; if the current temperature is less than or equal to the second temperature, the target heating state is determined as the high-fire state; if the current temperature is greater than the second temperature, the current AD value is obtained, and it is judged whether the current AD value is greater than or equal to the average AD value corresponding to the target boiling point. If so, the target heating state is determined as the low-fire state; if not, the target heating state is determined as the medium-fire state. In this way, the target heating state is intelligently judged through the current temperature of the cookware assembly, and the heating power is automatically adjusted, improving the cooking effect.

[0232] Case 4: The current heating state is the medium-fire state, and the previous heating state is the high-fire state.

[0233] Combined with Figure 12 the shown embodiment, a method for determining the target heating state process of the heating component according to the current heating state, the current temperature, the target boiling point temperature, and the previous heating state is further described in detail.

[0234] Figure 12 It is a schematic flowchart of another control method of the cooking appliance provided in the embodiments of the present application. On the basis of the above embodiments, reference may be made to Figure 12 for a detailed description of this method. The method includes:

[0235] S1201. Judge whether the current temperature is greater than or equal to the target boiling point temperature.

[0236] If not, execute S1202;

[0237] If so, execute S1203.

[0238] The current temperature can be obtained in real time through a temperature sensor, and it is judged whether the current temperature is greater than or equal to the target boiling point temperature.

[0239] S1202. Determine the target heating state as the medium-fire state.

[0240] When the current temperature is less than the target boiling point temperature, the target heating state can be determined as the medium-fire state, so that the heating component heats the cooker according to the medium-fire state, making the cooker in the medium-fire heating state, and the fire display component can display the indicator light corresponding to the medium-fire state or the displayed value.

[0241] S1203. Obtain the current moment and the first moment corresponding to when switching to the high-fire state.

[0242] The first moment can be the moment corresponding to when the heating component switches to the high-fire state.

[0243] The current moment and the first moment corresponding to when switching to the high-fire state can be obtained through the local clock.

[0244] S1204. Determine the target duration according to the current moment, the first moment, and the preset coefficient.

[0245] The preset coefficient can be a pre-set value. For example, the preset coefficient can be 0.5.

[0246] The difference between the current moment and the first moment can be determined, and the product of the difference and the preset coefficient can be determined as the target duration.

[0247] S1205. Obtain the boiling duration in the medium-fire state, and judge whether the boiling duration is greater than or equal to the target duration.

[0248] If so, execute S1206;

[0249] If not, execute S1207.

[0250] The boiling duration can be the duration corresponding to when the temperature of the cooker reaches the target boiling point temperature in the medium-fire state.

[0251] The boiling duration corresponding to when the temperature reaches the target boiling point temperature in the medium-fire state can be obtained through the local clock and the temperature sensor, and it can be judged whether the boiling duration is greater than or equal to the target duration.

[0252] S1206. Determine the target heating state as the low-fire state.

[0253] When the boiling duration is greater than or equal to the target duration, the target heating state can be determined as the low-fire state, so that the heating component heats the cooker according to the low-fire state, making the cooker in the low-fire heating state, and the fire display component can display the indicator light corresponding to the low-fire state or the displayed value.

[0254] S1207. Determine the target heating state as the medium-fire state.

[0255] When the boiling duration is less than the target duration, the target heating state can be determined as the medium - fire state, so that the heating component heats the cooker according to the medium - fire state, making the cooker in the medium - fire heating state, and the fire display component can display the indicator light or display value corresponding to the medium - fire state.

[0256] For the implementation content of each step in the embodiments of the present application, reference can be made to the description of the corresponding steps or operations in the above - mentioned method embodiments, and repeated content will not be elaborated.

[0257] The control method of the cooking appliance provided in this embodiment determines whether the current temperature is greater than or equal to the target boiling temperature; if not, the target heating state is determined as the medium - fire state; if so, the current time and the first time corresponding to switching to the high - fire state are obtained, and according to the current time, the first time and a preset coefficient, the target duration is determined. The boiling duration in the medium - fire state is obtained. When the boiling duration is greater than or equal to the target duration, the target heating state is determined as the low - fire state, and when the boiling duration is less than the target duration, the target heating state is determined as the medium - fire state. In this way, by the current temperature of the cookware assembly, the target heating state is intelligently judged, and the heating power is automatically adjusted, improving the cooking effect.

[0258] Combined with Figure 13 the shown embodiment, another method for determining the target heating state process of the heating component according to the current heating state, current temperature, target boiling temperature and previous heating state is further described in detail.

[0259] Figure 13 is a schematic flow chart of another control method of the cooking appliance provided in the embodiments of the present application. On the basis of the above - mentioned embodiments, reference can be made to Figure 13 for a detailed description of this method. The method includes:

[0260] S1301. Obtain the current AD value.

[0261] The current AD value can be the value corresponding to the conversion of the voltage analog quantity of the current temperature to a digital quantity.

[0262] S1302. Judge whether the current AD value is greater than or equal to the maximum AD value corresponding to the target boiling point.

[0263] If not, then execute S1303;

[0264] If so, then execute S1304.

[0265] Obtain the AD value range corresponding to the target boiling point, determine the maximum AD value corresponding to the target boiling point according to the AD value range, and judge whether the current AD value is greater than or equal to the maximum AD value corresponding to the target boiling point.

[0266] S1303. Determine that the target fire power state is the medium fire state.

[0267] When the current AD value is less than the maximum AD value corresponding to the target boiling point, it can be determined that the target fire power state is the medium fire state, so that the heating component heats the cooker according to the medium fire state, making the cooker in the medium fire heating state, and the fire power display component can display the indicator light or display value corresponding to the medium fire state.

[0268] S1304. Determine that the target fire power state is the low fire state.

[0269] When the current AD value is greater than or equal to the maximum AD value corresponding to the target boiling point, it can be determined that the target fire power state is the medium fire state, so that the heating component heats the cooker according to the medium fire state, making the cooker in the medium fire heating state, and the fire power display component can display the indicator light or display value corresponding to the medium fire state.

[0270] For the implementation content of each step in the embodiments of the present application, reference can be made to the description of the corresponding steps or operations in the above method embodiments, and repeated content will not be elaborated.

[0271] The control method of the cooking appliance provided in this embodiment obtains the current AD value corresponding to the current temperature; determines whether the current AD value is greater than or equal to the maximum AD value corresponding to the target boiling point; if not, determines that the target fire power state is the medium fire state; if so, determines that the target fire power state is the low fire state. In this way, the target fire power state is intelligently judged through the current temperature of the cookware assembly, and the fire power is automatically adjusted, improving the cooking effect.

[0272] Next, in combination with Figure 14 the following embodiments, the process (S701) of determining the target boiling point temperature corresponding to the cooking appliance will be further described in detail.

[0273] Figure 14 It is a schematic flowchart of another control method of the cooking appliance provided in the embodiments of the present application. On the basis of the above embodiments, reference can be made to Figure 14 for a detailed description of this method. This method includes:

[0274] S1401. When the cooking function of the heating component is the target function, adjust the fire power state of the heating component to the high fire state.

[0275] The target function can be the hot pot function or the steaming function.

[0276] When the cooking function of the heating component is the target function, adjust the fire power state of the heating component to the high fire state, and the fire power display component can display the indicator light or display value corresponding to the high fire state.

[0277] S1402. When the current temperature is greater than the preset threshold, obtain the initial time and the temporary boiling point temperature, and determine whether the current temperature is greater than the temporary boiling point temperature after a preset period.

[0278] If so, execute S1403;

[0279] If not, execute S1404.

[0280] The temporary boiling point temperature can be a pre-set temperature value. For example, the temporary boiling point temperature is 85 degrees Celsius.

[0281] The current temperature can be obtained through a temperature sensor. When the current temperature is greater than the preset threshold, obtain the initial time and the temporary boiling point temperature. At intervals of the preset period, obtain in real time the current temperature collected by the temperature sensor, and determine whether the current temperature is greater than the temporary boiling point temperature.

[0282] For example, assume that the initial time is 9:50, the temporary boiling point temperature is 85 degrees Celsius, and the preset period is 1 minute. At 9:51, the current temperature collected is 87 degrees Celsius. Determine whether the current temperature of 87 degrees Celsius is greater than the temporary boiling point temperature of 85 degrees Celsius.

[0283] S1403. Set the current temperature as the temporary boiling point temperature, and determine the current time as the initial time. After a preset period, determine whether the current temperature is greater than the temporary boiling point temperature.

[0284] When the current temperature is greater than the temporary boiling point temperature, set the current temperature as the temporary boiling point temperature, and determine the current time as the initial time. After a preset period, obtain in real time the current temperature collected by the temperature sensor, and determine whether the current temperature is greater than the temporary boiling point temperature.

[0285] For example, assume that the current temperature is 87 degrees Celsius. Set 87 degrees Celsius as the temporary boiling point temperature, set the time corresponding to the collection of the current temperature, 9:51, as the initial time, and the preset period is 1 minute. At 9:52, the current temperature collected is 89 degrees Celsius. Determine whether the current temperature of 89 degrees Celsius is greater than the temporary boiling point temperature of 87 degrees Celsius.

[0286] S1404. Obtain the current time, determine the target boiling duration according to the current time and the initial time. When the target boiling duration is greater than or equal to the preset duration, determine the temporary boiling point temperature as the target boiling point temperature. When the target boiling duration is less than the preset duration, determine whether the current temperature is greater than the temporary boiling point temperature after a preset period.

[0287] The current moment can be obtained through the local clock. Based on the current moment and the initial moment, the target boiling duration is determined. When the target boiling duration is greater than or equal to the preset duration, the temporary boiling point temperature is determined as the target boiling point temperature. When the target boiling duration is less than the preset duration, it is determined whether the current temperature is greater than the temporary boiling point temperature after a preset period.

[0288] For example, assume that the current temperature is 90 degrees Celsius, the temporary boiling point temperature is 90 degrees Celsius, the current temperature is not greater than the temporary boiling point temperature, and the target boiling duration is greater than or equal to the preset duration. Then 90 degrees Celsius is determined as the target boiling point temperature. If the target boiling duration is less than the preset duration, it is determined whether the current temperature is greater than the temporary boiling point temperature after a preset period.

[0289] For the implementation content of each step in the embodiments of the present application, reference can be made to the description of the corresponding steps or operations in the above method embodiments, and repeated content will not be elaborated.

[0290] The control method of the cooking appliance provided in this embodiment adjusts the firepower state of the heating component to the high-fire state when the cooking function of the heating component is the target function; when the current temperature is greater than the preset threshold, the initial moment and the temporary boiling point temperature are obtained, and it is determined whether the current temperature is greater than the temporary boiling point temperature after a preset period; if so, the current temperature is set as the temporary boiling point temperature, and the current moment is determined as the initial moment, and it is determined whether the current temperature is greater than the temporary boiling point temperature after a preset period; if not, the current moment is obtained, and based on the current moment and the initial moment, the target boiling duration is determined. When the target boiling duration is greater than or equal to the preset duration, the temporary boiling point temperature is determined as the target boiling point temperature. When the target boiling duration is less than the preset duration, it is determined whether the current temperature is greater than the temporary boiling point temperature after a preset period. In this way, after the cooking appliance is initially turned on to the target function, the target boiling point temperature is determined by the maximum value that the current temperature can reach, the boiling point of the environment where the cooking appliance is located is determined, the firepower size is automatically adjusted more efficiently, and the cooking effect is improved.

[0291] Figure 15 It is a schematic structural diagram of a control device for a cooking appliance provided in an embodiment of the present application. Please refer to Figure 15 The device 1500 includes a first determination module 1501, a control module 1502, a second determination module 1503, and an adjustment module 1504, where

[0292] The first determination module 1501 is configured to determine the target boiling point temperature corresponding to the cooking appliance;

[0293] The control module 1502 is configured to control the heating component to perform a heating process on the cooking appliance until the temperature of the pot component reaches the target boiling point temperature;

[0294] A second determination module 1503, configured to determine a target firing state of the heating component according to the current temperature and the target boiling temperature after detecting that the current temperature of the cookware assembly is less than the target boiling temperature;

[0295] An adjustment module 1504, configured to adjust the firing state of the heating component to the target firing state.

[0296] In a possible implementation manner, the second determination module 1503 is specifically configured to:

[0297] Determine the current firing state, where the current firing state is a low-fire state, a medium-fire state, or a high-fire state;

[0298] If the current firing state is the low-fire state or the high-fire state, determine the target firing state of the heating component according to the current firing state, the current temperature, and the target boiling temperature;

[0299] If the current firing state is the medium-fire state, obtain the previous firing state of the heating component, and determine the target firing state of the heating component according to the current firing state, the current temperature, the target boiling temperature, and the previous firing state.

[0300] In a possible implementation manner, the current firing state is the low-fire state; the second determination module 1503 is specifically configured to:

[0301] If the current temperature is greater than or equal to the target boiling temperature, determine that the target firing state is the low-fire state;

[0302] If the current temperature is less than the target boiling temperature, determine that the target firing state is the medium-fire state.

[0303] In a possible implementation manner, the current firing state is the high-fire state; the second determination module 1503 is specifically configured to:

[0304] Determine the difference between the target boiling temperature and a first preset temperature as a first temperature;

[0305] If the current temperature is greater than or equal to the first temperature, determine that the target firing state is the medium-fire state;

[0306] If the current temperature is less than the first temperature, determine that the target firing state is the high-fire state.

[0307] In a possible implementation manner, the current firing state is the medium-fire state, and the previous firing state is the low-fire state; the second determination module 1503 is specifically configured to:

[0308] Determine the difference between the target boiling point temperature and the second preset temperature as the second temperature;

[0309] If the current temperature is less than or equal to the second temperature, determine the target firing state as the high-fire state;

[0310] If the current temperature is greater than the second temperature, determine whether the current temperature is less than the target boiling point temperature;

[0311] If so, determine the target firing state as the medium-fire state;

[0312] If not, obtain the minimum temperature after switching from the low-fire state to the medium-fire state, and the boiling duration in the medium-fire state, and obtain the first difference between the target boiling point temperature and the minimum temperature; when the boiling duration is greater than or equal to the duration corresponding to the first difference, determine the target firing state as the low-fire state, and when the boiling duration is less than the duration corresponding to the first difference, determine the target firing state as the medium-fire state.

[0313] In a possible implementation manner, the current firing state is the medium-fire state, and the previous firing state is the low-fire state; the second determination module 1503 is specifically configured to:

[0314] Determine the difference between the target boiling point temperature and the second preset temperature as the second temperature;

[0315] If the current temperature is less than or equal to the second temperature, determine the target firing state as the high-fire state;

[0316] If the current temperature is greater than the second temperature, obtain the current analog-to-digital (AD) value corresponding to the current temperature, and determine whether the current AD value is greater than or equal to the average AD value corresponding to the target boiling point. If so, determine the target firing state as the low-fire state; if not, determine the target firing state as the medium-fire state.

[0317] In a possible implementation manner, the current firing state is the medium-fire state, and the previous firing state is the high-fire state; the second determination module 1503 is specifically configured to:

[0318] Determine whether the current temperature is greater than or equal to the target boiling point temperature;

[0319] If not, determine the target firing state as the medium-fire state;

[0320] If so, obtain the current moment and the first moment corresponding to when switching to the high-fire state. Determine the target duration according to the current moment, the first moment, and a preset coefficient. Obtain the boiling duration in the medium-fire state. When the boiling duration is greater than or equal to the target duration, determine the target fire state as the low-fire state. When the boiling duration is less than the target duration, determine the target fire state as the medium-fire state.

[0321] In a possible implementation manner, the current fire state is the medium-fire state, and the previous fire state is the high-fire state; the second determination module 1503 is specifically configured to:

[0322] Obtain the current AD value corresponding to the current temperature;

[0323] Determine whether the current AD value is greater than or equal to the maximum AD value corresponding to the target boiling point;

[0324] If not, determine the target fire state as the medium-fire state;

[0325] If so, determine the target fire state as the low-fire state.

[0326] In a possible implementation manner, the first determination module 1501 is specifically configured to:

[0327] When the cooking function of the heating component is the target function, adjust the fire state of the heating component to the high-fire state;

[0328] When the current temperature is greater than a preset threshold, obtain the initial moment and the temporary boiling point temperature, and determine whether the current temperature is greater than the temporary boiling point temperature after a preset period;

[0329] If so, set the current temperature to the temporary boiling point temperature, and determine the current moment as the initial moment. Determine whether the current temperature is greater than the temporary boiling point temperature after a preset period;

[0330] If not, obtain the current moment. Determine the target boiling duration according to the current moment and the initial moment. When the target boiling duration is greater than or equal to the preset duration, determine the temporary boiling point temperature as the target boiling point temperature. When the target boiling duration is less than the preset duration, determine whether the current temperature is greater than the temporary boiling point temperature after a preset period.

[0331] Figure 16 This is a schematic structural diagram of an electronic device provided by an embodiment of the present application. Please refer to Figure 16 , the electronic device 1600 may include: a memory 1601, a processor 1602, and a transceiver 1603.

[0332] The memory 1601 is used to store program instructions;

[0333] The processor 1602 is used to execute the program instructions stored in the memory, so as to enable the electronic device 20 to execute the above method.

[0334] The transceiver 1603 may include: a transmitter and / or a receiver. The transmitter may also be referred to as a sender, a transmitter, a sending port, a sending interface, or other similar descriptions, and the receiver may also be referred to as a receiver, a receiving port, a receiving interface, or other similar descriptions. Exemplarily, the memory 1601, the processor 1602, and the transceiver 1603 are interconnected with each other through a bus 1604.

[0335] The embodiments of the present application also provide a computer program product, which can be executed by a processor. When the computer program product is executed, the above method can be implemented.

[0336] The control device, the electronic device, the computer-readable storage medium, and the computer program product of the cooking appliance according to the embodiments of the present application can execute the technical solutions shown in the above embodiments of the control method of the cooking appliance. The implementation principles and beneficial effects are similar, and will not be described in detail here.

[0337] All or part of the steps of implementing the above method embodiments can be completed by hardware related to program instructions. The foregoing program can be stored in a readable memory. When the program is executed, it executes the steps including the above method embodiments; and the foregoing memory (storage medium) includes: read-only memory (ROM), random access memory (RAM), flash memory, hard disk, solid state drive, magnetic tape, floppy disk, optical disc, and any combination thereof.

[0338] The embodiments of the present application are described with reference to the flowcharts and / or block diagrams of methods, devices (systems), and computer program products according to the embodiments of the present application. It should be understood that each flow and / or block in the flowchart and / or block diagram, and the combination of flows and / or blocks in the flowchart and / or block diagram can be implemented by computer program instructions. These computer program instructions can be provided to the processing unit of a general-purpose computer, a special-purpose computer, an embedded processing machine, or other programmable data processing devices to generate a machine, so that the instructions executed by the processing unit of the computer or other programmable data processing devices generate a device for realizing the functions specified in Figure One one process or multiple processes and / or blocks Figure One one block or multiple blocks.

[0339] These computer program instructions can also be stored in a computer-readable memory that can direct a computer or other programmable data processing apparatus to operate in a particular manner, such that the instructions stored in the computer-readable memory produce an article of manufacture including instruction means embodying the functionality specified in the flowchart(s) Figure One of one or more flowcharts and / or block diagram(s) Figure One of one or more block diagrams.

[0340] These computer program instructions can also be loaded onto a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer-implemented process, whereby the instructions executed on the computer or other programmable apparatus provide steps for implementing the functionality specified in the flowchart(s) Figure One of one or more flowcharts and / or block diagram(s) Figure One of one or more block diagrams.

[0341] It will be apparent to those skilled in the art that various modifications and variations can be made to the embodiments of the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the embodiments of the present application fall within the scope of the claims of the present application and their equivalent technologies, the present application is also intended to include these modifications and variations.

Claims

1. A control method for a cooking appliance, characterized in that, The cooking appliance includes a cookware assembly and a heating assembly, and the method includes: Determine the target boiling point temperature corresponding to the cooking appliance; Control the heating assembly to heat the cooking appliance until the temperature of the cookware assembly reaches the target boiling point temperature; After detecting that the current temperature of the cookware assembly is lower than the target boiling point temperature, determine the target firing state of the heating assembly according to the current temperature and the target boiling point temperature; Adjust the firing state of the heating assembly to the target firing state.

2. The method according to claim 1, characterized in that, Determining the target firing state of the heating assembly according to the current temperature and the target boiling point temperature includes: Determine the current firing state, where the current firing state is a low-fire state, a medium-fire state or a high-fire state; If the current firing state is the low-fire state or the high-fire state, determine the target firing state of the heating assembly according to the current firing state, the current temperature and the target boiling point temperature; If the current firing state is the medium-fire state, obtain the previous firing state of the heating assembly, and determine the target firing state of the heating assembly according to the current firing state, the current temperature, the target boiling point temperature and the previous firing state.

3. The method according to claim 2, characterized in that, The current firing state is the low-fire state; Determining the target firing state of the heating assembly according to the current firing state, the current temperature and the target boiling point temperature includes: If the current temperature is greater than or equal to the target boiling point temperature, determine that the target firing state is the low-fire state; If the current temperature is lower than the target boiling point temperature, determine that the target firing state is the medium-fire state.

4. The method according to claim 2, characterized in that, The current firing state is the high-fire state; Determining the target firing state of the heating assembly according to the current firing state, the current temperature and the target boiling point temperature includes: Determine the difference between the target boiling point temperature and a first preset temperature as a first temperature; If the current temperature is greater than or equal to the first temperature, determine that the target firing state is the medium-fire state; If the current temperature is lower than the first temperature, determine that the target firing state is the high-fire state.

5. The method according to claim 2, characterized in that, The current firing state is the medium-fire state, and the previous firing state is the low-fire state; determining the target firing state of the heating assembly according to the current firing state, the current temperature, the target boiling point temperature and the previous firing state includes: Determine the difference between the target boiling point temperature and a second preset temperature as a second temperature; If the current temperature is less than or equal to the second temperature, determine that the target firing state is the high-fire state; If the current temperature is greater than the second temperature, determine whether the current temperature is less than the target boiling point temperature; If so, determine that the target firing state is the medium-fire state; Otherwise, obtain the minimum temperature after switching from the low-fire state to the medium-fire state and the boiling duration in the medium-fire state, and obtain the first difference between the target boiling point temperature and the minimum temperature; when the boiling duration is greater than or equal to the duration corresponding to the first difference, determine that the target heating state is the low-fire state, and when the boiling duration is less than the duration corresponding to the first difference, determine that the target heating state is the medium-fire state.

6. The method according to claim 2, characterized in that, The current heating state is the medium-fire state, and the previous heating state is the low-fire state; determining the target heating state of the heating component according to the current heating state, the current temperature, the target boiling point temperature, and the previous heating state includes: Determine the difference between the target boiling point temperature and the second preset temperature as the second temperature; If the current temperature is less than or equal to the second temperature, determine that the target heating state is the high-fire state; If the current temperature is greater than the second temperature, obtain the current analog-to-digital (AD) value corresponding to the current temperature, and determine whether the current AD value is greater than or equal to the average AD value corresponding to the target boiling point. If so, determine that the target heating state is the low-fire state; if not, determine that the target heating state is the medium-fire state.

7. The method according to claim 2, characterized in that, The current heating state is the medium-fire state, and the previous heating state is the high-fire state; determining the target heating state of the heating component according to the current heating state, the current temperature, the target boiling point temperature, and the previous heating state includes: Determine whether the current temperature is greater than or equal to the target boiling point temperature; If not, determine that the target heating state is the medium-fire state; If so, obtain the current time and the first time corresponding to when switching to the high-fire state, determine the target duration according to the current time, the first time, and a preset coefficient, obtain the boiling duration in the medium-fire state, and when the boiling duration is greater than or equal to the target duration, determine that the target heating state is the low-fire state, and when the boiling duration is less than the target duration, determine that the target heating state is the medium-fire state.

8. The method according to claim 2, characterized in that, The current heating state is the medium-fire state, and the previous heating state is the high-fire state; determining the target heating state of the heating component according to the current heating state, the current temperature, the target boiling point temperature, and the previous heating state includes: Obtain the current AD value corresponding to the current temperature; Determine whether the current AD value is greater than or equal to the maximum AD value corresponding to the target boiling point; If not, determine that the target heating state is the medium-fire state; If so, determine that the target heating state is the low-fire state.

9. The method according to any one of claims 1-8, characterized in that, Determining the target boiling point temperature corresponding to the cooking appliance includes: When the cooking function of the heating component is the target function, adjust the heating state of the heating component to the high-fire state; When the current temperature is greater than a preset threshold, obtain the initial time and the temporary boiling point temperature, and determine whether the current temperature is greater than the temporary boiling point temperature after a preset period; If so, set the current temperature to the temporary boiling point temperature, determine the current moment as the initial moment, and determine whether the current temperature is greater than the temporary boiling point temperature after a preset period; If not, obtain the current moment, determine the target boiling duration according to the current moment and the initial moment, when the target boiling duration is greater than or equal to the preset duration, determine the temporary boiling point temperature as the target boiling point temperature, when the target boiling duration is less than the preset duration, determine whether the current temperature is greater than the temporary boiling point temperature after a preset period.

10. A control device for a cooking appliance, characterized in that, The cooking appliance includes a cookware assembly and a heating assembly, and the device includes: A first determination module, configured to determine the target boiling point temperature corresponding to the cooking appliance; A control module, configured to control the heating assembly to perform a heating process on the cooking appliance until the temperature of the cookware assembly reaches the target boiling point temperature; A second determination module, configured to determine the target firepower state of the heating assembly according to the current temperature and the target boiling point temperature after detecting that the current temperature of the cookware assembly is less than the target boiling point temperature; An adjustment module, configured to adjust the firepower state of the heating assembly to the target firepower state.

11. An electronic device, characterized in that, including: A memory, a processor and a transceiver; Wherein, the memory stores computer program instructions; The processor executes the computer program instructions stored in the memory to implement the method according to any one of claims 1-9.

12. A computer-readable storage medium, characterized in that, Computer program instructions are stored in the computer-readable storage medium, and when the computer program instructions are executed by the processor, they are used to implement the method according to any one of claims 1-9.