Intelligent control method and device of programmable induction cooker and computer storage medium

By detecting the usage requirements of induction cookers and classifying and processing them, the intelligent control of induction cookers is realized, and program entry and parameter response is supported, which solves the problem of high programming complexity of existing induction cookers and improves the flexibility and stability of induction cookers.

CN120538104APending Publication Date: 2025-08-26ZHONGSHAN HANLIN ELECTRIC APPLIANCE
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510820943.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-18
Publication Date
2025-08-26

AI Technical Summary

Technical Problem

The programming capabilities of the existing induction cooker are relatively basic and complex in operation, which is not conducive to ordinary users' mastery and cannot meet the diverse cooking needs of users.

Method used

By detecting the usage requirements of the induction cooker, it is automatically classified into programming type or non-programming type, and performs corresponding control details based on the requirements type, including program entry, debugging or parameter response operations, and supports program editing generated by local and external applets, achieving convenient custom editing of induction cooker programs and flexible parameter adjustments.

Benefits of technology

It improves the intelligence and flexibility of the control of the induction cooker, meets the personalized and customized needs of users, ensures the stable and efficient operation of the induction cooker, and reduces the complexity of the operation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120538104A_ABST
    Figure CN120538104A_ABST
Patent Text Reader

Abstract

The invention discloses an intelligent control method and device for a programmable induction cooker and a computer storage medium, and the method comprises the steps: detecting a use demand for the induction cooker, and determining a demand type of the use demand, the demand type comprising a programming type or a non-programming type; the programming type is used for indicating that an execution program of the induction cooker needs to be edited; determining control details for the induction cooker according to the use requirements; when the demand type is a programming type, the control details comprise a to-be-input program, and according to the to-be-input program, equipment programming operation including program loading and / or program debugging is executed on the induction cooker; and when the demand type is a non-programming type, the control details include operation control parameters, and the induction cooker is controlled to execute parameter response operation including parameter adjustment and / or parameter execution. Therefore, by implementing the method, the programming difficulty of the induction cooker can be reduced, and the control intelligence degree, the control accuracy and the control flexibility of the induction cooker are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of equipment intelligent control, and in particular to an intelligent control method and device for a programmable induction cooker, and a computer storage medium. Background Art

[0002] With the development of intelligent modern kitchen appliances, induction cookers, a widely used cooking device in homes and the restaurant industry, are facing a growing demand for intelligent control. Traditional induction cookers primarily rely on preset, fixed heating programs, limiting users to adjusting heat level and operating time via a limited number of buttons or knobs. This lacks flexibility and fails to meet diverse cooking needs. This is particularly true when precise control of the heating process or the implementation of specific cooking programs is required, making traditional induction cookers inadequate.

[0003] To overcome this limitation, some induction cookers have begun to appear on the market, offering simple programming capabilities that allow users to customize heating curves or cooking steps. However, these induction cookers typically have relatively basic programming capabilities, supporting only limited program editing, and are complex to operate, making them difficult for average users to master. Therefore, it is crucial to provide a solution to the technical issues of high programming complexity and low control intelligence in existing induction cookers. Summary of the Invention

[0004] The present invention provides an intelligent control method and device for a programmable induction cooker, and a computer storage medium, which can realize convenient programming and control of the induction cooker, reduce the difficulty of programming the induction cooker program, and improve the control intelligence, control accuracy and control flexibility of the induction cooker.

[0005] In order to solve the above technical problems, the first aspect of the present invention discloses an intelligent control method for a programmable induction cooker, the method comprising: detecting a usage demand for the induction cooker and determining a type of the usage demand, wherein the type of the usage demand includes a programming type and a non-programming type; the programming type is used to indicate that the usage demand requires editing of an execution program corresponding to the induction cooker; Determining control details for the induction cooker according to the usage requirement; when the requirement type is the programming type, the control details include a program to be entered; when the requirement type is the non-programming type, the control details include operating control parameters for the induction cooker; When the requirement type is the programming type, performing a preset device programming operation on the induction cooker according to the program to be entered, the device programming operation including program loading and / or program debugging; When the demand type is the non-programming type, the induction cooker is controlled to execute a parameter response operation that matches the operation control parameter, where the parameter response operation includes parameter adjustment and / or parameter execution.

[0006] As an optional embodiment, in the first aspect of the present invention, the program to be recorded includes a first program generated locally or a second program not generated locally; wherein the first program is generated by a program recording function configured on the induction cooker in combination with a program recording instruction of a user; and the second program is generated by a small program having a program editing function in combination with a program editing instruction of the user for the induction cooker; and the small program is capable of communicating with the induction cooker; Before determining the control details for the induction cooker according to the usage requirements, the method further includes: When the requirement type of the usage requirement is the programming type, generating a corresponding program to be entered according to the target programming operation triggered by the user, and adding the program to be entered to the usage requirement; and triggering execution of the operation corresponding to the control details for the induction cooker according to the usage requirement; When the requirement type of the usage requirement is the non-programming type, all trigger information of the user on the induction cooker is detected, and all the trigger information is added to the usage requirement, and the operation corresponding to the control details of the induction cooker is determined according to the usage requirement, and triggered to be executed; wherein all the trigger information matches at least one operating control parameter for the induction cooker.

[0007] As an optional implementation, in the first aspect of the present invention, generating a corresponding program to be entered according to a target programming operation triggered by a user includes: When a recording mark is detected in the induction cooker, the program recording function is called; the recording mark is used to indicate that the user currently has a need to record a program; According to the program recording function, all recorded events triggered by the user on the induction cooker are collected; all recorded events include at least multiple induction cooker gears triggered by the user, the gear execution time corresponding to each induction cooker gear, and the gear execution order corresponding to all the induction cooker gears; When the recording end mark triggered by the user is detected, a target recording program is generated according to all the recording events; at the same time, the program storage location included in the recording end mark is associated with the target recording program; and the target recording program is determined as the first program generated locally.

[0008] As an optional implementation, in the first aspect of the present invention, generating a corresponding program to be entered according to a target programming operation triggered by a user further includes: When the mini-program detects that the user has created a new named program in the program editing interface displayed by the mini-program, the mini-program obtains the first editing item triggered by the user for the named program; the named program is used to construct a user-defined control program for the induction cooker; the first editing item includes at least one program entry step, the step details corresponding to each program entry step, and the step execution order corresponding to all the program entry steps; the step details corresponding to each program entry step include the power level corresponding to the program entry step and its corresponding execution time; The mini-program acquires a second editing item triggered by the user in the program editing interface; the second editing item includes the type of induction cooker to which the naming program is applied, and the type of induction cooker includes a single-head type or a multi-head type; The mini-program constructs a virtual induction cooker that matches the type of the induction cooker, and fills the first editing item into the virtual induction cooker; and constructs a virtual-reality interactive link between the virtual induction cooker and the induction cooker; The virtual control data of the virtual induction cooker and its configuration transmitted by the mini-program through the virtual-reality interactive link is obtained as a second program not generated locally.

[0009] As an optional embodiment, in the first aspect of the present invention, the induction cooker includes a switch control button, a gear button, a timing button, a knob, and a plurality of program buttons; each of the program buttons is used to store an induction cooker execution program, and the induction cooker execution program includes a default program configured when the device is manufactured or a user-customized program; The detecting of all triggering information of the user on the induction cooker includes: Detecting a target program button currently triggered by a user, and adding the target program button to the trigger information of the user on the induction cooker; and in the process of executing the target program bound to the target program key, detecting in real time a key combination triggered by the user on the induction cooker, the key combination including a gear adjustment combination corresponding to the gear key and the knob and / or a timing adjustment combination corresponding to the timing key and the knob; Adding the key combination and its corresponding combination adjustment information to the trigger information; Among them, when the button combination includes the gear adjustment combination, the user triggers the gear button and adjusts the knob to perform gear adjustment of the current running step; when the button combination includes the timing adjustment combination, the user triggers the timing button and adjusts the knob to perform timing duration adjustment of the current running step.

[0010] As an optional embodiment, in the first aspect of the present invention, the induction cooker includes a plurality of burners; The step of performing a preset device programming operation on the induction cooker according to the program to be entered includes: Loading the program to be entered into the induction cooker; Determine all target burners to be configured corresponding to the program to be entered and their corresponding powered devices; Generate an address code for each target burner and its corresponding powered device according to a preset code division mechanism; According to the address code of each target burner and its corresponding powered device, combined with the program to be entered, parameter configuration is performed on the induction cooker; Also, when a debugging requirement for the program to be entered is detected, after determining that the induction cooker has completed the parameter configuration, the induction cooker is controlled to perform a program trial run according to the program to be entered. At the same time, after determining that the program trial run result for the program to be entered indicates that the operation has passed, it is determined that the loading and configuration operations for the program to be entered are completed.

[0011] As an optional embodiment, in the first aspect of the present invention, the button combination also includes the knob; when only the knob is triggered, the corresponding response function of the knob includes a display control function or a wireless communication function; wherein the display control function is used to adjust the display value of the display device on the induction cooker; the wireless communication function is used to adjust the signal on and off of the current control burner of the induction cooker; The detecting of all triggering information of the user on the induction cooker further includes: When it is detected that only the knob is triggered, a target response function of the knob and its corresponding function execution details are determined, and the knob, the target response function and its corresponding function execution details are added to the trigger information.

[0012] A second aspect of the present invention discloses an intelligent control device for a programmable induction cooker, the device comprising: A detection module, used for detecting usage requirements for the induction cooker; a determination module, configured to determine a requirement type of the usage requirement, wherein the requirement type includes a programming type and a non-programming type; the programming type is configured to indicate that the usage requirement requires editing of an execution program corresponding to the induction cooker; The determination module is further configured to determine control details for the induction cooker according to the usage requirement; when the requirement type is the programming type, the control details include a program to be entered; when the requirement type is the non-programming type, the control details include operating control parameters for the induction cooker; a programming processing module, configured to, when the requirement type is the programming type, execute a preset device programming operation on the induction cooker according to the program to be entered, wherein the device programming operation includes program loading and / or program debugging; A parameter response module is used to control the induction cooker to perform a parameter response operation matching the operation control parameter when the demand type is the non-programming type, wherein the parameter response operation includes parameter adjustment and / or parameter execution.

[0013] As an optional embodiment, in the second aspect of the present invention, the program to be recorded includes a first program generated locally or a second program not generated locally; wherein the first program is generated by a program recording function configured on the induction cooker in combination with a program recording instruction of a user; and the second program is generated by a small program having a program editing function in combination with a program editing instruction of the user for the induction cooker; and the small program is capable of communicating with the induction cooker; The device further comprises: a program generating module configured to, before the determining module determines the control details for the induction cooker according to the usage requirement, generate a corresponding program to be entered according to a target programming operation triggered by a user, and add the program to be entered to the usage requirement, when the requirement type of the usage requirement is the programming type, and trigger the determining module to execute the operation corresponding to the control details for the induction cooker determined according to the usage requirement; The detection module is also used to detect all trigger information of the user on the induction cooker when the requirement type of the usage requirement is the non-programming type, before the determination module determines the control details for the induction cooker according to the usage requirements, and add all the trigger information to the usage requirements, and trigger the determination module to perform the operation corresponding to determining the control details for the induction cooker according to the usage requirements; wherein all the trigger information matches at least one operating control parameter for the induction cooker.

[0014] As an optional embodiment, in the second aspect of the present invention, the program generation module generates the corresponding program to be entered according to the target programming operation triggered by the user, specifically including: When a recording mark is detected in the induction cooker, the program recording function is called; the recording mark is used to indicate that the user currently has a need to record a program; According to the program recording function, all recorded events triggered by the user on the induction cooker are collected; all recorded events include at least multiple induction cooker gears triggered by the user, the gear execution time corresponding to each induction cooker gear, and the gear execution order corresponding to all the induction cooker gears; When the recording end mark triggered by the user is detected, a target recording program is generated according to all the recording events; at the same time, the program storage location included in the recording end mark is associated with the target recording program; and the target recording program is determined as the first program generated locally.

[0015] As an optional embodiment, in the second aspect of the present invention, the program generation module generates the corresponding program to be entered according to the target programming operation triggered by the user, which specifically includes: When the mini-program detects that the user has created a new named program in the program editing interface displayed by the mini-program, the mini-program obtains the first editing item triggered by the user for the named program; the named program is used to construct a user-defined control program for the induction cooker; the first editing item includes at least one program entry step, the step details corresponding to each program entry step, and the step execution order corresponding to all the program entry steps; the step details corresponding to each program entry step include the power level corresponding to the program entry step and its corresponding execution time; The mini-program acquires a second editing item triggered by the user in the program editing interface; the second editing item includes the type of induction cooker to which the naming program is applied, and the type of induction cooker includes a single-head type or a multi-head type; The mini-program constructs a virtual induction cooker that matches the type of the induction cooker, and fills the first editing item into the virtual induction cooker; and constructs a virtual-reality interactive link between the virtual induction cooker and the induction cooker; The virtual control data of the virtual induction cooker and its configuration transmitted by the mini-program through the virtual-reality interactive link is obtained as a second program not generated locally.

[0016] As an optional embodiment, in the second aspect of the present invention, the induction cooker includes a switch control button, a gear button, a timing button, a knob, and a plurality of program buttons; each of the program buttons is used to store an induction cooker execution program, and the induction cooker execution program includes a program configured by default when the device is manufactured or a program customized by the user; The method in which the detection module detects all trigger information of the user on the induction cooker specifically includes: Detecting a target program button currently triggered by a user, and adding the target program button to the trigger information of the user on the induction cooker; and in the process of executing the target program bound to the target program key, detecting in real time a key combination triggered by the user on the induction cooker, the key combination including a gear adjustment combination corresponding to the gear key and the knob and / or a timing adjustment combination corresponding to the timing key and the knob; Adding the key combination and its corresponding combination adjustment information to the trigger information; Among them, when the button combination includes the gear adjustment combination, the user triggers the gear button and adjusts the knob to perform gear adjustment of the current running step; when the button combination includes the timing adjustment combination, the user triggers the timing button and adjusts the knob to perform timing duration adjustment of the current running step.

[0017] As an optional embodiment, in the second aspect of the present invention, the induction cooker includes a plurality of burners; The programming processing module executes a preset device programming operation on the induction cooker according to the program to be entered, specifically including: Loading the program to be entered into the induction cooker; Determine all target burners to be configured corresponding to the program to be entered and their corresponding powered devices; Generate an address code for each target burner and its corresponding powered device according to a preset code division mechanism; According to the address code of each target burner and its corresponding powered device, combined with the program to be entered, parameter configuration is performed on the induction cooker; Also, when a debugging requirement for the program to be entered is detected, after determining that the induction cooker has completed the parameter configuration, the induction cooker is controlled to perform a program trial run according to the program to be entered. At the same time, after determining that the program trial run result for the program to be entered indicates that the operation has passed, it is determined that the loading and configuration operations for the program to be entered are completed.

[0018] As an optional embodiment, in the second aspect of the present invention, the button combination also includes the knob; when only the knob is triggered, the corresponding response function of the knob includes a display control function or a wireless communication function; wherein the display control function is used to adjust the display value of the display device on the induction cooker; the wireless communication function is used to adjust the signal on and off of the current control burner of the induction cooker; The method in which the detection module detects all trigger information of the user on the induction cooker specifically includes: When it is detected that only the knob is triggered, a target response function of the knob and its corresponding function execution details are determined, and the knob, the target response function and its corresponding function execution details are added to the trigger information.

[0019] A third aspect of the present invention discloses another intelligent control device for a programmable induction cooker, the device comprising: a memory storing executable program code; a processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the intelligent control method for a programmable induction cooker disclosed in the first aspect of the present invention.

[0020] A fourth aspect of the present invention discloses a computer storage medium, wherein the computer storage medium stores computer instructions. When the computer instructions are called, they are used to execute the intelligent control method of the programmable induction cooker disclosed in the first aspect of the present invention.

[0021] Compared with the prior art, the embodiments of the present invention have the following beneficial effects: In an embodiment of the present invention, an intelligent control method for a programmable induction cooker is provided, the method comprising: detecting a usage requirement for the induction cooker, and determining a requirement type of the usage requirement, the requirement type including a programming type or a non-programming type; the programming type is used to indicate that the usage requirement requires editing of an execution program corresponding to the induction cooker; determining control details for the induction cooker according to the usage requirement; when the requirement type is a programming type, the control details include a program to be entered; when the requirement type is a non-programming type, the control details include operating control parameters for the induction cooker; when the requirement type is a programming type, executing a preset device programming operation on the induction cooker according to the program to be entered, the device programming operation including program loading and / or program debugging; when the requirement type is a non-programming type, controlling the induction cooker to execute a parameter response operation matching the operating control parameters, the parameter response operation including parameter adjustment and / or parameter execution. It can be seen that the implementation of the present invention can flexibly respond to users' diverse cooking needs by automatically detecting usage requirements and accurately classifying them into programming type or non-programming type; further, for programming type requirements, a convenient custom editing function of the induction cooker program is realized, including program loading and debugging, so that users can customize the cooking program according to their actual needs, which is conducive to improving the flexibility of users in using the induction cooker, and at the same time improving the personalization and customization capabilities of the induction cooker; correspondingly, for non-programming type requirements, it can quickly respond and execute parameter response operations that match the operating control parameters, including parameter adjustment and parameter execution, to ensure the stable and efficient operation of the induction cooker, that is, improve the use stability and response efficiency of the induction cooker. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0023] Figure 1This is a flow chart of an intelligent control method for a programmable induction cooker disclosed in an embodiment of the present invention; Figure 2 This is a flow chart of another intelligent control method for a programmable induction cooker disclosed in an embodiment of the present invention; Figure 3 This is a schematic structural diagram of an intelligent control device for a programmable induction cooker disclosed in an embodiment of the present invention; Figure 4 This is a schematic structural diagram of another intelligent control device for a programmable induction cooker disclosed in an embodiment of the present invention; Figure 5 This is a structural diagram of another intelligent control device for a programmable induction cooker disclosed in an embodiment of the present invention. DETAILED DESCRIPTION

[0024] In order to enable those skilled in the art to better understand the solutions of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0025] The terms "first," "second," and so on, in the description and claims of the present invention and the accompanying drawings are used to distinguish between different items, not to describe a specific order. Furthermore, the terms "including," "having," and any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, apparatus, product, or end comprising a series of steps or elements is not limited to the listed steps or elements but may optionally include steps or elements not listed therein, or may optionally include other steps or elements inherent to such process, method, product, or end.

[0026] References herein to "embodiments" mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present invention. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute a separate or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0027] The present invention discloses an intelligent control method and device for a programmable induction cooker, and a computer storage medium. By automatically detecting usage requirements and accurately classifying them into programming type or non-programming type, the method can flexibly respond to the user's diverse cooking needs. Furthermore, for programming type requirements, a convenient custom editing function of the induction cooker program is implemented, including program loading and debugging, so that the user can customize the cooking program according to actual needs, which is conducive to improving the user's flexibility in using the induction cooker and improving the personalization and customization capabilities of the induction cooker. Correspondingly, for non-programming type requirements, the method can quickly respond and execute parameter response operations that match the operation control parameters, including parameter adjustment and parameter execution, thereby ensuring the stable and efficient operation of the induction cooker, that is, improving the use stability and response efficiency of the induction cooker. The following are detailed descriptions.

[0028] Example 1 See also Figure 1 , Figure 1 This is a flow chart of an intelligent control method for a programmable induction cooker disclosed in an embodiment of the present invention. Figure 1 The intelligent control method of the programmable induction cooker described above can be applied to an intelligent control device of a programmable induction cooker, and the embodiment of the present invention does not limit this. Figure 1 As shown, the intelligent control method of the programmable induction cooker may include the following operations: 101. Detect usage requirements for the induction cooker and determine the usage requirement type, which includes a programming type or a non-programming type.

[0029] In the embodiment of the present invention, the programming type is used to indicate that the usage requirement requires editing the execution program corresponding to the induction cooker.

[0030] 102. Determine the control details for the induction cooker based on usage requirements. When the requirement type is programming type, the control details include the program to be entered. When the requirement type is non-programming type, the control details include the operating control parameters for the induction cooker.

[0031] 103. When the requirement type is programming type, a preset device programming operation is performed on the induction cooker according to the program to be entered, and the device programming operation includes program loading and / or program debugging.

[0032] 104. When the demand type is a non-programming type, control the induction cooker to execute a parameter response operation that matches the operation control parameter, where the parameter response operation includes parameter adjustment and / or parameter execution.

[0033] It can be seen that implementation Figure 1The described intelligent control method of the programmable induction cooker can flexibly respond to the user's diverse cooking needs by automatically detecting usage requirements and accurately classifying them into programming type or non-programming type; further, for programming type requirements, a convenient custom editing function of the induction cooker program is realized, including program loading and debugging, so that the user can customize the cooking program according to actual needs, which is conducive to improving the user's flexibility in using the induction cooker, while improving the personalization and customization capabilities of the induction cooker; correspondingly, for non-programming type requirements, it can quickly respond and execute parameter response operations that match the operating control parameters, including parameter adjustment and parameter execution, ensuring the stable and efficient operation of the induction cooker, that is, improving the use stability and response efficiency of the induction cooker.

[0034] In an optional embodiment, the induction cooker includes a plurality of burners; The above step 103 specifically includes the following steps: Load the program to be entered into the induction cooker; Determine all target burners to be configured and their corresponding powered devices corresponding to the program to be entered; Generate an address code for each target burner and its corresponding powered device according to the preset code division mechanism; According to the address code of each target burner and its corresponding power receiving device, combined with the program to be entered, the parameters of the induction cooker are configured; Also, when a debugging requirement for the program to be entered is detected, after determining that the induction cooker has completed the parameter configuration, the induction cooker is controlled to execute a program trial run according to the program to be entered. At the same time, after determining that the program trial run result for the program to be entered indicates that the operation has passed, it is determined that the loading and configuration operations for the program to be entered are completed.

[0035] In this optional embodiment, the program to be entered is first loaded into the induction cooker, providing a basis for subsequent configuration operations; then, by determining all target burners to be configured and their corresponding powered devices corresponding to the program to be entered, the pertinence and accuracy of the programming operation are ensured; on this basis, a preset coding mechanism is used to generate a unique address code for each target burner and its corresponding powered device, which makes it possible to achieve independent control and precise configuration of each burner of the induction cooker.

[0036] In this optional embodiment, further, according to the address code of each target burner and its corresponding powered device, combined with the program to be entered, the parameters of the induction cooker are configured so that the induction cooker can work according to the predetermined program and function; in addition, the debugging requirements are also taken into consideration, and a program trial run is performed after the parameter configuration is completed, and only after the trial run result indicates that the operation has passed, it is determined that the loading and configuration operations for the program to be entered are completed, thereby ensuring the accuracy and reliability of the programming.

[0037] It can be seen that in this optional embodiment, through a series of sophisticated steps and an innovative coding mechanism, efficient and precise programming of an induction cooker with multiple burners is achieved, the intelligent control level of the induction cooker is improved, and the accuracy and reliability of the programming are ensured; this not only improves the efficiency of the use of the induction cooker, but also meets the user's demand for diversified and personalized control of the induction cooker.

[0038] Example 2 See also Figure 2 , Figure 2 This is a flow chart of another intelligent control method for a programmable induction cooker disclosed in an embodiment of the present invention. Figure 2 The intelligent control method of the programmable induction cooker described above can be applied to an intelligent control device of a programmable induction cooker, and the embodiment of the present invention does not limit this. Figure 2 As shown, the intelligent control method of the programmable induction cooker may include the following operations: 201. Detect usage requirements for the induction cooker and determine the usage requirement type, where the usage requirement type includes a programming type or a non-programming type.

[0039] In an embodiment of the present invention, the program to be entered corresponding to the induction cooker includes a first program generated locally or a second program not generated locally; wherein, the first program is generated by a program recording function configured on the induction cooker in combination with a program recording instruction of the user; the second program is generated by a small program with a program editing function in combination with a program editing instruction of the user for the induction cooker; and the small program can communicate with the induction cooker.

[0040] 202. When the requirement type of the usage requirement is a programming type, a corresponding program to be entered is generated according to a target programming operation triggered by the user, and the program to be entered is added to the usage requirement.

[0041] In the embodiment of the present invention, after step 202 is completed, step 204 is triggered to determine the operation corresponding to the control details of the induction cooker according to the usage requirements.

[0042] 203. When the requirement type of the usage requirement is a non-programming type, detect all trigger information of the user on the induction cooker and add all the trigger information to the usage requirement.

[0043] In the embodiment of the present invention, after step 203 is completed, step 204 is triggered to determine the operation corresponding to the control details of the induction cooker according to the usage requirements.

[0044] In the embodiment of the present invention, all trigger information matches at least one operation control parameter for the induction cooker.

[0045] 204. Determine the control details for the induction cooker based on usage requirements; when the requirement type is programming type, the control details include the program to be entered; when the requirement type is non-programming type, the control details include the operating control parameters for the induction cooker.

[0046] 205. When the requirement type is programming type, a preset device programming operation is performed on the induction cooker according to the program to be entered, and the device programming operation includes program loading and / or program debugging.

[0047] 206. When the demand type is a non-programming type, control the induction cooker to execute a parameter response operation that matches the operation control parameter, where the parameter response operation includes parameter adjustment and / or parameter execution.

[0048] In the embodiment of the present invention, for other descriptions of step 201 and steps 204 to 206, please refer to other specific descriptions of step 101 and steps 102 to 104 in embodiment 1, which will not be repeated in this embodiment of the present invention.

[0049] In an embodiment of the present invention, under programming type requirements, the target programming operation triggered by the user is intelligently identified to generate a program to be entered and automatically added to the usage requirements without the need for manual setting by the user; under non-programming type requirements, the trigger information on the induction cooker is directly detected and responded to to achieve rapid control.

[0050] It can be seen that implementation Figure 2 The described intelligent control method for a programmable induction cooker supports a first program generated locally and a second program generated not locally, wherein the first program is generated through the program recording function of the induction cooker itself, and can meet the user's personalized cooking needs; the second program is generated by editing an external mini-program to achieve more complex cooking logic and remote control. The setting of the first and second programs is conducive to improving the flexibility of use of the induction cooker, broadening the use scenarios of the induction cooker and adapting to user needs; and it can also automatically select a programming type or a non-programming type of control strategy according to actual use needs, which is conducive to reducing the complexity of user operations; in addition, the method supports communication between the mini-program and the induction cooker, so that the induction cooker can receive and execute program editing instructions from external devices, thereby enhancing the compatibility and scalability of the induction cooker.

[0051] In an optional embodiment, the above step 202 generates a corresponding program to be entered according to the target programming operation triggered by the user, specifically including: When a recording mark is detected in the induction cooker, the program recording function is called; the recording mark is used to indicate that the user currently has a need to record a program; According to the program recording function, all recorded events triggered by the user on the induction cooker are collected; all recorded events include at least multiple induction cooker gears triggered by the user, the gear execution time corresponding to each induction cooker gear, and the gear execution order corresponding to all induction cooker gears; When a recording end mark triggered by a user is detected, a target recording program is generated according to all recording events; at the same time, the target recording program is associated with the program storage location included in the recording end mark; and the target recording program is determined as the first program generated locally.

[0052] It can be seen that in this optional embodiment, by detecting the recording mark in the induction cooker, it can respond to the user's program recording needs immediately without the need for additional operating steps or equipment, thereby improving the response speed of the program recording function and the convenience of user operation; after the program recording function is activated, it can comprehensively and accurately collect all recording events triggered by the user on the induction cooker, including key information such as the induction cooker gear, gear execution time, and gear execution order, which is conducive to improving the recording accuracy of the recording program; when the user triggers the recording end mark, it can automatically generate the target recording program according to the collected recording events, and associate it with the designated program storage location, which is conducive to improving the generation speed and storage speed of the recording program.

[0053] In another optional embodiment, the method of generating the corresponding program to be entered according to the target programming operation triggered by the user in step 202 specifically further includes: When the mini-program detects that a user has created a named program in the program editing interface displayed by the mini-program, the mini-program obtains the first editing item triggered by the user for the named program; the named program is used to construct a user-defined control program for the induction cooker; the first editing item includes at least one program entry step, the step details corresponding to each program entry step, and the step execution order corresponding to all program entry steps; the step details corresponding to each program entry step include the power level corresponding to the program entry step and its corresponding execution time; The mini program obtains a second editing item triggered by the user in the program editing interface; the second editing item includes naming the program and the type of induction cooker it applies to, which includes a single-head type or a multi-head type; The mini program constructs a virtual induction cooker that matches the type of induction cooker, and fills the first edit item into the virtual induction cooker; and constructs a virtual-reality interaction link between the virtual induction cooker and the induction cooker; The virtual induction cooker and its configured virtual control data transmitted by the applet through the virtual-reality interactive link are obtained as a second program not generated locally.

[0054] In this optional embodiment, users can use the mini-program to create a new named program on the program editing interface, and freely edit the program entry steps, step details and execution order, thereby building a user-defined control program that meets personal cooking needs.

[0055] In this optional embodiment, the mini program provides an intuitive and easy-to-use program editing interface, so users can easily complete the editing of the induction cooker control program without having professional programming knowledge. In addition, the mini program also supports the selection of induction cooker types and can automatically build a virtual induction cooker that matches the induction cooker type, thereby improving the convenience of users in programming induction cooker programs based on the mini program.

[0056] In this optional embodiment, a virtual-reality interactive link is constructed between the virtual induction cooker and the physical induction cooker, so that the virtual control data edited in the applet can be accurately transmitted to the physical induction cooker and executed.

[0057] It can be seen that in this optional embodiment, the user's personalized needs are greatly met through highly customized programming control; at the same time, the operation process of customized programming of the induction cooker is simplified through the intuitive and easy-to-use mini-program, and the convenience and accuracy of programming the induction cooker based on the mini-program are improved; by constructing a virtual-reality interactive link between the virtual induction cooker and the physical induction cooker, not only the programming flexibility is improved, but also the accuracy and reliability of the control program are ensured; further, by introducing the mini-program for program editing and virtual-reality interaction, the induction cooker can receive and execute complex control instructions from external devices, thereby achieving a higher level of intelligent control.

[0058] In another optional embodiment, the induction cooker includes a switch control button, a gear button, a timing button, a knob, and a plurality of program buttons; each program button is used to store an induction cooker execution program, and the induction cooker execution program includes a default program configured when the device is manufactured or a user-customized program; The above-mentioned method of detecting all trigger information of the user on the induction cooker specifically includes: Detect the target program button currently triggered by the user, and add the target program button to the user's trigger information on the induction cooker; and in the process of executing the target program bound to the target program key, detecting in real time the key combination triggered by the user on the induction cooker, the key combination including the gear adjustment combination corresponding to the gear key and the knob and / or the timing adjustment combination corresponding to the timing key and the knob; Add the key combination and its corresponding combination adjustment information to the trigger information; Among them, when the button combination includes a gear adjustment combination, the user triggers the gear button and adjusts the knob to perform gear adjustment of the current running step; when the button combination includes a timing adjustment combination, the user triggers the timing button and adjusts the knob to perform timing duration adjustment of the current running step.

[0059] It can be seen that in this optional embodiment, the program buttons set on the induction cooker allow for the storage and execution of multiple programs, so that the induction cooker can flexibly switch to execute different cooking programs according to different scenarios and user needs, which is conducive to improving the applicability and practicality of the induction cooker; in the process of executing the target program, the induction cooker can detect the button combination triggered by the user in real time, and adjust the gear or timing duration of the current operation step according to the combination information. This real-time response and flexible adjustment method enables the user to easily achieve precise control of the induction cooker according to personal cooking needs, thereby improving the smoothness and convenience of the user's interaction with the induction cooker; and, by providing an intuitive and easy-to-operate gear and timing adjustment method, the user only needs to trigger the button and adjust the knob to quickly adjust the gear and timing duration of the induction cooker, which reduces the difficulty of operation and improves the operation efficiency.

[0060] In another optional embodiment, the button combination further includes a knob; when only the knob is triggered, the corresponding response function of the knob includes a display control function or a wireless communication function; wherein the display control function is used to adjust the displayed value of the display device on the induction cooker; and the wireless communication function is used to adjust the signal on / off of the current control burner of the induction cooker; The above-mentioned method of detecting all trigger information of the user on the induction cooker specifically includes: When only a trigger knob is detected, a target response function of the trigger knob and its corresponding function execution details are determined, and the knob, the target response function and its corresponding function execution details are added to the trigger information.

[0061] In this optional embodiment, the wireless communication function is controlled by the knob, allowing the induction cooker to communicate with other smart devices or systems, achieving a higher level of intelligent control. For example, the knob can be used to remotely adjust the induction cooker's operating status or upload the induction cooker's operating data to the cloud for analysis and management. This intelligent interaction method not only improves the induction cooker's automation level, but also helps achieve smarter and more efficient cooking control.

[0062] It can be seen that in this optional embodiment, on the basis of the original gear adjustment and timing adjustment, the function of the knob is further expanded to display control function and wireless communication function, so that the knob is not only limited to the traditional adjustment function, but can also be used to control the display value of the display device on the induction cooker, as well as to adjust the signal on and off of the current control burner of the induction cooker, which greatly enriches the application scenarios of the knob and improves the practicality of the knob.

[0063] Example 3 See also Figure 3 , Figure 3 This is a schematic diagram of the structure of an intelligent control device for a programmable induction cooker disclosed in an embodiment of the present invention. The intelligent control device for the programmable induction cooker can be an intelligent control terminal, device, system or server of the programmable induction cooker. The server can be a local server, a remote server, or a cloud server (also known as a cloud server). When the server is a non-cloud server, the non-cloud server can communicate with the cloud server, which is not limited in the embodiment of the present invention. Figure 3 As shown, the intelligent control device of the programmable induction cooker may include a detection module 301, a determination module 302, a programming processing module 303 and a parameter response module 304, wherein: The detection module 301 is used to detect the usage requirements for the induction cooker.

[0064] The determination module 302 is used to determine the demand type of the usage demand, where the demand type includes a programming type and a non-programming type. The programming type is used to indicate that the usage demand requires editing of the execution program corresponding to the induction cooker.

[0065] The determination module 302 is further used to determine the control details for the induction cooker according to the usage requirements; when the requirement type is programming type, the control details include the program to be entered; when the requirement type is non-programming type, the control details include the operation control parameters for the induction cooker.

[0066] The programming processing module 303 is used to perform a preset device programming operation on the induction cooker according to the program to be entered when the requirement type is programming type. The device programming operation includes program loading and / or program debugging.

[0067] The parameter response module 304 is used to control the induction cooker to execute a parameter response operation that matches the operation control parameters when the demand type is a non-programmed type. The parameter response operation includes parameter adjustment and / or parameter execution.

[0068] It can be seen that implementation Figure 3The described intelligent control device for the programmable induction cooker can flexibly respond to the user's diverse cooking needs by automatically detecting usage requirements and accurately classifying them into programming type or non-programming type; further, for programming type requirements, a convenient custom editing function of the induction cooker program is implemented, including program loading and debugging, so that the user can customize the cooking program according to actual needs, which is conducive to improving the user's flexibility in using the induction cooker, while improving the personalization and customization capabilities of the induction cooker; correspondingly, for non-programming type requirements, it can quickly respond and execute parameter response operations that match the operating control parameters, including parameter adjustment and parameter execution, ensuring the stable and efficient operation of the induction cooker, that is, improving the use stability and response efficiency of the induction cooker.

[0069] In an optional embodiment, the program to be recorded includes a first program generated locally or a second program not generated locally; wherein the first program is generated by a program recording function configured on the induction cooker in combination with a program recording instruction of a user; and the second program is generated by a small program having a program editing function in combination with a program editing instruction of the user for the induction cooker; and the small program is capable of communicating with the induction cooker; See also Figure 4 , Figure 4 FIG. 1 is a schematic diagram of the structure of another intelligent control device for a programmable induction cooker disclosed in an embodiment of the present invention. Figure 4 As shown, the device further includes a program generation module 305, wherein: The program generation module 305 is configured to generate a corresponding program to be entered based on a target programming operation triggered by the user and add the program to the usage requirement before the determination module 302 determines the control details for the induction cooker based on the usage requirement, when the usage requirement type is a programming type; and to trigger the determination module 302 to perform the operation corresponding to the determination of the control details for the induction cooker based on the usage requirement; The detection module 301 is also used to detect all trigger information of the user on the induction cooker and add all trigger information to the usage requirements before the determination module 302 determines the control details for the induction cooker according to the usage requirements, when the requirement type of the usage requirements is a non-programming type, and trigger the determination module 302 to perform the above-mentioned operation corresponding to the control details for the induction cooker according to the usage requirements; wherein all trigger information matches at least one operating control parameter for the induction cooker.

[0070] It can be seen that in this optional embodiment, a first program generated locally and a second program generated not locally are supported, wherein the first program is generated by the program recording function of the induction cooker itself, which can meet the user's personalized cooking needs; the second program is generated by editing an external applet to achieve more complex cooking logic and remote control. The settings of the first and second programs are conducive to improving the flexibility of use of the induction cooker, broadening the use scenarios of the induction cooker and adapting to user needs; and it can also automatically select a programming type or a non-programming type of control strategy according to actual use needs, which is conducive to reducing the complexity of user operations; in addition, the method supports communication between the applet and the induction cooker, so that the induction cooker can receive and execute program editing instructions from external devices, thereby enhancing the compatibility and scalability of the induction cooker.

[0071] In another optional embodiment, the program generation module 305 generates the corresponding program to be entered according to the target programming operation triggered by the user in the following manner: When a recording mark is detected in the induction cooker, the program recording function is called; the recording mark is used to indicate that the user currently has a need to record a program; According to the program recording function, all recorded events triggered by the user on the induction cooker are collected; all recorded events include at least multiple induction cooker gears triggered by the user, the gear execution time corresponding to each induction cooker gear, and the gear execution order corresponding to all induction cooker gears; When a recording end mark triggered by a user is detected, a target recording program is generated according to all recording events; at the same time, the target recording program is associated with the program storage location included in the recording end mark; and the target recording program is determined as the first program generated locally.

[0072] It can be seen that in this optional embodiment, by detecting the recording mark in the induction cooker, it can respond to the user's program recording needs immediately without the need for additional operating steps or equipment, thereby improving the response speed of the program recording function and the convenience of user operation; after the program recording function is activated, it can comprehensively and accurately collect all recording events triggered by the user on the induction cooker, including key information such as the induction cooker gear, gear execution time, and gear execution order, which is conducive to improving the recording accuracy of the recording program; when the user triggers the recording end mark, it can automatically generate the target recording program according to the collected recording events, and associate it with the designated program storage location, which is conducive to improving the generation speed and storage speed of the recording program.

[0073] In another optional embodiment, the program generation module 305 generates the corresponding program to be entered according to the target programming operation triggered by the user, and the method further includes: When the mini-program detects that a user has created a named program in the program editing interface displayed by the mini-program, the mini-program obtains the first editing item triggered by the user for the named program; the named program is used to construct a user-defined control program for the induction cooker; the first editing item includes at least one program entry step, the step details corresponding to each program entry step, and the step execution order corresponding to all program entry steps; the step details corresponding to each program entry step include the power level corresponding to the program entry step and its corresponding execution time; The mini program obtains a second editing item triggered by the user in the program editing interface; the second editing item includes naming the program and the type of induction cooker it applies to, which includes a single-head type or a multi-head type; The mini program constructs a virtual induction cooker that matches the type of induction cooker, and fills the first edit item into the virtual induction cooker; and constructs a virtual-reality interaction link between the virtual induction cooker and the induction cooker; The virtual induction cooker and its configured virtual control data transmitted by the applet through the virtual-reality interactive link are obtained as a second program not generated locally.

[0074] It can be seen that in this optional embodiment, the user's personalized needs are greatly met through highly customized programming control; at the same time, the operation process of customized programming of the induction cooker is simplified through the intuitive and easy-to-use mini-program, and the convenience and accuracy of programming the induction cooker based on the mini-program are improved; by constructing a virtual-reality interactive link between the virtual induction cooker and the physical induction cooker, not only the programming flexibility is improved, but also the accuracy and reliability of the control program are ensured; further, by introducing the mini-program for program editing and virtual-reality interaction, the induction cooker can receive and execute complex control instructions from external devices, thereby achieving a higher level of intelligent control.

[0075] In another optional embodiment, the induction cooker includes a switch control button, a gear button, a timing button, a knob, and a plurality of program buttons; each program button is used to store an induction cooker execution program, and the induction cooker execution program includes a default program configured when the device is manufactured or a user-customized program; The detection module 301 detects all trigger information of the user on the induction cooker in the following manner: Detect the target program button currently triggered by the user, and add the target program button to the user's trigger information on the induction cooker; and in the process of executing the target program bound to the target program key, detecting in real time the key combination triggered by the user on the induction cooker, the key combination including the gear adjustment combination corresponding to the gear key and the knob and / or the timing adjustment combination corresponding to the timing key and the knob; Add the key combination and its corresponding combination adjustment information to the trigger information; Among them, when the button combination includes a gear adjustment combination, the user triggers the gear button and adjusts the knob to perform gear adjustment of the current running step; when the button combination includes a timing adjustment combination, the user triggers the timing button and adjusts the knob to perform timing duration adjustment of the current running step.

[0076] It can be seen that in this optional embodiment, the program buttons set on the induction cooker allow for the storage and execution of multiple programs, so that the induction cooker can flexibly switch to execute different cooking programs according to different scenarios and user needs, which is conducive to improving the applicability and practicality of the induction cooker; in the process of executing the target program, the induction cooker can detect the button combination triggered by the user in real time, and adjust the gear or timing duration of the current operation step according to the combination information. This real-time response and flexible adjustment method enables the user to easily achieve precise control of the induction cooker according to personal cooking needs, thereby improving the smoothness and convenience of the user's interaction with the induction cooker; and, by providing an intuitive and easy-to-operate gear and timing adjustment method, the user only needs to trigger the button and adjust the knob to quickly adjust the gear and timing duration of the induction cooker, which reduces the difficulty of operation and improves the operation efficiency.

[0077] In yet another optional embodiment, the induction cooker includes a plurality of burners; The programming processing module 303 executes the preset device programming operation on the induction cooker according to the program to be entered, specifically including: Load the program to be entered into the induction cooker; Determine all target burners to be configured and their corresponding powered devices corresponding to the program to be entered; Generate an address code for each target burner and its corresponding powered device according to the preset code division mechanism; According to the address code of each target burner and its corresponding power receiving device, combined with the program to be entered, the parameters of the induction cooker are configured; Also, when a debugging requirement for the program to be entered is detected, after determining that the induction cooker has completed the parameter configuration, the induction cooker is controlled to execute a program trial run according to the program to be entered. At the same time, after determining that the program trial run result for the program to be entered indicates that the operation has passed, it is determined that the loading and configuration operations for the program to be entered are completed.

[0078] It can be seen that in this optional embodiment, through a series of sophisticated steps and an innovative coding mechanism, efficient and precise programming of an induction cooker with multiple burners is achieved, the intelligent control level of the induction cooker is improved, and the accuracy and reliability of the programming are ensured; this not only improves the efficiency of the use of the induction cooker, but also meets the user's demand for diversified and personalized control of the induction cooker.

[0079] In another optional embodiment, the button combination further includes a knob; when only the knob is triggered, the corresponding response function of the knob includes a display control function or a wireless communication function; wherein the display control function is used to adjust the displayed value of the display device on the induction cooker; and the wireless communication function is used to adjust the signal on / off of the current control burner of the induction cooker; The detection module 301 detects all trigger information of the user on the induction cooker in the following manner: When only a trigger knob is detected, a target response function of the trigger knob and its corresponding function execution details are determined, and the knob, the target response function and its corresponding function execution details are added to the trigger information.

[0080] It can be seen that in this optional embodiment, on the basis of the original gear adjustment and timing adjustment, the function of the knob is further expanded to display control function and wireless communication function, so that the knob is not only limited to the traditional adjustment function, but can also be used to control the display value of the display device on the induction cooker, as well as to adjust the signal on and off of the current control burner of the induction cooker, which greatly enriches the application scenarios of the knob and improves the practicality of the knob.

[0081] Example 4 See also Figure 5 , Figure 5 This is a schematic diagram of the structure of another intelligent control device for a programmable induction cooker disclosed in an embodiment of the present invention. Figure 5 As shown, the intelligent control device of the programmable induction cooker may include: A memory 401 storing executable program code; a processor 402 coupled to the memory 401; The processor 402 calls the executable program code stored in the memory 401 to execute the steps of the intelligent control method of the programmable induction cooker described in the first embodiment or the second embodiment of the present invention.

[0082] Example 5 An embodiment of the present invention discloses a computer storage medium storing computer instructions. When the computer instructions are called, they are used to execute the steps of the intelligent control method of a programmable induction cooker described in the first embodiment or the second embodiment of the present invention.

[0083] Example 6 An embodiment of the present invention discloses a computer program product, which includes a non-transitory computer storage medium storing a computer program, and the computer program is operable to enable a computer to execute the steps of the intelligent control method of a programmable induction cooker described in Example 1 or Example 2.

[0084] The device embodiments described above are merely illustrative. Modules described as separate components may or may not be physically separate, and components shown as modules may or may not be physical modules, i.e., they may be located in one place or distributed across multiple network modules. Some or all of the modules may be selected based on actual needs to achieve the objectives of the present embodiment. Persons of ordinary skill in the art will be able to understand and implement the present invention without inventive effort.

[0085] Through the detailed description of the above embodiments, those skilled in the art will clearly understand that each embodiment can be implemented by means of software plus a necessary general hardware platform, or of course, by means of hardware. Based on this understanding, the above technical solution, in essence, or the portion that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer storage medium, such as a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a one-time programmable read-only memory (OTPROM), an electronically erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM), or other optical disc storage, magnetic disk storage, magnetic tape storage, or any other computer-readable medium capable of carrying or storing data.

[0086] Finally, it should be noted that the intelligent control method and device for a programmable induction cooker and the computer storage medium disclosed in the embodiments of the present invention are only preferred embodiments of the present invention, and are only used to illustrate the technical solutions of the present invention, rather than to limit them. Although the present invention has been described in detail with reference to the aforementioned embodiments, it should be understood by those skilled in the art that the technical solutions described in the aforementioned embodiments can still be modified, or some of the technical features therein can be replaced by equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. An intelligent control method for a programmable induction cooker, characterized in that: The method comprises: detecting a usage demand for the induction cooker and determining a type of the usage demand, wherein the type of the usage demand includes a programming type and a non-programming type; the programming type is used to indicate that the usage demand requires editing of an execution program corresponding to the induction cooker; Determining control details for the induction cooker according to the usage requirement; when the requirement type is the programming type, the control details include a program to be entered; when the requirement type is the non-programming type, the control details include operating control parameters for the induction cooker; When the requirement type is the programming type, performing a preset device programming operation on the induction cooker according to the program to be entered, the device programming operation including program loading and / or program debugging; When the demand type is the non-programming type, the induction cooker is controlled to execute a parameter response operation that matches the operation control parameter, where the parameter response operation includes parameter adjustment and / or parameter execution.

2. The intelligent control method of a programmable induction cooker according to claim 1, characterized in that: The program to be recorded includes a first program generated locally or a second program not generated locally; wherein the first program is generated by a program recording function configured on the induction cooker in combination with a program recording instruction of a user; and the second program is generated by a small program having a program editing function in combination with a program editing instruction of the user for the induction cooker; and the small program is capable of communicating with the induction cooker; Before determining the control details for the induction cooker according to the usage requirements, the method further includes: When the requirement type of the usage requirement is the programming type, generating a corresponding program to be entered according to the target programming operation triggered by the user, and adding the program to be entered to the usage requirement; and triggering execution of the operation corresponding to the control details for the induction cooker according to the usage requirement; When the requirement type of the usage requirement is the non-programming type, all trigger information of the user on the induction cooker is detected, and all the trigger information is added to the usage requirement, and the operation corresponding to the control details of the induction cooker is determined according to the usage requirement, and triggered to be executed; wherein all the trigger information matches at least one operating control parameter for the induction cooker.

3. The intelligent control method of a programmable induction cooker according to claim 2, characterized in that: The step of generating a corresponding program to be entered according to a target programming operation triggered by a user includes: When a recording mark is detected in the induction cooker, the program recording function is called; the recording mark is used to indicate that the user currently has a need to record a program; According to the program recording function, all recorded events triggered by the user on the induction cooker are collected; all recorded events include at least multiple induction cooker gears triggered by the user, the gear execution time corresponding to each induction cooker gear, and the gear execution order corresponding to all the induction cooker gears; When the recording end mark triggered by the user is detected, a target recording program is generated according to all the recording events; at the same time, the program storage location included in the recording end mark is associated with the target recording program; and the target recording program is determined as the first program generated locally.

4. The intelligent control method for a programmable induction cooker according to claim 3, characterized in that: The step of generating a corresponding program to be entered according to a target programming operation triggered by a user further includes: When the mini-program detects that the user has created a new named program in the program editing interface displayed by the mini-program, the mini-program obtains the first editing item triggered by the user for the named program; the named program is used to construct a user-defined control program for the induction cooker; the first editing item includes at least one program entry step, the step details corresponding to each program entry step, and the step execution order corresponding to all the program entry steps; the step details corresponding to each program entry step include the power level corresponding to the program entry step and its corresponding execution time; The mini-program acquires a second editing item triggered by the user in the program editing interface; the second editing item includes the type of induction cooker to which the naming program is applied, and the type of induction cooker includes a single-head type or a multi-head type; The mini-program constructs a virtual induction cooker that matches the type of the induction cooker, and fills the first editing item into the virtual induction cooker; and constructs a virtual-reality interactive link between the virtual induction cooker and the induction cooker; The virtual control data of the virtual induction cooker and its configuration transmitted by the mini-program through the virtual-reality interactive link is obtained as a second program not generated locally.

5. The intelligent control method for a programmable induction cooker according to any one of claims 2 to 4, characterized in that: The induction cooker includes a switch control button, a gear button, a timing button, a knob and a plurality of program buttons; each of the program buttons is used to store an induction cooker execution program, which includes a default program configured when the device is manufactured or a program customized by the user; The detecting of all triggering information of the user on the induction cooker includes: Detecting a target program button currently triggered by a user, and adding the target program button to the trigger information of the user on the induction cooker; and in the process of executing the target program bound to the target program key, detecting in real time a key combination triggered by the user on the induction cooker, the key combination including a gear adjustment combination corresponding to the gear key and the knob and / or a timing adjustment combination corresponding to the timing key and the knob; Adding the key combination and its corresponding combination adjustment information to the trigger information; Among them, when the button combination includes the gear adjustment combination, the user triggers the gear button and adjusts the knob to perform gear adjustment of the current running step; when the button combination includes the timing adjustment combination, the user triggers the timing button and adjusts the knob to perform timing duration adjustment of the current running step.

6. The intelligent control method for a programmable induction cooker according to any one of claims 1 to 4, characterized in that: The induction cooker includes a plurality of burners; The step of performing a preset device programming operation on the induction cooker according to the program to be entered includes: Loading the program to be entered into the induction cooker; Determine all target burners to be configured corresponding to the program to be entered and their corresponding powered devices; Generate an address code for each target burner and its corresponding powered device according to a preset code division mechanism; According to the address code of each target burner and its corresponding powered device, combined with the program to be entered, parameter configuration is performed on the induction cooker; Also, when a debugging requirement for the program to be entered is detected, after determining that the induction cooker has completed the parameter configuration, the induction cooker is controlled to perform a program trial run according to the program to be entered. At the same time, after determining that the program trial run result for the program to be entered indicates that the operation has passed, it is determined that the loading and configuration operations for the program to be entered are completed.

7. The intelligent control method for a programmable induction cooker according to claim 5, characterized in that: The button combination also includes the knob; when only the knob is triggered, the corresponding response function of the knob includes a display control function or a wireless communication function; wherein the display control function is used to adjust the display value of the display device on the induction cooker; the wireless communication function is used to adjust the signal on and off of the current control burner of the induction cooker; The detecting of all triggering information of the user on the induction cooker further includes: When it is detected that only the knob is triggered, a target response function of the knob and its corresponding function execution details are determined, and the knob, the target response function and its corresponding function execution details are added to the trigger information.

8. An intelligent control device for a programmable induction cooker, characterized in that: The device comprises: A detection module, used for detecting usage requirements for the induction cooker; a determination module, configured to determine a requirement type of the usage requirement, wherein the requirement type includes a programming type and a non-programming type; the programming type is configured to indicate that the usage requirement requires editing of an execution program corresponding to the induction cooker; The determination module is further configured to determine control details for the induction cooker according to the usage requirement; when the requirement type is the programming type, the control details include a program to be entered; when the requirement type is the non-programming type, the control details include operating control parameters for the induction cooker; a programming processing module, configured to, when the requirement type is the programming type, execute a preset device programming operation on the induction cooker according to the program to be entered, wherein the device programming operation includes program loading and / or program debugging; A parameter response module is used to control the induction cooker to perform a parameter response operation matching the operation control parameter when the demand type is the non-programming type, wherein the parameter response operation includes parameter adjustment and / or parameter execution.

9. An intelligent control device for a programmable induction cooker, characterized in that: The device comprises: a memory storing executable program code; a processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the intelligent control method for a programmable induction cooker according to any one of claims 1 to 7.

10. A computer storage medium, characterized in that The computer storage medium stores computer instructions, and when the computer instructions are called, they are used to execute the intelligent control method of the programmable induction cooker according to any one of claims 1 to 7.