Data processing method, control method and device for air treatment equipment
Through the automatic search and merging of voiceprint information in air processing equipment, the problem of waste of data resources and operation burden between different devices is solved, and better user experience and equipment control accuracy is achieved.
Patent Information
- Application Number
- CN202311864287.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-29
- Publication Date
- 2025-07-01
AI Technical Summary
Existing air processing equipment needs to re-establish the operating habit database when users change equipment or account, resulting in wasting data resources and user operation burden, and it is impossible to effectively reuse the operating habit data of different devices.
By using the voiceprint information in the user's voice data, multiple operating habit databases are automatically searched and merged, and a more comprehensive and effective merged operating habit database is generated for intelligent control of air processing equipment.
It realizes data reuse of operating habits between different devices and accounts, reduces user operation burden, and improves the accuracy of user experience and device control.
Smart Images

Figure CN120232124A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of air treatment, and particularly to a data processing method, a control method and a device for an air treatment device. Background Art
[0002] With the development of industry and the increasing demand for environmental improvement by people, the use of air treatment devices such as air conditioners has become increasingly common.
[0003] Currently, when people use an air treatment device, they need to set control instructions that meet their own needs by themselves each time to control the specific operation of the air treatment device.
[0004] It should be noted that the above introduction to the technical background is only for the convenience of clearly and completely explaining the technical solution of the present application and facilitating the understanding of those skilled in the art. It cannot be considered that the above technical solutions are well known to those skilled in the art just because these solutions are described in the background art part of the present application. Summary of the Invention
[0005] The inventors found that: Based on the existing method, an operation habit database bound to the user's user account is usually established separately for a certain air treatment device. Correspondingly, when the user logs in to the user account to use the air treatment device, the operation habit data accumulated in the above operation habit database will be referred to, and the air treatment device will be controlled accordingly.
[0006] However, when the user needs to use other air treatment devices, or logs in to other user accounts to use air treatment devices, a new operation habit database needs to be established and accumulated separately in order to control the air treatment device based on the new operation habit data. Otherwise, the user needs to set specific control instructions by themselves so that the air treatment device can operate in a manner that meets the user's needs.
[0007] In this way, on the one hand, the operation habit data accumulated by the user based on different accounts and different air treatment devices cannot be effectively reused, resulting in a waste of data resources; on the other hand, it also increases the operation burden on the user side and affects the user experience.
[0008] To solve at least one of the above problems, an embodiment of the present application provides a data processing method, a control method and a device for an air handling device. It can automatically search out multiple operation habit databases (denoted as the first operation habit databases) that match the same user based on the voiceprint information in the user voice data instead of the user account, and these databases are based on different user accounts and different devices; then, by merging the above multiple operation habit databases, a more comprehensive and better-performing merged operation habit database (denoted as the second operation habit database) is obtained; furthermore, the corresponding merged operation habit database can be determined and used according to the voiceprint information in the user voice data, so as to make full use of a large amount of operation habit data that matches the user and is accumulated based on different user accounts and different devices, and intelligently control the operation of the air handling device to accurately meet the user's needs and enable the user to obtain a better usage experience.
[0009] According to the first aspect of the embodiment of the present application, a data processing method for an air handling device is provided. The method includes: receiving first voice data; determining, according to the voiceprint information in the first voice data, multiple first operation habit databases that match the first user; merging the multiple first operation habit databases that match the first user to obtain a corresponding second operation habit database; wherein, the second operation habit database is used to control the target air handling device.
[0010] According to the second aspect of the embodiment of the present application, a control method for an air handling device is provided. The method includes: receiving second voice data; determining, according to the voiceprint information in the second voice data, a second operation habit database that matches the first user; wherein, the second operation habit database is obtained by merging multiple first operation habit databases; the first operation habit databases respectively match the voiceprint information in the second voice data; controlling the target air handling device accordingly according to the second operation habit database.
[0011] According to the third aspect of the embodiment of the present application, a data processing device for an air handling device is provided. The device includes: a first receiving module, configured to receive first voice data; a first determining module, configured to determine, according to the voiceprint information in the first voice data, multiple first operation habit databases that match the first user; a merging module, configured to merge the multiple first operation habit databases that match the first user to obtain a corresponding second operation habit database; wherein, the second operation habit database is used to control the target air handling device.
[0012] According to a fourth aspect of the embodiments of the present application, there is provided a control device for an air handling device, the device comprising: a second receiving module, configured to receive second voice data; a second determining module, configured to determine, according to the voiceprint information in the second voice data, a second operation habit database that matches a first user; wherein, the second operation habit database is obtained by merging a plurality of first operation habit databases; the first operation habit databases respectively match the voiceprint information in the second voice data; a control module, configured to perform corresponding control on a target air handling device according to the second operation habit database.
[0013] According to a fifth aspect of the embodiments of the present application, there is provided an electronic device, comprising a processor and a memory for storing processor-executable instructions, and when the processor executes the instructions, relevant steps of the control method for the air handling device and / or the data processing method for the air handling device are implemented.
[0014] According to a sixth aspect of the embodiments of the present application, there is provided a control system for an air handling device, the system comprising: a voice collection device, a target air handling device, and a server; the voice collection device collects first voice data about the target air handling device; and sends the first voice data to the server; the server determines, according to the voiceprint information in the first voice data, a plurality of first operation habit databases that match a first user; merges the plurality of first operation habit databases that match the first user to obtain a corresponding second operation habit database; wherein, the second operation habit database is used to control the target air handling device.
[0015] One of the beneficial effects of the embodiments of the present application is that: according to the voiceprint information of the first user in the first voice data, a plurality of first operation habit databases that match the first user are automatically searched for and merged, so as to make full use of the operation habit data accumulated based on different user accounts and different devices corresponding to the same first user, and obtain a relatively comprehensive and complete second operation habit database with better effects; and, according to the voiceprint information of the first user in the second voice data, the second operation habit database that is matched is automatically used to intelligently perform corresponding control on the target air handling device, so as to accurately meet the user's needs and enable the first user to obtain a better use experience.
[0016] Referring to the following description and drawings, specific embodiments of the present application are disclosed in detail, indicating the ways in which the principles of the present application can be adopted. It should be understood that the embodiments of the present application are not limited in scope thereby. Within the spirit and terms of the appended claims, the embodiments of the present application include many changes, modifications, and equivalents.
[0017] The feature information described and illustrated for one embodiment can be used in the same or similar manner in one or more other embodiments, combined with the feature information in other embodiments, or replace the feature information in other embodiments.
[0018] It should be emphasized that the term "comprising / including" when used herein refers to the presence of feature information, whole parts, steps or components, but does not exclude the presence or addition of one or more other feature information, whole parts, steps or components. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Many aspects of the present application can be better understood with reference to the following drawings. The components in the drawings are not drawn to scale, but are only for showing the principles of the present application. For the convenience of showing and describing some parts of the present application, the corresponding parts in the drawings may be enlarged or reduced. The elements and feature information described in one drawing or one embodiment of the present application can be combined with the elements and feature information shown in one or more other drawings or embodiments. In addition, in the drawings, like reference numerals denote corresponding components in several drawings and can be used to indicate the corresponding components used in more than one embodiment.
[0020] In the drawings:
[0021] Figure 1 is a flowchart of a data processing method for an air handling device according to Embodiment 1 of the present application;
[0022] Figure 2 is a schematic diagram of an embodiment when step S103 in the data processing method for an air handling device according to Embodiment 1 of the present application is specifically executed;
[0023] Figure 3 is a schematic diagram of an embodiment when step S102 in the data processing method for an air handling device according to Embodiment 1 of the present application is specifically executed;
[0024] Figure 4 is a schematic diagram of a scenario embodiment of applying the data processing method for an air handling device according to Embodiment 1 of the present application in a specific scenario;
[0025] Figure 5 is a flowchart of a control method for an air handling device according to Embodiment 2 of the present application;
[0026] Figure 6 is a schematic diagram of an embodiment when step S503 in the control method for an air handling device according to Embodiment 2 of the present application is specifically executed;
[0027] Figure 7It is a schematic diagram of another implementation manner when step S503 in the control method of the air treatment device according to Embodiment 2 of the present application is specifically executed;
[0028] Figure 8 It is a schematic diagram of a scenario implementation example of applying the control method of the air treatment device according to Embodiment 2 of the present application in a specific scenario;
[0029] Figure 9 It is a schematic diagram of a component structure of the data processing device for an air treatment device according to Embodiment 3 of the present application;
[0030] Figure 10 It is a schematic diagram of a component structure of the control device of the air treatment device according to Embodiment 4 of the present application;
[0031] Figure 11 It is a schematic diagram of a component structure of an electronic device according to Embodiment 1 or 2 of the present application;
[0032] Figure 12 It is a schematic diagram of a component structure of the control system of the air treatment device according to Embodiment 5 of the present application. Specific Embodiments
[0033] The preferred embodiments of the present application will be described below with reference to the accompanying drawings.
[0034] Embodiment 1
[0035] Embodiment 1 of the present application provides a data processing method for an air treatment device.
[0036] Figure 1 It is a schematic diagram of an implementation manner of the data processing method for an air treatment device according to Embodiment 1 of the present application. Specifically, as Figure 1 shown, the method may include the following steps:
[0037] S101: Receive first voice data;
[0038] S102: Determine multiple first operation habit databases that match the first user according to the voiceprint information in the first voice data;
[0039] S103: Merge multiple first operation habit databases that match the first user to obtain a corresponding second operation habit database; wherein, the second operation habit database is used to control the target air treatment device.
[0040] In some embodiments, the above data processing method for an air treatment device may be specifically applied to the control device side, or to the target air treatment device side, or to the user terminal side. In some scenarios, it may also be applied to the server side of the system.
[0041] In some embodiments, the above data processing method for air handling equipment can also be applied to multiple sides among the above-mentioned sides. For example, some steps of the method can be executed by local devices such as a control device, a target air handling device, or a user terminal, and some steps are executed by a server on the system side.
[0042] In some embodiments, the above target air handling device can specifically include various air handling devices that a first user needs to use and control.
[0043] The above target air handling device can include at least one of an indoor unit, a air supply device, a humidity control device, a floor heating device, and a sensor.
[0044] In some embodiments, the indoor unit is an indoor unit in an air conditioning system, and the air conditioning system can be a commercial air conditioning system or a household air conditioning system.
[0045] In some embodiments, the air conditioning system can include at least one set of outdoor units and at least one indoor unit connected to each set of outdoor units. That is to say, in the air conditioning system, there can be one or more sets of outdoor units, and each set of outdoor units includes at least one outdoor unit; for one set of outdoor units, the set of outdoor units is connected to at least one indoor unit.
[0046] For example, the air conditioning system includes one outdoor unit and one indoor unit connected to the outdoor unit.
[0047] For example, the air conditioning system includes one outdoor unit and at least two indoor units connected to the outdoor unit.
[0048] For example, the air conditioning system includes at least two outdoor units and at least two indoor units connected to the at least two outdoor units.
[0049] For example, one set of outdoor units and at least one indoor unit connected to the set of outdoor units form a refrigerant system, or multiple sets of outdoor units and at least one indoor unit respectively connected to the multiple sets of outdoor units form multiple refrigerant systems. Thus, the air conditioning system can include one refrigerant system or multiple refrigerant systems.
[0050] In some embodiments, the outdoor unit and the indoor unit can be air conditioning devices of various models, types, forms, and capacities. For example, the form of the indoor unit can be four-way air outlet, two-way air outlet, duct machine, floor air outlet, or skirting air outlet, etc.; the form of the outdoor unit can be single-fan top air outlet, double-fan top air outlet, single-fan front air outlet, or double-fan front air outlet, etc.
[0051] In some embodiments, the air supply device includes at least one of a fresh air treatment device, a total heat exchanger (e.g., with or without an internal circulation function), and a ventilation device (e.g., with or without an internal circulation function).
[0052] In some embodiments, the humidity control device has at least one of a humidifying function and a dehumidifying function. For example, the humidity control device is provided on the output side of the air supply device to adjust the humidity of the air output by the air supply device, e.g., humidify or dehumidify the air output by the air supply device, and introduce the humidified or dehumidified air into the indoor space. For example, the humidity control device has a heat exchanger therein, and the heat exchanger can operate as an evaporator.
[0053] In some embodiments, the floor heating device is connected to the outdoor unit through a refrigerant pipeline, and the floor heating device is connected to the floor heating pipeline in the indoor space through a floor heating water pipeline. For example, the outdoor unit and the floor heating device form an air source heat pump water heater, which uses the heat in the air and the operation of the compressor to heat water; the floor heating device may include a water heat exchange unit, and the refrigerant flowing out of the compressor of the outdoor unit enters the water heat exchange unit of the floor heating device through the refrigerant pipeline to exchange heat with water, so as to achieve the purpose of heating water, and the heated water is introduced into the floor heating pipeline in the indoor space through the floor heating water pipeline to heat the indoor space. In some embodiments, the outdoor unit and the floor heating device are separate or integrated.
[0054] In some embodiments, the above control device may specifically include a control terminal that is connected to the target air treatment device by wired or wireless means and can respond to user instructions to control the target air treatment device.
[0055] Specifically, for example, the above control device may be one or more of the following: a wired controller, a centralized controller, a smart speaker, a gateway, etc.
[0056] In some embodiments, the above user terminal may specifically include a front end applied to the user side that can implement functions such as data collection and data transmission. Specifically, the user terminal may be an electronic device such as a tablet computer, a mobile phone, a smart watch, etc. Or, the user terminal may also be a software application that can run on the above electronic devices, e.g., an application APP associated with the target air treatment device.
[0057] Specifically, the above-mentioned server can include a background server applied to one side of the system, which can realize functions such as data transmission and data processing. Specifically, the server can be, for example, an electronic device with data operation, storage functions, and network interaction functions. Or, the server can also be a software program running in the electronic device to provide support for data processing, storage, and network interaction. In this embodiment, the number of the servers is not specifically limited. The server can specifically be one server, or several servers, or a server cluster formed by several servers.
[0058] In some embodiments, the above-mentioned target air handling device, user terminal, and control device can be collectively referred to as local devices. Specifically, the above-mentioned local devices can be at least provided with module structures such as a voice collector, a processor, a memory, and a network communication port.
[0059] Specifically, when the data processing ability of the local device is relatively weak, the server can collect the first voice data initiated by the first user in the target space or in the adjacent area of the target space through local devices such as the target air handling device, the control device, or the user terminal deployed in the target space where the target air handling device is located; and upload the first voice data to the server. Then, the server extracts the corresponding voiceprint information from the first voice data; and determines multiple first operation habit databases that match the first user according to the voiceprint information; and merges the above multiple first operation habit databases to obtain a second operation habit database for controlling the target air handling device. Then, the above second operation habit database is provided to the control device, the target air handling device, or the user terminal. Subsequently, the target air handling device can be controlled accordingly according to the above second operation habit database, so that the operation of the target air handling device can meet the user needs of the first user.
[0060] Of course, when the data processing ability of the local device is relatively strong, local devices such as the target air handling device, the control device, or the user terminal can directly extract the voiceprint information from the collected first voice data; then, according to the voiceprint information, access and query the system database to determine multiple first operation habit databases that match the first user; and then obtain the corresponding second operation habit data for controlling the target air handling device by merging the above multiple first operation habit databases. Thus, the data processing pressure on the server side can be reduced, the time consumption caused by data interaction with the server side can be reduced, and the overall timeliness can be improved.
[0061] In some embodiments, the above-mentioned first user can be specifically understood as the user who initiates the first voice data.
[0062] In some embodiments, the above-mentioned target air handling device may specifically include an air handling device deployed within the target space or in a neighboring area outside the target space.
[0063] Among them, the above-mentioned target space may specifically be the residence of the first user or a specific room in the residence of the first user. Of course, the above-mentioned target space may also be other types of spatial areas such as the office area of the first user. In this regard, the embodiments of the present application do not make any limitations.
[0064] In some embodiments, the above-mentioned first voice data may specifically be understood as voice data that at least includes the voiceprint information of the first user and can trigger the establishment or update of an operation habit database for the target air handling device.
[0065] For example, the above-mentioned first voice data may be a voice control instruction for instructing the startup of the target air handling device initiated by the first user when using the target air handling device for the first time, or voice data for instructing the update of the operation habit database of the target air handling device initiated during the use of the target air handling device.
[0066] For another example, the above-mentioned first voice data may also be voice data collected by local device monitoring that involves negative evaluations of the operation habit database of the current target air handling device by the first user.
[0067] In some embodiments, during specific implementation, on the premise that the first user is aware and consents, the voice data in the target space can be monitored in real time; through voice command recognition, semantic recognition, keyword matching, etc., it is detected whether the above-mentioned first voice data exists in the voice data in the target space; when the above-mentioned first voice data is detected, the first voice data is collected and obtained.
[0068] In some embodiments, the multiple first operation habit databases matching the first user may respectively include operation habit data accumulated when the first user uses the air handling device based on different dimensions such as user accounts, devices (for example, air handling devices, control devices, user terminals), etc.
[0069] In some embodiments, the above-mentioned second operation habit database may specifically be understood as a database obtained by merging multiple first operation habit databases matching the first user and including operation habit data for controlling the target air handling device and conforming to the control habits of the first user for the target air handling device.
[0070] Among them, the above-mentioned operation habit data may at least include control instructions for the target air handling device that conform to the user habits of the first user corresponding to the corresponding scenario conditions.
[0071] Further, the above operation habit data may further include execution mode parameters of control instructions that are related to the specific execution of control instructions and conform to the user habits of the first user.
[0072] Among them, the execution mode parameters of the above control instructions can be specifically understood as a kind of refined execution parameters for the control instructions. Based on the above execution mode parameters, the target air handling device can be controlled more precisely and intelligently to execute specific control instructions, so that the operation of the target air handling device can better conform to user habits, making the first user more satisfied and obtaining a relatively better user experience.
[0073] For example, a certain operation habit data may include the following information: the scenario condition corresponding to a temperature higher than 20 degrees Celsius; the control instruction initiated by the first user's habit for the target air handling device is: the instruction to lower the temperature to 20 degrees Celsius; and the execution mode parameters that the first user is used to for this control instruction are: lower the temperature by 2 degrees Celsius every 10 minutes until the temperature reaches 20 degrees Celsius and then stop cooling and maintain at 20 degrees Celsius.
[0074] In some embodiments, the first operation habit database may at least include: an operation habit database associated with the air handling device, an operation habit database associated with the user account, etc.
[0075] For example, when the first user uses the No. 1 air handling device, the accumulated operation habit data can form a first operation habit database associated with the No. 1 air handling device. When the first user uses the No. 2 air handling device, the accumulated operation habit data can form a second operation habit database associated with the No. 2 air handling device.
[0076] For another example, when the first user logs in to user account A using a user terminal (such as a mobile phone) and controls the No. 1 air handling device, the accumulated operation habit data can form a first operation habit database associated with user account A. When the first user logs in to user account B using the user terminal and operates the No. 1 air handling device, the accumulated operation habits can form a first operation habit database associated with user account B.
[0077] In some embodiments, the first operation habit database may further include: an operation habit database associated with spatial indication information, an operation habit database associated with the control device (or user terminal), and so on.
[0078] Among them, the above spatial indication information may specifically include at least one of the following: spatial type, spatial number, spatial name, etc.
[0079] Specifically, the above-mentioned space types may specifically include first-level space types such as villas, apartments, office buildings, etc. The above-mentioned space types may also specifically include second-level space types such as kitchens, bedrooms, living rooms, studies, offices, etc. The above-mentioned space numbers and space names may specifically include the numbers and names customized by the user for the space.
[0080] The above-mentioned operation habit database associated with the space indication information may specifically be understood as an operation habit database that has a corresponding relationship with the space indication information based on the dimension of the space where the air handling device is located. For example, the operation habit database of the air handling device in the kitchen, the operation habit database of the air handling device in the bedroom, etc.
[0081] The above-mentioned operation habit database associated with the control device (or user terminal) may specifically be understood as an operation habit database that has a corresponding relationship with the control device based on the dimension of the control device (or user terminal) used by the first user. For example, the first operation habit database associated with the mobile phone formed by the operation habit data collected and accumulated when the user uses the mobile phone to control the air handling device. Another example is the first operation habit database associated with the centralized controller formed by the operation habit data collected and accumulated when the user uses the centralized controller to control the air handling device, etc.
[0082] It should be noted that although the operation habit data included in the above-listed multiple first operation habit databases are operation habit data accumulated based on different dimensions. However, the above operation habit data all belong to the operation habit data of the same first user and can reflect the user habits of the first user when using the air handling device through different dimensions.
[0083] Therefore, in this embodiment, it is considered that by searching and merging the above-mentioned multiple first operation habit databases that match the first user, the operation habit data of the first user that has been accumulated can be comprehensively and fully utilized to obtain a second operation habit database that can control the target air handling device relatively more accurately and intelligently.
[0084] In some embodiments, specifically in implementation, multiple first operation habit databases based on different dimensions such as the operation habit database associated with the air handling device and the operation habit database associated with the user account may be stored in the system database.
[0085] In some embodiments, the matching relationship between the first operation habit database and the voiceprint information of the corresponding user may also be stored in the above-mentioned system database.
[0086] Here, it is considered that based on conventional methods, usually only the matching relationship between the operation habit database and the user account, or the device identifier (for example, the device identifier of the air handling device, the device identifier of the control device, the device identifier of the user terminal) is stored; then the user account or device identifier is used to search and determine the operation habit database that matches the user.
[0087] However, in actual applications, the inventors found that there are users who will register and use multiple different user accounts to control the air handling device; at the same time, there are also situations where users will use multiple different control devices or different user terminals to control different air handling devices. For the above situations, it is easy to miss when using the user account or device identifier to search and determine the operation habit database that matches the user.
[0088] Also considering that the voiceprint information is unique to the user. Therefore, in the system database, the matching relationship between the first operation habit database and the voiceprint information of the corresponding user is also stored.
[0089] In this way, in specific implementation, the voiceprint information of the first user in the first voice data can be used to replace the conventional user account or device identifier to search and determine the first operation habit database that matches the first user, which can more comprehensively find multiple first operation habit databases that match the first user based on different user accounts and different devices, avoiding omission. Then, subsequently, by merging the above-mentioned multiple first operation habit databases that match, a relatively more comprehensive and better-performing second operation habit database can be obtained.
[0090] In some embodiments, for the above-mentioned determination of multiple first operation habit databases that match the first user according to the voiceprint information in the first voice data, in specific implementation, based on the voiceprint information of the first user extracted from the first voice data, the system database can be retrieved to find multiple first operation habit data that have a matching relationship with the voiceprint information, so as to obtain multiple first operation habit databases that match the first user.
[0091] Figure 2 It is a schematic diagram of an implementation manner when step S103 in the data processing method for an air handling device according to Embodiment 1 of the present application is specifically executed.
[0092] In some embodiments, as Figure 2 shown, for the above-mentioned merging of multiple first operation habit databases that match the first user to obtain the corresponding second operation habit database, in specific implementation, it may include the following content:
[0093] S103-1: According to a preset merging rule, from multiple first operation habit databases matching the first user, filter out the first operation habit database matching the current scenario as the candidate operation habit database;
[0094] S103-2: Merge the candidate operation habit database to obtain the corresponding second operation habit database.
[0095] In some embodiments, when specifically implementing the step of filtering out the first operation habit database matching the current scenario from multiple first operation habit databases matching the first user according to the preset merging rule, the spatial attributes of the target space where the target air handling device is currently located can be determined first, such as spatial type, spatial location, spatial size, etc.; then, according to the spatial attributes of the target space, filter out the first operation habit database with the same or similar spatial attributes as the target space from multiple first operation habit databases matching the first user as the first operation habit database matching the current scenario.
[0096] In some embodiments, the device attributes of the current target air handling device (such as device type, device model, etc.) can also be determined first; then, according to the device attributes of the target air handling device, filter out the first operation habit database with the same or similar device attributes as the target air handling device from multiple first operation habit databases matching the first user as the first operation habit database matching the current scenario.
[0097] Of course, when specifically implementing, the first operation habit database with the same or similar device attributes as the target air handling device and the same or similar spatial attributes as the target space can also be filtered out from multiple first operation habit databases matching the first user as the first operation habit database matching the current scenario.
[0098] For example, when the spatial type of the target space is a study and the target air handling device is an air conditioner, the first operation habit database associated with both the study and the air conditioner can be further filtered out from multiple first operation habit databases matching the first user as the first operation habit database matching the current scenario to obtain the corresponding candidate operation habit database.
[0099] In specific implementation, when multiple candidate operation habit databases associated with both the study and the air conditioner are screened out from multiple first operation habit databases matching the first user, the current scenario factor information about the target space (e.g., the location information of the current study, the usage time information of the current study, etc.) can be obtained and used to further screen out the candidate operation habit databases that match the current scenario factor information from the above multiple candidate operation habit databases for subsequent processing. Further, the candidate operation habit databases can also be adjusted specifically according to the current scenario factor information.
[0100] When multiple candidate operation habit databases directly associated with both the study and the air conditioner cannot be screened out from multiple first operation habit databases matching the first user, first operation habit databases associated with a space type similar to the study (e.g., office, study room, etc.) and also associated with the air conditioner can be screened out from the multiple first operation habit databases; then the above-mentioned screened first operation habit databases are merged to obtain corresponding candidate operation habit databases.
[0101] In some embodiments, the above first operation habit databases may store different operation habit data and corresponding scenario conditions for different operation habit data.
[0102] For example, the operation habit data can be stored in the first operation habit database in the following way. Scenario condition: room temperature is greater than or equal to 37 degrees Celsius; corresponding operation habit data: lower the temperature to 25 degrees Celsius.
[0103] In some embodiments, when merging the candidate operation habit databases, specifically, the operation habit data corresponding to the same scenario condition can be detected and identified from the candidate operation habit databases, and the operation habit data corresponding to the same scenario condition is merged; at the same time, the operation habit data corresponding to different scenario conditions in different candidate operation habit databases is retained to obtain the corresponding second operation habit database.
[0104] In some embodiments, when merging the operation habit data corresponding to the same scenario condition, specifically, according to different candidate operation habit databases, the occurrence frequencies of different operation habit data corresponding to the same scenario condition are counted; then the operation habit data with the highest occurrence frequency is determined as the operation habit data corresponding to this scenario condition and retained in the second operation habit database.
[0105] It is also possible to retain different operation habit data corresponding to the same scenario condition in the second operation habit database. Subsequently, when specifically applied, the above different operation habit data can be provided to the user for the user to select.
[0106] When specifically performing the merging process, the operation habit data in the above-mentioned second operation habit database can also be specifically modified and adjusted according to the space type of the target space (for example, apartment or villa), the current scene factor information (for example, whether the location is in the north or south; another example is whether the usage time is in the morning or afternoon), etc., so as to obtain a second operation habit database that better meets the user needs of the first user.
[0107] Figure 3 It is a schematic diagram of an implementation manner when step S102 in the data processing method for an air treatment device according to Embodiment 1 of the present application is specifically executed.
[0108] In some embodiments, as Figure 3 shown, the above-mentioned determination of multiple first operation habit databases that match the first user according to the voiceprint information in the first voice data may specifically include the following content when implemented:
[0109] S102-1: Extract the voiceprint information of the first user from the first voice data;
[0110] S102-2: Determine whether the first user is a registered user according to the voiceprint information of the first user;
[0111] S102-3: In the case of determining that the first user is a registered user, determine multiple first operation habit databases that match the first user in the system database through voiceprint information matching.
[0112] When specifically implemented, after collecting the first voice data, the voiceprint information of the first user can be first extracted from the first voice data; then, according to the voiceprint information, voiceprint information matching is performed in the user database to determine whether the first user is a registered user.
[0113] Among them, the above-mentioned user database can store the voiceprint information of registered users and the corresponding relationship with registered users.
[0114] Furthermore, the above-mentioned user database can also store the user attributes of registered users, such as the name, native place, occupation, hobbies, etc. of registered users.
[0115] In the case of determining that there is voiceprint information of a registered user in the user database that matches the voiceprint information in the first voice data, it can be determined that the first user is a registered user; furthermore, voiceprint information matching can be triggered in the system database to find multiple first operation habit databases that match the first user.
[0116] On the contrary, in the case where it is determined that there is no registered user's voiceprint information in the user database that matches the voiceprint information in the first voice data, it can be determined that the first user is an unregistered user; furthermore, it can be directly determined that there is no first operation habit database in the current system database that matches the first user. In this way, there is no need to waste processing resources and processing time on voiceprint information matching in the system database.
[0117] In some embodiments, after determining whether the first user is a registered user according to the voiceprint information of the first user, when the method is specifically implemented, the following content may further be included: in the case where it is determined that the first user is an unregistered user, generating a user registration prompt message; and presenting the user registration prompt message to the first user; receiving and creating an initial operation habit database associated with the target air handling device according to the registration data fed back by the first user in response to the user registration prompt message; wherein the registration data includes the voiceprint information of the first user; storing the voiceprint information of the first user, and establishing a matching relationship between the voiceprint information of the first user and the initial operation habit database.
[0118] When specifically implemented, the above registration data may be used to complete the registration of the first user; and the voiceprint information of the first user, as well as the corresponding relationship between the voiceprint information of the first user and the first user, are stored in the user database.
[0119] When specifically implemented, when creating the initial operation habit database, the initial value of the operation habit data may be set according to the user attributes of the first user, in combination with the big data analysis results of the operation habit data of a large number of users; and the above initial value of the operation habit data is stored in the initial operation habit database.
[0120] When specifically implemented, the above initial operation habit database, as well as the matching relationship between the voiceprint information of the first user and the initial operation habit database, may be stored in the system database.
[0121] Subsequently, during the process of the first user using the target air handling device, the control instructions initiated by the first user for the target air handling device may be collected and utilized to continuously modify and improve the operation habit data in the initial operation habit database, so as to obtain an operation habit database with better effects for the target air handling device.
[0122] In some embodiments, after merging the candidate operation habit database to obtain the corresponding second operation habit database, the above second operation habit database may be stored in the system database, and at the same time, the matching relationship between the second operation habit database and the voiceprint information of the first user is stored in the system database.
[0123] Figure 4It is a schematic diagram of a scenario implementation of the data processing method for an air handling device according to Embodiment 1 of the present application in a specific scenario.
[0124] In some embodiments, such as Figure 4 shown, after obtaining the corresponding second operating habit database, when the method is specifically implemented, the following content may further be included:
[0125] S104: Obtain the current scenario factor information;
[0126] S105: Adjust the second operating habit database according to the current scenario factor information.
[0127] Among them, the above scenario factor information can be specifically understood as the influencing factor information related to the operation control of the air handling device.
[0128] In some embodiments, the current scenario factor information may specifically include at least one of the following: current temperature information, current weather information, current first user physical state information, current spatial type of the target space, current location information of the target space, current time information, current season information, and so on.
[0129] Of course, it should be noted that the above-listed scenario factor information is only an illustrative description. When specifically implemented, according to the specific application scenario and processing requirements, the above current scenario factor information may further include other types of scenario factor information such as current humidity information, current air pressure information, etc. In this regard, the embodiments of the present application do not make limitations.
[0130] Based on the above embodiments, diverse current scenario factor information can be obtained and used to finely adjust the second operating habit database, so that the adjusted second operating habit database has a better application effect for the first user when in use.
[0131] In some embodiments, when specifically implemented, the current scenario factor information can be obtained in the following manner: in response to the first voice data, query and obtain the current temperature information, weather information, time information, and season information through the Internet; obtain the current location information of the target space through location navigation; obtain the spatial type of the target space by querying the user's setting data; obtain the current physical state information of the first user by collecting and jointly using the first user's voice data and face image data, etc.
[0132] In some embodiments, the second operation habit database is adjusted according to the current scenario factor information. Specifically, during implementation, the habit data template corresponding to the current scenario factor information can be determined according to the current scenario factor information; and then the corresponding operation habit data in the second operation habit database is corrected by using the habit data template.
[0133] Among them, the above-mentioned habit data template corresponds to at least one scenario factor. Specifically, the habit data template can be obtained by clustering the test habit data of a large number of collected test sample users based on scenario factors in advance.
[0134] Each habit data template can specifically include the common habits of users under the corresponding scenario factors.
[0135] For example, when the location information of the space is in the south, since it is relatively humid in the south, based on the corresponding habit data template, it can be determined that users have the following common habits: when controlling the target air handling device to execute the cooling mode, it is often necessary to additionally execute a dehumidification instruction at the same time.
[0136] Another example is that when the location information of the target space is in the north, since it is relatively dry in the north, based on the corresponding habit data template, it can be determined that users have the following common habits: when controlling the target air handling device to execute the cooling mode, it is often necessary to additionally execute a humidification instruction at the same time.
[0137] Based on the above embodiments, by obtaining and using the current scenario factor information to finely adjust the merged second operation habit database, the adjusted second operation habit database can better conform to the user habits of the first user, and then the adjusted second operation habit database can be used subsequently to bring a relatively better user experience to the user.
[0138] In some embodiments, after obtaining the corresponding second operation habit database, during the specific implementation of the method, the following content can also be included: presenting the second operation habit database to the first user; receiving a modification instruction from the first user for the second operation habit database; and adjusting the second operation habit database according to the modification instruction.
[0139] Based on the above embodiments, by allowing the first user to customize and modify the merged second operation habit database, the second operation habit database can better meet the personalized requirements of the first user.
[0140] In some embodiments, after adjusting the second operation habit database according to the current scenario factor information, in specific implementation, the adjusted second operation habit database can also be displayed to the first user; then, the modified instruction from the first user is received and further adjusted accordingly, so that the finally obtained second operation habit database can better conform to the user habit of the first user.
[0141] In some embodiments, after obtaining the corresponding second operation habit database, the method in specific implementation may further include the following: generating corresponding target prompt information according to the second operation habit database; wherein, the target prompt information includes one or more of the following content information: the energy consumption cost of the target air handling device, the mode recommendation suggestion of the target space handling device, the usage warning reminder of the target air handling device; and displaying the target prompt information to the first user.
[0142] In specific implementation, for example, according to the second operation habit database, the electricity bill list of the first user for using the target air handling device within a specified time period (for example, the next month) based on the second operation habit database can be estimated; and the electricity bill list is displayed to the first user through the target prompt information, so that the first user can understand the relevant electricity bill information in advance.
[0143] For another example, according to the second operation habit database and in combination with the current actual environmental information, by combining multiple operation habit data, a usage mode of the target air handling device suitable for the first user can be generated; and then the usage mode is displayed and recommended to the first user through the target prompt information, so that the first user can more conveniently and accurately control the target air handling device based on the recommended usage mode to obtain a better usage experience.
[0144] For another example, according to the second operation habit database, the usage situation of the first user using the target air handling device in the future time period can be simulated; then, corresponding risk prediction is performed according to the simulation result, for example, the risk prediction about TVOC (Total Volatile Organic Compound), and the corresponding risk prediction result is obtained; furthermore, according to the risk prediction result, a usage warning reminder about the target air handling device can be generated; and then the usage warning reminder is timely reached to the first user through the target prompt information, so that the first user can notice the relevant risks in advance and ensure the personal and property safety of the first user.
[0145] Based on the above embodiments, the merged second operation habit database can be fully utilized to generate and display the target prompt information about using the target air handling device to the first user, so as to timely prompt the possible situations when the first user uses the target air handling device.
[0146] In some embodiments, after presenting the target prompt information to the first user, the method may further include: receiving a modification instruction from the first user for the second operation habit database; and adjusting the second operation habit database according to the modification instruction.
[0147] In some embodiments, when the method is specifically implemented, it may further include the following: in the case where it is determined that the corresponding second operation habit database cannot be obtained by merging multiple first operation habit databases that match the first user, the second user associated with the first user may be determined first; then, the recommended operation habit database that matches is determined from the second operation habit database of the second user; and the recommended operation habit database is presented to the first user.
[0148] Among them, the above-mentioned second user may specifically be understood as a user whose usage habit of the air handling device is the same as or similar to that of the first user.
[0149] The above-mentioned recommended operation habit database may specifically be understood as the second operation habit database of other users that matches the current scenario and is suitable for being recommended to the first user for use in the air handling device in the target space. For example, the second operation habit database that matches the voiceprint of the first user's wife and is also associated with the study.
[0150] Specifically, the above-mentioned second user may include users known to the first user who live together with the first user. For example, the wife who lives together with the first user. The above-mentioned second user may also include strange users who do not know the first user but have the same or similar user characteristics as the first user. For example, strange users of the same age, the same native place as the first user, and who are also equally prone to feeling cold.
[0151] When specifically implemented, according to the user database, the user attributes of the first user may be used to search for and determine the second user associated with the first user; then, the second operation habit database of the second user that matches the current scenario is determined from the second operation habit database of the second user, and used as the recommended operation habit database and presented to the first user for recommendation. When the confirmation instruction feedback by the first user is received, the recommended operation habit database is determined as the second operation habit database that matches the first user for controlling the target air handling device. On the contrary, when the rejection instruction feedback by the first user is received, an initial operation habit database may be created separately.
[0152] When specifically implemented, multiple different recommended operation habit databases may also be presented to the first user at the same time; the selection instruction initiated by the first user is received and responded to, and one of the recommended operation habit databases selected by the first user is used as the corresponding second operation habit database.
[0153] In addition, multiple different recommended operation habit databases can be simultaneously presented to the first user; a fusion instruction initiated by the first user is received and responded to, and by fusing the above-mentioned multiple different recommended operation habit databases, a second operation habit database that meets the user's requirements is obtained.
[0154] In some embodiments, the first voice data may specifically further include an operation habit database migration instruction;
[0155] Correspondingly, when the method is specifically implemented, the following content may further be included: responding to the operation habit database migration instruction to determine the space indication information of the migration space; determining a second operation habit database that matches according to the voiceprint information in the first voice data and the space indication information of the migration space, and using it as the second operation habit database associated with the migration space. Among them, the above-mentioned second operation habit database is used to control the corresponding air handling equipment in the migration space.
[0156] When specifically implemented, when the first user migrates from the original space to a new space (i.e., the migration space), for example, from the original residence to a new residence, the operation habit database of the air handling equipment in the original space can be migrated and applied to the air handling equipment in the new space. At this time, the first user can initiate an operation habit database migration instruction.
[0157] When specifically implemented, the operation habit database migration instruction can be responded to first to determine the space indication information of the migration space, such as the first-level space type and the second-level space type of the migration space; then the operation habit data that simultaneously matches the voiceprint information of the first user and the space indication information of the migration space is retrieved and utilized to obtain a second operation habit database for the air handling equipment in the new migration space. In this way, the first user can conveniently and quickly complete the migration of the operation habit database and can more conveniently use the second operation habit database that conforms to their own habits in the new migration space.
[0158] For example, a corresponding operation habit database migration instruction can be received and responded to. According to the relevant instructions of the first user and based on the first-level space type of the migration space, multiple second operation habit databases associated with multiple air handling equipment in Apartment 1 are used as the second operation habit database associated with the migration space; all of the above-mentioned multiple second operation habit databases are correspondingly migrated to the migration space (for example, Apartment 2) and are respectively associated with multiple air handling equipment in the migration space.
[0159] For another example, it is also possible to receive and respond to a corresponding operation habit database migration instruction. According to the relevant instructions of the first user, based on the second-level space type of the migration space, only the second operation habit database associated with the air treatment equipment in the bedroom of Villa 3 is used as the second operation habit database associated with the migration space; only this second operation habit database is separately migrated to the migration space (for example, the room named study in Apartment 2) and associated with the air treatment equipment in the migration space.
[0160] Based on the above embodiments, it can enable the first user to more conveniently and flexibly migrate and apply the existing second operation habit database to the air treatment equipment in other migration spaces, further simplifying the user operation.
[0161] In some embodiments, when the method is specifically implemented, the following content may further be included: in the case where the second operation habit database that matches cannot be determined according to the voiceprint information in the first voice data and the space indication information of the migration space, a recommended operation habit database determined from the second operation habit database of the second user; presenting the recommended operation habit database to the first user; receiving and responding to the confirmation instruction of the first user for the recommended operation habit database, and performing corresponding control on the target air treatment equipment according to the recommended operation habit database.
[0162] When specifically implemented, the second user associated with the first user may first be determined; then, according to the space indication information of the migration space, the second operation habit database that matches the migration space indication information is determined from the second operation habit database of the second user as the recommended operation habit data; and the recommended operation habit database is provided to the first user for the first user to refer to and use.
[0163] Based on the above multiple embodiments, by applying the data processing method for air treatment equipment provided in the embodiments of the present application, first, according to the voiceprint information of the first user in the first voice data, multiple first operation habit databases that match the first user can be accurately and comprehensively found, avoiding omission; then, by merging the multiple first operation habit databases that match the first user, a large amount of operation habit data accumulated by the first user based on different user accounts and different devices can be fully utilized to obtain a relatively comprehensive and complete second operation habit database with better effects. Subsequently, the target air treatment equipment in the target space can be intelligently controlled using the above second operation habit database, so that the first user can obtain a better usage experience.
[0164] Embodiment 2
[0165] Embodiment 2 of the present application provides a control method for an air treatment equipment.
[0166] Figure 5 It is a schematic diagram of an implementation manner of the control method of the air treatment device according to Embodiment 5 of the present application. Specifically, as Figure 5 shown, the method may include the following steps:
[0167] S501: Receive second voice data;
[0168] S502: Determine a second operation habit database that matches the first user according to the voiceprint information in the second voice data; wherein, the second operation habit database is obtained by merging a plurality of first operation habit databases; the first operation habit databases respectively match the voiceprint information in the second voice data;
[0169] S503: Control the target air treatment device accordingly according to the second operation habit database.
[0170] In some embodiments, the above-mentioned second operation habit database may be obtained by the data processing method for air treatment devices described in Embodiment 1. The above-mentioned first user may specifically be understood as the user who initiates the second voice data.
[0171] In some embodiments, the above-mentioned second voice data may specifically be understood as voice data that at least contains the voiceprint information of the first user and can trigger the operation control of the target air treatment device.
[0172] Specifically, the above-mentioned second voice data may be a voice control instruction initiated by the first user to the target air treatment device, or key voice data initiated by the first user that involves user needs.
[0173] For example, when the first user wants to control the target air treatment device to increase the temperature, the first user can say "Please increase the indoor temperature" to the target air treatment device to initiate a voice control instruction. Correspondingly, the target air treatment device receives the voice control instruction and determines the voice control instruction as the second voice data.
[0174] For another example, on the premise that the user is aware of and agrees, the control device will monitor the voice conversations in the target space where the target air treatment device is deployed. When the first user feels that it is relatively cold in the residence and casually says to the family "I feel a bit cold in the room". The control device can perform semantic recognition on the voice data to obtain a corresponding semantic recognition result; then, according to the semantic recognition result, it is determined that the first user currently feels that the temperature of the target space is relatively low, and further, it can be predicted that the following user needs probably exist in the current scenario: increase the indoor temperature. At this time, it can be determined that the above-mentioned voice data is key voice data involving user needs; and the voice data is determined as the second voice data.
[0175] In some embodiments, during specific implementation, voice data in the target space can be monitored in real time; whether the above-mentioned second voice data exists in the voice data in the target space can be detected by means of keyword matching or semantic recognition, etc.; when the above-mentioned second voice data is detected, the second voice data is collected and obtained.
[0176] Specifically, the above-mentioned second operation habit database can have a matching relationship with the voiceprint information of the first user. The above-mentioned second operation habit database can contain the operation habit data of the first user for the target air handling device.
[0177] The above-mentioned multiple first operation habit databases can respectively contain the operation habit data accumulated based on different user accounts of the first user and different air handling devices. Among them, the above-mentioned first operation habit database can also have a matching relationship with the voiceprint information of the first user.
[0178] In some embodiments, when determining the second operation habit database that matches the first user according to the voiceprint information in the second voice data, the specific implementation can include: extracting the voiceprint information of the first user from the second voice data; and then according to the voiceprint information of the first user, through voiceprint information matching, retrieving the system database to determine the second operation habit database that matches the voiceprint information of the first user.
[0179] During specific implementation, the device identifier of the target air handling device can also be obtained; combining the voiceprint information extracted from the second voice data and the device identifier of the target air handling device, retrieving the system database to determine the matching second operation habit database.
[0180] Among them, the device identifier of the above-mentioned target air handling device can specifically be the IP address of the target air handling device, or the device number of the target air handling device, etc.
[0181] Based on the above embodiments, the voiceprint information in the second voice data can be used to more accurately determine the matching second operation habit database.
[0182] In some embodiments, the second operation habit database can at least store multiple operation habit data of the first user for the target air handling device that match the voiceprint information in the second voice data. In addition, the second operation habit database can also store the scenario conditions corresponding to the operation habit data.
[0183] Among them, the above-mentioned operation habit data can specifically include the control instructions that the first user habitually initiates for the target air handling device in the corresponding scenario, and the execution mode parameters of the control instructions habitually in the corresponding scenario.
[0184] Figure 6It is a schematic diagram of an implementation manner when step S503 in the control method of the air handling device according to Embodiment 2 of the present application is specifically executed.
[0185] In some embodiments, such as Figure 6 shown, for the above-mentioned corresponding control of the target air handling device according to the second operation habit database, in specific implementation, it may include the following contents:
[0186] S503-1: Determine the operation habit data that meets the current requirements as the target operation habit data according to the second operation habit database;
[0187] S503-2: Perform corresponding control on the target air handling device according to the target operation habit data.
[0188] Based on the above embodiments, the second operation habit database can be used to accurately control the target air handling device by determining and using the target operation habit data to meet the specific current user needs of the first user.
[0189] In some embodiments, for the above-mentioned determination of the operation habit data that meets the current requirements as the target operation habit data according to the second operation habit database, in specific implementation, it may include the following contents: Respond to the second voice data to determine the user needs of the first user; Determine the operation habit data that matches the user needs of the first user from the second operation habit database as the target operation habit data that meets the current requirements.
[0190] In some embodiments, when the second voice data is a voice command, the user needs of the first user can be directly determined according to the second voice data.
[0191] For example, the second voice data is the voice command "Please raise the indoor temperature"; the user needs of the first user can be directly determined according to this first voice command as: raising the indoor temperature.
[0192] In some embodiments, when the second voice data is key voice data related to user needs, the corresponding semantic recognition result can be obtained by first performing semantic recognition on the second voice data; Then, it is attempted to determine whether the user needs of the first user can be determined according to this semantic recognition result. If the user needs of the first user still cannot be determined, based on the corresponding interaction guiding rules, further voice interaction with the first user can be carried out to collect the voice interaction data of the first user; Then, according to the above voice interaction data, through further semantic recognition, the user needs of the first user are finally determined.
[0193] For example, the second voice data is "It feels a bit cold in the room". According to the semantic recognition result, it is judged that the first user may need to increase the indoor temperature, but it cannot be completely determined. At this time, according to the corresponding interaction guidance rules, the target air handling device can actively ask the first user: "Master, do you need to increase the indoor temperature?" to conduct further voice interaction and collect the voice data fed back by the first user. For example, the voice data "Yes" when the first user replies. Then, semantic recognition is performed on this voice data. If a confirmation instruction from the first user is recognized, it can be determined that the user requirement of the first user is: to increase the indoor temperature.
[0194] In some embodiments, after determining the user requirement of the first user, the second operation habit database can be searched according to the user requirement of the first user to find the operation habit data whose corresponding scene conditions and / or included control instructions match the user requirement as the target operation habit data meeting the current requirements.
[0195] In some embodiments, when determining the operation habit data meeting the current requirements as the target operation habit data according to the second operation habit database, the following content may further be included in specific implementation: in response to the second voice data, determine the user requirement of the first user and the current scene factor information; determine the operation habit data matching the combination of the user requirement of the first user and the current scene factor information from the second operation habit database as the target operation habit data meeting the current requirements.
[0196] In some embodiments, in specific implementation, the second voice data may be responded to, first determining the user requirement of the first user; then, according to the user requirement of the first user, determining the current scene factor information related to the user requirement of the first user as the current scene factor information.
[0197] For example, the user requirement of the first user is: to decrease the indoor temperature. At this time, the scene factor information related to this user requirement can be determined to include: the physical state information of the first user (for example, whether the first user has a cold or a fever), the location information of the target space (for example, whether the target space is in the north or the south), the time information (for example, whether it is morning, afternoon or evening); and then the current scene factor information can be obtained through data query.
[0198] In some embodiments, in specific implementation, the user requirement of the first user and the current scene factor information can be combined and used to determine the operation habit data that matches both the user requirement of the first user and the current scene factor information from the second operation habit database as the target operation habit data.
[0199] For example, the user requirement of the first user is to increase the indoor temperature; the current scenario factor information is that the current target space location is in the south. At this time, the operation habit data corresponding to the user requirement of "increasing the indoor temperature" (for example, multiple operation habit data whose instruction labels of the contained control instructions are heating instructions) can be searched from the second operation habit database as candidate operation habit data; then, the candidate operation habit data whose corresponding scenario conditions match the scenario factor information of "the current target space location is in the south" is further searched from the above candidate operation habit data as the target operation habit data.
[0200] In some embodiments, during specific implementation, the operation habit data that matches the user requirement of the first user can also be determined from the second operation habit database as the intermediate operation habit data first; then, according to the current scenario factor information, the intermediate operation habit data is adaptively adjusted, and the adjusted intermediate operation habit data is used as the target operation habit data.
[0201] For example, the intermediate operation habit data matched according to the user requirement of the first user is to lower the indoor temperature to 20 degrees Celsius. However, according to the current scenario factor information, it is determined that the physical state information of the first user is in a fever state. At this time, in order to avoid the temperature being too low and aggravating the condition of the first user, the appropriate room temperature suitable for the current physical state of the first user can be determined as 25 degrees Celsius through data query. Correspondingly, the above intermediate operation habit data can be adaptively adjusted to obtain the adjusted operation habit data: lower the indoor temperature to 25 degrees Celsius; then, the adjusted operation habit data is determined as the target operation habit data.
[0202] Based on the above embodiments, the current scenario factor information can be introduced and combined, and the second operation habit database can be used to determine relatively more accurate target operation habit data.
[0203] Figure 7 It is a schematic diagram of another implementation manner when step S503 in the control method of the air handling device according to Embodiment 2 of the present application is specifically executed.
[0204] In some embodiments, as Figure 7 described, when the method is specifically implemented, the following content may further be included:
[0205] S503-3: When it is determined that there is no target operation habit data that meets the current requirements in the second operation habit database, obtain the target control instruction of the first user for the target air handling device;
[0206] S503-4: Determine the target execution mode parameter that matches the target control instruction from the second operation habit database;
[0207] S503-5: Control the target air handling device accordingly according to the target control instruction and the target execution mode parameter.
[0208] In specific implementation, when the operation habit data matching the user requirements of the first user (or the combination of the user requirements of the first user and the current scenario factor information) cannot be determined from the second operation habit database, further interaction with the first user can be carried out according to the corresponding interaction guidance rules to determine the target control instruction of the first user for the target air handling device.
[0209] For example, further interaction with the first user can be carried out according to the corresponding interaction guidance rules to obtain the control instruction manually input and set by the first user through the control device or the user terminal as the target control instruction. It is also possible to carry out voice interaction with the first user according to the corresponding interaction guidance rules; and identify and determine the control instruction that the first user wants to initiate from the collected voice data of the first user as the target control instruction.
[0210] In some embodiments, based on the obtained above control instruction, sometimes only relatively rough control of the target air handling device can be performed, and fine control of the target air handling device cannot be achieved.
[0211] At this time, the second operation habit database can be retrieved according to the obtained target control instruction to find the operation habit data related to the target control instruction; then the execution mode parameter in the operation habit data can be determined as the target execution mode parameter matching the target control instruction; furthermore, relatively fine control of the target air handling device can be performed according to the above target control instruction and the target execution mode parameter, so that the first user can obtain a relatively better usage experience.
[0212] For example, the current user requirement of the first user is: lower the indoor temperature. However, no operation habit data matching the current scenario can be found in the current second operation habit database. According to the corresponding interaction guidance rules, the control device can play the following prompt voice to the first user: "Hello, master! If there is anything I can do for you, please tell me by voice."
[0213] The first user can respond to the prompt voice and say the following voice control instruction: "Lower the indoor temperature to 27 degrees." Accordingly, the control device can receive and determine the target control instruction of the first user for the target air handling device according to the voice control instruction as: lower the indoor temperature to 27 degrees Celsius.
[0214] At this time, the control device can directly execute the target control instruction, directly set the target temperature of the target air handling device to 27 degrees Celsius, so as to control the target air handling device to directly decrease from the current temperature to 27 degrees Celsius.
[0215] Of course, the control device can also first search the second operation habit database according to the target control instruction, and find an operation habit data of the control instruction that also involves temperature reduction. For example, operation habit data a: reduce the indoor temperature to 25 degrees Celsius (the control instruction habitually initiated for the target air handling device in the corresponding scenario); and, reduce the temperature in multiple times, with each reduction of 2 degrees Celsius (the execution mode parameter regarding the execution of this control instruction habitually in the corresponding scenario), as an operation habit data related to the target control instruction.
[0216] Furthermore, the execution mode parameter in the above operation habit data related to the target control instruction can be extracted only as the target execution mode parameter.
[0217] Furthermore, the above target control instruction and target execution mode parameter can be used jointly to perform a more refined control on the target air handling device, that is, control the target air handling device to decrease by 2 degrees each time, and through multiple temperature reduction controls until the room temperature is reduced to 27 degrees Celsius.
[0218] Based on the above embodiments, even if no matching target operation habit data is found in the second operation habit database, the matching execution mode parameter can be screened and utilized from the accumulated operation habit data to perform a refined control on the target air handling device, so as to better meet the user requirements of the first user.
[0219] In some embodiments, the execution mode parameter may specifically include at least one of the following: the habitual adjustment amplitude when adjusting the temperature, the habitual adjustment frequency when adjusting the temperature, the habitual duration after entering the specified mode, the habitual startup duration after turning on the target air handling device, and so on.
[0220] In some embodiments, after determining the execution mode parameter of the control instruction that matches the target control instruction from the second operation habit database as the target execution mode parameter, when the method is specifically implemented, it may further include: displaying the above target control instruction and target execution mode parameter to the first user; after determining that the confirmation instruction from the first user for the above target control instruction and target execution mode parameter is received, then performing corresponding control on the target air handling device according to the target control instruction and target execution mode parameter.
[0221] In some embodiments, after determining that the first user's confirmation instruction for the above-mentioned target control instruction and target setting parameters is received, when the method is specifically implemented, it may further include: updating the second operation habit database according to the target control instruction and the target execution mode parameter.
[0222] For example, the target control instruction and the target execution mode parameter can be combined to obtain a new operation habit data; then, according to the user requirements of the first user and the current scenario factor information, corresponding scenario conditions are set for the operation habit data; the operation habit data and the corresponding scenario conditions are stored in the second operation habit database together to update the second operation habit database.
[0223] In some embodiments, after presenting the above-mentioned target control instruction and target execution mode parameter to the first user, when the method is specifically implemented, it may further include: receiving a modification instruction from the first user for the target execution mode parameter; in response to the modification instruction, making corresponding modifications to the target execution mode parameter to obtain a modified target execution mode parameter; and then controlling the target air handling device accordingly according to the target control instruction and the modified target execution mode parameter.
[0224] In some embodiments, when controlling the target air handling device accordingly according to the second operation habit database, the specific implementation may further include the following: detecting whether there are other users in the target space where the target air handling device is located other than the first user; when determining that there are other users in the target space, detecting whether there is a third user with a higher priority than the first user; when determining that there is the third user, detecting whether there is a second operation habit database that matches the third user; when determining that there is a second operation habit database that matches the third user, controlling the target air handling device accordingly according to the second operation habit database that matches the third user.
[0225] Among them, the above-mentioned third user can be specifically understood as other users with a higher priority than the first user.
[0226] Specifically, when implemented, it can be determined whether there are other users in the target space other than the first user by collecting and analyzing the voiceprint information in the voice data of the current time period in the target space.
[0227] In specific implementation, when it is determined that there are other users in the target space besides the first user, the identity identifier of the other users can be further determined through voiceprint information matching based on the voiceprint information in the voice data of the current time period; then, based on the identity identifier of the other users, by querying the preset priority list, the priority of the other users can be determined; and then it is determined whether there is a third user among the other users whose priority is higher than that of the first user.
[0228] Among them, the preset priority list may specifically include the corresponding relationship between the identity identifier of the user and the priority. The above preset priority list can be specifically set by the user. For example, the first user can set the elderly users to a higher priority and the young users to a lower priority.
[0229] In specific implementation, when there are multiple user activities in the target space, multiple second operation habit databases associated with the target air treatment device can be established for different users; among them, each second operation habit database is respectively matched with the voiceprint information of a user.
[0230] In specific implementation, when it is determined that there is a third user whose priority is higher than that of the first user, it can be detected whether there is a second operation habit database that matches the third user; when it is determined that there is a second operation habit database that matches the third user, the second operation habit database of the third user can be used to replace the second operation habit database of the first user to perform corresponding control on the target air treatment device.
[0231] Figure 8 It is a schematic diagram of a scenario implementation of applying the control method of the air treatment device in Embodiment 2 of the present application in a specific scenario.
[0232] In some embodiments, as Figure 8 shown, when the method is specifically implemented, the following content may further be included:
[0233] S504: When it is determined that there is no matching second operation habit database, determine multiple first operation habit databases that match according to the voiceprint information in the second voice data;
[0234] S505: According to the preset merging rule, merge multiple first operation habit databases that match the first user to obtain a second operation habit database that matches the voiceprint information in the second voice data.
[0235] In some embodiments, when the method is specifically implemented, the following may further be included: in the case where it is determined that there is no matching second operation habit database, a recommended operation habit database that matches may be determined from the second operation habit database of the second user; the recommended operation habit database is presented to the first user; a confirmation instruction from the first user for the recommended operation habit database is received and responded to, and the target air treatment device is controlled accordingly based on the recommended operation habit database.
[0236] Based on the above embodiments, by applying the control method for an air treatment device provided in the embodiments of the present application, first, a relatively comprehensive and complete second operation habit database that matches the first user can be found according to the voiceprint information in the second voice data and is obtained by merging multiple first operation habit databases; then, by using the second operation habit database, a large amount of accumulated operation habit data based on different user accounts and different devices can be fully utilized to accurately and intelligently control the target air treatment device accordingly, so that the operation of the target air treatment device can better meet the user needs of the first user, and the first user can obtain a better usage experience.
[0237] Embodiment 3
[0238] Embodiment 3 of the present application provides a data processing device for an air treatment device.
[0239] Figure 9 It is a schematic diagram of an implementation manner of the data processing device for an air treatment device in Embodiment 3 of the present application. As Figure 9 shown, the after-sales service device may specifically include the following structural modules:
[0240] The first receiving module 901 may specifically be used to receive the first voice data;
[0241] The first determining module 902 may specifically be used to determine multiple first operation habit databases that match the first user according to the voiceprint information in the first voice data;
[0242] The merging module 903 may specifically be used to merge multiple first operation habit databases that match the first user to obtain a corresponding second operation habit database; wherein, the second operation habit database is used to control the target air treatment device.
[0243] Embodiment 4
[0244] Embodiment 4 of the present application provides a control device for an air treatment device.
[0245] Figure 10 It is a schematic diagram of an implementation manner of the control device for an air treatment device in Embodiment 4 of the present application.
[0246] As Figure 10 shown, the control device of the air treatment equipment may specifically include the following modules:
[0247] The second receiving module 1001 may specifically be configured to receive second voice data;
[0248] The second determining module 1002 may specifically be configured to determine, according to the voiceprint information in the second voice data, a second operation habit database that matches the first user; wherein, the second operation habit database is obtained by merging a plurality of first operation habit databases; the first operation habit databases respectively match the voiceprint information in the second voice data;
[0249] The control module 1003 may specifically be configured to perform corresponding control on the target air treatment equipment according to the second operation habit database.
[0250] According to the above embodiments, based on the data processing method and device for an air treatment equipment, and the control method and device for an air treatment equipment provided in this application, by automatically searching for and merging the first operation habit databases that match the first user according to the voiceprint information of the first user in the first voice data, so as to make full use of the accumulated operation habit data corresponding to the same first user based on different user accounts and different devices, a more comprehensive and complete second operation habit database with better effects is obtained; and according to the voiceprint information of the first user in the second voice data, the matching second operation habit database is automatically determined and utilized to intelligently perform corresponding control on the target air treatment equipment, so as to accurately meet the user's needs and enable the first user to obtain a better usage experience.
[0251] The embodiments of this application further provide a computer-readable program, wherein when the program is executed, the program causes the computer to execute the data processing method for an air treatment equipment described in Embodiment 1 and / or the control method for an air treatment equipment described in Embodiment 2.
[0252] The embodiments of this application further provide a computer-readable storage medium, wherein the storage medium stores a computer program, and the computer-readable program causes the computer to execute the data processing method for an air treatment equipment described in Embodiment 1 and / or the control method for an air treatment equipment described in Embodiment 2.
[0253] In this embodiment, the above storage medium includes, but is not limited to, Random Access Memory (RAM), Read-Only Memory (ROM), Cache, Hard Disk Drive (HDD), or Memory Card. The memory can be used to store computer program instructions. The network communication unit can be set according to the standards specified by the communication protocol and is used as an interface for network connection communication.
[0254] In this embodiment, the functions and effects specifically implemented by the program instructions stored in the computer-readable storage medium can be explained by comparison with other embodiments and will not be elaborated here.
[0255] The embodiment of the present application also provides an electronic device, including a processor and a memory for storing processor-executable instructions, and the processor executes the after-sales processing method of the air handling device described in Embodiment 1 or Embodiment 2.
[0256] Figure 11 It is a schematic structural diagram of a component of the electronic device based on Embodiment 1 or 2 of the present application.
[0257] The embodiment of the present application also provides an electronic device, as Figure 11 shown, the control device includes a voice collector 1101, a processor 1102, a memory 1103, and a network communication port 1104. The above structures are connected by internal cables so that each structure can perform specific data interactions.
[0258] Among them, the voice collector 1101 can specifically be used to collect first voice data inside or in the adjacent area of the target space where the target air handling device is located;
[0259] The processor 1102 can specifically be used to determine multiple first operation habit databases that match the first user according to the voiceprint information in the first voice data; merge the multiple first operation habit databases that match the first user to obtain a corresponding second operation habit database; wherein, the second operation habit database is used to control the target air handling device;
[0260] In addition, the voice collector 1101 can specifically also be used to collect second voice data inside or in the adjacent area of the target space where the target air handling device is located;
[0261] The processor 1102 may specifically be configured to determine a second operation habit database that matches the first user according to the voiceprint information in the second voice data; wherein, the second operation habit database is obtained by merging a plurality of first operation habit databases; the first operation habit databases respectively match the voiceprint information in the second voice data; and perform corresponding control on the target air handling device according to the second operation habit database.
[0262] The memory 1103 may specifically be configured to store corresponding instruction programs.
[0263] The network communication port 1104 may specifically be configured to communicate with the system server to cooperate with the processor 1102 to complete the matching acquisition of the first operation habit database and the matching acquisition of the second operation habit database.
[0264] In this embodiment, the voice collector 1101 may be a device that supports listening and collecting voice audio. For example, a microphone, a radio, etc.
[0265] In this embodiment, the processor 1102 may be implemented in any suitable manner. For example, the processor may take the form of, for example, a microprocessor or a processor and a computer-readable medium storing computer-readable program code (such as software or firmware) executable by the (micro)processor, logic gates, switches, an application specific integrated circuit (ASIC), a programmable logic controller, and an embedded microcontroller, etc. The embodiments of the present application do not make any limitations.
[0266] In this embodiment, the memory 1103 may include multiple levels. In a digital system, anything that can store binary data can be a memory; in an integrated circuit, a circuit with a storage function without a physical form is also called a memory, such as a RAM, a FIFO, etc.; in a system, a storage device with a physical form is also called a memory, such as a memory stick, a TF card, etc.
[0267] In this embodiment, the network communication port 1104 may be bound to different communication protocols, so as to send or receive different data virtual ports. For example, the network communication port may be a port responsible for web data communication, may also be a port responsible for FTP data communication, or may also be a port responsible for mail data communication. In addition, the network communication port may also be a physical communication interface or a communication chip. For example, it may be a wireless mobile network communication chip, such as GSM, CDMA, etc.; it may also be a Wifi chip; it may also be a Bluetooth chip.
[0268] In this embodiment, the above-mentioned electronic device may specifically be a control device, or a target air treatment device, or a user terminal, etc.
[0269] Embodiment 5
[0270] Embodiment 5 of the present application provides a control system for an air treatment device.
[0271] Figure 12 It is a schematic diagram of a component structure of the control system of the air treatment device in Embodiment 5 of the present application. As Figure 12 shown, the control system 1200 of the air treatment device may include: a voice collection device 1201, a target air treatment device 1202, and a server 1203; the server 1203 is, for example, a cloud server;
[0272] The voice collection device 1201 collects first voice data about the target air treatment device 1202; and sends the first voice data to the cloud server;
[0273] The server 1202 determines a plurality of first operation habit databases that match the first user according to the voiceprint information in the first voice data; combines the plurality of first operation habit databases that match the first user to obtain a corresponding second operation habit database; wherein, the second operation habit database is used to control the target air treatment device.
[0274] For example, the above-mentioned server 1203 is a server deployed on one side of the cloud service platform.
[0275] In some embodiments, the above-mentioned voice collection device 1201 may be integrated into local devices such as user terminals, control devices, air treatment devices, etc., so that the local devices support functions such as voice listening and voice collection; it may also be other electronic devices dedicated to voice listening and voice collection, for example, smart speakers deployed in the target space and connected to the cloud server through a wireless network.
[0276] In some embodiments, the above-mentioned target air treatment device 1202 may include at least one of devices such as an indoor unit, a air supply device, a humidity adjustment device, and a floor heating device.
[0277] In some embodiments, the above-mentioned voice collection device 1201 may be deployed inside the target space where the target air treatment device is located, or in a neighboring area of the target space.
[0278] In some embodiments, as Figure 12 shown, the control system 1200 of the air treatment device may specifically further include: a control device 1204;
[0279] When using the control system 1200 for control, the voice acquisition device 1201 acquires second voice data for the target air handling device 1202; and sends the second voice data to the control device 1204;
[0280] The control device 1204 sends the second voice data to the server 1203;
[0281] The server 1203 determines a second operation habit database that matches the first user according to the voiceprint information in the second voice data; determines operation habit data that meets the current requirements as target operation habit data according to the second operation habit database; and sends the target operation habit data to the control device 1204;
[0282] The control device 1204 performs corresponding control on the target air handling device 1202 according to the target operation habit data.
[0283] Among them, the above control device 1204 may specifically include at least one of a centralized controller, a line controller, a remote controller, and a control board; it may also include a user terminal associated with the target air handling device 1202 and having a control function for the target air handling device 1202. For example, a smart phone installed with an APP application associated with the target air handling device 1202, etc.
[0284] In some embodiments, the above control device 1204 may be connected to the target air handling device 1202 in a wired or wireless manner.
[0285] Specifically in implementation, the control device 1204 may generate a corresponding target control instruction according to the target operation habit data; and then use the target control instruction to perform corresponding control on the operation of the target air handling device 1202.
[0286] In addition, the control device 1204 may also generate a corresponding target control instruction according to the target operation habit data, and a target execution mode parameter that matches the target control instruction; and then can use the target control instruction and the target execution mode parameter to perform relatively more refined control on the operation of the target air handling device 1202.
[0287] In some embodiments, in some cases, the server 1203 may also directly generate a corresponding target control instruction according to the target operation habit data; and directly send the target control instruction to the target air handling device 1202 to respond to the second voice data and perform corresponding control on the operation of the target air handling device 1202.
[0288] The above-described devices and methods according to the embodiments of the present application can be implemented by hardware or by a combination of hardware and software. The present application relates to such a computer-readable program that, when executed by a logic component, can enable the logic component to implement the above-described device or component, or enable the logic component to implement the above-described various methods or steps.
[0289] The embodiments of the present application also relate to a storage medium for storing the above program, such as a hard disk, a magnetic disk, an optical disk, a DVD, a flash memory, etc.
[0290] It should be noted that the limitations on the steps involved in the present application, without affecting the implementation of the specific solution, are not considered as limiting the order of the steps. The steps written in the front can be executed first, or can be executed later, or even can be executed simultaneously. As long as the solution can be implemented, it should be regarded as falling within the protection scope of the present application.
[0291] The above has described the present application in conjunction with specific implementation manners, but those skilled in the art should understand that these descriptions are exemplary and not a limitation on the protection scope of the present application. Those skilled in the art can make various variations and modifications to the present application according to the spirit and principle of the present application, and these variations and modifications are also within the scope of the present application.
Claims
1. A data processing method for an air handling device, characterized in that The method includes: Receiving first voice data; Determining a plurality of first operation habit databases that match the first user according to the voiceprint information in the first voice data; Merging the plurality of first operation habit databases that match the first user to obtain a corresponding second operation habit database; wherein, the second operation habit database is used to control the target air handling device.
2. The data processing method for an air treatment device according to claim 1, characterized in that, Determining a plurality of first operation habit databases that match the first user according to the voiceprint information in the first voice data includes: Extracting the voiceprint information of the first user from the first voice data; Determining whether the first user is a registered user according to the voiceprint information of the first user; In the case where it is determined that the first user is a registered user, determining the plurality of first operation habit databases that match the first user in the system database through voiceprint information matching.
3. The data processing method for an air treatment device according to claim 2, wherein After determining whether the first user is a registered user according to the voiceprint information of the first user, the method further includes: In the case where it is determined that the first user is an unregistered user, generating a user registration prompt message; and presenting the user registration prompt message to the first user; Receiving and creating an initial operation habit database associated with the target air handling device according to the registration data fed back by the first user in response to the user registration prompt message; wherein, the registration data includes the voiceprint information of the first user; Storing the voiceprint information of the first user and establishing a matching relationship between the voiceprint information of the first user and the initial operation habit database.
4. The data processing method for an air handling device according to claim 1, wherein Merging the plurality of first operation habit databases that match the first user to obtain a corresponding second operation habit database includes: According to a preset merging rule, screening out the first operation habit databases that match the current scenario from the plurality of first operation habit databases that match the first user as candidate operation habit databases; Merging the candidate operation habit databases to obtain the corresponding second operation habit database.
5. The data processing method for an air treatment device according to claim 1, characterized in that, After obtaining the corresponding second operation habit database, the method further includes: Obtaining the current scenario factor information; Adjusting the second operation habit database according to the current scenario factor information.
6. The data processing method for an air handling device according to claim 5, wherein The current scenario factor information includes at least one of the following: current temperature information, current weather information, current physical state information of the first user, spatial type of the current target space, location information of the current target space, current time information, and current season information.
7. The data processing method for an air handling device according to claim 1, characterized in that, After obtaining the corresponding second operation habit database, the method further includes: Presenting the second operation habit database to the first user; Receiving a modification instruction from the first user for the second operation habit database; Adjusting the second operation habit database according to the modification instruction.
8. The data processing method for an air treatment device according to claim 1, characterized in that, After obtaining the corresponding second operation habit database, the method further includes: Generate corresponding target prompt information according to the second operation habit database; wherein, the target prompt information includes one or more of the following information: the energy consumption cost of the target air handling device, the recommended usage mode suggestions for the target air handling device, and the usage warning reminder for the target air handling device; Display the target prompt information to the first user.
9. The data processing method for an air handling device according to claim 1, characterized in that, The method further includes: Determine a second user associated with the first user; Determine a matching recommended operation habit database from the second operation habit database of the second user; Display the recommended operation habit database to the first user.
10. The data processing method for an air treatment device according to claim 1, characterized in that, The first voice data includes an operation habit database migration instruction; The method further includes: Respond to the operation habit database migration instruction and determine the space indication information of the migration space; According to the voiceprint information in the first voice data and the space indication information of the migration space, determine the matching second operation habit database as the second operation habit database associated with the migration space.
11. A control method for an air handling device, characterized in that, The method includes: Receive second voice data; According to the voiceprint information in the second voice data, determine a second operation habit database that matches the first user; wherein, the second operation habit database is obtained by merging multiple first operation habit databases; the first operation habit databases respectively match the voiceprint information in the second voice data; Perform corresponding control on the target air handling device according to the second operation habit database.
12. The control method of the air handling device according to claim 11, wherein, Performing corresponding control on the target air handling device according to the second operation habit database includes: Determine the operation habit data that meets the current requirements as the target operation habit data according to the second operation habit database; Perform corresponding control on the target air handling device according to the target operation habit data.
13. The control method of the air handling device according to claim 12, characterized in that, Determining the operation habit data that meets the current requirements as the target operation habit data according to the second operation habit database includes: Respond to the second voice data and determine the user requirements of the first user; Determine the operation habit data that matches the user requirements of the first user from the second operation habit database as the target operation habit data that meets the current requirements.
14. The control method of the air handling device according to claim 12, wherein, Determining the operation habit data that meets the current requirements as the target operation habit data according to the second operation habit database further includes: Respond to the second voice data and determine the user requirements of the first user and the current scenario factor information; Determine the operation habit data that matches the combination of the user requirements of the first user and the current scenario factor information from the second operation habit database as the target operation habit data that meets the current requirements.
15. The control method of the air handling device according to claim 13 or 14, characterized in that, The method further includes: In the case where it is determined that there is no target operation habit data that meets the current requirements in the second operation habit database, obtain the target control instruction of the first user for the target air handling device; Determine the execution mode parameter of the control instruction that matches the target control instruction from the second operation habit database as the target execution mode parameter; Control the target air handling device accordingly based on the target control instruction and the target execution mode parameter.
16. The control method of the air handling equipment according to claim 15, characterized in that, The target execution mode parameter includes at least one of the following: the habitual adjustment amplitude when adjusting the temperature, the habitual adjustment frequency when adjusting the temperature, the habitual duration after entering a specified mode, and the habitual startup duration after turning on the target air handling device.
17. The control method of the air handling equipment according to claim 11, characterized in that, Controlling the target air handling device accordingly according to the second operation habit database includes: Detect whether there are other users in the target space where the target air handling device is located other than the first user; When it is determined that there are other users in the target space, detect whether there is a third user with a higher priority than the first user; When it is determined that there is a third user, detect whether there is a second operation habit database that matches the third user; When it is determined that there is a second operation habit database that matches the third user, control the target air handling device accordingly according to the second operation habit database that matches the third user.
18. The control method of the air handling equipment according to claim 11, wherein The method further includes: When it is determined that there is no matching second operation habit database, determine multiple first operation habit databases that match the first user according to the voiceprint information in the second voice data; Merge the multiple first operation habit databases that match the first user according to a preset merging rule to obtain the second operation habit database that matches the voiceprint information in the second voice data.
19. A data processing device for an air treatment device, characterized in that, The device includes: A first receiving module, configured to receive first voice data; A first determining module, configured to determine multiple first operation habit databases that match the first user according to the voiceprint information in the first voice data; A merging module, configured to merge the multiple first operation habit databases that match the first user to obtain a corresponding second operation habit database; wherein, the second operation habit database is used to control the target air handling device.
20. A control device for an air handling apparatus, characterized in that, The device includes: A second receiving module, configured to receive second voice data; A second determining module, configured to determine a second operation habit database that matches the first user according to the voiceprint information in the second voice data; wherein, the second operation habit database is obtained by merging multiple first operation habit databases; the first operation habit databases respectively match the voiceprint information in the second voice data; A control module, configured to control the target air handling device accordingly according to the second operation habit database.
21. A control system for an air handling device, characterized in that, The control system of the air handling device includes: a voice collection device, a target air handling device, and a server; The voice collection device collects first voice data about the target air handling device; and sends the first voice data to the server; The server determines multiple first operation habit databases that match the first user according to the voiceprint information in the first voice data; merges the multiple first operation habit databases that match the first user to obtain a corresponding second operation habit database; wherein, the second operation habit database is used to control the target air handling device.
22. The control system of the air handling equipment according to claim 21, characterized in that, The control system of the air handling device further includes: a control device; The voice collection device collects second voice data for the target air handling device; and sends the second voice data to the control device; The control device sends the second voice data to the server; The server determines the second operation habit database that matches the first user according to the voiceprint information in the second voice data; determines operation habit data that meets the current requirements as target operation habit data according to the second operation habit database; sends the target operation habit data to the control device; The control device performs corresponding control on the target air handling device according to the target operation habit data.