Air treatment device monitoring method, apparatus, electronic device, and medium
By using air handling equipment monitoring methods, information and status of air-related devices can be obtained in real time, solving the problem that users cannot accurately understand indoor air conditions. This enables timely feedback and adjustment of air and equipment status, thereby improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- HAIER YOUJIA INTELLIGENT TECH (BEIJING) CO LTD
- Filing Date
- 2022-12-29
- Publication Date
- 2026-05-19
AI Technical Summary
In existing technologies, users cannot accurately obtain indoor air quality and device operating status through the app of home air quality devices, which makes it impossible to adjust the air quality devices in a timely manner to maintain a suitable state, thus affecting the user experience.
A method for monitoring air handling equipment is provided. By acquiring equipment information and monitoring information of air-related equipment, the indoor air quality level and equipment operating status are determined and fed back to the user, including real-time monitoring and alarm prompts for air status information and equipment status information.
Users can stay informed about indoor air quality and equipment operating status, making adjustments easier and improving the user experience.
Smart Images

Figure CN116221897B_ABST
Abstract
Description
Technical Field
[0001] This application relates to air quality monitoring technology, and more particularly to a method, apparatus, electronic device, and medium for monitoring air handling equipment. Background Technology
[0002] Indoor air quality refers to the air quality inside and near a building, which can affect the health of people living inside the building.
[0003] With the development and advancement of technology, a home can include various air-related devices, such as air conditioners, air purifiers, and humidifiers, to improve indoor air quality. To facilitate users' monitoring of indoor air conditions, some home appliance manufacturers provide apps that are linked to these air-related devices. These apps typically provide information on indoor humidity and temperature.
[0004] Through the aforementioned apps, users can only obtain basic information about indoor air quality and cannot accurately adjust air-related devices to maintain indoor air quality at a suitable level, which is detrimental to improving the user experience. Summary of the Invention
[0005] This application provides a method, apparatus, electronic device, and medium for monitoring air handling equipment, which can promptly inform users of the indoor air status and equipment operating status, so that users can accurately know the current status, thereby improving the user experience.
[0006] On one hand, this application provides a method for monitoring air handling equipment, the method comprising:
[0007] Upon receiving a request instruction, the system responds to the request instruction by requesting device information of the target air-related devices under the household to the cloud server. The request instruction includes a request token, which corresponds to the household.
[0008] Based on the device information, obtain the monitoring information of the target air-related device, the monitoring information including air status information and device status information;
[0009] Based on the air condition information, determine the indoor air quality level and / or indoor air comfort level; based on the equipment status information, determine the operating status of the target air-related equipment.
[0010] The indoor air quality level and / or the indoor air comfort level, as well as the operating status of the target air-related equipment, will be fed back to the user.
[0011] In another possible implementation, the air condition information includes consumable information and basic information, and the step of determining the indoor air quality level and / or indoor air comfort level based on the air condition information includes:
[0012] Based on the consumable information, determine the carbon dioxide concentration and / or fine particulate matter value monitored by the target air-related equipment, and determine the indoor air quality level based on the carbon dioxide concentration and / or fine particulate matter value. The higher the carbon dioxide concentration and / or fine particulate matter value, the lower the indoor air quality level, indicating a worse indoor air quality.
[0013] Based on the basic information, the temperature and / or humidity monitored by the target air-related equipment are determined, and based on the temperature and / or humidity and a preset level table, the indoor air comfort level is determined. The lower the indoor air comfort level, the lower the indoor air comfort level.
[0014] In another possible implementation, the device status information includes long-term device operation information and the device's previous shutdown time. Determining the operating status of the target air-conditioning device based on the device status information includes:
[0015] Based on the long-term operation information of the equipment, the reporting time of the long-term operation information of the equipment is obtained. The long-term operation information of the equipment is used to indicate that the operating time of the target air-type equipment exceeds the preset operating time.
[0016] When the reporting time is later than the previous shutdown time of the device, it is determined that the target air quality device has been running for a long time, and a long-term operation alarm is sent to the user. The long-term operation alarm is used to indicate that the running time of the target air quality device exceeds the preset running time and is still in operation.
[0017] In another possible implementation, the acquisition request instruction includes:
[0018] When the user-triggered start command is received, a request instruction is obtained once every preset time interval; the start command is used to instruct the air handling equipment monitoring method to run.
[0019] When the user triggers the start command and request command, the request instruction is obtained according to the request command. The request command is used to instruct the user to obtain the device information of any target air-related device under the household, so as to obtain the target air status information and the target device status information.
[0020] In another possible implementation, when a user-triggered start command is received, the method further includes:
[0021] When any of the indoor air quality levels is lower than the preset air quality level, and / or when any of the indoor air comfort levels is lower than the preset air comfort level, the request instruction is determined and an air alarm instruction is fed back to the user.
[0022] In another possible implementation, before obtaining the monitoring information of the target air-related device based on the device information, the method further includes:
[0023] If no device information is received from the cloud server based on the request instruction, the system will return to the user that the target air-related device does not exist in the user's household.
[0024] When the cloud server receives device information returned based on the request instruction, it determines whether there is monitoring information for the target air-related device based on the device information.
[0025] When monitoring information for the target air-related equipment exists, determine to acquire the monitoring information;
[0026] If no monitoring information for the target air quality device is available, the system will return a message to the user indicating that the target air quality device does not exist in their household.
[0027] In another possible implementation, the consumable information is further used to indicate the consumable status of the target air-conditioning device. Before determining the carbon dioxide concentration and / or fine particulate matter value monitored by the target air-conditioning device based on the consumable information, the method further includes:
[0028] Obtain preset consumable information, which is used to indicate the minimum consumable information required for the operation of the target air-type equipment;
[0029] When the consumable information is higher than the preset consumable information, the indoor air quality is determined based on the consumable information.
[0030] When the consumable information is not higher than the preset consumable information, a consumable alarm instruction is sent to the user.
[0031] On the other hand, this application provides an air handling equipment monitoring device, the device comprising:
[0032] The request module is used to request device information of target air-related devices under the family to the cloud server in response to the request instruction when a request instruction is received. The request instruction includes a request token, which corresponds to the family.
[0033] The acquisition module is used to acquire monitoring information of the target air-related equipment based on the device information, wherein the monitoring information includes air status information and device status information;
[0034] The determination module is used to determine the indoor air quality level and / or indoor air comfort level based on the air status information, and to determine the operating status of the target air-related equipment based on the equipment status information;
[0035] The feedback module is used to provide the user with feedback on the indoor air quality level and / or the indoor air comfort level, as well as the operating status of the target air-related equipment.
[0036] In another possible implementation, the determining module is specifically used for:
[0037] Based on the consumable information, determine the carbon dioxide concentration and / or fine particulate matter value monitored by the target air-related equipment, and determine the indoor air quality level based on the carbon dioxide concentration and / or fine particulate matter value. The higher the carbon dioxide concentration and / or fine particulate matter value, the lower the indoor air quality level, indicating a worse indoor air quality.
[0038] Based on the basic information, the temperature and / or humidity monitored by the target air-related equipment are determined, and based on the temperature and / or humidity and a preset level table, the indoor air comfort level is determined. The lower the indoor air comfort level, the lower the indoor air comfort level.
[0039] In another possible implementation, the determining module is specifically used for:
[0040] Based on the long-term operation information of the equipment, the reporting time of the long-term operation information of the equipment is obtained. The long-term operation information of the equipment is used to indicate that the operating time of the target air-type equipment exceeds the preset operating time.
[0041] When the reporting time is later than the previous shutdown time of the device, it is determined that the target air quality device has been running for a long time, and a long-term operation alarm is sent to the user. The long-term operation alarm is used to indicate that the running time of the target air quality device exceeds the preset running time and is still in operation.
[0042] In another possible implementation, the request module is specifically used for:
[0043] When the user-triggered start command is received, a request instruction is obtained once every preset time interval; the start command is used to instruct the air handling equipment monitoring method to run.
[0044] When the user triggers the start command and request command, the request instruction is obtained according to the request command. The request command is used to instruct the user to obtain the device information of any target air-related device under the household, so as to obtain the target air status information and the target device status information.
[0045] In another possible implementation, the request module is also used for:
[0046] When any of the indoor air quality levels is lower than the preset air quality level, and / or when any of the indoor air comfort levels is lower than the preset air comfort level, the request instruction is determined and an air alarm instruction is fed back to the user.
[0047] In another possible implementation, the acquisition module is further configured to:
[0048] If no device information is received from the cloud server based on the request instruction, the system will return to the user that the target air-related device does not exist in the user's household.
[0049] When the cloud server receives device information returned based on the request instruction, it determines whether there is monitoring information for the target air-related device based on the device information.
[0050] When monitoring information for the target air-related equipment exists, determine to acquire the monitoring information;
[0051] If no monitoring information for the target air quality device is available, the system will return a message to the user indicating that the target air quality device does not exist in their household.
[0052] In another possible implementation, the determining module is further configured to:
[0053] Obtain preset consumable information, which is used to indicate the minimum consumable information required for the operation of the target air-type equipment;
[0054] When the consumable information is higher than the preset consumable information, the indoor air quality is determined based on the consumable information.
[0055] When the consumable information is not higher than the preset consumable information, a consumable alarm instruction is sent to the user.
[0056] Thirdly, the present invention provides an electronic device, comprising:
[0057] At least one processor and memory;
[0058] The memory stores computer-executed instructions;
[0059] The at least one processor executes computer execution instructions stored in the memory, causing the at least one processor to perform the air handling equipment monitoring method as described in any of the first aspects above.
[0060] Fourthly, the present invention provides a computer-readable storage medium storing computer-executable instructions, wherein when a processor executes the computer-executable instructions, the air handling equipment monitoring method described in any of the first aspects above is implemented.
[0061] This application provides a method, apparatus, electronic device, and medium for monitoring air handling equipment. The method, upon receiving a request instruction, responds to the instruction by requesting device information from a cloud server for the household, and obtains monitoring information for the target air handling equipment based on this information. Next, based on this monitoring information, it determines the indoor air quality level and / or indoor air comfort level, as well as the operating status of the target air handling equipment. Finally, it feeds back the indoor air quality level and / or indoor air comfort level, and the operating status of the target air handling equipment to the user.
[0062] In the above process, the user only needs to trigger a request command, and the electronic device can respond to the request command and provide feedback to the user on the indoor air quality level and / or indoor air comfort level reflected by the target air-type device, as well as the operating status of the target air-type device, thereby providing the user with the convenience of timely knowing the indoor air status and the operating status of the device. Attached Figure Description
[0063] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0064] Figure 1 A flowchart illustrating an air handling equipment monitoring method provided in this application embodiment. Figure 1 ;
[0065] Figure 2 A flowchart illustrating an air handling equipment monitoring method provided in this application embodiment. Figure 2 ;
[0066] Figure 3 A flowchart illustrating the process of obtaining a request instruction is provided for an embodiment of this application;
[0067] Figure 4 This is a schematic diagram of the structure of an air handling equipment monitoring device provided in an embodiment of this application;
[0068] Figure 5 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this application.
[0069] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation
[0070] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.
[0071] With the gradual development of information technology, the increasing sophistication of network technology, the growing abundance of applicable network carriers, and the gradual promotion of the high-bandwidth indoor network penetration strategy, smart information services have become possible in homes. Users can interact with home appliances through remote controls, mobile phones, and other terminals, conveniently and quickly enjoying a smart, comfortable, efficient, and safe home life.
[0072] For example, a home may include various air-related devices, such as air conditioners, air purifiers, and humidifiers, to improve indoor air quality. To facilitate users' monitoring of indoor air conditions, some home appliance manufacturers provide apps that are linked to these air-related devices. These apps typically provide information on indoor air humidity and temperature.
[0073] Users install the aforementioned app on their mobile phones and other devices. Through this app, users can obtain basic information about indoor air, such as indoor humidity and temperature. However, users cannot accurately know the indoor air conditions and the operating status of the devices through the app, thus making it impossible to adjust air-conditioning devices in a timely manner to maintain indoor air at a suitable level, which is detrimental to improving the user experience.
[0074] This application provides an air handling equipment monitoring method, device, electronic equipment, and medium. The method is used to monitor various air-related devices in a household. When a user needs to view the air status and / or device operating status in their household, the method first obtains air status information and device status information based on the device information in the household. Then, it obtains the indoor air quality level and / or indoor air comfort level based on the air status information, and obtains the operating status of the target air-related device based on the device status information. This information is then fed back to the user so that the user can intuitively understand the air status and device operating status in their household, thereby facilitating timely adjustments to the air status and / or device operating status in their household.
[0075] The method described in this application can be widely used in whole-house intelligent digital control application scenarios such as smart home, smart home appliances ecosystem, and smart house ecosystem.
[0076] Figure 1 A flowchart illustrating an air handling equipment monitoring method provided in this application embodiment. Figure 1 The following is combined with Figure 1 The specific implementation process of the embodiments of this application will be described in detail. For example... Figure 1 As shown, the method includes the following:
[0077] S101, upon receiving a request instruction, responds to the request instruction by requesting device information of the target air-related devices under the household from the cloud server.
[0078] The request instruction includes a request token, which corresponds to the household, and is triggered by the user. Device information includes the device code, device name, and room number where the device is located, all identifying the target air quality device.
[0079] In this embodiment, before using the method provided in this application, the user first binds the air-related devices under their household to their household and uploads the device information of each air-related device to the cloud server. When the electronic device receives a request command triggered by the user, it requests the device information of the target air-related device under its household from the cloud server.
[0080] S102, Based on the equipment information, obtain the monitoring information of the target air-related equipment.
[0081] The monitoring information includes air condition information and equipment status information.
[0082] In this embodiment, after each air-related device starts operating, it reports its current status to the cloud server in real time, so that the cloud server can receive monitoring information. The electronic device then obtains the monitoring information of the corresponding target air-related device based on the device information.
[0083] S103, based on air condition information, determine the indoor air quality level and / or indoor air comfort level, and based on equipment status information, determine the operating status of the target air-related equipment.
[0084] Specifically, electronic devices determine the indoor air quality level and / or indoor air comfort level by acquiring air status information. The operating status of the target air-related equipment is determined by the equipment status information.
[0085] In this embodiment, if the target air quality device is used to monitor basic information such as indoor temperature and / or humidity, the electronic device determines the indoor air comfort level based on this basic information. If the target air quality device is used to monitor indoor carbon dioxide concentration and / or fine particulate matter levels, the electronic device determines the indoor air quality level based on this information.
[0086] S104 will provide feedback to the user on the indoor air quality level and / or indoor air comfort level, as well as the operating status of the target air-related equipment.
[0087] The electronic equipment will provide feedback to the user based on the indoor air quality level and / or indoor air comfort level obtained from the monitoring information of the target air-related equipment, as well as the operating status, so that the user can know the air status and equipment operating status in their home.
[0088] Optionally, the request instruction can be used to instruct the retrieval of monitoring information for all air-related devices within a household, to obtain the air quality in each room of the household or the average air quality for the household, as well as the device operating status. In practical applications, the request instruction can also be used to instruct the retrieval of monitoring information for individual air-related devices, to obtain the air quality in the corresponding room.
[0089] The method provided in this embodiment enables the electronic device to respond to a request command triggered by a user through the device, requesting device information under its household from the cloud server, and obtaining monitoring information of the target air quality device based on the device information. Next, based on the monitoring information, the indoor air quality level and / or indoor air comfort level, as well as the operating status of the target air quality device, are determined. Finally, the indoor air quality level and / or indoor air comfort level, and the operating status of the target air quality device are fed back to the user.
[0090] In the above process, the user only needs to trigger a request command, and the electronic device can respond to the request command and provide feedback to the user on the indoor air quality level and / or indoor air comfort level reflected by the target air-type device, as well as the operating status of the target air-type device, thereby providing the user with the convenience of timely knowing the indoor air status and the operating status of the device.
[0091] Figure 2 A flowchart illustrating an air handling equipment monitoring method provided in this application embodiment. Figure 2 Specifically, based on the above embodiments, this embodiment focuses on providing a detailed explanation of how to determine the indoor air quality level, the indoor air comfort level, and the operating status of the target air-related equipment. For example... Figure 2 As shown, the method provided in this embodiment includes:
[0092] S201, upon receiving a request instruction, responds to the request instruction by requesting device information of the target air-related devices under the household from the cloud server.
[0093] The request instruction includes a request token, which corresponds to a specific household. For details regarding the limitations on the request instruction and device information, please refer to the description of S101 in the preceding embodiments; these details will not be repeated here.
[0094] S202, determine whether device information has been received from the cloud server based on the request command. If not, return to the user that no target air quality device exists in their household. If yes, determine whether monitoring information for the target air quality device exists based on the device information.
[0095] Specifically, after responding to the request instruction and requesting device information of the target air-related device from the cloud server, the electronic device will first determine whether it has received the device information returned by the cloud server, that is, first determine whether the target air-related device exists in its household.
[0096] In this embodiment, if the electronic device does not receive device information from the cloud server within a preset time, it will return information to the user that no target air quality device exists in their household. If the electronic device receives device information from the cloud server within the preset time, it will determine whether monitoring information for the target air quality device exists based on that device information.
[0097] The preset time is input by the user into the electronic device in advance. In practical applications, air quality devices that cannot report their current status to the cloud server in real time will have their device information stored in a blacklist. Therefore, in this embodiment, before obtaining the monitoring information of the target air quality device, the electronic device first determines whether the target air quality device is in the blacklist.
[0098] S203: If monitoring information for the target air quality device exists, determine to obtain the monitoring information; if monitoring information for the target air quality device does not exist, return to the user that there is no target air quality device in their household.
[0099] Specifically, the electronic device searches for the target air quality device's information in the blacklist. If the device cannot be found in the blacklist, it indicates that monitoring information for the target air quality device exists, and the device confirms that it will retrieve that monitoring information. If the device can be found in the blacklist, it indicates that monitoring information for the target air quality device does not exist, and the device will return information to the user indicating that no monitoring information for the target air quality device exists in their household.
[0100] S204: Based on the equipment information, obtain the monitoring information of the target air-related equipment.
[0101] The monitoring information includes air status information and equipment status information, which is obtained from the current status reported by each air-related device.
[0102] Specifically, air condition information includes consumable information and basic information. Consumable information reflects the condition of consumables in the target air-related equipment. For example, consumable information could be the usage status of an air purifier's filter, which is used to determine the indoor carbon dioxide concentration. Basic information reflects the indoor temperature and / or humidity.
[0103] S205: Obtain preset consumable information. When the consumable information is higher than the preset consumable information, determine the indoor air quality level based on the consumable information. When the consumable information is not higher than the preset consumable information, send a consumable alarm instruction to the user.
[0104] Among them, the preset consumable information is used to indicate the minimum consumable information required for the operation of the target air-type equipment.
[0105] In this embodiment, before determining the carbon dioxide concentration and / or fine particulate matter value of the room based on the consumable information, the electronic device first determines whether the consumable information is higher than the preset consumable information, that is, first ensures that the target air-related equipment can work normally.
[0106] Specifically, if the consumable information is higher than the preset consumable information, the electronic device continues to determine the indoor air quality level based on the consumable information. If the consumable information is equal to or lower than the preset consumable information, it indicates that the current materials of the target air quality device are insufficient to support its normal operation, and a consumable alarm instruction is sent to the user.
[0107] S206. Based on consumable information, determine the carbon dioxide concentration and / or fine particulate matter value monitored by the target air quality equipment, and determine the indoor air quality level based on the carbon dioxide concentration and / or fine particulate matter value.
[0108] The higher the carbon dioxide concentration and / or fine particulate matter value, the lower the indoor air quality level, indicating worse indoor air quality. In this embodiment, a table comparing carbon dioxide concentration and / or fine particulate matter values with indoor air quality levels is pre-entered into the electronic device. When the carbon dioxide concentration and / or fine particulate matter value is determined, the indoor air quality level is determined by referring to the table.
[0109] Specifically, if the target air quality device can reflect the carbon dioxide concentration through consumable information, then the carbon dioxide concentration is determined based on the consumable information. If the target air quality device can reflect the fine particulate matter (FPM) value through consumable information, then the FPM value is determined based on the consumable information. If the target air quality device can reflect both the carbon dioxide concentration and the FPM value through consumable information, then the electronic device determines both the carbon dioxide concentration and the FPM value based on the consumable information.
[0110] Furthermore, the electronic device determines the indoor air quality level based on the carbon dioxide concentration and / or fine particulate matter value. The methods for determining the carbon dioxide concentration or fine particulate matter value based on consumable information, and for determining the air quality level based on the carbon dioxide concentration and / or fine particulate matter value, are known technologies and will not be elaborated upon in this embodiment.
[0111] S207, based on basic information, determine the temperature and / or humidity monitored by the target air-related equipment, and determine the indoor air comfort level based on the temperature and / or humidity and the preset level table.
[0112] The lower the indoor air comfort level, the lower the indoor comfort level. In this embodiment, the indoor air comfort level includes a temperature comfort level and a humidity comfort level, and the preset level table includes a temperature comfort level comparison table and a humidity comfort level comparison table.
[0113] The electronic device can first acquire the standard temperature and humidity values input by the user. Upon receiving the indoor temperature and humidity values, it calculates the temperature difference between the indoor temperature and the standard temperature value, and the humidity difference between the indoor humidity and the standard humidity value. The electronic device has pre-set tables for comparing temperature difference with temperature comfort levels and humidity difference with humidity comfort levels. These tables are used to determine the temperature comfort level and humidity comfort level, respectively. In practical applications, manufacturers can also input the corresponding standard temperature and humidity values for different regions into the electronic device for users to select from.
[0114] Specifically, if the basic information of the target air quality device reflects the indoor temperature, then the indoor temperature is determined based on that information. If the basic information of the target air quality device reflects the indoor humidity, then the indoor humidity is determined based on that information. If the basic information of the target air quality device reflects both indoor temperature and indoor humidity, then both indoor temperature and indoor humidity are determined based on that information.
[0115] For example, the basic information could be the current reading of a temperature sensor on a target air-conditioning device, and the electronic device could determine the indoor temperature by acquiring the current reading.
[0116] S208, based on the long-term operation information of the equipment, obtain the reporting time of the long-term operation information of the equipment.
[0117] Among them, the long-term operation information of the equipment is used to indicate that the target air-type equipment has been running for longer than the preset operating time, which is input by the user into the electronic device.
[0118] Specifically, when the target air-related device exceeds the preset operating time, the electronic device will report the device's long-term operating information to the cloud server and record the reporting time.
[0119] S209: When the reporting time is later than the previous shutdown time of the equipment, it is determined that the target air-related equipment has been running for a long time.
[0120] Specifically, the electronic device records the previous shutdown time of the target air-conditioning device and compares it with the recorded reporting time. If the reporting time is later than the previous shutdown time of the device, it is determined that the target air-conditioning device has been running for a long time.
[0121] For example, if the electronic device records a reporting time of 10:00 AM, and the device was last shut down at 8:00 AM, the reporting time is later than the device's last shutdown time, indicating that the target air-related device has been running for a long time and is still running.
[0122] In this embodiment, S205-S207 and S208-S209 are executed in parallel. In practical applications, S205-S207 can be executed first, followed by S208-S209, or S208-S209 can be executed first, followed by S205-S207.
[0123] S210 provides feedback to the user on the indoor air quality level and / or indoor air comfort level, as well as the operating status of the target air-related equipment.
[0124] The electronic equipment will feed back the obtained indoor air quality level and / or indoor air comfort level, as well as the operating status of the target air-related equipment, to the user.
[0125] In the method provided in this embodiment, when the electronic device receives a request command triggered by the user, it sequentially determines whether there is device information and monitoring information for the target air-related device. If there is device information and monitoring information for the target air-related device, it sequentially determines the indoor air quality level and / or indoor air comfort level, as well as the device operating status, based on the monitoring information. Finally, it feeds back the aforementioned indoor air quality level and / or indoor air comfort level, as well as the device operating status, to the user so that the user knows the current air status and device operating status.
[0126] Figure 3 A flowchart illustrating the process of obtaining a request instruction is provided in this application embodiment. Figure 1 Specifically, this embodiment, based on the foregoing embodiments, provides a detailed explanation of how to obtain the request instruction. For example... Figure 3 As shown, the method provided in this embodiment includes the following:
[0127] S301: When a user-triggered start command is received, a request instruction is obtained once every preset time interval.
[0128] The "Start" command is used to instruct the operation of the air handling equipment monitoring method.
[0129] Specifically, when a user runs the air handling equipment monitoring method of this application on an electronic device, an activation command is triggered. That is, when the electronic device starts running the method, it indicates that the user has triggered the activation command. At this time, the electronic device determines to obtain a request command once every preset time interval to obtain the device information of the target air handling equipment, and provides feedback to the user on the indoor air conditions and equipment operating status based on the device information.
[0130] S302, when the start command and request command triggered by the user are obtained, the request instruction is obtained according to the request command.
[0131] The request command is used to instruct the retrieval of device information for any target air-related device within the household, in order to obtain target air status information and target device status information.
[0132] Specifically, when the electronic device is running the home air equipment monitoring method of this application, the user can input a request command to the electronic device at any time to instruct the electronic device to obtain the device information of the target air equipment corresponding to the request command, and obtain the target air status information and the target device status information.
[0133] The target air status information can indicate the air status of any room within a given household, or it can indicate the average air status reflected by various air-related devices within the household. The target device status information indicates the device status information of the target air-related device corresponding to the request command.
[0134] For example, a user inputs information into an electronic device to obtain the air quality status of the master bedroom in their home. The electronic device then obtains device information for requesting a target air quality device located in the master bedroom from the request command, so that the electronic device can ultimately determine the air quality status of the master bedroom based on the device information.
[0135] S303: When a user-triggered start command is received, or any indoor air quality level is lower than the preset air quality level, and / or any indoor air comfort level is lower than the preset air comfort level, the request instruction is determined and an air alarm instruction is sent to the user.
[0136] In this embodiment, when the electronic device obtains the device information of the target air-related device from the cloud server at preset intervals, or obtains the device information of the target air-related device from the cloud server according to the activation command and additional request commands, as long as any indoor air quality level obtained is lower than the preset air quality level, and / or any indoor air comfort level is lower than the preset air comfort level, the acquisition request command is determined and an air alarm instruction is fed back to the user.
[0137] During the above process, when the indoor air quality level is not up to standard, the electronic device will determine the request command to obtain the indoor air status and equipment operation status reflected by each air-related device in the current household, so that the user can know the air-related device with the problem and the room it belongs to.
[0138] The above embodiments introduce an air handling equipment monitoring method from the perspective of process flow. The following embodiments introduce an air handling equipment monitoring device from the perspective of virtual module or virtual unit. For details, please refer to the following embodiments.
[0139] This application provides an air handling equipment monitoring device, such as... Figure 4 As shown, the device includes:
[0140] Request module 41 is used to request the device information of the target air-related device under the family to the cloud server when a request instruction is obtained. The request instruction includes a request token, which corresponds to the family.
[0141] The acquisition module 42 is used to acquire monitoring information of the target air-related equipment based on the equipment information. The monitoring information includes air status information and equipment status information.
[0142] The determination module 43 is used to determine the indoor air quality level and / or indoor air comfort level based on air status information, and to determine the operating status of the target air-related equipment based on equipment status information.
[0143] Feedback module 44 is used to provide feedback to the user on the indoor air quality level and / or indoor air comfort level, as well as the operating status of the target air-related equipment.
[0144] In another possible implementation of this application embodiment, the determining module 43 is specifically used for:
[0145] Based on consumable information, determine the carbon dioxide concentration and / or fine particulate matter value monitored by the target air-related equipment, and determine the indoor air quality level based on the carbon dioxide concentration and / or fine particulate matter value. The higher the carbon dioxide concentration and / or fine particulate matter value, the lower the indoor air quality level, indicating a worse indoor air quality.
[0146] Based on the basic information, determine the temperature and / or humidity monitored by the target air quality equipment, and determine the indoor air comfort level based on the temperature and / or humidity and the preset level table. The lower the indoor air comfort level, the lower the indoor air comfort level.
[0147] In another possible implementation of this application embodiment, the determining module 43 is specifically used for:
[0148] Based on the long-term operation information of the equipment, the reporting time of the long-term operation information of the equipment is obtained. The long-term operation information of the equipment is used to indicate that the operating time of the target air equipment exceeds the preset operating time.
[0149] When the reporting time is later than the previous shutdown time of the equipment, it is determined that the target air-conditioning equipment has been running for a long time, and a long-term operation alarm is sent to the user. The long-term operation alarm is used to indicate that the target air-conditioning equipment has been running for a longer period of time than the preset running time and is still in operation.
[0150] In another possible implementation of this application embodiment, the request module 41 is specifically used for:
[0151] When a user-triggered start command is received, a request instruction is retrieved at preset intervals; the start command is used to instruct the operation of the air handling equipment monitoring method.
[0152] When the user triggers an activation command and a request command, the request command is used to obtain the request instruction. The request command is used to instruct the user to obtain the device information of any target air-related device in the household, so as to obtain the target air status information and the target device status information.
[0153] In another possible implementation of this application embodiment, the request module 41 is further configured to:
[0154] When any indoor air quality level is lower than the preset air quality level, and / or when any indoor air comfort level is lower than the preset air comfort level, a request instruction is obtained, and an air alarm instruction is sent to the user.
[0155] In another possible implementation of this application embodiment, the acquisition module 42 is further used for:
[0156] If no device information is received from the cloud server based on the request command, the system will return to the user that there is no target air-related device in their household.
[0157] When receiving device information returned by the cloud server based on the request command, determine whether there is monitoring information for the target air-related equipment based on the device information;
[0158] If monitoring information for the target air-related equipment exists, determine to acquire the monitoring information;
[0159] If no monitoring information for the target air quality device is available, the system will return a message to the user indicating that no target air quality device exists in their household.
[0160] In another possible implementation of this application embodiment, the determining module 43 is further configured to:
[0161] Obtain preset consumable information, which is used to indicate the minimum consumable information required for the operation of the target air-type equipment;
[0162] When the consumable information is higher than the preset consumable information, determine the indoor air quality based on the consumable information;
[0163] When the consumable information is not higher than the preset consumable information, a consumable alarm instruction is sent to the user.
[0164] The air handling equipment monitoring device provided in this application embodiment is applicable to the above method embodiment, and will not be described again here.
[0165] This application provides an electronic device, such as... Figure 5 As shown, Figure 5 The illustrated electronic device includes a processor 51 and a memory 52. The processor 51 and the memory 52 are connected, for example, via a bus 53. Optionally, the electronic device may also include a transceiver 54. It should be noted that in practical applications, the transceiver 54 is not limited to one type, and the structure of this electronic device does not constitute a limitation on the embodiments of this application.
[0166] The processor 51 may be a central processing unit (CPU), a general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, transistor logic devices, hardware components, or any combination thereof. It can implement or execute the various exemplary logic blocks, modules, and circuits described in conjunction with the disclosure of this application. The processor 51 may also be a combination that implements computational functions, such as a combination of one or more microprocessors 51, a combination of a DSP and a microprocessor 51, etc.
[0167] Bus 53 may include a pathway for transmitting information between the aforementioned components. Bus 53 may be a Peripheral Component Interconnect (PCI) bus 53 or an Extended Industry Standard Architecture (EISA) bus 53, etc. Bus 53 can be divided into address bus 53, data bus 53, control bus 53, etc. For ease of representation, Figure 5 The bus 53 is represented by a single thick line, but this does not mean that there is only one bus 53 or only one type of bus 53.
[0168] The memory 52 may be a read-only memory 52 (ROM) or other type of static storage device capable of storing static information and instructions, a random access memory 52 (RAM) or other type of dynamic storage device capable of storing information and instructions, or an electrically erasable programmable read-only memory 52 (EEPROM), a compact disc read-only memory (CD-ROM) or other optical disc storage, optical disc storage (including compressed optical discs, laser discs, optical discs, digital universal optical discs, Blu-ray discs, etc.), a magnetic disk storage medium or other magnetic storage device, or any other medium capable of carrying or storing desired program code in the form of instructions or data structures and accessible by a computer, but not limited thereto.
[0169] The memory 52 is used to store application code that executes the solution of this application, and its execution is controlled by the processor 51. The processor 51 is used to execute the application code stored in the memory 52 to implement the content shown in the foregoing method embodiments.
[0170] Electronic devices include, but are not limited to: mobile phones, laptops, digital radio receivers, personal digital assistants (PDAs), tablets (PADs), portable multimedia players (PMPs), in-vehicle terminals (such as in-vehicle navigation terminals), smart air conditioners, smart range hoods, smart refrigerators, smart ovens, smart stoves, smart washing machines, smart water heaters, smart laundry equipment, smart dishwashers, smart projectors, smart TVs, smart clothes racks, smart curtains, smart audio-visual systems, smart sockets, smart speakers, smart speakers, smart ventilation systems, smart kitchen and bathroom equipment, smart bathroom fixtures, smart robotic vacuum cleaners, smart robot window cleaners, smart robotic mopping robots, smart air purifiers, smart steam ovens, smart microwave ovens, smart water heaters, smart air purifiers, smart water dispensers, smart door locks, etc. Servers can also be included. Figure 5 The electronic device shown is merely an example and should not be construed as limiting the functionality and scope of the embodiments disclosed herein.
[0171] This application provides a computer-readable storage medium storing a computer program that, when run on a computer, enables the computer to execute the corresponding content in the aforementioned method embodiments.
[0172] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this application are indicated by the claims.
[0173] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.
Claims
1. A method for monitoring air handling equipment, characterized in that, include: Upon receiving a request instruction, the system responds to the request instruction by requesting device information of the target air-related devices under the household to the cloud server. The request instruction includes a request token, which corresponds to the household. Based on the device information, the monitoring information of the target air-related device is obtained, including air status information and device status information; wherein, the air status information includes the air condition of each room in the household or the average air condition in the household. Based on the air condition information, the indoor air quality level and / or indoor air comfort level are determined; based on the equipment status information, the operating status of the target air-related equipment is determined; wherein, the indoor air quality level is determined through the consumable information in the air condition information. The indoor air quality level and / or the indoor air comfort level, as well as the operating status of the target air-related equipment, are fed back to the user. The air condition information includes consumable information and basic information. Determining the indoor air quality level and / or indoor air comfort level based on the air condition information includes: The consumable information is also used to indicate the consumable status of the target air-type equipment; and to obtain preset consumable information, which is used to indicate the minimum consumable information required for the operation of the target air-type equipment. When the consumable information is higher than the preset consumable information, the carbon dioxide concentration and / or fine particulate matter value monitored by the target air-related equipment is determined based on the consumable information, and the indoor air quality level is determined based on the carbon dioxide concentration and / or fine particulate matter value. The higher the carbon dioxide concentration and / or fine particulate matter value, the lower the indoor air quality level, indicating a worse indoor air quality. When the consumable information is not higher than the preset consumable information, a consumable alarm instruction is sent to the user; Based on the basic information, the temperature and / or humidity monitored by the target air-related equipment are determined, and based on the temperature and / or humidity and a preset level table, the indoor air comfort level is determined. The lower the indoor air comfort level, the lower the indoor air comfort level.
2. The air handling equipment monitoring method according to claim 1, characterized in that, The device status information includes long-term device operation information and the last time the device was shut down. Determining the operating status of the target air-conditioning device based on the device status information includes: Based on the long-term operation information of the equipment, the reporting time of the long-term operation information of the equipment is obtained. The long-term operation information of the equipment is used to indicate that the operating time of the target air-type equipment exceeds the preset operating time. When the reporting time is later than the previous shutdown time of the device, it is determined that the target air quality device has been running for a long time, and a long-term operation alarm is sent to the user. The long-term operation alarm is used to indicate that the running time of the target air quality device exceeds the preset running time and is still in operation.
3. The air handling equipment monitoring method according to claim 1, characterized in that, The request instructions include: When the user-triggered start command is received, a request instruction is obtained once every preset time interval; the start command is used to instruct the air handling equipment monitoring method to run. When the user triggers the start command and request command, the request instruction is obtained according to the request command. The request command is used to instruct the user to obtain the device information of any target air-related device under the household, so as to obtain the target air status information and the target device status information.
4. The air handling equipment monitoring method according to claim 3, characterized in that, When a user-triggered start command is received, the method further includes: When any of the indoor air quality levels is lower than the preset air quality level, and / or when any of the indoor air comfort levels is lower than the preset air comfort level, the request instruction is determined and an air alarm instruction is fed back to the user.
5. The air handling equipment monitoring method according to claim 1, characterized in that, Before obtaining the monitoring information of the target air-related equipment based on the equipment information, the method further includes: If no device information is received from the cloud server based on the request instruction, the system will return to the user that the target air-related device does not exist in the user's household. When the cloud server receives device information returned based on the request instruction, it determines whether there is monitoring information for the target air-related device based on the device information. When monitoring information for the target air-related equipment exists, determine to acquire the monitoring information; If no monitoring information for the target air quality device is available, the system will return a message to the user indicating that the target air quality device does not exist in their household.
6. A monitoring device for air handling equipment, characterized in that, The apparatus for performing the method as described in any one of claims 1-5, the apparatus comprising: The request module is used to request device information of target air-related devices under the family to the cloud server in response to the request instruction when a request instruction is received. The request instruction includes a request token, which corresponds to the family. The acquisition module is used to acquire monitoring information of the target air-related device based on the device information. The monitoring information includes air status information and device status information. The air status information includes the air condition of each room in the household or the average air condition in the household. The determination module is used to determine the indoor air quality level and / or indoor air comfort level based on the air status information, and to determine the operating status of the target air-related equipment based on the equipment status information; wherein, the indoor air quality level is determined through the consumable information in the air status information; The feedback module is used to provide the user with feedback on the indoor air quality level and / or the indoor air comfort level, as well as the operating status of the target air-related equipment.
7. An electronic device, characterized in that, include: At least one processor and memory; The memory stores computer-executed instructions; The at least one processor executes computer execution instructions stored in the memory, causing the at least one processor to perform the air handling equipment monitoring method as described in any one of claims 1-5.
8. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores computer-executable instructions, which, when executed by a processor, are used to implement the air handling equipment monitoring method as described in any one of claims 1-5.