Device parameter adjustment method and apparatus, air conditioner, electronic device, and program

CN122525989APending Publication Date: 2026-08-07XIAOMI TECH (WUHAN) CO LTD +2
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
XIAOMI TECH (WUHAN) CO LTD
Filing Date
2026-04-30
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

这种预设参数的方式虽然在一定程度上保证了设备的初始运行稳定性,但也存在明显的局限性

Benefits of technology

[0039]根据本公开实施例的第五方面,提供一种计算机程序,包括计算机程序,该计算机程序被处理器执行时实现本公开实施例的第一方面所述设备参数调整方法的步骤。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122525989A_ABST
    Figure CN122525989A_ABST
Patent Text Reader

Abstract

The present disclosure relates to a device parameter adjustment method, device, air conditioner, electronic device and program. The method comprises: obtaining user information of a device whose parameter is to be adjusted; determining a target parameter package matched with the user information, the target parameter package comprising at least one adjustable parameter and a target value of the adjustable parameter; and controlling the device to operate according to the target value of the adjustable parameter in the target parameter package. In this way, the individual adjustment of part of the adjustable parameters of the device can be flexibly and specifically made according to the user information of the device, the individualized needs of different users can be met, the same device can operate according to the corresponding parameters of different user needs, and the performance of the device can be improved to a certain extent.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This disclosure relates to the field of electrical technology, and in particular to a method, apparatus, air conditioner, electronic device and program for adjusting equipment parameters. Background Technology

[0002] With the widespread adoption of smart devices, device control solutions play a crucial role in fields such as smart homes and industrial automation. Currently, most devices employ edge control technology, which pre-writes relevant parameters into the device during the manufacturing stage. While this method of pre-setting parameters ensures initial operational stability to some extent, it also has significant limitations. After most devices leave the factory, these pre-set parameters cannot be changed, or can only be updated uniformly through OTA (Over-the-Air) updates. Summary of the Invention

[0003] To overcome the problems existing in related technologies, this disclosure provides a method, apparatus, air conditioner, electronic device and program for adjusting equipment parameters.

[0004] According to a first aspect of the present disclosure, a method for adjusting device parameters is provided, comprising: Obtain user information for the device whose parameters need to be adjusted; Determine a target parameter package that matches the user information, the target parameter package including at least one adjustable parameter and a target value for the adjustable parameter; Control the device to operate according to the target values ​​of the adjustable parameters in the target parameter package.

[0005] The above technical solution involves first acquiring user information for the home appliance whose parameters need adjustment; then determining a target parameter package that matches the user information; and finally, controlling the device to operate according to the target values ​​of the adjustable parameters in the target parameter package. This allows for flexible and targeted adjustment of some adjustable parameters of the device based on user information, meeting personalized user needs and enabling the same device to operate according to parameters corresponding to different user requirements, thereby improving device performance to a certain extent.

[0006] In some possible implementations, the user information includes at least one of the following: user age, preference information, user gender, user weight, and physical condition information.

[0007] In this way, by determining the target parameter package that matches different user information, the adaptability and flexibility of the device are improved, enabling the device to operate differently according to different user information, thus broadening the application scope of the device and enhancing its versatility and practicality.

[0008] In some possible implementations, determining the target parameter package that matches the user information includes: In response to the user's age being in a first age group, the first cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The first cooling parameter package includes adjustable parameters related to cooling. In response to the user's age being in the second age group, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the user's age being in the third age group, the third cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

[0009] Thus, determining different cooling parameter packages as target parameter packages based on the user's age group is a targeted and intelligent method for determining target parameter packages. It eliminates the need for users to set these parameters themselves and optimizes the user experience for users of different age groups.

[0010] In some possible implementations, determining the target parameter package that matches the user information includes: In response to the preference information indicating a weak preferred cooling effect, the first cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The first cooling parameter package includes adjustable parameters related to cooling. In response to the preference information indicating a strong preference for cooling effect, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the preference information indicating a moderate preferred cooling effect, a third cooling parameter package with adjusted parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than that when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

[0011] In this way, different cooling parameter packages can be set as target parameter packages according to different user preferences for operation. It supports setting target parameter packages according to user preferences, providing a personalized way to determine target parameter packages for different users and optimizing the user experience for users with different preferences.

[0012] In some possible implementations, determining the target parameter package that matches the user information includes: In response to the user's gender being the first gender, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the user's gender being the second gender, a third cooling parameter package with adjusted parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

[0013] In this way, different cooling parameter packages can be set as target parameter packages based on the user's gender. This supports setting target parameter packages according to the differences in user gender, which is a targeted and intelligent way of determining target parameter packages and optimizes the user experience for users of different genders.

[0014] In some possible implementations, determining the target parameter package that matches the user information includes: In response to the user's weight being within a first preset range, the fourth cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The fourth cooling parameter package includes adjustable parameters related to cooling. In response to the user's weight being within a second preset range, the fifth cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The fifth cooling parameter package includes adjustable parameters related to cooling.

[0015] In this way, different cooling parameter packages are determined as target parameter packages based on the user's weight. This supports setting target parameter packages according to the differences in user weight, which is a targeted and intelligent way of determining target parameter packages and optimizes the user experience for users of different weights.

[0016] In some possible implementations, determining the target parameter package that matches the user information includes: In response to the physical condition information indicating an allergic constitution, the adjusted fresh air parameter package is determined as the target parameter package. The air quality of the device operating based on the target parameter package is better than the air quality operating based on the initial fresh air parameter package. The fresh air parameter package includes adjustable parameters related to fresh air.

[0017] Thus, when a user has allergies, the system supports setting the adjusted fresh air parameter package as the target parameter package for operation. This takes into account the user experience of allergy sufferers, provides a unique way to use the equipment specifically for them, optimizes their user experience, and to some extent increases user return rates.

[0018] In some possible implementations, the user information of the device for obtaining the parameters to be adjusted includes: In response to a parameter optimization request, obtain user information for the device whose parameters need to be adjusted.

[0019] In this way, the device will only start acquiring user information and adjusting parameters when it receives a parameter optimization request, avoiding unnecessary data collection and processing when not needed, thus saving the device's computing resources and power.

[0020] In some possible implementations, the method includes at least one of the following: Periodically generate the parameter optimization requests; The parameter optimization request is generated based on the user's request to optimize the parameters; or The parameter optimization request is generated based on the user's preferences when using the device.

[0021] In this way, parameter optimization requests can be generated flexibly, which in turn can trigger device parameter adjustment operations, significantly improving device operating efficiency, reliability, and user experience.

[0022] In some possible implementations, the method is executed by a server, and controlling the device to operate according to the target value of the adjustable parameter in the target parameter package includes: The target parameter packet is sent to the device to instruct the device to operate according to the target value of the adjustable parameter in the target parameter packet.

[0023] In this way, the server executes the device parameter adjustment method, which significantly reduces the storage and computing burden on the device, allowing the device to focus on its core functions and reducing the device's maintenance costs and resource consumption.

[0024] In some possible implementations, the device includes an outdoor unit and a plurality of indoor units connected to the outdoor unit, and the target parameter package includes a target parameter package for each group of air conditioning units, each group of air conditioning units including the outdoor unit and at least one of the indoor units; Sending the target parameter packet to the device includes: The target parameter packets are sent sequentially to each group of air conditioning units; The indoor unit of each air conditioning unit operates according to the target parameter package received by the air conditioning unit of that group, and the outdoor unit operates according to the target value of the adjustable parameter in the last received target parameter package.

[0025] In some possible implementations, the method is performed by the device.

[0026] In this way, device parameters can be adjusted directly on the device, avoiding delays caused by transmitting target parameter packets, thus significantly improving the real-time performance and response speed of device parameter adjustments.

[0027] In some possible implementations, the device includes a primary storage area and a backup storage area, the primary storage area being used to store at least standard values ​​of adjustable parameters of the device, and the backup storage area being used to store at least the current values ​​of the adjustable parameters. Controlling the device to operate according to the target value of the adjustable parameter in the target parameter package includes: The current value of the first parameter in the backup storage area is adjusted to the target value of the adjustable parameter in the target parameter package. The device operates according to the target value of the first parameter and the target value of the second parameter. The first parameter is any parameter in the adjustable parameters, and the second parameter is any parameter other than the first parameter. The target value of the second parameter is the standard value of the second parameter in the main storage area, or the current value of the second parameter in the backup storage area.

[0028] Thus, parameter adjustment is achieved by dividing the device's storage area into a primary storage area and a backup storage area. The primary storage area stores the standard values ​​of the device's adjustable parameters, while the backup storage area stores the current values. This separate storage approach allows for independent management of firmware and parameters, simplifying the parameter adjustment process. When it is necessary to adjust the first adjustable parameter, the current value of the first parameter in the backup storage area can be directly adjusted to the target value, achieving parameter adjustment without remote upgrades or complex operations. After adjustment, the device can operate according to the target values ​​of the first parameter and the second parameter (excluding the first parameter). This allows for parameter adjustment without remote upgrades, enabling rapid response to customer needs, resolution of complaints, and fulfillment of personalized user requirements, thereby improving the user experience.

[0029] In some possible implementations, the method further includes: For each of the second parameters, if the standard value and the current value of the second parameter are the same, then the standard value or the current value of the second parameter is determined as the target value of the second parameter; if the standard value and the current value of the second parameter are different, then the current value of the second parameter is determined as the target value of the second parameter.

[0030] In some possible implementations, the adjustable parameter includes at least one of an extreme parameter, a default parameter, and an initial parameter.

[0031] In some possible implementations, determining the target parameter package that matches the user information includes: Based on the preset correspondence between user information and parameter packages, determine the target parameter package corresponding to the user information; and / or The user information is input into a pre-trained parameter package determination model to obtain the target parameter package output by the parameter package determination model.

[0032] Thus, two methods for determining the target parameter package are provided: one is to determine the target parameter package corresponding to the user information based on the preset correspondence between user information and parameter package, and the other is to determine the target parameter package corresponding to the user information based on a pre-trained parameter package determination model. This supports the use of different determination methods in different usage scenarios, enriches the methods for determining the target parameter package, and optimizes the user experience.

[0033] According to a second aspect of the present disclosure, a device parameter adjustment apparatus is provided, comprising: The acquisition module is configured to acquire user information about the device whose parameters are to be adjusted. The determination module is configured to determine a target parameter package that matches the user information, the target parameter package including at least one adjustable parameter and a target value of the adjustable parameter; The control module is configured to control the device to operate according to the target values ​​of the adjustable parameters in the target parameter package.

[0034] In some possible implementations, the user information includes at least one of the following: user age, preference information, user gender, user weight, and physical condition information.

[0035] In some possible implementations, the acquisition module is configured to: In response to a parameter optimization request, obtain user information for the device whose parameters need to be adjusted.

[0036] In some possible implementations, the apparatus further includes: a generation module; The generation module is configured to perform at least one of the following: Periodically generate the parameter optimization requests; The parameter optimization request is generated based on the user's request to optimize the parameters; or The parameter optimization request is generated based on the user's preferences when using the device.

[0037] According to a third aspect of the present disclosure, an air conditioner is provided, the air conditioner being configured to receive adjusted parameters, the adjusted parameters being obtained according to the device parameter adjustment method described in the first aspect of the present disclosure.

[0038] According to a fourth aspect of the present disclosure, an electronic device is provided, comprising: processor; Memory used to store processor-executable instructions; The processor is configured to instruct the instructions to cause the electronic device to perform the steps of the device parameter adjustment method as described in the first aspect of the present disclosure.

[0039] According to a fifth aspect of the present disclosure, a computer program is provided, including a computer program that, when executed by a processor, implements the steps of the device parameter adjustment method described in the first aspect of the present disclosure.

[0040] It should be understood that the above general description and the following detailed description are exemplary and explanatory only, and are not intended to limit this disclosure. Attached Figure Description

[0041] The accompanying drawings, which are incorporated in and form a part of this specification, illustrate embodiments consistent with this disclosure and, together with the description, serve to explain the principles of this disclosure.

[0042] Figure 1 This is a flowchart illustrating a device parameter adjustment method according to an exemplary embodiment.

[0043] Figure 2 This is a block diagram illustrating a device parameter adjustment apparatus according to an exemplary embodiment.

[0044] Figure 3 This is a block diagram illustrating an electronic device according to an exemplary embodiment.

[0045] Figure 4 This is a block diagram illustrating a server according to an exemplary embodiment. Detailed Implementation

[0046] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numerals in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this disclosure. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this disclosure as detailed in the appended claims.

[0047] It should be noted that all actions involving the acquisition of signals, information, or data in this disclosure are carried out in compliance with the relevant data protection laws and policies of the country where the location is situated, and with authorization from the owner of the relevant device.

[0048] Currently, it is not possible to flexibly adjust individual adjustable parameters for specific devices. However, different users may have different preferences for certain parameters of the device, and the current solution cannot meet this personalized need.

[0049] In view of this, this disclosure provides a method, apparatus, air conditioner, electronic device, and program for adjusting device parameters. First, user information of the household appliance whose parameters need to be adjusted is obtained. Next, a target parameter package matching the user information is determined. Finally, the device is controlled to operate according to the target values ​​of the adjustable parameters in the target parameter package. In this way, some adjustable parameters of the device can be flexibly and specifically adjusted based on the user information, meeting the personalized needs of users and enabling the same device to operate according to parameters corresponding to different user needs, thereby improving device performance to a certain extent.

[0050] Figure 1 This is a flowchart illustrating a device parameter adjustment method according to an exemplary embodiment. Figure 1As shown, the method for adjusting equipment parameters may include the following steps.

[0051] In step S11, user information of the device whose parameters are to be adjusted is obtained.

[0052] In one embodiment, the device parameter adjustment method can be executed by the device's server, which can directly obtain user information or obtain user information from the device; that is, the device reports user information to the server.

[0053] In another embodiment, the device parameter adjustment method can be executed by the device, which has the ability to acquire user information.

[0054] For example, the device whose parameters need to be adjusted can be a home appliance, such as an air conditioning unit (e.g., an air conditioner, a smart fan light), a smart refrigerator, a smart washing machine, a smart water heater, etc.

[0055] In one embodiment, user information of the device whose parameters are to be adjusted can be obtained in real time. When the user information does not match the parameter values ​​of the parameters currently running on the device, a target parameter package that matches the user information is determined.

[0056] In another embodiment, user information of the device whose parameters are to be adjusted can be obtained according to the parameter optimization request. That is, obtaining the user information of the device whose parameters are to be adjusted may include: obtaining the user information of the device whose parameters are to be adjusted in response to the parameter optimization request.

[0057] In this embodiment, parameter adjustment can begin when parameter optimization is required; that is, user information of the device whose parameters need to be adjusted is obtained when a parameter optimization request is received.

[0058] In this way, the device will only start acquiring user information and adjusting parameters when it receives a parameter optimization request, avoiding unnecessary data collection and processing when not needed, thus saving the device's computing resources and power.

[0059] In this embodiment, the method may include at least one of the following: Periodically generate the parameter optimization requests; The parameter optimization request is generated based on the user's request to optimize the parameters; or The parameter optimization request is generated based on the user's preferences when using the device.

[0060] In one implementation, parameter optimization requests can be generated periodically, for example, once every 30 days, that is, the parameters of the device can be adjusted once every 30 days.

[0061] In another implementation, a parameter optimization request is generated based on the user's request to optimize parameters. For example, when the air conditioner's cooling, heating, or dehumidification effects do not meet the user's needs, the user can actively trigger an operation to request parameter optimization, such as by clicking a preset parameter optimization control to generate a parameter optimization request.

[0062] In another implementation, a parameter optimization request can be generated based on the user's device usage preferences. For example, if the user prefers to set the air conditioner temperature particularly low in summer, such as 17°C, a parameter optimization request can be generated to identify a cooling parameter package with better cooling performance as the target parameter package.

[0063] In this way, parameter optimization requests can be generated flexibly, which in turn can trigger device parameter adjustment operations, significantly improving device operating efficiency, reliability, and user experience.

[0064] In step S12, a target parameter package matching the user information is determined. The target parameter package includes at least one adjustable parameter and a target value for the adjustable parameter.

[0065] To ensure the normal operation of the equipment and avoid equipment malfunctions caused by parameter adjustments, this disclosure distinguishes between adjustable parameters and fixed parameters in the equipment. Adjustable parameters refer to those that can be flexibly adjusted according to user needs, while fixed parameters refer to those that are preset during the equipment production stage and cannot be changed during equipment operation. In this disclosure, only the adjustable parameters of the equipment are adjusted, while the fixed parameters remain unchanged.

[0066] Furthermore, to achieve fine-tuning of equipment functions, adjustable parameters can be pre-categorized into multiple specialized parameter packages based on the functional characteristics associated with different parameters. Each parameter package is configured for a specific function of the equipment, ensuring that the relevant parameters can be precisely adjusted for that function. For example, a cooling parameter package can be pre-set to adjust the cooling effect, with adjustable parameters specifically designed to regulate the equipment's cooling performance to meet the cooling requirements of different users. Similarly, a heating parameter package can be pre-set to adjust the heating effect, with adjustable parameters specifically designed to regulate the equipment's heating performance to meet the heating requirements of different users. A dehumidification parameter package can also be pre-set to adjust the dehumidification effect, with adjustable parameters specifically designed to regulate the equipment's dehumidification performance to meet the dehumidification requirements of different users. Finally, a fresh air parameter package can be pre-set to optimize the fresh air effect, with adjustable parameters specifically designed to regulate the equipment's fresh air performance to meet the fresh air requirements of different users. Noise parameter packages can also be pre-set to adjust the noise reduction effect. The adjustable parameters in the noise parameter package are specifically used to adjust the noise reduction effect of the equipment to meet the noise reduction requirements of different users. Power consumption parameter packages can also be pre-set to adjust the power consumption of the equipment to meet the power consumption requirements of different users.

[0067] The target parameter package should not only include adjustable parameters but also their target values ​​under different user information. Specifically, the target parameter package should preset corresponding target values ​​based on different user information to ensure that each adjustable parameter in the package achieves optimal performance under specific user needs. The preset target values ​​can be determined based on parameters that vary according to user needs. For example, the target values ​​can be calculated by establishing a functional relationship between adjustable parameters and different user information; alternatively, the equipment's engineers or technicians can preset corresponding target values ​​for different user information based on experience.

[0068] In this disclosure, after obtaining device user information, a target parameter package matching the user information can be determined. This target parameter package includes adjustable parameters matching the user information and a target value for each adjustable parameter.

[0069] In one implementation, determining the target parameter package that matches the user information may include: Based on the preset correspondence between user information and parameter packages, determine the target parameter package corresponding to the user information; and / or The user information is input into a pre-trained parameter package determination model to obtain the target parameter package output by the parameter package determination model.

[0070] For example, the correspondence between different user information and parameter packages can be pre-set or configured. After the user information is determined, the target parameter package corresponding to the user information can be determined according to the correspondence.

[0071] For another example, a parameter package determination model can be pre-trained using machine learning techniques. After determining the user information, the user information is input into the parameter package determination model to obtain the target parameter package output by the parameter package determination model.

[0072] In this way, the target parameter package that matches the user information can be automatically determined.

[0073] In step S13, the control device operates according to the target values ​​of the adjustable parameters in the target parameter package.

[0074] Because the target parameter package is a parameter package matched with user information, the device, when running based on the target values ​​in the target parameter package, can automatically adjust its operating parameters according to different user information, thereby ensuring that the device's performance reaches its optimal level under different user needs. This not only improves the device's operating efficiency and stability but also allows for personalized adjustments based on specific user requirements. For example, in air conditioners, by detecting different user information, the air conditioner's operating parameters are automatically adjusted to maintain optimal operating conditions. This allows the device to quickly adapt to different users, maintaining good performance under varying user needs. Furthermore, this parameter adjustment can be customized according to individual user needs. For multiple devices of the same type, when the user information corresponding to each device is different, each device operates according to its own parameter values, achieving a personalized experience for each user and further enhancing the device's applicability and user experience.

[0075] The above technical solution involves first acquiring user information for the home appliance whose parameters need adjustment; then determining a target parameter package that matches the user information; and finally, controlling the device to operate according to the target values ​​of the adjustable parameters in the target parameter package. This allows for flexible and targeted adjustment of some adjustable parameters of the device based on the user information, meeting personalized user needs and enabling the same device to operate with parameters corresponding to different user requirements, thereby improving device performance to a certain extent.

[0076] In one implementation, the user information includes at least one of the following: user age, preference information, user gender, user weight, and physical condition information.

[0077] In this embodiment, a target parameter package matching different user information can be determined. Regardless of differences in age, gender, weight, user preferences, or physical condition, the device can make corresponding adjustments based on the target values ​​in the target parameter package.

[0078] In this way, by determining the target parameter package that matches different user information, the adaptability and flexibility of the device are improved, enabling the device to operate differently according to different user information, thus broadening the application scope of the device and enhancing its versatility and practicality.

[0079] In one implementation, determining the target parameter package that matches the user information includes: In response to the user's age being in a first age group, the first cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The first cooling parameter package includes adjustable parameters related to cooling. In response to the user's age being in the second age group, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the user's age being in the third age group, the third cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

[0080] The first age group can be the age group representing the elderly, such as those over 64 years old; the second age group can be the age group representing young adults, such as those aged 18 to 39; and the third age group can be the age group representing infants, such as those under 1 year old.

[0081] For the first age group representing the elderly, users are more sensitive to cold. Therefore, the first cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package.

[0082] For the second age group, which represents young adults, users prefer cooler temperatures. Therefore, the second cooling parameter package with adjusted parameter values ​​was determined as the target parameter package.

[0083] For the third age group representing infants, users require a gentler airflow experience. Therefore, the third cooling parameter package with adjusted parameter values ​​was determined as the target parameter package.

[0084] The refrigeration parameter package includes adjustable parameters related to refrigeration, such as compressor frequency, indoor and outdoor fan speeds, and expansion valve opening. In other words, these adjustable parameters related to refrigeration can be understood as parameters that affect the refrigeration effect.

[0085] The initial cooling parameter package includes initial values ​​for adjustable cooling-related parameters. These values ​​can be the default values ​​from the factory or values ​​obtained after a firmware upgrade. The target parameter package includes target values, which are adjusted based on the initial parameter values ​​according to different needs, using optimization algorithms or experience. Adjustments can include increasing or decreasing the initial parameter values ​​to achieve better cooling performance.

[0086] In this embodiment, the parameters affecting the cooling effect in the first, second, and third cooling parameter packages can be the same or different. Comparatively, the first cooling parameter package provides a weaker cooling effect, the second cooling parameter package provides a stronger cooling effect, and the third cooling parameter package provides a milder cooling effect. The specific cooling effect is achieved by setting different adjustable parameters or different target values ​​for the same adjustable parameter; this exemplary embodiment does not impose any special limitations on this.

[0087] In this way, the control device runs the first cooling parameter package after adjusting the parameter values ​​in the first age group, the second cooling parameter package after adjusting the parameter values ​​in the second age group, and the third cooling parameter package after adjusting the parameter values ​​in the third age group. It runs different target parameter packages according to the needs of users of different ages, providing a targeted, differentiated and intelligent way of determining and running target parameter packages. Users do not need to set them themselves according to different ages, saving users' operating costs and usage costs, and also optimizing the user experience for users of different age groups.

[0088] In one implementation, determining the target parameter package that matches the user information includes: In response to the preference information indicating a weak preferred cooling effect, the first cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The first cooling parameter package includes adjustable parameters related to cooling. In response to the preference information indicating a strong preference for cooling effect, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the preference information indicating a moderate preferred cooling effect, a third cooling parameter package with adjusted parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than that when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

[0089] For users who prefer weaker cooling performance, it indicates that they are more sensitive to cold. Therefore, the first cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package.

[0090] For users who prefer strong cooling performance, this indicates that they prefer cooler temperatures. Therefore, the second cooling parameter package with adjusted parameter values ​​is determined as the target parameter package.

[0091] For users who prefer moderate cooling performance, this indicates that they need a gentler airflow experience. Therefore, the third cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package.

[0092] The refrigeration parameter package includes adjustable parameters related to refrigeration, such as compressor frequency, indoor and outdoor fan speeds, and expansion valve opening. In other words, these adjustable parameters related to refrigeration can be understood as parameters that affect the refrigeration effect.

[0093] The initial cooling parameter package includes initial values ​​for adjustable cooling-related parameters. These values ​​can be the default values ​​from the factory or values ​​obtained after a firmware upgrade. The target parameter package includes target values, which are adjusted based on the initial parameter values ​​according to different needs, using optimization algorithms or experience. Adjustments can include increasing or decreasing the initial parameter values ​​to achieve better cooling performance.

[0094] In this embodiment, the parameters affecting the cooling effect in the first, second, and third cooling parameter packages can be the same or different. Comparatively, the first cooling parameter package provides a weaker cooling effect, the second cooling parameter package provides a stronger cooling effect, and the third cooling parameter package provides a milder cooling effect. The specific cooling effect is achieved by setting different adjustable parameters or different target values ​​for the same adjustable parameter; this exemplary embodiment does not impose any special limitations on this.

[0095] In this way, the control device runs the first cooling parameter package with adjusted parameter values ​​when the user prefers a weak cooling effect, the second cooling parameter package with adjusted parameter values ​​when the user prefers a strong cooling effect, and the third cooling parameter package with adjusted parameter values ​​when the user prefers a moderate cooling effect. By running different target parameter packages according to different user preferences, it provides a targeted, differentiated, and intelligent method for determining and running target parameter packages. Users do not need to set them according to their preferences, which saves users' operating and usage costs and optimizes the user experience for users with different preferences.

[0096] In one implementation, determining the target parameter package that matches the user information includes: In response to the user's gender being the first gender, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the user's gender being the second gender, a third cooling parameter package with adjusted parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

[0097] The first gender can be male; the second gender can be female.

[0098] Generally, men tend to prefer users with stronger cooling effects; therefore, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package.

[0099] Women generally prefer users with moderate cooling performance; therefore, the third cooling parameter package after adjusting the parameter values ​​was determined as the target parameter package.

[0100] The refrigeration parameter package includes adjustable parameters related to refrigeration, such as compressor frequency, indoor and outdoor fan speeds, and expansion valve opening. In other words, these adjustable parameters related to refrigeration can be understood as parameters that affect the refrigeration effect.

[0101] The initial cooling parameter package includes initial values ​​for adjustable cooling-related parameters. These values ​​can be the default values ​​from the factory or values ​​obtained after a firmware upgrade. The target parameter package includes target values, which are adjusted based on the initial parameter values ​​according to different needs, using optimization algorithms or experience. Adjustments can include increasing or decreasing the initial parameter values ​​to achieve better cooling performance.

[0102] In this embodiment, the parameters affecting the cooling effect in the second and third cooling parameter packages can be the same or different. Relatively speaking, the second cooling parameter package can provide a stronger cooling effect, while the third cooling parameter package can provide a more moderate cooling effect. The specific cooling effect can be achieved by setting different adjustable parameters or setting different target values ​​of the same adjustable parameter. This exemplary embodiment does not impose any special limitations on this.

[0103] In this way, different cooling parameter packages can be set as target parameter packages based on the user's gender. This supports setting target parameter packages according to the differences in user gender, which is a targeted and intelligent way of determining target parameter packages and optimizes the user experience for users of different genders.

[0104] In one implementation, determining the target parameter package that matches the user information includes: In response to the user's weight being within a first preset range, the fourth cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The fourth cooling parameter package includes adjustable parameters related to cooling. In response to the user's weight being within a second preset range, the fifth cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The fifth cooling parameter package includes adjustable parameters related to cooling.

[0105] The first preset interval can be a weight range that represents a user as an obese person; the second preset interval can be a weight range that represents a user as a thin person.

[0106] For the first preset range representing obese people, users prefer cooler temperatures. Therefore, the fourth cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package.

[0107] For the second preset range, which represents the thin population, users are more sensitive to cold. Therefore, the fifth cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package.

[0108] The refrigeration parameter package includes adjustable parameters related to refrigeration, such as compressor frequency, indoor and outdoor fan speeds, and expansion valve opening. In other words, these adjustable parameters related to refrigeration can be understood as parameters that affect the refrigeration effect.

[0109] The initial cooling parameter package includes initial values ​​for adjustable cooling-related parameters. These values ​​can be the default values ​​from the factory or values ​​obtained after a firmware upgrade. The target parameter package includes target values, which are adjusted based on the initial parameter values ​​according to different needs, using optimization algorithms or experience. Adjustments can include increasing or decreasing the initial parameter values ​​to achieve better cooling performance.

[0110] In this embodiment, the parameters affecting the cooling effect in the fourth and fifth cooling parameter packages can be the same or different. Relatively speaking, the fourth cooling parameter package can bring a stronger cooling effect, while the fifth cooling parameter package can bring a weaker cooling effect. The specific cooling effect can be achieved by setting different adjustable parameters or setting different target values ​​of the same adjustable parameters. This exemplary embodiment does not make any special limitations in this regard.

[0111] In this way, different cooling parameter packages are determined as target parameter packages based on the user's weight. This supports setting target parameter packages according to the differences in user weight, which is a targeted and intelligent way of determining target parameter packages and optimizes the user experience for users of different weights.

[0112] In one implementation, determining the target parameter package that matches the user information includes: In response to the physical condition information indicating an allergic constitution, the adjusted fresh air parameter package is determined as the target parameter package. The air quality of the device operating based on the target parameter package is better than the air quality operating based on the initial fresh air parameter package. The fresh air parameter package includes adjustable parameters related to fresh air.

[0113] When a user has allergies, they are more concerned about air quality. Therefore, the fresh air parameter package with adjusted parameter values ​​is identified as the target parameter package.

[0114] The fresh air parameter package includes adjustable parameters related to fresh air intake, such as fan speed and operating mode. In other words, these adjustable parameters can be understood as those that affect the effectiveness of the fresh air intake system.

[0115] The initial fresh air parameter package includes initial values ​​for adjustable parameters related to fresh air. These values ​​can be the default values ​​from the device's factory settings or values ​​obtained after a firmware upgrade. The target parameter package includes target values, which are adjusted based on the initial parameter values ​​according to different needs, using optimization algorithms or experience. Adjustments can include increasing or decreasing the initial parameter values ​​to achieve better fresh air performance.

[0116] Thus, when a user has allergies, the system supports setting the adjusted fresh air parameter package as the target parameter package for operation. This takes into account the user experience of allergy sufferers, provides a unique way to use the equipment specifically for them, optimizes their user experience, and to some extent increases user return rates.

[0117] It should be understood that user information may also include other information, and the target parameter package can be obtained by adjusting the corresponding parameter package based on the other information. This disclosure does not specifically limit the user information.

[0118] In one embodiment, the method is executed by a server, and controlling the device to operate according to the target value of the adjustable parameter in the target parameter package includes: The target parameter packet is sent to the device to instruct the device to operate according to the target value of the adjustable parameter in the target parameter packet.

[0119] Considering the limited memory and computing power of the device, in this embodiment, the method can be executed by the server. After obtaining the user of the device, the server further determines the target parameter package that matches the user information.

[0120] It should be understood that, in addition to adjusting parameter values ​​to obtain the target parameter package after determining user information, a target parameter package matching each user information can also be pre-set. That is, the pre-set target parameter package matching each user information can be stored in the server. Then, after the server obtains the user information of the device, it determines the target parameter package matching the user information from the stored target parameter packages and sends the target parameter package to the device.

[0121] For example, the server can send a target parameter packet to the device even when the device is offline. As another example, the target parameter packet can also be sent to the device under any circumstances. In this example, the device will write the target value from the target parameter packet into the running program during idle time and use the target value to run in the next running cycle.

[0122] In this way, the server executes the device parameter adjustment method, which significantly reduces the storage and computing burden on the device, allowing the device to focus on its core functions and reducing the device's maintenance costs and resource consumption.

[0123] In one embodiment, the device can be a multi-split air conditioner, that is, the device includes an outdoor unit and a plurality of indoor units connected to the outdoor unit, and the target parameter package includes a target parameter package for each group of air conditioning units, and each group of air conditioning units includes the outdoor unit and at least one indoor unit; Sending the target parameter packet to the device includes: The target parameter packets are sent sequentially to each group of air conditioning units; The indoor unit of each air conditioning unit operates according to the target parameter package received by the air conditioning unit of that group, and the outdoor unit operates according to the target value of the adjustable parameter in the last received target parameter package.

[0124] For example, each indoor unit can send its own identifier and the identifier of the outdoor unit to the device executing the method. In this way, the device executing the method, based on the indoor unit identifier and the outdoor unit identifier sent by each indoor unit, identifies all indoor units of the same outdoor unit and the outdoor unit as a multi-split air conditioner, that is, identifies it as the device.

[0125] In a multi-split air conditioning system, an outdoor unit and at least one indoor unit can be defined as a group of air conditioning units. For example, an indoor unit and an outdoor unit can be defined as a group of air conditioning units, and for each group of air conditioning units, the target parameter package for that group of air conditioning units can be determined in the manner described above. In this way, the target parameter package for each group of air conditioning units can be obtained.

[0126] In one implementation, if the operating parameters of the outdoor unit do not need to be adjusted, a target parameter package is sent to each indoor unit. For example, the target parameter packages can be sent to multiple indoor units simultaneously, or sequentially in a certain order.

[0127] In another implementation, if the operating parameters of both the indoor and outdoor units need to be adjusted, then to ensure the outdoor unit functions properly, target parameter packages can be sent sequentially to each group of air conditioning units. The indoor unit of each group operates according to the target parameter package it receives, while the outdoor unit operates based on the target value from the last received target parameter package.

[0128] In another embodiment, the method is executed by the device. When the device has sufficient memory or computing power, the device parameters can also be adjusted on the device side. That is, when the device obtains user information, it determines a target parameter package that matches the user information, and then runs according to the target values ​​of the adjustable parameters in the target parameter package.

[0129] For example, after obtaining user information, the device can adjust the parameter values ​​based on preset parameter adjustment logic to obtain the target parameter package. The parameter adjustment logic can be an adjustment strategy set by the device's engineers or technicians.

[0130] As another example, the device pre-stores a target parameter package that matches each user's information. Therefore, in this example, the pre-set target parameter package that matches each user's information can be stored in the device. Then, after the device obtains the user information, it determines the target parameter package that matches the user information from the stored target parameter packages and runs according to the target parameter package.

[0131] In this way, device parameters can be adjusted directly on the device, avoiding delays caused by transmitting target parameter packets, thus significantly improving the real-time performance and response speed of device parameter adjustments.

[0132] In one embodiment, the device may include different storage areas, namely, the device includes a primary storage area and a backup storage area, the primary storage area being used to store at least standard values ​​of adjustable parameters of the device, and the backup storage area being used to store at least current values ​​of the adjustable parameters. Controlling the device to operate according to the target value of the adjustable parameter in the target parameter package includes: The current value of the first parameter in the backup storage area is adjusted to the target value of the adjustable parameter in the target parameter package. The device operates according to the target value of the first parameter and the target value of the second parameter. The first parameter is any parameter in the adjustable parameters, and the second parameter is any parameter other than the first parameter. The target value of the second parameter is the standard value of the second parameter in the main storage area, or the current value of the second parameter in the backup storage area.

[0133] The device's storage area is divided into a primary storage area and a backup storage area. The primary storage area stores at least the standard values ​​of the device's adjustable parameters, while the backup storage area stores at least the current values ​​of the adjustable parameters. The first parameter to be adjusted can be any parameter among the adjustable parameters. For example, the first parameter can be one or more parameters; this disclosure does not limit this.

[0134] In addition, the primary storage area may also store standard values ​​of the device's non-adjustable parameters, and the backup storage area may also store standard values ​​of the device's non-adjustable parameters; this disclosure does not limit this.

[0135] Adjustable parameters can be at least one of the extreme parameters, default parameters, and initial parameters required for equipment operation. That is, adjustable parameters refer to parameters that the user can adjust on the equipment's control device (including but not limited to: user-adjustable wind speed, temperature, mode, sweeping angle, and speed settings). The control device can include a remote control such as a remote controller, the equipment's touch interface such as the touchscreen display on the equipment itself, or the interface of an application (APP) used to control the equipment.

[0136] Assuming the device is an air conditioner, the adjustable parameters can be the device's underlying control parameters. Among these, extreme parameters can be the maximum or minimum compressor operating frequency, the maximum or minimum temperature, and the maximum or minimum fan speed for each operating mode (e.g., cooling, heating, dehumidification) set by the technician for the device. Default values ​​can be the default compressor operating frequency for different fan speeds, the default fan speed for each operating mode, the default air outlet angle for each operating mode, and the default compressor operating frequency for different temperature differences (the difference between outdoor and indoor temperatures). Initial values ​​refer to the device operating parameters set by the technician at the factory.

[0137] For example, adjustable parameters may include, but are not limited to: temperature-related parameters adjusted by non-users (e.g., maximum or minimum temperature, default temperature, initial temperature, etc.), noise-related parameters (e.g., maximum or minimum compressor operating frequency, default value, initial value, etc.), anti-condensation control-related parameters (e.g., maximum or minimum outlet air temperature, default value, initial value, etc., maximum or minimum heat exchange temperature, default value, initial value, etc.), defrosting control-related parameters (e.g., maximum or minimum defrosting temperature, default value, initial value, etc., maximum or minimum defrosting duration, default value, initial value, etc.), low-temperature cooling control-related parameters (e.g., critical temperature for cooling activation), and electric auxiliary heating control parameters, etc.

[0138] It should be understood that, in this disclosure, adjustable parameters theoretically refer to parameters other than those adjusted by the user of the device.

[0139] When the device is running, it can operate according to the target value of the first parameter and the target value of the second parameter. The second parameter is a parameter other than the first parameter, and the target value of the second parameter is either the standard value of the second parameter in the main storage area or the current value of the second parameter in the backup storage area.

[0140] The second parameter can be understood as all the adoption counts of the device during operation, excluding the first parameter (which may include adjustable parameters and non-adjustable parameters, etc.). This disclosure does not restrict what the second parameter is, as long as it is any parameter other than the first parameter that can ensure the normal operation of the device.

[0141] In this disclosure, the method may further include: For each of the second parameters, if the standard value and the current value of the second parameter are the same, then the standard value or the current value of the second parameter is determined as the target value of the second parameter; if the standard value and the current value of the second parameter are different, then the current value of the second parameter is determined as the target value of the second parameter.

[0142] If the standard value of the second parameter in the primary storage area and the current value in the backup storage area are the same, it indicates that the second parameter has not been adjusted. In this case, the standard value or the current value of the second parameter can be determined as the target value of the second parameter. If the standard value of the second parameter in the primary storage area and the current value in the backup storage area are inconsistent, it indicates that the second parameter has been adjusted between the last update and the current time based on user needs, equipment failure, or other reasons. In this case, in order to meet the needs and repair the failure, the current value of the second parameter is used when the device is running; that is, the current value of the second parameter is determined as the target value of the second parameter.

[0143] The above technical solution achieves parameter adjustment by dividing the device's storage area into a primary storage area and a backup storage area. The primary storage area stores the standard values ​​of the device's adjustable parameters, while the backup storage area stores the current parameter values. This separate storage method allows for independent management of firmware and parameters, simplifying the parameter adjustment process. When it is necessary to adjust the first adjustable parameter, the current value of the first parameter in the backup storage area can be directly adjusted to the target value, achieving parameter adjustment without remote upgrades or complex operations. After adjustment, the device can operate according to the target value of the first parameter and the current target value of the second parameter. Thus, parameter adjustment can be achieved without remote upgrades, enabling rapid response to customer needs, resolution of complaints, and fulfillment of personalized user requirements, thereby improving the user experience.

[0144] Based on the same inventive concept, this disclosure also provides a device for adjusting equipment parameters. Figure 2 This is a block diagram illustrating a device parameter adjustment apparatus according to an exemplary embodiment. (Refer to...) Figure 2 The equipment parameter adjustment device 200 includes: The acquisition module 201 is configured to acquire user information of the device whose parameters are to be adjusted. The determination module 202 is configured to determine a target parameter package that matches the user information, the target parameter package including at least one adjustable parameter and a target value of the adjustable parameter; The control module 203 is configured to control the device to operate according to the target value of the adjustable parameter in the target parameter package.

[0145] Optionally, the user information includes at least one of the following: user age, preference information, user gender, user weight, and physical condition information.

[0146] Optionally, the determining module 202 is configured to: In response to the user's age being in a first age group, the first cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The first cooling parameter package includes adjustable parameters related to cooling. In response to the user's age being in the second age group, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the user's age being in the third age group, the third cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

[0147] Optionally, the determining module 202 is configured to: In response to the preference information indicating a weak preferred cooling effect, the first cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The first cooling parameter package includes adjustable parameters related to cooling. In response to the preference information indicating a strong preference for cooling effect, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the preference information indicating a moderate preferred cooling effect, a third cooling parameter package with adjusted parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than that when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

[0148] Optionally, the determining module 202 is configured to: In response to the user's gender being the first gender, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the user's gender being the second gender, a third cooling parameter package with adjusted parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

[0149] Optionally, the determining module 202 is configured to: In response to the user's weight being within a first preset range, the fourth cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The fourth cooling parameter package includes adjustable parameters related to cooling. In response to the user's weight being within a second preset range, the fifth cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The fifth cooling parameter package includes adjustable parameters related to cooling.

[0150] Optionally, the determining module 202 is configured to: In response to the physical condition information indicating an allergic constitution, the adjusted fresh air parameter package is determined as the target parameter package. The air quality of the device operating based on the target parameter package is better than the air quality operating based on the initial fresh air parameter package. The fresh air parameter package includes adjustable parameters related to fresh air.

[0151] Optionally, the acquisition module 201 is configured to: In response to a parameter optimization request, obtain user information for the device whose parameters need to be adjusted.

[0152] Optionally, the device parameter adjustment device 200 further includes: a generation module; The generation module is configured to perform at least one of the following: Periodically generate the parameter optimization requests; The parameter optimization request is generated based on the user's request to optimize the parameters; or The parameter optimization request is generated based on the user's preferences when using the device.

[0153] Optionally, the method is executed by a server, and the control module 203 is configured to: The target parameter packet is sent to the device to instruct the device to operate according to the target value of the adjustable parameter in the target parameter packet.

[0154] Optionally, the device includes an outdoor unit and a plurality of indoor units connected to the outdoor unit, and the target parameter package includes a target parameter package for each group of air conditioning units, each group of air conditioning units including the outdoor unit and at least one of the indoor units; The control module 203 is further configured to: The target parameter packets are sent sequentially to each group of air conditioning units; The indoor unit of each air conditioning unit operates according to the target parameter package received by the air conditioning unit of that group, and the outdoor unit operates according to the target value of the adjustable parameter in the last received target parameter package.

[0155] Optionally, the method is performed by the device.

[0156] Optionally, the device includes a primary storage area and a backup storage area, the primary storage area being used to store at least standard values ​​of the adjustable parameters of the device, and the backup storage area being used to store at least the current values ​​of the adjustable parameters. The control module 203 is configured as follows: The current value of the first parameter in the backup storage area is adjusted to the target value of the adjustable parameter in the target parameter package. The device operates according to the target value of the first parameter and the target value of the second parameter. The first parameter is any parameter in the adjustable parameters, and the second parameter is any parameter other than the first parameter. The target value of the second parameter is the standard value of the second parameter in the main storage area, or the current value of the second parameter in the backup storage area.

[0157] Optionally, the device parameter adjustment device 200 further includes: a value determination module; The numerical determination module is configured as follows: For each of the second parameters, if the standard value and the current value of the second parameter are the same, then the standard value or the current value of the second parameter is determined as the target value of the second parameter; if the standard value and the current value of the second parameter are different, then the current value of the second parameter is determined as the target value of the second parameter.

[0158] Optionally, the adjustable parameters include at least one of extreme parameters, default parameters, and initial parameters.

[0159] Optionally, the determining module 202 is configured to: Based on the preset correspondence between user information and parameter packages, determine the target parameter package corresponding to the user information; and / or The user information is input into a pre-trained parameter package determination model to obtain the target parameter package output by the parameter package determination model.

[0160] Regarding the apparatus in the above embodiments, the specific manner in which each module performs its operation has been described in detail in the embodiments related to the method, and will not be elaborated upon here.

[0161] This disclosure also provides an air conditioner for receiving adjusted parameters, which are obtained according to the device parameter adjustment method provided in this disclosure.

[0162] This disclosure also provides a computer-readable storage medium having stored thereon computer program instructions that, when executed by a processor, implement the steps of the device parameter adjustment method provided in this disclosure.

[0163] This disclosure also provides an electronic device including: a processor; a memory for storing processor-executable instructions; wherein the processor is configured to instruct the instructions to cause the electronic device to perform the steps of the device parameter adjustment method of this disclosure.

[0164] Figure 3 This is a block diagram illustrating an electronic device according to an exemplary embodiment. For example, the electronic device 800 may be a mobile phone, computer, digital broadcasting terminal, messaging device, game console, tablet device, medical device, fitness equipment, personal digital assistant, etc.

[0165] Reference Figure 3 The electronic device 800 may include one or more of the following components: processing component 802, memory 804, power supply component 806, multimedia component 808, audio component 810, input / output interface 812, sensor component 814, and communication component 816.

[0166] Processing component 802 typically controls the overall operation of electronic device 800, such as operations associated with display, telephone calls, data communication, camera operation, and recording. Processing component 802 may include one or more processors 820 to execute instructions to complete all or part of the steps of the device parameter adjustment method described above. Furthermore, processing component 802 may include one or more modules to facilitate interaction between processing component 802 and other components. For example, processing component 802 may include a multimedia module to facilitate interaction between multimedia component 808 and processing component 802.

[0167] Memory 804 is configured to store various types of data to support the operation of electronic device 800. Examples of such data include instructions for any application or method operating on electronic device 800, contact data, phonebook data, messages, pictures, videos, etc. Memory 804 can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic storage, flash memory, magnetic disk, or optical disk.

[0168] Power supply component 806 provides power to various components of electronic device 800. Power supply component 806 may include a power management system, one or more power supplies, and other components associated with generating, managing, and distributing power to electronic device 800.

[0169] Multimedia component 808 includes a screen that provides an output interface between the electronic device 800 and the user. In some embodiments, the screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen may be implemented as a touchscreen to receive input signals from the user. The touch panel includes one or more touch sensors to sense touches, swipes, and gestures on the touch panel. The touch sensors may sense not only the boundaries of the touch or swipe action but also the duration and pressure associated with the touch or swipe operation. In some embodiments, multimedia component 808 includes a front-facing camera and / or a rear-facing camera. When the electronic device 800 is in an operating mode, such as a shooting mode or a video mode, the front-facing camera and / or the rear-facing camera may receive external multimedia data. Each front-facing camera and rear-facing camera may be a fixed optical lens system or have focal length and optical zoom capabilities.

[0170] Audio component 810 is configured to output and / or input audio signals. For example, audio component 810 includes a microphone (MIC) configured to receive external audio signals when electronic device 800 is in an operating mode, such as call mode, recording mode, and voice recognition mode. The received audio signals may be further stored in memory 804 or transmitted via communication component 816. In some embodiments, audio component 810 also includes a speaker for outputting audio signals.

[0171] Input / output interface 812 provides an interface between processing component 802 and peripheral interface modules, such as keyboards, click wheels, buttons, etc. These buttons may include, but are not limited to, home buttons, volume buttons, power buttons, and lock buttons.

[0172] Sensor assembly 814 includes one or more sensors for providing state assessments of various aspects of electronic device 800. For example, sensor assembly 814 can detect the on / off state of electronic device 800, the relative positioning of components such as the display and keypad of electronic device 800, changes in position of electronic device 800 or a component of electronic device 800, the presence or absence of user contact with electronic device 800, orientation or acceleration / deceleration of electronic device 800, and temperature changes of electronic device 800. Sensor assembly 814 may include a proximity sensor configured to detect the presence of nearby objects without any physical contact. Sensor assembly 814 may also include a light sensor, such as a CMOS or CCD image sensor, for use in imaging applications. In some embodiments, sensor assembly 814 may also include an accelerometer, gyroscope, magnetometer, pressure sensor, or temperature sensor.

[0173] Communication component 816 is configured to facilitate wired or wireless communication between electronic device 800 and other devices. Electronic device 800 can access wireless networks based on communication standards, such as WiFi, 2G, or 3G, or combinations thereof. In one exemplary embodiment, communication component 816 receives broadcast signals or broadcast-related information from an external broadcast management system via a broadcast channel. In one exemplary embodiment, communication component 816 also includes a near-field communication (NFC) module to facilitate short-range communication. For example, the NFC module may be implemented based on radio frequency identification (RFID) technology, Infrared Data Association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology, and other technologies.

[0174] In an exemplary embodiment, the electronic device 800 may be implemented by one or more application-specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field-programmable gate arrays (FPGAs), controllers, microcontrollers, microprocessors, or other electronic components to perform the above-described device parameter adjustment method.

[0175] In an exemplary embodiment, a non-transitory computer-readable storage medium including instructions is also provided, such as a memory 804 including instructions, which can be executed by a processor 820 of an electronic device 800 to complete the aforementioned device parameter adjustment method. For example, the non-transitory computer-readable storage medium may be a ROM, random access memory (RAM), CD-ROM, magnetic tape, floppy disk, and optical data storage device, etc.

[0176] In another exemplary embodiment, a computer program product is also provided, which includes a computer program executable by a programmable device, the computer program having a code portion for performing the device parameter adjustment method described above when executed by the programmable device.

[0177] This disclosure also provides a server, including: processor; Memory used to store processor-executable instructions; The processor is configured to instruct the instructions to cause the server to perform the steps of the device parameter adjustment method of this disclosure.

[0178] Figure 4 This is a block diagram illustrating a server according to an exemplary embodiment. (Refer to...) Figure 4 Server 1900 includes processing component 1922, which further includes one or more processors, and memory resources represented by memory 1932 for storing instructions, such as application programs, that can be executed by processing component 1922. The application programs stored in memory 1932 may include one or more modules, each corresponding to a set of instructions. Furthermore, processing component 1922 is configured to execute instructions to perform device parameter adjustment methods.

[0179] Server 1900 may also include a power supply component 1926 configured to perform power management of server 1900, a wired or wireless network interface 1950 configured to connect server 1900 to a network, and an input / output interface 1958. Server 1900 can operate on an operating system stored in memory 1932.

[0180] It should be understood that, unless otherwise specifically indicated, features of various embodiments of this disclosure described herein can be combined with each other. As used herein, the term “and / or” includes any one of the relevant listed items and any combination of any two or more; similarly, “at least one of…” includes any one of the relevant listed items and any combination of any two or more.

[0181] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In this description, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0182] It should be understood that spatial relative terms, such as “above,” “upper,” “below,” and “lower,” are used herein to describe the relationship between one element and another shown in the figures. In addition to the orientation depicted in the figures, these spatial relative terms are also intended to encompass different orientations of the device in use or operation. For example, if the device in the figures is flipped, an element described as “above” or “upper” relative to another element would be “below” or “lower” relative to that other element. Thus, depending on the spatial orientation of the device, the term “above” encompasses both above and below orientations. Devices may have other orientations (e.g., rotated 90 degrees or in other orientations), and the spatial relative terms used herein should be interpreted accordingly.

[0183] Furthermore, the term “exemplary” is used herein to mean serving as an example, instance, or illustration. Any aspect or design described herein as “exemplary” is not necessarily to be construed as advantageous compared to other aspects or designs. Rather, the use of the term “exemplary” is intended to present the concept in a concrete manner. As used herein, the term “or” is intended to mean an inclusive “or” rather than an exclusive “or.” That is, unless otherwise specified or clear from the context, “X applies A or B” is intended to mean any of the natural inclusive arrangements. That is, “X applies A or B” satisfies any of the foregoing instances if X applies A; X applies B; or both X applies A and B. Additionally, unless otherwise specified or clear from the context to refer to the singular form, the articles “a” and “an” as used in this application and the appended claims are generally understood to mean “one or more.”

[0184] Similarly, although this disclosure has been shown and described with respect to one or more implementations, equivalent variations and modifications will occur to those skilled in the art upon reading and understanding this specification and the accompanying drawings. This disclosure includes all such modifications and variations and is limited only by the scope of the claims. In particular, with respect to the various functions performed by the components described above (e.g., elements, resources, etc.), unless otherwise indicated, the terminology used to describe such components is intended to correspond to any component (functionally equivalent) that performs the specific function of the described component, even if structurally not equivalent to the disclosed structure. Furthermore, although specific features of this disclosure may have been disclosed with respect to only one of several implementations, such features may be combined with one or more other features of other implementations, as may be desired and advantageous to any given or particular application. Moreover, with regard to the terms “comprising,” “owning,” “having,” “having,” or variations thereof as used in the detailed description or claims, such terms are intended to be inclusive in a manner similar to the term “including.”

[0185] Other embodiments of this disclosure will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of this disclosure that follow the general principles of this disclosure and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this disclosure are indicated by the appended claims.

[0186] It should be understood that this disclosure is not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this disclosure is limited only by the appended claims.

Claims

1. A method for adjusting equipment parameters, characterized in that, include: Obtain user information for the device whose parameters need to be adjusted; Determine a target parameter package that matches the user information, the target parameter package including at least one adjustable parameter and a target value for the adjustable parameter; Control the device to operate according to the target values ​​of the adjustable parameters in the target parameter package.

2. The method according to claim 1, characterized in that, The user information includes at least one of the following: user age, preference information, user gender, user weight, and physical condition information.

3. The method according to claim 2, characterized in that, The determination of the target parameter package that matches the user information includes: In response to the user's age being in a first age group, the first cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The first cooling parameter package includes adjustable parameters related to cooling. In response to the user's age being in the second age group, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the user's age being in the third age group, the third cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

4. The method according to claim 2, characterized in that, The determination of the target parameter package that matches the user information includes: In response to the preference information indicating a weak preferred cooling effect, the first cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The first cooling parameter package includes adjustable parameters related to cooling. In response to the preference information indicating a strong preference for cooling effect, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the preference information indicating a moderate preferred cooling effect, a third cooling parameter package with adjusted parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than that when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

5. The method according to claim 2, characterized in that, The determination of the target parameter package that matches the user information includes: In response to the user's gender being the first gender, the second cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The second cooling parameter package includes adjustable parameters related to cooling. In response to the user's gender being the second gender, a third cooling parameter package with adjusted parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The third cooling parameter package includes adjustable parameters related to cooling.

6. The method according to claim 2, characterized in that, The determination of the target parameter package that matches the user information includes: In response to the user's weight being within a first preset range, the fourth cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The fourth cooling parameter package includes adjustable parameters related to cooling. In response to the user's weight being within a second preset range, the fifth cooling parameter package after adjusting the parameter values ​​is determined as the target parameter package. The cooling effect of the device when running based on the target parameter package is better than the cooling effect when running based on the initial cooling parameter package. The fifth cooling parameter package includes adjustable parameters related to cooling.

7. The method according to claim 2, characterized in that, The determination of the target parameter package that matches the user information includes: In response to the physical condition information indicating an allergic constitution, the adjusted fresh air parameter package is determined as the target parameter package. The air quality of the device operating based on the target parameter package is better than the air quality operating based on the initial fresh air parameter package. The fresh air parameter package includes adjustable parameters related to fresh air.

8. The method according to claim 1, characterized in that, The user information of the device for obtaining the parameters to be adjusted includes: In response to a parameter optimization request, obtain user information for the device whose parameters need to be adjusted.

9. The method according to claim 8, characterized in that, The method includes at least one of the following: Periodically generate the parameter optimization requests; The parameter optimization request is generated based on the user's request to optimize the parameters. or The parameter optimization request is generated based on the user's preferences when using the device.

10. The method according to any one of claims 1-9, characterized in that, The method is executed by a server, and controlling the device to operate according to the target value of the adjustable parameter in the target parameter package includes: The target parameter packet is sent to the device to instruct the device to operate according to the target value of the adjustable parameter in the target parameter packet.

11. The method according to claim 10, characterized in that, The device includes an outdoor unit and multiple indoor units connected to the outdoor unit, and the target parameter package includes a target parameter package for each group of air conditioning units, and each group of air conditioning units includes the outdoor unit and at least one indoor unit; Sending the target parameter packet to the device includes: The target parameter packets are sent sequentially to each group of air conditioning units; The indoor unit of each air conditioning unit operates according to the target parameter package received by the air conditioning unit of that group, and the outdoor unit operates according to the target value of the adjustable parameter in the last received target parameter package.

12. The method according to any one of claims 1-9, characterized in that, The method is performed by the device.

13. The method according to any one of claims 1-9, characterized in that, The device includes a primary storage area and a backup storage area. The primary storage area stores at least standard values ​​of the adjustable parameters of the device, and the backup storage area stores at least the current values ​​of the adjustable parameters. Controlling the device to operate according to the target value of the adjustable parameter in the target parameter package includes: The current value of the first parameter in the backup storage area is adjusted to the target value of the adjustable parameter in the target parameter package. The device operates according to the target value of the first parameter and the target value of the second parameter. The first parameter is any parameter in the adjustable parameters, and the second parameter is any parameter other than the first parameter. The target value of the second parameter is the standard value of the second parameter in the main storage area, or the current value of the second parameter in the backup storage area.

14. The method according to claim 13, characterized in that, The method further includes: For each of the second parameters, if the standard value and the current value of the second parameter are the same, then the standard value or the current value of the second parameter is determined as the target value of the second parameter; if the standard value and the current value of the second parameter are different, then the current value of the second parameter is determined as the target value of the second parameter.

15. The method according to claim 13, characterized in that, The adjustable parameters include at least one of extreme parameters, default parameters, and initial parameters.

16. The method according to claim 1, characterized in that, The determination of the target parameter package that matches the user information includes: Based on the preset correspondence between user information and parameter packages, determine the target parameter package corresponding to the user information; and / or The user information is input into a pre-trained parameter package determination model to obtain the target parameter package output by the parameter package determination model.

17. A device for adjusting equipment parameters, characterized in that, include: The acquisition module is configured to acquire user information about the device whose parameters are to be adjusted. The determination module is configured to determine a target parameter package that matches the user information, the target parameter package including at least one adjustable parameter and a target value of the adjustable parameter; The control module is configured to control the device to operate according to the target values ​​of the adjustable parameters in the target parameter package.

18. The apparatus according to claim 17, characterized in that, The user information includes at least one of the following: user age, preference information, user gender, user weight, and physical condition information.

19. The apparatus according to claim 17, characterized in that, The acquisition module is configured as follows: In response to a parameter optimization request, obtain user information for the device whose parameters need to be adjusted.

20. The apparatus according to claim 19, characterized in that, The device further includes: a generation module; The generation module is configured to perform at least one of the following: Periodically generate the parameter optimization requests; The parameter optimization request is generated based on the user's request to optimize the parameters; or The parameter optimization request is generated based on the user's preferences when using the device.

21. An air conditioner, characterized in that, The air conditioner is used to receive adjusted parameters, which are obtained by the equipment parameter adjustment method according to any one of claims 1-16.

22. An electronic device, characterized in that, include: processor; Memory used to store processor-executable instructions; The processor is configured to instruct the instructions to cause the electronic device to perform the steps of the device parameter adjustment method as described in any one of claims 1-16.

23. A computer program, characterized in that, Includes a computer program that, when executed by a processor, implements the steps of the device parameter adjustment method according to any one of claims 1-16.