Low-power-consumption control method and system for pairing process of intelligent pot and intelligent stove

By employing a low-power control method for smart pots and smart stoves, the efficiency and accuracy issues of pairing and controlling pots and stoves in traditional cooking are solved, achieving efficient and accurate information feedback and energy-saving cooking results.

CN120686650APending Publication Date: 2025-09-23SHENZHEN HIONE SMART KITCHEN APPLIANCES INC
View PDF 0 Cites 1 Cited by

Patent Information

Application Number
CN202510774400.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-10
Publication Date
2025-09-23

AI Technical Summary

Technical Problem

In the cooking process, the traditional method of pairing and controlling cookware and stoves relies on manual observation, which makes it difficult to guarantee cooking efficiency and accuracy, and there are large deviations that affect the cooking results.

Method used

By using a low-power control method for smart pots and smart stoves, the communication address update and pairing between the pot and stove are achieved, ensuring the accuracy and efficiency of communication establishment. This includes the dynamic generation and updating of pot address information, as well as information collection and sleep state management.

Benefits of technology

It improves the pairing accuracy and communication efficiency between cookware and stove, optimizes cooking results, enhances the accuracy and efficiency of information feedback, and achieves energy-saving and low-power pairing.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120686650A_ABST
    Figure CN120686650A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of intelligent equipment, and discloses a low-power-consumption control method and system for the pairing process of an intelligent pot and an intelligent kitchen range, the method is applied to a control system, the control system comprises a kitchen range end and a pot end, and the method comprises the steps that the kitchen range end determines latest pot address information corresponding to a target furnace end included by a target kitchen range, sending the latest cookware address information to the cookware end; the cookware end determines storage cookware address information corresponding to a target cookware currently located on the target furnace end, and executes corresponding communication address updating operation on the target cookware according to the latest cookware address information and the storage cookware address information; and when the target kitchen range is in the ignition state, the kitchen range end and the pot end execute corresponding pairing and communication establishment operation based on the target kitchen range and the target pot. Therefore, the accuracy, reliability, efficiency and convenience of pairing and communication establishment of the cooker and the cookware can be improved, and the accuracy and efficiency of obtaining the cookware cooking feedback information are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the field of smart device technology, and in particular to a low-power consumption control method and system for a pairing process between a smart pot and a smart stove. Background Art

[0002] In the catering industry, cooking efficiency and food quality are crucial, and adjusting the stove's firepower by observing and analyzing the food in the pot is a key part of the cooking process.

[0003] In traditional cooking scenarios, the cook primarily visually inspects the contents of the pot and adjusts the stove's heat range and duration manually. However, this subjective inspection, analysis, and adjustment of the stove's heat are susceptible to multiple factors, and it's common for a cook to simultaneously monitor and control multiple cooking pots and stoves. This can lead to deviations in the cooking adjustment plans for the same pot and stove, impacting cooking efficiency and accuracy, and ultimately, the cooking results. Therefore, it is crucial to provide a pot and stove control method that can improve the cooking efficiency and accuracy of stoves and pots. Summary of the Invention

[0004] The present invention provides a low-power control method and system for the pairing process of a smart pot and a smart stove, which can realize energy-saving and low-power pairing of the smart pot and the smart stove, thereby improving the pairing accuracy and efficiency of the smart pot and the smart stove, thereby improving the accuracy and efficiency of the information feedback of the smart pot, and further optimizing the cooking efficiency, cooking accuracy and cooking effect of the pots and stoves.

[0005] In order to solve the above technical problems, the first aspect of the present invention discloses a low-power consumption control method for the pairing process of a smart pot and a smart stove. The method is applied to a control system including a stove end and a pot end. The method includes: The cooker end determines the latest pot address information corresponding to the target burner included in the target cooker, and sends the latest pot address information to the cooker end, wherein the latest pot address information is obtained by performing a corresponding dynamic random generation operation of a communication address based on the identity information corresponding to the target pot located on the target burner; The pot end determines the stored pot address information corresponding to the target pot currently located on the target burner, and performs a corresponding communication address update operation on the target pot according to the latest pot address information and the stored pot address information; When the target cooker is in an ignition state, the cooker end and the cooker end perform corresponding pairing and communication establishment operations based on the target cooker and the target cooker.

[0006] As an optional embodiment, in the first aspect of the present invention, before the cookware end performs a corresponding communication address update operation on the target cookware based on the latest cookware address information and the stored cookware address information, the method further includes: The cooker terminal determines whether the target cooker and the target cooker meet a preset pairing communication condition based on the latest cooker address information and the stored cooker address information; When it is determined that the target cooker and the target cookware do not meet the pairing communication condition, the cookware end executes the step of performing a corresponding communication address update operation on the target cookware according to the latest cookware address information and the stored cookware address information; When it is determined that the target cooker and the target cooker meet the pairing communication condition and when the target cooker is in an ignition state, the cooker end and the cooker end perform corresponding pairing and communication establishment operations based on the target cooker and the target cooker.

[0007] As an optional embodiment, in the first aspect of the present invention, after the cooker end and the stove end perform corresponding pairing and communication establishment operations based on the target cooker and the target cooker, the method further includes: The cooker end performs a corresponding information collection operation on the target cooker based on a set information collection cycle scheme, obtains first information collected in a current information collection cycle, and sends the first information to the cooker end; The cooker generates an information reception feedback instruction based on the first information, and sends the information reception feedback instruction to the cooker; The cookware end receives a feedback instruction based on the information and performs a corresponding sleep state switching operation until the next information collection cycle.

[0008] As an optional embodiment, in the first aspect of the present invention, after the cookware end performs a corresponding information collection operation on the target cookware based on a set information collection cycle scheme and obtains the first information collected in the current information collection cycle, the method further includes: The cookware end determines the second information collected in one or more target historical information collection cycles; The cookware end determines whether the target cookware meets a preset low-demand information collection condition based on the first information and the second information; When it is determined that the target cookware meets the low-demand information collection condition, the cookware end determines low-change information based on the first information and the second information, and determines a targeted suspension collection plan based on the low-change information; The targeted suspension collection scheme is used to instruct the cookware end to suspend collection of target type information corresponding to the low-change information during a target future information collection period.

[0009] As an optional implementation manner, in the first aspect of the present invention, the first information and the second information both include one or more types of information; Furthermore, the cookware end determines whether the target cookware meets a preset low-demand information collection condition based on the first information and the second information, including: The cookware end analyzes the degree of change before and after each type of information according to the first information and the second information; The cookware end determines whether the degree of change of each type of information is greater than or equal to a preset change degree threshold; When it is determined that the degree of change of each type of information is less than or equal to the degree of change threshold, the cookware terminal determines that the target cookware does not meet the preset low-demand information collection condition; When it is determined that the degree of change of each type of information is not less than or equal to the degree of change threshold, the cookware end determines that the target cookware meets the preset low-demand information collection condition.

[0010] As an optional implementation manner, in the first aspect of the present invention, after the cooker end sends the first information to the stove end, the method further includes: The cooker end determines a waiting time corresponding to the time it waits to receive the information receiving feedback instruction sent by the cooker end; The cooker end determines whether the waiting time is greater than or equal to a preset waiting time threshold; When it is determined that the waiting time is greater than or equal to the waiting time threshold, the cooker end and the stove end perform corresponding communication connection disconnection operations based on the target cooker and the target cooker and enter super power saving mode until the pairing and communication establishment trigger conditions are met, and the stove end again determines the latest pot address information corresponding to the target burner included in the target cooker, and sends the latest pot address information to the cooker end; the cooker end determines the stored pot address information corresponding to the target pot currently located on the target burner, and performs corresponding communication address update operations on the target pot based on the latest pot address information and the stored pot address information; when the target cooker is in an ignition state, the cooker end and the cooker end perform corresponding pairing and communication establishment operations based on the target cooker and the target cooker.

[0011] As an optional embodiment, in the first aspect of the present invention, the cooker end determines whether the target cooker and the target cooker meet a preset pairing communication condition based on the latest cooker address information and the stored cooker address information, including: The cookware end determines whether the latest cookware address information and the stored cookware address information meet a preset unified location indication condition; When it is determined that the latest cookware address information and the stored cookware address information meet the unified location indication condition, the cookware end determines that the target cooker and the target cookware meet a preset pairing communication condition; When it is determined that the latest cookware address information and the stored cookware address information do not satisfy the unified location indication condition, the cookware end determines that the target cookware and the target cookware do not satisfy a preset pairing communication condition; Furthermore, the cookware end determines whether the latest cookware address information and the stored cookware address information meet a preset unified location indication condition, including: The cookware end determines a first indication position according to the latest cookware address information, and determines a second indication position according to the stored cookware address information; The cookware end determines whether the first indication position matches the second indication position; When the judgment result is yes, the cookware end determines that the latest cookware address information and the stored cookware address information meet a preset unified location indication condition; When the judgment result is no, the cookware end determines that the latest cookware address information and the stored cookware address information do not meet a preset unified location indication condition.

[0012] A second aspect of the present invention discloses a low-power control system for the pairing process of a smart pot and a smart stove. The control system includes a stove end and a pot end, wherein the stove end includes a first determination module, a first sending module, and a communication establishment module, and the pot end includes a second determination module and an address update module, wherein: The first determination module is used to determine the latest pot address information corresponding to the target burner included in the target cooker, wherein the latest pot address information is obtained by performing a corresponding communication address dynamic random generation operation based on the identity information corresponding to the target pot located on the target burner; The first sending module is used to send the latest cookware address information to the cookware end; The second determining module is used to determine the stored pot address information corresponding to the target pot currently located on the target burner; The address updating module is configured to perform a corresponding communication address updating operation on the target cookware according to the latest cookware address information and the stored cookware address information; The communication establishing module is configured to perform corresponding pairing and communication establishing operations with the cooker end based on the target cooker and the target cooker when the target cooker is in an ignition state.

[0013] As an optional embodiment, in the second aspect of the present invention, the cookware end further includes a first judgment module, wherein: The first judgment module is configured to, before the address update module performs a corresponding communication address update operation on the target cookware based on the latest cookware address information and the stored cookware address information, determine whether the target cooker and the target cookware meet a preset pairing and communication condition based on the latest cookware address information and the stored cookware address information; when it is determined that the target cooker and the target cookware do not meet the pairing and communication condition, the address update module performs the step of performing a corresponding communication address update operation on the target cookware based on the latest cookware address information and the stored cookware address information; when it is determined that the target cooker and the target cookware meet the pairing and communication condition and when the target cooker is in an ignition state, the communication establishment module performs the step of performing corresponding pairing and communication establishment operations with the cookware end based on the target cooker and the target cookware.

[0014] As an optional embodiment, in the second aspect of the present invention, the cooker end further includes an information acquisition module, a second sending module and a state switching module, and the stove end further includes an instruction generation module, wherein: The information collection module is configured to, after the communication establishment module and the cookware end perform corresponding pairing and communication establishment operations based on the target cookware and the target cookware, perform corresponding information collection operations on the target cookware based on a set information collection cycle scheme to obtain first information collected in the current information collection cycle; The second sending module is used to send the first information to the cooker end; The instruction generation module is configured to generate an information receiving feedback instruction based on the first information; The first sending module is further configured to send the information receiving feedback instruction to the cookware end; The state switching module is configured to receive a feedback instruction based on the information and execute a corresponding sleep state switching operation until the next information collection cycle.

[0015] As an optional embodiment, in the second aspect of the present invention, the cookware end further includes a second judgment module, wherein: The second determining module is further configured to determine second information collected in one or more target historical information collection periods after the information collection module performs a corresponding information collection operation on the target cookware based on a set information collection cycle scheme to obtain the first information collected in the current information collection period; The second judgment module is configured to judge whether the target cookware meets a preset low-demand information collection condition based on the first information and the second information; The second determination module is also used to determine the low-change information based on the first information and the second information when the second judgment module determines that the target cookware meets the low-demand information collection condition, and determine a targeted suspension collection plan based on the low-change information; wherein the targeted suspension collection plan is used to instruct the cookware end to suspend the collection of target type information corresponding to the low-change information in the target future information collection cycle.

[0016] As an optional implementation manner, in the second aspect of the present invention, the first information and the second information both include one or more types of information; Furthermore, the second judgment module judges whether the target cookware meets the preset low-demand information collection condition based on the first information and the second information in a manner specifically including: Analyzing the degree of change before and after each type of information according to the first information and the second information; Determine whether the degree of change of each type of information is greater than or equal to a preset change degree threshold; When it is determined that the degree of change of each type of information is less than or equal to the degree of change threshold, it is determined that the target cookware does not meet the preset low-demand information collection condition; When it is determined that the degree of change before and after each type of information is not less than or equal to the degree of change threshold, it is determined that the target cookware meets the preset low-demand information collection condition.

[0017] As an optional embodiment, in the second aspect of the present invention, the cookware end further includes a third judgment module and a communication disconnection module, wherein: The second determining module is further configured to determine, after the second sending module sends the first information to the cooker, a waiting time corresponding to the waiting time for receiving the information receiving feedback instruction sent by the cooker; The third judgment module is used to judge whether the waiting time is greater than or equal to a preset waiting time threshold; The communication disconnection module is configured to, when the third judgment module determines that the waiting time is greater than or equal to the waiting time threshold, cause the cooker end and the stove end to perform corresponding communication connection disconnection operations based on the target cooker and the target cooker and enter a super power saving mode, until the pairing and communication establishment trigger conditions are met, and again execute the steps of the cooker end determining the latest cooker address information corresponding to the target burner included in the target cooker and sending the latest cooker address information to the cooker end; the cooker end determining the stored cooker address information corresponding to the target cooker currently located on the target burner, and performing corresponding communication address update operations on the target cooker based on the latest cooker address information and the stored cooker address information; and when the target cooker is in an ignition state, causing the cooker end and the pot end to perform corresponding pairing and communication establishment operations based on the target cooker and the target cooker.

[0018] As an optional embodiment, in the second aspect of the present invention, the first judgment module determines whether the target cooker and the target cookware meet the preset pairing communication conditions based on the latest cookware address information and the stored cookware address information, specifically including: Determining whether the latest cookware address information and the stored cookware address information meet a preset unified location indication condition; When it is determined that the latest cookware address information and the stored cookware address information meet the unified location indication condition, determining that the target cooker and the target cookware meet a preset pairing communication condition; When it is determined that the latest cookware address information and the stored cookware address information do not satisfy the unified location indication condition, determining that the target cooker and the target cookware do not satisfy a preset pairing communication condition; Furthermore, the first judgment module judges whether the latest cookware address information and the stored cookware address information meet a preset unified location indication condition in a manner that specifically includes: determining a first indicated position according to the latest cookware address information, and determining a second indicated position according to the stored cookware address information; determining whether the first indication position matches the second indication position; When the judgment result is yes, determining that the latest cookware address information and the stored cookware address information meet a preset unified location indication condition; When the judgment result is no, it is determined that the latest cookware address information and the stored cookware address information do not meet a preset unified location indication condition.

[0019] A third aspect of the present invention discloses another low-power control system for the pairing process of a smart pot and a smart stove, the system 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 low-power control method for the pairing process of the smart pot and the smart stove disclosed in the first aspect of the present invention.

[0020] The fourth aspect of the present invention discloses a computer storage medium, which stores computer instructions. When the computer instructions are called, they are used to execute the low-power control method for the pairing process of a smart pot and a smart stove 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, the control system includes a stove end and a pot end; in addition, the stove end determines the latest pot address information corresponding to the target burner included in the target stove, and sends the latest pot address information to the pot end; the pot end determines the stored pot address information corresponding to the target pot currently located on the target burner, and performs a corresponding communication address update operation on the target pot based on the latest pot address information and the stored pot address information; when the target stove is in an ignition state, the stove end and the pot end perform corresponding pairing and communication establishment operations based on the target stove and the target pot. It can be seen that the present invention can realize the pairing and communication establishment functions between the pot end and the stove end through the communication address information of the target pot, which is conducive to improving the accuracy and reliability of the pairing and communication establishment between the stove and the pot, as well as improving the efficiency and convenience of the pairing and communication establishment between the stove and the pot, and thus helping to improve the accuracy and efficiency of obtaining feedback information about the pot during the cooking process, thereby helping to optimize the cooking effect of the pot and the stove and helping to improve the timeliness, accuracy and efficiency of cooking adjustments. In addition, it is conducive to realizing energy-saving and low-power pairing and application of pots and stoves. 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 1 This is a flow chart of a low-power consumption control method for a pairing process between a smart pot and a smart stove disclosed in an embodiment of the present invention; Figure 2 This is a flow chart of another low-power consumption control method for the pairing process of a smart pot and a smart stove disclosed in an embodiment of the present invention; Figure 3 This is a schematic structural diagram of a low-power control system for the pairing process of a smart pot and a smart stove disclosed in an embodiment of the present invention; Figure 4 This is a schematic structural diagram of another low-power control system for the pairing process of a smart pot and a smart stove disclosed in an embodiment of the present invention; Figure 5 This is a schematic structural diagram of another low-power control system for the pairing process of a smart pot and a smart stove disclosed in an embodiment of the present invention; Figure 6 This is a schematic structural diagram of a stove end disclosed in an embodiment of the present invention; Figure 7It is a structural schematic diagram of a cookware end 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 a low-power control method and system for the pairing process of a smart pot and a smart stove. The method can achieve pairing and communication establishment between the pot and stove using the communication address information of the target pot. This method is beneficial for improving the accuracy and reliability of pairing and communication establishment between the stove and pot, as well as the efficiency and convenience of pairing and communication establishment between the stove and pot. This method further improves the accuracy and efficiency of obtaining feedback information about the pot during the cooking process, thereby optimizing the cooking effect of the pot and stove and improving the timeliness, accuracy, and efficiency of cooking adjustments. Furthermore, the method facilitates energy-saving and low-power pairing of pots and stoves and their application. These are described in detail below.

[0028] Example 1 See also Figure 1 , Figure 1 This is a flow chart of a low-power consumption control method for the pairing process of a smart pot and a smart stove disclosed in an embodiment of the present invention. Figure 1The described method can be applied to a control system, wherein the control system includes a stove end and a pot end, which is not limited in the embodiment of the present invention. Figure 1 As shown, the low-power control method for the pairing process of the smart pot and the smart stove includes the following operations: 101. The cooker end determines the latest pot address information corresponding to the target burner included in the target cooker, and sends the latest pot address information to the cooker end.

[0029] Optionally, the target cooker may include one or more burners, and all burners include the target burner, which is not limited in this embodiment of the present invention.

[0030] Optionally, the latest pot address information is used to represent the communication address for communicating with the target pot placed on the target burner in the current scenario; further, the pot address information is obtained by performing a corresponding dynamic random generation operation of the communication address based on the identity information corresponding to the target pot located on the target burner, and the identity information may include but is not limited to one or more of the target pot's exclusive location information, exclusive usage information, and other exclusive configuration information; further, each pot address information is independent and non-repetitive, and is not limited in the embodiments of the present invention.

[0031] 102. The pot end determines the stored pot address information corresponding to the target pot currently located on the target burner, and performs a corresponding communication address update operation on the target pot according to the latest pot address information and the stored pot address information.

[0032] Optionally, the stored cookware address information may be understood as the communication address configured for the target cookware in the previous scenario, and the latest cookware address information may be understood as the communication address required to be configured for the current / future scenario of the target cookware, which is not limited in the embodiment of the present invention.

[0033] Further optionally, the cook end performs a corresponding communication address update operation on the target cook based on the latest cook address information and the stored cook address information, which may include: The cooker end replaces the cooker address information of the target cooker from the stored cooker address information with the latest cooker address information.

[0034] 103. When the target cooker is in an ignition state, the cooker end and the pot end perform corresponding pairing and communication establishment operations based on the target cooker and the target pot.

[0035] Optionally, for example: when the target stove is in the ignition state and the current pot address information of the target pot meets the preset communication requirements, the stove end and the pot end perform corresponding pairing and communication establishment operations based on the target stove and the target pot; further, the current pot address information of the target pot meets the preset communication requirements, for example: the current pot address information of the target pot can accurately reflect the information of the actual burner where it is located, then it is determined that the communication requirements are met, and the embodiments of the present invention do not limit this.

[0036] Further optionally, the method may further include the following operations: The cooker side generates a pairing communication establishment trigger instruction after the target cooker performs the corresponding communication address update operation, and sends the pairing communication establishment trigger instruction to the cooker side; Furthermore, when the cooker side detects that the target cooker is in the ignition state and receives the pairing communication establishment trigger instruction, the cooker side and the pot side perform corresponding pairing and communication establishment operations based on the target cooker and the target pot.

[0037] It can be seen that the low-power control method for the pairing process of the smart pot and the smart stove described in the embodiment of the present invention can realize the pairing and communication establishment functions between the pot end and the stove end through the communication address information of the target pot, which is conducive to improving the accuracy and reliability of the pairing and communication establishment between the stove and the pot, as well as improving the efficiency and convenience of the pairing and communication establishment between the stove and the pot, and thus helping to improve the accuracy and efficiency of obtaining feedback information from the pot during the cooking process, thereby helping to optimize the cooking effect of the pot and the stove, and helping to improve the timeliness, accuracy and efficiency of cooking adjustments. In addition, it is conducive to realizing energy-saving and low-power pairing and application of pots and stoves.

[0038] In an optional embodiment, before the cookware end performs a corresponding communication address update operation on the target cookware based on the latest cookware address information and the stored cookware address information, the method may further include the following operations: The cooker end determines whether the target cooker and the target cooker meet the preset pairing communication conditions based on the latest cooker address information and the stored cooker address information; When it is determined that the target cooker and the target cooker do not meet the pairing communication conditions, the cooker end executes a corresponding communication address update operation for the target cooker based on the latest cooker address information and the stored cooker address information; When it is determined that the target cooker and the target pot meet the pairing communication conditions and when the target cooker is in the ignition state, the cooker end and the pot end perform corresponding pairing and communication establishment operations based on the target cooker and the target pot.

[0039] It can be seen that this optional embodiment can determine whether the target stove and the target pot meet the pairing communication conditions. If so, the pairing and communication establishment operations are directly executed. Otherwise, the communication address update operation is first executed before the subsequent pairing and communication establishment operations are performed. This is beneficial to improving the timeliness, accuracy and efficiency of the communication address update of the target pot, and further beneficial to improving the accuracy and reliability of the current communication address information of the target pot, thereby helping to improve the accuracy and reliability of the pairing and communication establishment between the target stove and the target pot.

[0040] In another optional embodiment, the cooker end determines whether the target cooker and the target cooker meet the preset pairing communication conditions based on the latest cooker address information and the stored cooker address information, which may include: The pot end determines whether the latest pot address information and the stored pot address information meet the preset unified location indication condition; When it is determined that the latest pot address information and the stored pot address information meet the unified location indication condition, the pot end determines that the target cooker and the target pot meet the preset pairing communication condition; When it is determined that the latest pot address information and the stored pot address information do not satisfy the unified position indication condition, the pot end determines that the target cooker and the target pot do not satisfy the preset pairing communication condition.

[0041] Optionally, the unified location indication condition can be understood as whether the configured pot address of the target pot can indicate its latest required pot address. If it can, the unified location indication condition is met; if not, the unified location indication condition is not met, that is, if it can be indicated, there is no need to update the communication address again, and the embodiment of the present invention does not limit this.

[0042] Further optionally, the method may further include the following operations: When it is determined that the latest pot address information and the stored pot address information do not meet the unified location indication condition, the pot end determines whether there is a special communication connection binding relationship between the target cooker and the target pot; When it is determined that the target cooker and the target pot have a special communication connection binding relationship, the pot end determines that the target cooker and the target pot meet the preset pairing communication conditions; When it is determined that there is no special communication connection binding relationship between the target cooker and the target cooker, the cooker end determines whether the target cooker and the target cooker meet the preset pairing communication condition.

[0043] Optional, special communication connection bundling relationship, for example: the pot end can be based on the target pot's own independent communication identifier and the stove end for sensing and identification, and then pairing and communication establishment, at this time only needs to be connected through the target pot's independent communication identifier, without being limited to the pot communication address configured by the target pot itself, and the embodiment of the present invention does not limit this.

[0044] It can be seen that this optional embodiment can determine the result of the unified position indication condition of the latest pot address information and the stored pot address information, and then determine the result of the pairing communication condition being met, which is conducive to improving the comprehensiveness and rationality of the method of determining the result of the pairing communication condition being met, and thus is conducive to improving the accuracy and reliability of the determined result of the pairing communication condition being met.

[0045] In another optional embodiment, the cookware end determines whether the latest cookware address information and the stored cookware address information meet a preset unified location indication condition, which may include: The cookware end determines the first indication position according to the latest cookware address information, and determines the second indication position according to the stored cookware address information; The cookware end determines whether the first indication position matches the second indication position; When the judgment result is yes, the cookware end determines that the latest cookware address information and the stored cookware address information meet the preset unified location indication condition; When the judgment result is no, the cookware end determines that the latest cookware address information and the stored cookware address information do not meet the preset unified location indication condition.

[0046] Further optionally, before the cookware end determines the first indicated position according to the latest cookware address information and determines the second indicated position according to the stored cookware address information, the method may further include the following operations: The pot end determines whether there is a set target pot that can only be placed on a set burner for cooking when the target stove is cooking; When the judgment result is yes, the cookware end determines that the latest cookware address information and the stored cookware address information meet the preset unified location indication condition; When the judgment result is no, the above steps of determining the first indication position according to the latest cookware address information and determining the second indication position according to the stored cookware address information are performed; and determining whether the first indication position matches the second indication position.

[0047] Optionally, the first indicated position and the second indicated position may be the burner position where the target cookware is placed in an actual scenario, or may be a communication address for communication with the target cookware, which is not limited in the embodiment of the present invention.

[0048] It can be seen that this optional embodiment can determine the matching situation of the first indication position and the second indication position and then determine the result of the unified position indication condition being satisfied, which is conducive to improving the comprehensiveness and rationality of the method for determining the result of the unified position indication condition being satisfied, and thus is conducive to improving the accuracy and reliability of the determined result of the unified position indication condition being satisfied.

[0049] Example 2 See also Figure 2 , Figure 2 This is a flow chart of another low-power consumption control method for the pairing process of a smart pot and a smart stove disclosed in an embodiment of the present invention. Figure 2 The described method can be applied to a control system including a stove end and a pot end, which is not limited in the embodiment of the present invention. Figure 2 As shown, the low-power control method for the pairing process of the smart pot and the smart stove includes the following operations: 201. The cooker end determines the latest pot address information corresponding to the target burner included in the target cooker, and sends the latest pot address information to the cooker end.

[0050] 202. The pot end determines the stored pot address information corresponding to the target pot currently located on the target burner, and performs a corresponding communication address update operation on the target pot according to the latest pot address information and the stored pot address information.

[0051] 203. When the target cooker is in an ignition state, the cooker end and the pot end perform corresponding pairing and communication establishment operations based on the target cooker and the target pot.

[0052] 204. The cooker end performs corresponding information collection operations on the target cooker based on the set information collection cycle plan, obtains the first information collected in the current information collection cycle, and sends the first information to the stove end.

[0053] Optionally, the first information may include but is not limited to one or more of the target cookware's internal temperature in the current information collection period, the remaining battery power, and other information related to cooking with the cookware, etc., which is not limited in this embodiment of the present invention.

[0054] Optionally, the information collection cycle scheme may be understood as one or more information collection cycles for the target cookware and specific time information of each information collection cycle, which is not limited in the embodiment of the present invention.

[0055] Optionally, after the stove end and the pot end establish communication for the target stove and target pot, the pot end collects relevant real-time information of the target pot according to the corresponding information collection cycle, obtains first information, and reports the collected first information to the stove end, which is not limited in this embodiment of the present invention.

[0056] 205. The cooker generates an information reception feedback instruction based on the first information, and sends the information reception feedback instruction to the cooker.

[0057] Optionally, after receiving the first information, the stove end returns an information reception feedback instruction to the cooker end, which is not limited in this embodiment of the present invention.

[0058] 206. The cookware end receives the feedback instruction based on the information and performs a corresponding sleep state switching operation until the next information collection cycle.

[0059] Optionally, after receiving the information reception feedback instruction, the cookware end enters a dormant state and restarts the information collection operation in the next information collection cycle, which is not limited in the embodiment of the present invention.

[0060] In the embodiment of the present invention, for other descriptions of steps 201 to 206 , please refer to the detailed description of steps 101 to 103 in the first embodiment, which will not be repeated in the embodiment of the present invention.

[0061] It can be seen that the embodiments of the present invention can realize the pairing and communication establishment functions between the pot end and the stove end through the communication address information of the target pot, which is conducive to improving the accuracy and reliability of the pairing and communication establishment between the stove and the pot, as well as improving the efficiency and convenience of the pairing and communication establishment between the stove and the pot, and thus is conducive to improving the accuracy and efficiency of obtaining feedback information about the pot during the cooking process, thereby facilitating optimizing the cooking effect of the pot and the stove, and improving the timeliness, accuracy and efficiency of cooking adjustments. In addition, it is conducive to realizing energy-saving and low-power pairing and application of the pot and the stove; and it can also provide an information collection and feedback function. When the pot end receives the information reception feedback instruction, it executes a sleep state switching operation, which is conducive to improving the real-time, efficiency and convenience of collecting the cooking information of the pot, and is conducive to improving the timeliness, efficiency and convenience of receiving feedback on the cooking information of the pot on the stove end, and thus is conducive to improving the accuracy and timeliness of the sleep state switching of the pot end, reducing unnecessary waste of resources, and realizing low-power and energy-saving operation pairing communication.

[0062] In an optional embodiment, after the cookware end performs a corresponding information collection operation on the target cookware based on a set information collection cycle scheme and obtains the first information collected in the current information collection cycle, the method may further include the following operations: The cookware end determines the second information collected in one or more target historical information collection cycles; The cookware end determines whether the target cookware meets the preset low-demand information collection conditions based on the first information and the second information; When it is determined that the target cookware meets the low demand information collection conditions, the cookware end determines low change information based on the first information and the second information, and determines a targeted suspension collection plan based on the low change information; Among them, the targeted suspension collection scheme is used to instruct the cooker end to suspend the collection of target type information corresponding to low-change information in the target future information collection cycle.

[0063] Optionally, the target historical information collection cycle may include one or more historical information collection cycles; further, it may be multiple consecutive historical information collection cycles; further, it may be a single or consecutive previous historical information collection cycle based on the current information collection cycle, which is not limited in the embodiments of the present invention.

[0064] Optionally, the second information may include but is not limited to one or more of the target cookware's internal temperature during the target historical information collection period, the remaining battery power, and other information related to cooking with the cookware, etc., which is not limited in this embodiment of the present invention.

[0065] Optionally, when the relevant information collected for a certain type (such as temperature type) of the target cookware in multiple consecutive information collection cycles does not change much (i.e., corresponds to the above-mentioned low-change information), the relevant information of this type may not be collected in the subsequent information collection cycle to save the power consumption of the target cookware; further, according to the change pattern of the relevant information of this type collected in advance, it is predicted that the relevant information of this type of the target cookware may change in a future information collection cycle, then the collection of relevant information of this type will be restarted in the future information collection cycle, and the embodiments of the present invention are not limited to this.

[0066] It can be seen that this optional embodiment can provide a targeted pause information collection function. When it is determined that the target cookware meets the low-demand information collection conditions, a targeted pause collection plan is determined, which is beneficial to improving the execution rationality and execution targeting of the cookware cooking information collection operation, and thus is beneficial to improving the collection targeting and collection accuracy of the cookware cooking information, thereby helping to save the operating power consumption of the cookware end and realize low-power and energy-saving operation pairing communication.

[0067] In another optional embodiment, both the first information and the second information include one or more types of information; further, the cookware end determines whether the target cookware meets the preset low-demand information collection conditions based on the first information and the second information, which may include: The cooker end analyzes the degree of change before and after each type of information based on the first information and the second information; The cooker determines whether the degree of change of each type of information is greater than or equal to a preset change threshold; When it is determined that the degree of change of each type of information is less than or equal to the change degree threshold, the cookware end determines that the target cookware does not meet the preset low-demand information collection conditions; When it is determined that the degree of change of each type of information is not less than or equal to the degree of change threshold, the cookware end determines that the target cookware meets the preset low-demand information collection conditions.

[0068] Optionally, the degree of change before and after can be reflected by the specific change difference before and after, or by the frequency of the change before and after, or by the amplitude of the change before and after, which is not limited in the embodiment of the present invention.

[0069] It can be seen that this optional embodiment can determine the results of satisfying the low-demand information collection conditions based on the comparison of the degree of change before and after each type of information and the size of the corresponding threshold, which is conducive to improving the comprehensiveness and rationality of the method for determining the results of satisfying the low-demand information collection conditions, and thus is conducive to improving the accuracy and reliability of the determined results of satisfying the low-demand information collection conditions, thereby helping to improve the execution accuracy and pertinence of subsequent information collection operations triggered by the results of satisfying the low-demand information collection conditions.

[0070] In yet another optional embodiment, after the cooker end sends the first information to the stove end, the method may further include the following operations: The cooker determines the waiting time corresponding to the information receiving feedback instruction sent by the cooker; The cooker determines whether the waiting time is greater than or equal to a preset waiting time threshold; When it is determined that the waiting time is greater than or equal to the waiting time threshold, the pot end and the stove end perform corresponding communication connection disconnection operations based on the target stove and target pot and enter super power saving mode until the pairing and communication establishment trigger conditions are met. The stove end determines the latest pot address information corresponding to the target burner included in the target stove, and sends the latest pot address information to the pot end; the pot end determines the stored pot address information corresponding to the target pot currently located on the target burner, and performs corresponding communication address update operations on the target pot based on the latest pot address information and the stored pot address information; when the target stove is in the ignition state, the stove end and the pot end perform corresponding pairing and communication establishment operations based on the target stove and target pot.

[0071] Optionally, when the cooker end does not receive the information reception feedback instruction returned by the stove end within a preset time period after sending the first information, or the return time of the information reception feedback instruction returned by the stove end exceeds a preset return time threshold (that is, feedback is received but timed out), the cooker end and the stove end disconnect the communication connection between the target stove and the target cooker based on the target stove and the target cooker. This is not limited in the embodiment of the present invention.

[0072] Optionally, the waiting time may be the waiting time for the cooker end to receive the information reception feedback instruction sent by the stove end, or the waiting time for the cooker end to not receive the information reception feedback instruction sent by the stove end. This embodiment of the present invention does not limit this.

[0073] Optionally, enter the super power saving mode for a set period of time, wait for the connection conditions to be met (i.e., the pairing and communication establishment trigger conditions are met, such as changes in the specific pots and their applications on the target stove, etc.), and perform low-power connection control again. This is not limited in the embodiments of the present invention.

[0074] It can be seen that this optional embodiment can provide a communication disconnection function between the target stove and the target pot, and execute the pass connection disconnection operation when the waiting time is greater than or equal to the waiting time threshold, which is beneficial to improving the comprehensiveness and integrity of the low-power control method for the pairing process of the smart pot and the smart stove, and thus is beneficial to improving the execution timeliness and execution accuracy of the communication connection disconnection operation, which is beneficial to improving the communication control accuracy, timeliness and efficiency between the pot end and the stove end, reducing unnecessary waste of resources, and realizing low-power and energy-saving operation pairing communication.

[0075] Example 3 See also Figure 3 , Figure 3 This is a schematic diagram of a low-power control system for the pairing process of a smart pot and a smart stove disclosed in an embodiment of the present invention. Figure 3 The control system described includes a cooker end and a pot end, wherein the cooker end includes a first determination module 301, a first sending module 302, and a communication establishment module 303, and the pot end includes a second determination module 304 and an address update module 305, wherein: The first determination module 301 is used to determine the latest pot address information corresponding to the target burner included in the target stove, where the latest pot address information is obtained by performing a corresponding dynamic random generation operation of a communication address based on the identity information corresponding to the target pot located on the target burner.

[0076] The first sending module 302 is configured to send the latest cookware address information to the cookware end.

[0077] The second determining module 304 is configured to determine the stored pot address information corresponding to the target pot currently located on the target burner.

[0078] The address updating module 305 is configured to perform a corresponding communication address updating operation on the target cookware according to the latest cookware address information and the stored cookware address information.

[0079] The communication establishing module 303 is configured to perform corresponding pairing and communication establishing operations with the cooker end based on the target cooker and the target cooker when the target cooker is in an ignition state.

[0080] It can be seen that implementation Figure 3The described low-power control system for the pairing process of smart pots and smart stoves can realize the pairing and communication establishment functions between the pot end and the stove end through the communication address information of the target pot, which is conducive to improving the accuracy and reliability of the pairing and communication establishment between the stove and the pot, as well as improving the efficiency and convenience of the pairing and communication establishment between the stove and the pot, and thus helping to improve the accuracy and efficiency of obtaining feedback information from the pot during the cooking process, thereby helping to optimize the cooking effect of the pot and the stove and improving the timeliness, accuracy and efficiency of cooking adjustments. In addition, it is conducive to realizing energy-saving and low-power pairing and application of pots and stoves.

[0081] In an optional embodiment, if Figure 4 As shown, the cookware end further includes a first judgment module 306, wherein: The first judgment module 306 is used to judge whether the target cooker and the target pot meet the preset pairing communication conditions based on the latest cooker address information and the stored cooker address information before the address update module 305 performs the corresponding communication address update operation on the target cooker based on the latest cooker address information and the stored cooker address information; when it is judged that the target cooker and the target pot do not meet the pairing communication conditions, the address update module 305 performs the step of performing the corresponding communication address update operation on the target pot based on the latest cooker address information and the stored cooker address information; when it is judged that the target cooker and the target pot meet the pairing communication conditions and when the target cooker is in the ignition state, the communication establishment module 303 performs the step of performing the corresponding pairing and communication establishment operations with the pot end based on the target cooker and the target pot.

[0082] It can be seen that implementation Figure 4 The described system can determine whether the target cooker and the target cooker meet the pairing communication conditions. If so, the pairing and communication establishment operations are directly performed. Otherwise, the communication address update operation is first performed before the subsequent pairing and communication establishment operations. This is conducive to improving the timeliness, accuracy and efficiency of the communication address update of the target cooker, and further helps to improve the accuracy and reliability of the current communication address information of the target cooker, thereby helping to improve the accuracy and reliability of the pairing and communication establishment between the target cooker and the target cooker.

[0083] In another optional embodiment, Figure 4 As shown, the cooker end further includes an information collection module 307, a second sending module 308 and a state switching module 309, and the stove end further includes an instruction generation module 310, wherein: The information collection module 307 is used to perform corresponding information collection operations on the target cookware based on the set information collection cycle plan after the communication establishment module 303 and the cookware end perform corresponding pairing and communication establishment operations based on the target cookware and the target cookware, and obtain the first information collected in the current information collection cycle.

[0084] The second sending module 308 is configured to send the first information to the stove end.

[0085] The instruction generation module 310 is configured to generate an information receiving feedback instruction based on the first information.

[0086] The first sending module 302 is further configured to send an information receiving feedback instruction to the cookware end.

[0087] The state switching module 309 is configured to execute a corresponding sleep state switching operation based on the information receiving feedback instruction until the next information collection cycle.

[0088] It can be seen that implementation Figure 4 The described system can also provide an information collection and feedback function. When the cooker receives an information reception and feedback instruction, it executes a sleep state switching operation, which is conducive to improving the real-time, efficiency and convenience of collecting cooking information from the cooker, and is conducive to improving the timeliness, efficiency and convenience of receiving and feedback on the cooking information from the cooker, thereby improving the accuracy and timeliness of the sleep state switching on the cooker side, reducing unnecessary waste of resources, and realizing low-power and energy-saving operation pairing communication.

[0089] In another optional embodiment, Figure 4 As shown, the cookware end further includes a second judgment module 311, wherein: The second determination module 304 is further configured to, when the information collection module 307 performs corresponding information collection operations on the target cookware based on the set information collection cycle plan, and after obtaining the first information collected in the current information collection cycle, determine the second information collected in one or more target historical information collection cycles.

[0090] The second judgment module 311 is configured to judge whether the target cookware meets a preset low-demand information collection condition based on the first information and the second information.

[0091] The second determination module 304 is also used to determine the low-change information based on the first information and the second information when the second judgment module 311 determines that the target cookware meets the low-demand information collection conditions, and determine a targeted suspension collection plan based on the low-change information; wherein the targeted suspension collection plan is used to instruct the cookware end to suspend the collection of target type information corresponding to the low-change information in the target future information collection cycle.

[0092] It can be seen that implementation Figure 4The described system can also provide a targeted pause information collection function. When it is determined that the target cookware meets the low-demand information collection conditions, a targeted pause collection plan is determined, which is conducive to improving the rationality and targeted execution of the cookware cooking information collection operation, and thus is conducive to improving the targeted collection and accuracy of the cookware cooking information, thereby helping to save the operating power consumption of the cookware end and realize low-power and energy-saving operation pairing communication.

[0093] In yet another optional embodiment, both the first information and the second information include one or more types of information; Furthermore, the second judgment module 311 judges whether the target cookware meets the preset low-demand information collection condition based on the first information and the second information in the following manner: Analyze the degree of change before and after each type of information based on the first information and the second information; Determine whether the degree of change of each type of information is greater than or equal to a preset change threshold; When it is determined that the degree of change of each type of information is less than or equal to the change degree threshold, it is determined that the target cookware does not meet the preset low-demand information collection condition; When it is determined that the degree of change of each type of information is not less than or equal to the degree of change threshold, it is determined that the target cookware meets the preset low-demand information collection condition.

[0094] It can be seen that implementation Figure 4 The described system can also determine the results of low-demand information collection conditions being met based on the comparison of the degree of change before and after each type of information and the size of the corresponding threshold, which is conducive to improving the comprehensiveness and rationality of the method of determining the results of low-demand information collection conditions being met, and thus is conducive to improving the accuracy and reliability of the determined results of low-demand information collection conditions being met, thereby helping to improve the accuracy and pertinence of subsequent information collection operations triggered by the results of low-demand information collection conditions being met.

[0095] In another optional embodiment, Figure 4 As shown, the cookware end further includes a third judgment module 312 and a communication disconnection module 313, wherein: The second determining module 304 is further configured to determine a waiting time corresponding to receiving an information receiving feedback instruction sent by the cooker end after the second sending module 308 sends the first information to the cooker end.

[0096] The third determining module 312 is configured to determine whether the waiting time is greater than or equal to a preset waiting time threshold.

[0097] The communication disconnection module 313 is used to, when the third judgment module 312 determines that the waiting time is greater than or equal to the waiting time threshold, cause the cooker end and the stove end to perform corresponding communication connection disconnection operations based on the target cooker and the target cooker and enter the super power saving mode until the pairing and communication establishment trigger conditions are met. The stove end determines the latest pot address information corresponding to the target burner included in the target cooker and sends the latest pot address information to the cooker end; the pot end determines the stored pot address information corresponding to the target pot currently located on the target burner, and performs corresponding communication address update operations on the target pot based on the latest pot address information and the stored pot address information; when the target cooker is in the ignition state, the stove end and the pot end perform corresponding pairing and communication establishment operations based on the target cooker and the target pot.

[0098] It can be seen that implementation Figure 4 The described system can also provide a communication disconnection function between the target stove and the target pot, and execute the pass connection disconnection operation when the waiting time is greater than or equal to the waiting time threshold, which is conducive to improving the comprehensiveness and integrity of the low-power control method for the pairing process of the smart pot and the smart stove, and thus is conducive to improving the timeliness and accuracy of the execution of the communication connection disconnection operation, which is conducive to improving the accuracy, timeliness and efficiency of the communication control between the pot end and the stove end, reducing unnecessary waste of resources, and realizing low-power and energy-saving operation of pairing communication.

[0099] In another optional embodiment, the first determination module 306 determines whether the target cooker and the target cooker meet the preset pairing communication conditions based on the latest cooker address information and the stored cooker address information, specifically by: Determining whether the latest pot address information and the stored pot address information meet a preset unified location indication condition; When it is determined that the latest pot address information and the stored pot address information meet the unified location indication condition, determining that the target cooker and the target pot meet the preset pairing communication condition; When it is determined that the latest cookware address information and the stored cookware address information do not satisfy the unified position indication condition, it is determined that the target cooker and the target cookware do not satisfy the preset pairing communication condition.

[0100] It can be seen that implementation Figure 4 The described system can also determine whether the unified location indication condition of the latest pot address information and the stored pot address information is satisfied, and then determine whether the pairing communication condition is satisfied, which is conducive to improving the comprehensiveness and rationality of the method for determining the pairing communication condition satisfaction result, and thus is conducive to improving the accuracy and reliability of the determined pairing communication condition satisfaction result.

[0101] In another optional embodiment, the first determination module 306 determines whether the latest cookware address information and the stored cookware address information meet the preset unified location indication condition in the following manner: Determining a first indicated position based on the latest pot address information, and determining a second indicated position based on the stored pot address information; determining whether the first indicated position matches the second indicated position; When the judgment result is yes, determining that the latest pot address information and the stored pot address information meet the preset unified location indication condition; When the judgment result is no, it is determined that the latest cookware address information and the stored cookware address information do not meet the preset unified location indication condition.

[0102] It can be seen that implementation Figure 4 The described system can also determine the matching situation between the first indication position and the second indication position and thus determine the result of satisfying the unified position indication condition, which is conducive to improving the comprehensiveness and rationality of the method for determining the result of satisfying the unified position indication condition, and thus is conducive to improving the accuracy and reliability of the determined result of satisfying the unified position indication condition.

[0103] Example 4 See also Figure 5 , Figure 5 This is a structural diagram of another low-power control system for the pairing process of a smart pot and a smart stove disclosed in an embodiment of the present invention. Figure 5 The described system may include a server, wherein the server includes a local server or a cloud server, which is not limited in the embodiment of the present invention. Figure 5 As shown, the system may include: A memory 401 storing executable program code; a processor 402 coupled to the memory 401; Furthermore, it may also include an input interface 403 and an output interface 404 coupled to the processor 402; The processor 402 calls the executable program code stored in the memory 401 to execute the steps of the low-power control method for the pairing process of the smart pot and the smart stove described in Example 1 or Example 2.

[0104] Example 5 See also Figure 6 , Figure 6 This is a schematic diagram of the structure of a stove end disclosed in an embodiment of the present invention. Figure 6 As shown, the cooktop end may include: A memory 501 storing executable program code; a processor 502 coupled to the memory 501; The processor 502 calls the executable program code stored in the memory 501 to execute the steps of the low-power control method for the pairing process of the smart pot and the smart stove described in Example 1 or Example 2.

[0105] Example 6 See also Figure 7 , Figure 7 This is a schematic diagram of the structure of a cookware end disclosed in an embodiment of the present invention. Figure 7 As shown, the pot end may include: A memory 601 storing executable program code; a processor 602 coupled to the memory 601; The processor 602 calls the executable program code stored in the memory 601 to execute the steps of the low-power control method for the pairing process of the smart pot and the smart stove described in Example 1 or Example 2.

[0106] Example 7 An embodiment of the present invention discloses a computer storage medium that stores a computer program for electronic data exchange, wherein the computer program enables a computer to execute the steps of the low-power control method for the pairing process of a smart pot and a smart stove described in Example 1 or Example 2.

[0107] Example 8 An embodiment of the present invention discloses a computer program product, which includes a non-transitory computer-readable storage medium storing a computer program, and the computer program is operable to enable a computer to execute the steps of the low-power control method for the pairing process of a smart pot and a smart stove described in Example 1 or Example 2.

[0108] The device embodiments described above are merely illustrative, wherein the modules described as separate components may or may not be physically separate, and the 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. Those skilled in the art can understand and implement the present invention without inventive effort.

[0109] Through the detailed description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus the 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. The computer software product can be stored in a computer-readable storage medium, including 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.

[0110] Finally, it should be noted that the low-power consumption control method and system for the pairing process of a smart pot and a smart stove disclosed in the embodiment of the present invention are only preferred embodiments of the present invention, and are only used to illustrate the technical solution of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand 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. A low-power consumption control method for the pairing process of a smart pot and a smart stove, characterized in that: The method is applied to a control system including a stove end and a pot end, and the method includes: The cooker end determines the latest pot address information corresponding to the target burner included in the target cooker, and sends the latest pot address information to the cooker end, wherein the latest pot address information is obtained by performing a corresponding dynamic random generation operation of a communication address based on the identity information corresponding to the target pot located on the target burner; The pot end determines the stored pot address information corresponding to the target pot currently located on the target burner, and performs a corresponding communication address update operation on the target pot according to the latest pot address information and the stored pot address information; When the target cooker is in an ignition state, the cooker end and the cooker end perform corresponding pairing and communication establishment operations based on the target cooker and the target cooker.

2. The low-power consumption control method for the pairing process of a smart pot and a smart stove according to claim 1, characterized in that: Before the cookware end performs a corresponding communication address update operation on the target cookware based on the latest cookware address information and the stored cookware address information, the method further includes: The cooker terminal determines whether the target cooker and the target cooker meet a preset pairing communication condition based on the latest cooker address information and the stored cooker address information; When it is determined that the target cooker and the target cookware do not meet the pairing communication condition, the cookware end executes the step of performing a corresponding communication address update operation on the target cookware according to the latest cookware address information and the stored cookware address information; When it is determined that the target cooker and the target cooker meet the pairing communication condition and when the target cooker is in an ignition state, the cooker end and the cooker end perform corresponding pairing and communication establishment operations based on the target cooker and the target cooker.

3. The low-power consumption control method for the pairing process of a smart pot and a smart stove according to claim 1 or 2, characterized in that: After the cooker end and the stove end perform corresponding pairing and communication establishment operations based on the target cooker and the target cooker, the method further includes: The cooker end performs a corresponding information collection operation on the target cooker based on a set information collection cycle scheme, obtains first information collected in a current information collection cycle, and sends the first information to the cooker end; The cooker generates an information reception feedback instruction based on the first information, and sends the information reception feedback instruction to the cooker; The cookware end receives a feedback instruction based on the information and performs a corresponding sleep state switching operation until the next information collection cycle.

4. The low-power consumption control method for the pairing process of a smart pot and a smart stove according to claim 3, characterized in that: After the cookware end performs a corresponding information collection operation on the target cookware based on a set information collection cycle scheme and obtains the first information collected in the current information collection cycle, the method further includes: The cookware end determines the second information collected in one or more target historical information collection cycles; The cookware end determines whether the target cookware meets a preset low-demand information collection condition based on the first information and the second information; When it is determined that the target cookware meets the low-demand information collection condition, the cookware end determines low-change information based on the first information and the second information, and determines a targeted suspension collection plan based on the low-change information; The targeted suspension collection scheme is used to instruct the cookware end to suspend collection of target type information corresponding to the low-change information during a target future information collection period.

5. The low-power consumption control method for the pairing process of a smart pot and a smart stove according to claim 4, characterized in that: The first information and the second information both include one or more types of information; Furthermore, the cookware end determines whether the target cookware meets a preset low-demand information collection condition based on the first information and the second information, including: The cookware end analyzes the degree of change before and after each type of information according to the first information and the second information; The cookware end determines whether the degree of change of each type of information is greater than or equal to a preset change degree threshold; When it is determined that the degree of change of each type of information is less than or equal to the degree of change threshold, the cookware terminal determines that the target cookware does not meet the preset low-demand information collection condition; When it is determined that the degree of change of each type of information is not less than or equal to the degree of change threshold, the cookware end determines that the target cookware meets the preset low-demand information collection condition.

6. The low-power consumption control method for the pairing process of a smart pot and a smart stove according to claim 3, characterized in that: After the cooker end sends the first information to the stove end, the method further includes: The cooker end determines a waiting time corresponding to the time it waits to receive the information receiving feedback instruction sent by the cooker end; The cooker end determines whether the waiting time is greater than or equal to a preset waiting time threshold; When it is determined that the waiting time is greater than or equal to the waiting time threshold, the cooker end and the stove end perform corresponding communication connection disconnection operations based on the target cooker and the target cooker and enter super power saving mode until the pairing and communication establishment trigger conditions are met, and the stove end again determines the latest pot address information corresponding to the target burner included in the target cooker, and sends the latest pot address information to the cooker end; the cooker end determines the stored pot address information corresponding to the target pot currently located on the target burner, and performs corresponding communication address update operations on the target pot based on the latest pot address information and the stored pot address information; when the target cooker is in an ignition state, the cooker end and the cooker end perform corresponding pairing and communication establishment operations based on the target cooker and the target cooker.

7. The low power consumption control method for the pairing process of a smart pot and a smart stove according to claim 2, characterized in that: The cooker end determines whether the target cooker and the target cooker meet a preset pairing communication condition based on the latest cooker address information and the stored cooker address information, including: The cookware end determines whether the latest cookware address information and the stored cookware address information meet a preset unified location indication condition; When it is determined that the latest cookware address information and the stored cookware address information meet the unified location indication condition, the cookware end determines that the target cooker and the target cookware meet a preset pairing communication condition; When it is determined that the latest cookware address information and the stored cookware address information do not satisfy the unified location indication condition, the cookware end determines that the target cookware and the target cookware do not satisfy a preset pairing communication condition; Furthermore, the cookware end determines whether the latest cookware address information and the stored cookware address information meet a preset unified location indication condition, including: The cookware end determines a first indication position according to the latest cookware address information, and determines a second indication position according to the stored cookware address information; The cookware end determines whether the first indication position matches the second indication position; When the judgment result is yes, the cookware end determines that the latest cookware address information and the stored cookware address information meet a preset unified location indication condition; When the judgment result is no, the cookware end determines that the latest cookware address information and the stored cookware address information do not meet a preset unified location indication condition.

8. A low-power control system for the pairing process of a smart pot and a smart stove, characterized in that: The control system includes a cooker end and a pot end, wherein the cooker end includes a first determination module, a first sending module, and a communication establishment module, and the pot end includes a second determination module and an address update module, wherein: The first determination module is used to determine the latest pot address information corresponding to the target burner included in the target cooker, wherein the latest pot address information is obtained by performing a corresponding communication address dynamic random generation operation based on the identity information corresponding to the target pot located on the target burner; The first sending module is used to send the latest cookware address information to the cookware end; The second determining module is used to determine the stored pot address information corresponding to the target pot currently located on the target burner; The address updating module is configured to perform a corresponding communication address updating operation on the target cookware according to the latest cookware address information and the stored cookware address information; The communication establishing module is configured to perform corresponding pairing and communication establishing operations with the cooker end based on the target cooker and the target cooker when the target cooker is in an ignition state.

9. A low-power control system for the pairing process of a smart pot and a smart stove, characterized in that: The system 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 low-power control method for the pairing process of the smart pot and the smart stove as described in any one of claims 1-7.

10. A computer storage medium, characterized in that The computer storage medium stores computer instructions, which, when called, are used to execute the low-power control method for the pairing process of the smart pot and the smart stove as described in any one of claims 1-7.

Citation Information

Cited By

  • Method, device and system for linkage pairing of low-power-consumption kitchen range and range hood

    CN121357223A