Intelligent household electrical appliance peculiar smell prevention control method, device and equipment and computer storage medium
By adjusting the operating parameters and guide plate position of the smart air conditioner, the problems of condensed water deterioration and odor were solved, the efficiency and air quality of the air conditioner were improved, and maintenance costs were reduced.
Patent Information
- Application Number
- CN202410263526.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-07
- Publication Date
- 2025-09-09
AI Technical Summary
When the smart air conditioner runs in cooling mode for a long time, the condensed water on the fins will easily deteriorate and cause odor. In a humid environment, dust and bacteria will easily accumulate on the surface of the fins, causing odor.
By obtaining the operating status and data definition table of the smart air conditioner, adjusting the guide plate position, controlling the operating time, frequency and wind speed, performing anti-odor treatment, and reducing the generation and accumulation of condensation water.
It reduces the possibility of condensed water deterioration, improves the cooling efficiency of the air conditioner, improves indoor air quality, saves energy and reduces maintenance costs.
Smart Images

Figure CN120609134A_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the technical field of smart home appliances, and specifically relates to a method, device, equipment and computer storage medium for preventing odor in smart home appliances. Background Art
[0002] With the rapid development of the Internet and Internet of Things technologies, smart home appliances have gradually become popular, and people's demand for smart home appliances has gradually increased. As an important part of the smart home system, smart home appliances provide users with a more convenient, intelligent and comfortable life experience through their intelligence and networking features.
[0003] In smart home appliance systems, smart air conditioners, as the core equipment for indoor environment control, play a vital role. Smart air conditioners can provide comfortable temperature and humidity conditions according to user needs, allowing users to calmly cope with hot or cold environments.
[0004] However, when the smart air conditioner runs in cooling mode for a long time, due to the large temperature difference between indoor and outdoor, the smart air conditioner evaporator cools the indoor air, causing moisture on the fins to condense to form condensed water, causing water to hang on the evaporator fins; if the condensed water stays on the fin surface for a long time and is not discharged in time, it is easy to be contaminated by bacteria and mold, causing the condensed water to deteriorate, resulting in odor in the gas produced by the smart air conditioner when it works again; if the smart air conditioner is stopped for a long time or is in a humid environment, dust, dirt and bacteria are easy to accumulate on the fin surface, and these bacteria multiply and grow in a humid environment, which will also cause odor. Summary of the Invention
[0005] The present application provides a method, device, equipment and computer storage medium for controlling odor in smart home appliances, which are used to solve the problem of water hanging on the fins of smart air conditioners and the problem of condensed water easily deteriorating when the condensed water stays for a long time or is not removed, resulting in the presence of odor in the gas produced by the smart air conditioner when it is working again.
[0006] In a first aspect, the present application provides a method for controlling odor in smart home appliances, comprising:
[0007] Obtaining an operating state of an anti-odor mode of a target smart home appliance, where the operating state includes: an on state;
[0008] If the anti-odor mode is in the on state, obtaining the target operating time, target operating frequency, and target operating wind speed of the target smart home appliance, where the target operating time indicates the duration of the operating mode before the target smart home appliance is shut down;
[0009] determining control parameters of the anti-odor mode according to the target operating time, the target operating frequency, and the target operating wind speed;
[0010] The target smart home appliance is controlled to perform anti-odor treatment according to the control parameters.
[0011] Optionally, before obtaining the target operating time, target operating frequency, and target operating wind speed of the target smart home appliance, the method further includes:
[0012] Obtaining a data definition table and a target number of operating steps of the target smart home appliance, wherein the data definition table is used to store parameter information related to the anti-odor mode of the target smart home appliance, and the target number of operating steps is used to indicate that the guide plate position of the target smart home appliance is in a closed state;
[0013] Determining a preset number of operating steps of the target smart home appliance according to the data definition table, wherein the preset number of operating steps is used to control a position of a guide plate of the target smart home appliance;
[0014] Obtaining a current running step count of the target smart home appliance, and determining whether the current running step count is consistent with the target running step count, wherein the current running step count is used to indicate real-time step count information of the target smart home appliance;
[0015] When the current running step number is consistent with the target running step number, the target smart home appliance is controlled to adjust the position of the guide plate according to the preset running step number.
[0016] Optionally, the control parameters include: anti-odor duration and anti-odor speed, and determining the control parameters of the anti-odor mode according to the target operating duration, the target operating frequency, and the target operating wind speed includes:
[0017] Determining a preset duration and a preset frequency of the anti-odor mode according to the data definition table;
[0018] Determining a target operating time interval of the target smart home appliance according to the preset time and the target operating time;
[0019] Determining a target operating frequency range of the target smart home appliance according to the preset frequency and the target operating frequency;
[0020] The anti-odor duration and the anti-odor rotation speed of the anti-odor mode are determined according to the target operating time interval, the target operating frequency interval, and the target operating wind speed.
[0021] Optionally, the preset duration includes: a first preset duration and a second preset duration, the operating duration interval includes: a first operating duration interval, a second operating duration interval, and a third operating duration interval, and determining the operating duration interval of the target smart home appliance according to the preset duration and the target operating duration includes:
[0022] Determining whether the target running time is less than the first preset time;
[0023] If the target operating time is less than the first preset time, determining that the target operating time of the target smart home appliance is within the first operating time interval, and determining the first operating time interval as the target operating time interval;
[0024] If the target running time is not less than the first preset time, determining whether the target running time is less than the second preset time, wherein the first preset time is less than the second preset time;
[0025] If the target operating time is less than the second preset time, determining that the target operating time of the target smart home appliance is within the second operating time interval, and determining the second operating time interval as the target operating time interval, wherein the second operating time interval is greater than the first operating time interval;
[0026] If the target operating time is not less than the second preset time, it is determined that the target operating time of the target smart appliance is in the third operating time interval, and the third operating time interval is determined as the target operating time interval, wherein the third operating time interval is greater than the second operating time interval.
[0027] Optionally, the preset frequency includes: a first preset frequency and a second preset frequency, the operating frequency interval includes: a first operating frequency interval, a second operating frequency interval, and a third operating frequency interval, and determining the operating frequency interval of the target smart home appliance according to the preset frequency and the target operating frequency includes:
[0028] Determining whether the target operating frequency is less than the first preset frequency;
[0029] If the target operating frequency is less than the first preset frequency, determining that the target operating frequency of the target smart home appliance is within the first operating frequency interval, and determining the first operating frequency interval as the target operating frequency interval;
[0030] If the target operating frequency is not less than the first preset frequency, determining whether the target operating frequency is less than the second preset frequency, wherein the first preset frequency is less than the second preset frequency;
[0031] If the target operating frequency is less than the second preset frequency, determining that the target operating frequency of the target smart appliance is in the second operating frequency interval, and determining the second operating frequency interval as the target operating frequency interval, wherein the second operating frequency interval is greater than the first frequency operating interval;
[0032] If the target operating frequency is not less than the second preset frequency, it is determined that the target operating frequency of the target smart appliance is in the third operating frequency range, and the third operating frequency range is determined as the target operating frequency range, wherein the third operating frequency range is greater than the second frequency operating range.
[0033] Optionally, the operating state further includes a standby state. After controlling the target smart home appliance to perform the anti-odor treatment according to the control parameters, the method further includes:
[0034] Obtaining the running detection duration of the anti-odor mode;
[0035] Determining, according to the data definition table, an operation protection duration of the anti-odor mode, wherein the operation protection duration is used to indicate a maximum length of time that the anti-odor mode can maintain operation;
[0036] Determine whether the operation detection time is less than the operation protection time;
[0037] If the operation detection duration is less than the operation protection duration, controlling the target smart home appliance to continue the anti-odor treatment according to the control parameters;
[0038] If the operation detection time is not less than the operation protection time, the anti-odor mode of the target smart home appliance is controlled to be in the standby state, and the standby state is used to instruct the target smart home appliance not to perform anti-odor processing.
[0039] Optionally, the method further includes:
[0040] If the anti-odor mode of the target smart home appliance is in the on state, generating a first display instruction, wherein the first display instruction is used to indicate that the target smart home appliance is performing an anti-odor process;
[0041] controlling the target smart appliance to display according to the first display instruction;
[0042] If the anti-odor mode of the target smart home appliance is in the standby state, generating a second display instruction, wherein the second display instruction is used to instruct the target smart home appliance not to perform the anti-odor treatment;
[0043] Control the target smart appliance to display according to the second display instruction.
[0044] In a second aspect, the present application provides a smart home appliance anti-odor control device, comprising:
[0045] The acquisition module is used to obtain the operating status of the anti-odor mode of the target smart home appliance, and the operating status includes: an on state.
[0046] If the anti-odor mode is in the on state, the acquisition module is also used to obtain the target operating time, target operating frequency and target operating wind speed of the target smart home appliance. The target operating time is used to indicate the length of time the operating mode of the target smart home appliance is maintained before it is shut down.
[0047] A determination module is used to determine the control parameters of the anti-odor mode according to the target operating time, the target operating frequency and the target operating wind speed.
[0048] A control module is used to control the target smart home appliance to perform anti-odor treatment according to the control parameters.
[0049] Optionally, the acquisition module is also used to obtain a data definition table and a target number of operating steps of the target smart appliance, the data definition table being used to store parameter information related to the anti-odor mode of the target smart appliance, and the target number of operating steps being used to indicate that the guide plate position of the target smart appliance is in a closed state.
[0050] The determination module is further used to determine the preset number of operating steps of the target smart home appliance according to the data definition table, and the preset number of operating steps is used to control the guide plate position of the target smart home appliance.
[0051] The acquisition module is also used to obtain the current running step number of the target smart home appliance and determine whether the current running step number is consistent with the target running step number. The current running step number is used to indicate the real-time step number information of the target smart home appliance.
[0052] The control module is further configured to control the target smart home appliance to adjust the position of the guide plate according to the preset number of operating steps when the current number of operating steps is consistent with the target number of operating steps.
[0053] Optionally, the determination module is further used to determine the preset duration and preset frequency of the anti-odor mode according to the data definition table.
[0054] The determining module is further configured to determine a target operating duration interval of the target smart home appliance according to the preset duration and the target operating duration.
[0055] The determination module is further configured to determine a target operating frequency range of the target smart appliance based on the preset frequency and the target operating frequency.
[0056] The determination module is further configured to determine the anti-odor duration and the anti-odor rotation speed of the anti-odor mode according to the target operating time interval, the target operating frequency interval, and the target operating wind speed.
[0057] Optionally, the smart home appliance anti-odor control device further includes: a judgment module.
[0058] The judging module is configured to judge whether the target running time is less than the first preset time.
[0059] If the target operating time is less than the first preset time, the determination module is further configured to determine that the target operating time of the target smart appliance is within the first operating time interval, and determine the first operating time interval as the target operating time interval.
[0060] If the target running time is not less than the first preset time, the judgment module is further configured to judge whether the target running time is less than the second preset time, wherein the first preset time is less than the second preset time.
[0061] If the target operating time is less than the second preset time, the determination module is further used to determine that the target operating time of the target smart appliance is within the second operating time interval, and determine the second operating time interval as the target operating time interval, wherein the second operating time interval is greater than the first operating time interval.
[0062] If the target operating time is not less than the second preset time, the determination module is further used to determine that the target operating time of the target smart appliance is within the third operating time interval, and determine the third operating time interval as the target operating time interval, wherein the third operating time interval is greater than the second operating time interval.
[0063] Optionally, the judgment module is further used to judge whether the target operating frequency is less than the first preset frequency.
[0064] If the target operating frequency is less than the first preset frequency, the determination module is further used to determine that the target operating frequency of the target smart appliance is in the first operating frequency interval, and determine the first operating frequency interval as the target operating frequency interval.
[0065] If the target operating frequency is not less than the first preset frequency, the judgment module is further configured to judge whether the target operating frequency is less than the second preset frequency, wherein the first preset frequency is less than the second preset frequency.
[0066] If the target operating frequency is less than the second preset frequency, the determination module is further used to determine that the target operating frequency of the target smart appliance is in the second operating frequency range, and determine the second operating frequency range as the target operating frequency range, wherein the second operating frequency range is greater than the first frequency operating range.
[0067] If the target operating frequency is not less than the second preset frequency, the determination module is further used to determine that the target operating frequency of the target smart appliance is in the third operating frequency range, and determine the third operating frequency range as the target operating frequency range, wherein the third operating frequency range is greater than the second frequency operating range.
[0068] Optionally, the acquisition module is further used to obtain the running detection duration of the anti-odor mode.
[0069] The determination module is further configured to determine an operation protection duration of the anti-odor mode according to the data definition table, where the operation protection duration is configured to indicate a maximum length of time that the anti-odor mode can maintain operation.
[0070] The judging module is further configured to judge whether the operation detection duration is less than the operation protection duration.
[0071] If the operation detection duration is less than the operation protection duration, the control module is specifically used to control the target smart home appliance to continue the anti-odor treatment according to the control parameters.
[0072] If the operation detection duration is not less than the operation protection duration, the control module is specifically used to control the anti-odor mode of the target smart appliance to be in the standby state, and the standby state is used to instruct the target smart appliance not to perform anti-odor processing.
[0073] Optionally, the smart home appliance anti-odor control device also includes: a generation module.
[0074] If the anti-odor mode of the target smart home appliance is in the on state, the generating module is configured to generate a first display instruction, where the first display instruction is configured to indicate that the target smart home appliance is performing an anti-odor process.
[0075] The control module is further configured to control the target smart appliance to display according to the first display instruction.
[0076] If the anti-odor mode of the target smart home appliance is in the standby state, the generation module is further used to generate a second display instruction, and the second display instruction is used to instruct the target smart home appliance not to perform anti-odor processing.
[0077] The control module is further configured to control the target smart home appliance to display according to the second display instruction.
[0078] In a third aspect, the present application provides a smart home appliance anti-odor control device, comprising:
[0079] Memory;
[0080] processor;
[0081] wherein the memory stores computer-executable instructions;
[0082] The processor executes the computer-executable instructions stored in the memory to implement the smart home appliance anti-odor control method as described in the first aspect and various possible implementation methods of the first aspect.
[0083] In a fourth aspect, the present application provides a computer storage medium having computer execution instructions stored thereon, and the computer execution instructions are executed by a processor to implement the smart home appliance anti-odor control method as described in the first aspect and various possible implementation methods of the first aspect.
[0084] The smart home appliance anti-odor control method provided by the present application obtains the operating status of the anti-odor mode of the target smart home appliance, and when the anti-odor mode is in the on state, obtains the data definition table and target operating steps of the target smart home appliance; presets the operating steps based on the data definition table, and obtains the current operating steps of the target smart home appliance; determines whether the current operating steps are consistent with the target operating steps, and when the current operating steps are consistent with the target operating steps, controls the target smart home appliance to adjust the guide plate position according to the preset operating steps; obtains the target operating time, target operating frequency and target operating wind speed of the target smart home appliance, and determines the preset time and preset frequency of the anti-odor mode according to the data definition table, determines the target operating time range of the target smart home appliance based on the preset time and target operating time; determines the target operating frequency range based on the preset frequency and target operating frequency; determines the anti-odor time and anti-odor speed of the anti-odor mode in combination with the target operating wind speed, and controls the target smart home appliance to perform anti-odor processing according to the anti-odor time and anti-odor speed. This method reduces the probability of condensed water existing inside the smart air conditioner, further reduces the possibility of condensed water deterioration, and improves the cooling efficiency of the smart air conditioner, thereby achieving the purpose of saving energy, improving indoor air quality, reducing long-term maintenance costs, and improving user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0085] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.
[0086] Figure 1This is a flow chart of the method for controlling odor in smart home appliances provided by this application. Figure 1 ;
[0087] Figure 2 This is a flow chart of the method for controlling odor in smart home appliances provided by this application. Figure 2 ;
[0088] Figure 3 This is a schematic diagram of the structure of the smart home appliance anti-odor control device provided by this application;
[0089] Figure 4 This is a schematic diagram of the structure of the smart home appliance anti-odor control device provided in this application.
[0090] The above drawings illustrate specific embodiments of the present application, which will be described in more detail below. These drawings and the textual description are not intended to limit the scope of the present application in any way, but rather to illustrate the concepts of the present application to those skilled in the art by reference to specific embodiments. DETAILED DESCRIPTION
[0091] To make the objectives, technical solutions, and advantages of this application more clear, the technical solutions in this application will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0092] The terms "first," "second," "third," "fourth," and so forth (if any) in the description and claims of the present invention and the accompanying drawings are used to distinguish similar objects and are not necessarily used to describe a particular order or sequential sequence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of the present invention described herein can, for example, be implemented in sequences other than those illustrated or described herein.
[0093] In the embodiments of this application, words such as "exemplary" or "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described in this application as "exemplary" or "for example" should not be construed as being preferred or advantageous over other embodiments or designs. Rather, the use of words such as "exemplary" or "for example" is intended to present the relevant concepts in a concrete manner.
[0094] With the rapid development of the Internet and Internet of Things technologies, smart home appliances have gradually become popular, and people's demand for smart home appliances has gradually increased. As an important part of the smart home system, smart home appliances provide users with a more convenient, intelligent and comfortable life experience through their intelligence and networking features.
[0095] In smart home appliance systems, smart air conditioners, as the core equipment for indoor environment control, play a vital role. Smart air conditioners can provide comfortable temperature and humidity conditions according to user needs, allowing users to calmly cope with hot or cold environments.
[0096] However, when the smart air conditioner runs in cooling mode for a long time, due to the large temperature difference between indoor and outdoor, the smart air conditioner evaporator cools the indoor air, causing moisture on the fins to condense to form condensed water, causing water to hang on the evaporator fins; if the condensed water stays on the fin surface for a long time and is not discharged in time, it is easy to be contaminated by bacteria and mold, causing the condensed water to deteriorate, resulting in odor in the gas produced by the smart air conditioner when it works again; if the smart air conditioner is stopped for a long time or is in a humid environment, dust, dirt and bacteria are easy to accumulate on the fin surface, and these bacteria multiply and grow in a humid environment, which will also cause odor.
[0097] In response to the above problems, the present application provides a method for preventing odor from occurring in smart home appliances.
[0098] First, the implementation scenarios involved in this application are described.
[0099] After the smart home appliance runs in cooling mode for a period of time, condensation will form on the evaporator fin surface due to temperature differences, resulting in water hanging on the fins, also known as fin water hanging phenomenon. The smart home appliance involved in this application can be, for example, a smart air conditioner equipped with a control system.
[0100] For example, if the smart air conditioner stops running for a long time or is in a humid environment, the moisture on the fins will deteriorate and adhere to the surface of the evaporator. After the moisture evaporates, residual traces will be formed inside the smart air conditioner, which will easily produce odor. When the smart air conditioner is restarted, the odorous gas generated inside will be blown out; when the smart air conditioner is in the off state, the control system set in the smart air conditioner will dry the moisture on the air conditioner evaporator fins and the air conditioner air duct by controlling the position of the fan and guide plate inside it according to the pre-set control logic, avoiding the presence of moisture residue in the relatively closed space inside the air conditioner, reducing the possibility of condensed water deterioration, and thus achieving the effect of reducing the generation of odorous gas.
[0101] This application provides a method for controlling odors in smart home appliances. This method adjusts the position of the guide plate of a smart air conditioner and logically determines the evaporator's water level by analyzing the air conditioner's operating time, wind speed, and compressor operating frequency before shutdown. Based on the different water levels, the shutdown odor prevention operating time and internal fan speed are set, and moisture is removed from the evaporator's fins and air duct according to the determined odor prevention operating time and internal fan speed. This method reduces the probability of condensed water inside the smart air conditioner, further reducing the likelihood of condensed water deterioration and improving the cooling efficiency of the smart air conditioner. This method saves energy, improves indoor air quality, reduces long-term maintenance costs, and enhances the user experience.
[0102] The following specific embodiments describe in detail the technical solution of the present application and how the technical solution of the present application solves the above-mentioned technical problems. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of the present application will be described below in conjunction with the accompanying drawings.
[0103] Figure 1 Schematic diagram of the process of the smart home appliance anti-odor control method provided in the embodiment of the present application Figure 1 The execution subject of this embodiment may be, for example, an intelligent air-conditioning control system provided with anti-odor control logic. Figure 1 As shown, the method for preventing odor in smart home appliances provided in this embodiment includes:
[0104] S101: Obtain the operating status of the anti-odor mode of the target smart home appliance.
[0105] The operating status includes: the on status.
[0106] It is understandable that there are multiple operating modes in smart home appliances, and different operating modes can provide users with different indoor environments and usage experiences; different operating modes are implemented by different control logics, so smart home appliances can implement different control logics through their own control systems; multiple operating modes in smart home appliances cannot be turned on at the same time, so before obtaining the operating status of the anti-odor mode, it is necessary to determine whether the previous operating mode of the smart home appliance has been executed.
[0107] The control system set up in the smart home appliance detects the operating data of the smart home appliance and determines the operating status of the current operating mode of the target smart home appliance based on the detection results. That is to say, the control system can detect whether the anti-odor control logic is executed and obtain the operating status of the anti-odor mode of the target smart home appliance based on the detection results.
[0108] Preferably, before obtaining the operating status of the anti-odor mode of the target smart home appliance, a shutdown instruction sent by the target user is obtained, and the target smart home appliance is controlled to execute the shutdown instruction.
[0109] The shutdown command is used to instruct the target smart home appliance to no longer adjust the indoor ambient temperature.
[0110] It can be understood that when the target smart appliance receives the shutdown command, the target smart appliance achieves the purpose of providing a suitable indoor environment for the target user at that time. At this time, the target user does not need the target smart appliance to adjust the current indoor environment; in order to prevent the condensed water remaining inside the target smart appliance from deteriorating, and the smart appliance from blowing out odorous gas when it is restarted, the anti-odor mode is executed when the target smart appliance does not provide services to the user or after the user ends the current service; therefore, after determining that the shutdown command of the target smart appliance has been executed, the control system can control the anti-odor control logic to run, that is, the target smart appliance runs the anti-odor mode.
[0111] S102: If the anti-odor mode is on, obtaining the target operating time, target operating frequency, and target operating wind speed of the target smart home appliance.
[0112] Among them, the target operating time is used to indicate the length of time the target smart home appliance will maintain its operating mode before shutting down, the target operating frequency is used to indicate the frequency of the compressor before shutting down the target smart home appliance, and the target operating wind speed is used to indicate the air output size of the target smart home appliance in its operating mode before shutting down.
[0113] It is understandable that there is a correlation between the operating time, operating frequency and operating wind speed of a smart home appliance and the amount of condensation water generated inside it; when the operating frequency and operating wind speed are constant, the smart home appliance runs for different lengths of time, and the amount of condensation water generated inside it will increase with time; similarly, when the operating time and operating wind speed are fixed, the smart home appliance runs at different operating frequencies, and as the operating frequency increases, the condensation water will also increase; therefore, the target operating time, target operating frequency and target operating wind speed can reflect the operating status of the target smart home appliance before running the anti-odor mode, and can determine the presence of condensation water in the current target smart home appliance, that is, the amount of water hanging on the fins. In other words, based on the length of time the smart home appliance runs and the size of the operating frequency and wind speed, the amount of water hanging on the fins inside the smart home appliance can be preliminarily divided.
[0114] For example, the intelligent air-conditioning control system detects and collects the operating information of the intelligent air-conditioning before it is shut down, and the corresponding target operating time can be 60 minutes, the target operating frequency can be 50 Hz, and the target operating wind speed can be high wind.
[0115] S103: Determine control parameters of the anti-odor mode according to the target operating time, the target operating frequency, and the target operating wind speed.
[0116] S104: Control the target smart home appliance to perform anti-odor processing according to the control parameters.
[0117] The control parameters are used to indicate parameter information for the anti-odor mode operation.
[0118] It is understandable that there is a correlation between the amount of water hanging on the internal fins of the smart home appliance and the length of time the anti-odor mode runs and the strength of the wind blown out during the anti-odor mode; if there is only a small amount of condensed water on the internal fins of the smart home appliance, the corresponding anti-odor mode will run for a shorter time than when there is a large amount of condensed water, and the wind force blown out during the anti-odor mode will also be smaller.
[0119] Based on the currently acquired target operating time, target operating frequency and target operating wind speed before the target smart home appliance is shut down, the amount of water hanging on the internal fins of the smart home appliance is determined; based on the determined amount of water hanging on the fins, the length of time the current anti-odor mode needs to run and the size of the wind blown out during anti-odor are obtained, that is, the control parameters of the anti-odor mode are determined, and the target smart home appliance is controlled to perform anti-odor treatment according to the control parameters.
[0120] The smart appliance anti-odor control method provided in this embodiment obtains the operating status of the anti-odor mode of a target smart appliance and, when the anti-odor mode is on, obtains the target operating duration, target operating frequency, and target operating wind speed of the target smart appliance. The method then performs a logical evaluation of the target operating duration, target operating frequency, and target operating wind speed to determine the control parameters of the anti-odor mode, and then controls the target smart appliance to perform anti-odor processing according to the control parameters. This method reduces the probability of condensed water inside the smart air conditioner, further reducing the possibility of condensed water deterioration, improving indoor air quality, and enhancing the user experience.
[0121] Figure 2 Schematic diagram of the process of the smart home appliance anti-odor control method provided in the embodiment of the present application Figure 2 .like Figure 2 As shown, this embodiment Figure 1 Based on the embodiment, the anti-odor control method for smart home appliances is described in detail. The anti-odor control method for smart home appliances shown in this embodiment includes:
[0122] S201: Obtain the operating status of the anti-odor mode of the target smart home appliance.
[0123] Step S201 is similar to the above-mentioned step S101 and will not be described again here.
[0124] S202: If the anti-odor mode is on, obtain the data definition table and target number of running steps of the target smart home appliance.
[0125] S203: Determine a preset number of operating steps of the target smart home appliance according to the data definition table.
[0126] Among them, the data definition table is used to store parameter information related to the anti-odor mode of the target smart appliance, the target running step number is used to indicate that the guide plate position of the target smart appliance is in a closed state, and the preset running step number is used to indicate the corresponding guide plate position when the target smart appliance is in the anti-odor mode.
[0127] It can be understood that the number of running steps can control the guide plate position of the indoor unit of the smart home appliance, and the guide plate position determines the range of the smart home appliance's air outlet; when the smart home appliance runs in anti-odor mode, its essence is to use the smart home appliance to continue to discharge air and take away the condensed water on the surface of its fins. At this time, in order not to have an adverse effect on the target users and avoid the anti-odor mode air outlet affecting the user experience, it is necessary to adjust the guide plate position to a position where the user cannot perceive the air outlet situation. For example, if the smart home appliance is a wall-mounted smart air conditioner, the guide plate position should be adjusted to a horizontal air outlet angle. At this time, the user will not feel the air outlet of the smart air conditioner.
[0128] If the anti-odor mode of the target smart appliance is on, it indicates that the current target smart appliance is running the anti-odor control logic. At this time, the data definition table and target running steps of the target smart appliance are obtained; and based on the data definition table, the preset running steps corresponding to the target smart appliance are determined.
[0129] It can be understood that different models of smart home appliances have different guide plate positions, and the parameter information corresponding to the multiple guide plate positions is stored in the data definition table. The parameter information is the preset number of operating steps; when the target smart home appliance runs in the anti-odor mode, the control system calls the corresponding model parameter information according to the model of the target smart home appliance, thereby obtaining the preset number of operating steps corresponding to the target smart home appliance.
[0130] S204: Obtain the current running step number of the target smart home appliance, and determine whether the current running step number is consistent with the target running step number.
[0131] S205: When the current number of running steps is consistent with the target number of running steps, control the target smart home appliance to adjust the position of the guide plate according to the preset number of running steps.
[0132] Among them, the current running step number is used to indicate the real-time situation of the guide plate position of the corresponding indoor unit when the target smart home appliance is performing a shutdown operation.
[0133] When the target smart home appliance performs a shutdown operation, the guide plate position of the target smart home appliance is detected in real time; the current operating step number of the target smart home appliance is obtained, and it is determined whether the current operating step number is consistent with the target operating step number; and the purpose of this step of determining whether the current operating step number is consistent with the target operating step number is to determine whether the guide plate of the target smart home appliance is completely closed.
[0134] If the current number of running steps is consistent with the target number of running steps, it indicates that the guide plate of the target smart home appliance has been completely closed, the shutdown operation has been completed, and there is no situation where the target user mistakenly sends a shutdown command. At this time, the target smart home appliance is controlled to adjust the guide plate position according to the preset number of running steps, so that the guide plate is placed in the appropriate position corresponding to the target smart home appliance.
[0135] If the current number of running steps is consistent with the target number of running steps, it means that the guide plate of the target smart appliance is not completely closed, the target smart appliance is still performing the shutdown operation, or the target user mistakenly sends a shutdown command. At this time, the current number of running steps of the target smart appliance can be continuously obtained, and after obtaining the current number of running steps, it can be re-evaluated, and the length of time the re-evaluation process lasts is consistent with the length of time the target smart appliance performs the shutdown operation.
[0136] It is understandable that the time length for the target smart home appliance to execute the shutdown operation is fixed, and the time length required for different models of smart home appliances to execute the shutdown operation varies.
[0137] For example, the preset running steps corresponding to the current smart air conditioner are: A steps, and the target running steps are: B steps. If the current running steps obtained are C steps, and C steps are consistent with B steps, it indicates that the smart air conditioner has completed the shutdown operation. At this time, the guide plate position of the smart air conditioner is placed at A steps; if the current running steps obtained are D steps, and D steps are inconsistent with B steps, it indicates that the smart air conditioner has not completed the shutdown operation or the user has mistakenly sent a shutdown command. At this time, the current running steps of the smart air conditioner are continuously obtained, and the continuously updated current running steps are re-evaluated with the target running steps, and the judgment process lasts for 3 minutes.
[0138] S206: Obtain the target operating time, target operating frequency, and target operating wind speed of the target smart home appliance.
[0139] It can be understood that the control system corresponding to the smart home appliance can detect and collect the operating data of the smart home appliance, and the control system can also analyze and process the acquired operating data to determine the operating status of the smart home appliance at different times.
[0140] The control system detects the operating data of the target smart home appliance, and filters out the duration of the operating mode of the target smart home appliance before shutdown, the operating frequency before shutdown, and the wind speed corresponding to the operating mode before shutdown, that is, the target operating time, target operating frequency and target operating wind speed of the target smart home appliance are obtained.
[0141] S207: Determine a preset duration and a preset frequency of the anti-odor mode according to the data definition table.
[0142] The preset duration may be, for example, 30 minutes or 90 minutes, and the preset frequency may be, for example, 45 Hz or 60 Hz; and there may be multiple preset durations and multiple preset frequencies.
[0143] It can be understood that the length of time of the target smart home appliance's operating mode before shutdown, the operating frequency before shutdown, and the operating wind speed adopted in the operating mode before shutdown affect the amount of condensed water remaining on the surface of the fins inside the target smart home appliance. That is to say, different operating conditions before shutdown determine the amount of water hanging on the fins of the target smart home appliance; according to the different operating conditions of the target smart home appliance before shutdown, the corresponding different fin water hanging amounts can be divided into corresponding water hanging amount states; combined with the historical operating data of smart home appliances of different models, the judgment conditions of the water hanging amount state are improved to obtain the corresponding water hanging amount division parameters. At this time, the water hanging amount division parameters are the length of time of the target smart home appliance's operating mode before shutdown, the operating frequency before shutdown, and the operating wind speed adopted in the operating mode before shutdown; the determined water hanging amount state division parameters are stored in the data definition table, thereby assisting the control system in determining the length of time the target smart home appliance operates in the anti-odor mode and the size of the wind blown out during anti-odor, that is, the determination control parameters of the anti-odor mode of the auxiliary control system.
[0144] S208: Determine a target operating duration interval of the target smart home appliance according to the preset duration and the target operating duration.
[0145] The target operating time interval is used to indicate the target operating time before the target smart home appliance is shut down, and is the time range compared with the division parameter of the water hanging amount state.
[0146] Compare the currently obtained preset duration with the target running duration to determine a preset duration that is greater than the target running duration and has the shortest time interval between the two, and determine another preset duration that is less than the target running duration and has the shortest time interval between the two. Based on the two currently obtained preset durations, the time range of the target running duration can be determined, and the time range is determined as the target running time interval.
[0147] Preferably, the preset duration includes: a first preset duration and a second preset duration, the operation duration interval includes: a first operation duration interval, a second operation duration interval and a third operation duration interval, and determining the operation duration interval of the target smart home appliance according to the preset duration and the target operation duration includes:
[0148] Determine whether the target operating time is less than a first preset time; if the target operating time is less than the first preset time, determine that the target operating time of the target smart home appliance is in a first operating time interval, and determine the first operating time interval as the target operating time interval; if the target operating time is not less than the first preset time, determine whether the target operating time is less than a second preset time; if the target operating time is less than the second preset time, determine that the target operating time of the target smart home appliance is in a second operating time interval, and determine the second operating time interval as the target operating time interval; if the target operating time is not less than the second preset time, determine that the target operating time of the target smart home appliance is in a third operating time interval, and determine the third operating time interval as the target operating time interval.
[0149] Among them, the first preset duration is less than the second preset duration, the second running duration interval is greater than the first running duration interval, and the third running duration interval is greater than the second running duration interval. The first preset duration can be, for example, 30 minutes, and the second preset duration can be, for example, 90 minutes.
[0150] The purpose of determining whether the target running time is less than the first preset time and determining whether the target running time is less than the second preset time in this step is to determine the time range of the target running time.
[0151] For example, based on the first preset time length of 30 minutes and the second preset time length of 90 minutes, the determined first operating time interval can be [0, 30), the second operating time interval can be [30, 90), and the third operating time interval can be [90, ∞). The upper limit value of the third operating time interval is infinite only for the convenience of dividing the time range, indicating the maximum length of time that the smart air conditioner can run continuously; if the currently acquired target operating time is 45 minutes, the time range is [30, 90), and the second operating time interval is determined as the target operating time interval.
[0152] S209: Determine a target operating frequency range of the target smart home appliance according to the preset frequency and the target operating frequency.
[0153] The target operating frequency interval is used to indicate the target operating frequency before the target smart home appliance is shut down, and is the frequency range compared with the division parameter of the water hanging amount state.
[0154] The currently acquired preset frequency is compared with the target operating frequency to determine a preset frequency that is greater than the target operating frequency and has the smallest frequency difference between the two, and another preset frequency that is less than the target operating frequency and has the smallest frequency difference between the two. Based on the two currently acquired preset frequencies, the frequency range in which the target operating frequency is located can be determined, and the frequency range is determined as the target operating frequency interval.
[0155] Preferably, the preset frequencies include: a first preset frequency and a second preset frequency, and the operating frequency intervals include: a first operating frequency interval, a second operating frequency interval, and a third operating frequency interval. Determining the operating frequency interval of the target smart home appliance according to the preset frequencies and the target operating frequency includes:
[0156] Determine whether the target operating frequency is less than a first preset frequency; if the target operating frequency is less than the first preset frequency, determine that the target operating frequency of the target smart home appliance is in the first operating frequency range, and determine the first operating frequency range as the target operating frequency range; if the target operating frequency is not less than the first preset frequency, determine whether the target operating frequency is less than the second preset frequency; if the target operating frequency is less than the second preset frequency, determine that the target operating frequency of the target smart home appliance is in the second operating frequency range, and determine the second operating frequency range as the target operating frequency range; if the target operating frequency is not less than the second preset frequency, determine that the target operating frequency of the target smart home appliance is in the third operating frequency range, and determine the third operating frequency range as the target operating frequency range.
[0157] Among them, the first preset frequency is less than the second preset frequency, there is a correlation between the first frequency operating range, the second operating frequency range, and the third operating frequency range, the third operating frequency range is greater than the second frequency operating range, the first preset frequency can be, for example, 45 Hz, and the second preset frequency can be, for example, 60 Hz.
[0158] The purpose of judging whether the target operating frequency is less than the first preset frequency and judging whether the target operating frequency is less than the second preset frequency in this step is to determine the frequency range in which the target operating frequency is located.
[0159] For example, based on the first preset frequency of 45Hz and the second preset frequency of 60Hz, the determined first operating frequency interval can be [0, 45), the second operating frequency interval can be [45, 60), and the third operating frequency interval can be [60, ∞). The upper limit value of the third operating frequency interval is infinite only to facilitate the division of the frequency range, indicating the maximum operating frequency that the smart air conditioner can achieve; if the currently acquired target operating frequency is 50Hz, the frequency range is [45, 60), and the second operating frequency interval is determined as the target operating frequency interval.
[0160] S210: Determine the anti-odor duration and the anti-odor rotation speed of the anti-odor mode according to the target operating duration interval, the target operating frequency interval, and the target operating wind speed.
[0161] Among them, the anti-odor duration is used to indicate the length of time the anti-odor mode is running, and the anti-odor speed is used to indicate the speed of the internal fan when the anti-odor mode is running.
[0162] S211: Control the target smart home appliance to perform anti-odor processing according to the anti-odor time and the anti-odor speed.
[0163] It can be understood that the control parameters are the corresponding operating data information when the target smart home appliance runs in anti-odor mode; in order to achieve the anti-odor effect, that is, to reduce the amount of water hanging on the fins of the target smart home appliance, it is necessary to control the length of time the anti-odor mode runs and the size of the wind blown out during anti-odor, that is, to control the anti-odor duration and anti-odor speed of the anti-odor mode.
[0164] Based on the currently acquired target operating time interval, target operating frequency interval and target operating wind speed before the target smart home appliance is shut down, the water hanging amount status of the internal fins of the smart home appliance is determined; based on the currently determined fin water hanging amount status, the length of time the current anti-odor mode needs to run and the size of the wind blown out during anti-odor are obtained, that is, the anti-odor time and anti-odor speed of the anti-odor mode are determined, and the target smart home appliance is controlled to perform anti-odor processing according to the currently determined anti-odor time and anti-odor speed.
[0165] For example, based on the target operating time interval, the target operating frequency interval, and the target operating wind speed, the specific division of the water hanging amount state of the smart air conditioner fins is determined as shown in Table 1 below: Table 1 Table 1
[0166] Among them, the first preset time is E, the second preset time is F, the target operating time is D, the first preset frequency is K1, the second preset frequency is K2, the target operating frequency is K, the operating wind speed includes: strong / high wind and other wind speeds, G1, G2, and G3 respectively represent the anti-odor time, which can be specifically 1min, 2min, and 3min, B1, B2, and B3 respectively represent the anti-odor speed, which can be specifically 500 rpm, 650 rpm, and 800 rpm; the cooling time of the smart air conditioner before shutdown is roughly divided into three parts, and each operating time is divided into three parts according to the operating frequency. According to the operating wind speed, each operating frequency is further divided into two parts, thereby dividing the operating conditions before shutdown into 18 pre-shutdown operating states, and the 18 pre-shutdown operating states correspond to different water hanging volumes; according to the 18 different water hanging volume states, the shutdown deodorization operating time and the internal fan speed are given, thereby reducing the excess blowing time and excessive speed of the internal fan during the deodorization process, reducing energy consumption and the operating time of the air conditioner indoor unit.
[0167] Preferably, the operating state further includes: a standby state, and after controlling the target smart home appliance to perform anti-odor treatment according to the control parameters, the method further includes:
[0168] Obtain the operation detection time of the anti-odor mode; determine the operation protection time of the anti-odor mode according to the data definition table; determine whether the operation detection time is less than the operation protection time; if the operation detection time is less than the operation protection time, control the target smart home appliance to continue to perform anti-odor processing according to the control parameters; if the operation detection time is not less than the operation protection time, control the anti-odor mode of the target smart home appliance to be in standby state.
[0169] Among them, the standby state is used to indicate that the target smart appliance does not perform anti-odor treatment, the operation detection time is used to indicate the real-time operation time of the anti-odor mode, and the operation protection time is used to indicate the maximum length of time that the anti-odor mode can maintain operation.
[0170] Understandably, the anti-odor mode cannot run for a long time. By setting the running protection time, the maximum length of time the anti-odor mode continues to run can be controlled to avoid unnecessary energy consumption and improve the energy utilization rate of smart home appliances.
[0171] Optionally, the method further includes:
[0172] If the anti-odor mode of the target smart appliance is on, a first display instruction is generated; the target smart appliance is controlled to display according to the first display instruction; if the anti-odor mode of the target smart appliance is in standby mode, a second display instruction is generated; the target smart appliance is controlled to display according to the second display instruction.
[0173] Among them, the first display instruction is used to indicate that the target smart appliance is performing anti-odor treatment, and the second display instruction is used to indicate that the target smart appliance is not performing anti-odor treatment.
[0174] It is understandable that the smart home appliance is provided with an operation mode display device, through which the user can be prompted with the current operation status of the smart home appliance, so that the user can understand whether the anti-odor mode of the smart home appliance is running.
[0175] The smart home appliance anti-odor control method provided by this embodiment obtains the operating status of the anti-odor mode of the target smart home appliance. When the anti-odor mode is on, the data definition table and target operating steps of the target smart home appliance are obtained; the operating steps are preset based on the data definition table, and the current operating steps of the target smart home appliance are obtained; it is determined whether the current operating steps are consistent with the target operating steps. When the current operating steps are consistent with the target operating steps, the target smart home appliance is controlled to adjust the guide plate position according to the preset operating steps; the target operating time, target operating frequency and target operating wind speed of the target smart home appliance are obtained, and the preset time and preset frequency of the anti-odor mode are determined according to the data definition table. The target operating time range of the target smart home appliance is determined based on the preset time and target operating time; the target operating frequency range is determined based on the preset frequency and target operating frequency; the anti-odor time and anti-odor speed of the anti-odor mode are determined in combination with the target operating wind speed, and the target smart home appliance is controlled to perform anti-odor processing according to the anti-odor time and anti-odor speed. This method reduces the probability of condensed water existing inside the smart air conditioner, further reduces the possibility of condensed water deterioration, and improves the cooling efficiency of the smart air conditioner, thereby achieving the purpose of saving energy, improving indoor air quality, reducing long-term maintenance costs, and improving user experience.
[0176] Figure 3 This is a schematic diagram of the structure of the smart home appliance anti-odor control device provided in this application. Figure 3 As shown, the present application provides a smart home appliance anti-odor control device, the smart home appliance anti-odor control device 300 includes:
[0177] The acquisition module 301 is used to obtain the operating status of the anti-odor mode of the target smart home appliance, where the operating status includes: an on state.
[0178] If the anti-odor mode is in the on state, the acquisition module 301 is also used to obtain the target operating time, target operating frequency and target operating wind speed of the target smart appliance. The target operating time is used to indicate the length of time the operating mode of the target smart appliance is maintained before it is shut down.
[0179] The determination module 302 is configured to determine the control parameters of the anti-odor mode according to the target operating time, the target operating frequency, and the target operating wind speed.
[0180] The control module 303 is used to control the target smart home appliance to perform anti-odor treatment according to the control parameters.
[0181] Optionally, the acquisition module 301 is also used to obtain a data definition table and a target number of operating steps of the target smart appliance, wherein the data definition table is used to store parameter information related to the anti-odor mode of the target smart appliance, and the target number of operating steps is used to indicate that the guide plate position of the target smart appliance is in a closed state.
[0182] The determination module 302 is further configured to determine a preset number of operating steps of the target smart home appliance according to the data definition table, where the preset number of operating steps is used to control the guide plate position of the target smart home appliance.
[0183] The acquisition module 301 is further used to obtain the current running step number of the target smart home appliance and determine whether the current running step number is consistent with the target running step number. The current running step number is used to indicate the real-time step number information of the target smart home appliance.
[0184] The control module 303 is further configured to control the target smart home appliance to adjust the position of the guide plate according to the preset number of operating steps when the current number of operating steps is consistent with the target number of operating steps.
[0185] Optionally, the determination module 302 is further configured to determine a preset duration and a preset frequency of the anti-odor mode according to the data definition table.
[0186] The determining module 302 is further configured to determine a target operating duration interval of the target smart home appliance according to the preset duration and the target operating duration.
[0187] The determining module 302 is further configured to determine a target operating frequency range of the target smart appliance according to the preset frequency and the target operating frequency.
[0188] The determination module 302 is further configured to determine the anti-odor duration and the anti-odor rotation speed of the anti-odor mode according to the target operating duration interval, the target operating frequency interval, and the target operating wind speed.
[0189] Optionally, the smart home appliance anti-odor control device further includes: a judgment module 304.
[0190] The determining module 304 is configured to determine whether the target running time is less than the first preset time.
[0191] If the target operating time is less than the first preset time, the determination module 302 is further configured to determine that the target operating time of the target smart appliance is within the first operating time interval, and determine the first operating time interval as the target operating time interval.
[0192] If the target running time is not less than the first preset time, the judgment module 304 is further configured to judge whether the target running time is less than the second preset time, wherein the first preset time is less than the second preset time.
[0193] If the target operating time is less than the second preset time, the determination module 302 is further used to determine that the target operating time of the target smart appliance is within the second operating time interval, and determine the second operating time interval as the target operating time interval, wherein the second operating time interval is greater than the first operating time interval.
[0194] If the target operating time is not less than the second preset time, the determination module 302 is further used to determine that the target operating time of the target smart appliance is in the third operating time interval, and determine the third operating time interval as the target operating time interval, wherein the third operating time interval is greater than the second operating time interval.
[0195] Optionally, the judgment module 304 is further configured to judge whether the target operating frequency is less than the first preset frequency.
[0196] If the target operating frequency is less than the first preset frequency, the determination module 302 is further used to determine that the target operating frequency of the target smart appliance is in the first operating frequency interval, and determine the first operating frequency interval as the target operating frequency interval.
[0197] If the target operating frequency is not less than the first preset frequency, the determination module 304 is further configured to determine whether the target operating frequency is less than the second preset frequency, wherein the first preset frequency is less than the second preset frequency.
[0198] If the target operating frequency is less than the second preset frequency, the determination module 302 is further used to determine that the target operating frequency of the target smart appliance is in the second operating frequency range, and determine the second operating frequency range as the target operating frequency range, wherein the second operating frequency range is greater than the first frequency operating range.
[0199] If the target operating frequency is not less than the second preset frequency, the determination module 302 is further used to determine that the target operating frequency of the target smart appliance is in the third operating frequency range, and determine the third operating frequency range as the target operating frequency range, wherein the third operating frequency range is greater than the second frequency operating range.
[0200] Optionally, the acquisition module 301 is further configured to acquire the running detection duration of the anti-odor mode.
[0201] The determining module 302 is further configured to determine an operation protection duration of the anti-odor mode according to the data definition table, where the operation protection duration is configured to indicate a maximum length of time that the anti-odor mode can maintain operation.
[0202] The judging module 304 is further configured to judge whether the operation detection duration is less than the operation protection duration.
[0203] If the operation detection time is less than the operation protection time, the control module 303 is specifically used to control the target smart home appliance to continue the anti-odor treatment according to the control parameters.
[0204] If the operation detection duration is not less than the operation protection duration, the control module 303 is specifically used to control the anti-odor mode of the target smart appliance to be in the standby state, and the standby state is used to instruct the target smart appliance not to perform anti-odor processing.
[0205] Optionally, the smart home appliance anti-odor control device further includes: a generation module 305.
[0206] If the anti-odor mode of the target smart home appliance is in the on state, the generating module 305 is configured to generate a first display instruction, where the first display instruction is configured to indicate that the target smart home appliance is performing an anti-odor process.
[0207] The control module 303 is further configured to control the target smart appliance to display according to the first display instruction.
[0208] If the anti-odor mode of the target smart home appliance is in the standby state, the generating module 305 is further configured to generate a second display instruction, where the second display instruction is configured to instruct the target smart home appliance not to perform the anti-odor process.
[0209] The control module 303 is further configured to control the target smart appliance to display according to the second display instruction.
[0210] Figure 4 This is a schematic diagram of the structure of the smart home appliance anti-odor control device provided in this application. Figure 4 As shown, the present application provides a smart home appliance anti-odor control device, which includes a smart home appliance anti-odor control device 400 including: a receiver 401, a transmitter 402, a processor 403 and a memory 404.
[0211] Receiver 401, for receiving instructions and data;
[0212] Transmitter 402, used to send instructions and data;
[0213] Memory 404, for storing computer-executable instructions;
[0214] The processor 403 is configured to execute computer-executable instructions stored in the memory 404 to implement the steps of the smart home appliance anti-odor control method in the above embodiment. For details, please refer to the relevant description of the smart home appliance anti-odor control method embodiment.
[0215] Optionally, the memory 404 may be independent or integrated with the processor 403 .
[0216] When the memory 404 is independently provided, the electronic device further includes a bus for connecting the memory 404 and the processor 403 .
[0217] The present application also provides a computer-readable storage medium, which stores computer-executable instructions. When a processor executes the computer-executable instructions, it implements the smart home appliance anti-odor control method performed by the above-mentioned smart home appliance anti-odor control device.
[0218] It will be appreciated by those skilled in the art that all or some of the steps, systems, and functional modules / units in the methods disclosed above may be implemented as software, firmware, hardware, and appropriate combinations thereof. In hardware implementations, the division between the functional modules / units mentioned in the above description does not necessarily correspond to the division of physical components; for example, a physical component may have multiple functions, or a function or step may be performed by several physical components in cooperation. Some or all physical components may be implemented as software executed by a processor, such as a central processing unit, a digital signal processor, or a microprocessor, or implemented as hardware, or implemented as an integrated circuit, such as an application-specific integrated circuit. Such software may be distributed on a computer-readable medium, which may include a computer storage medium (or non-transitory medium) and a communication medium (or temporary medium). As is well known to those skilled in the art, the term computer storage medium includes volatile and non-volatile, removable, and non-removable media implemented in any method or technology for storing information (such as computer-readable instructions, data structures, program modules, or other data). Computer storage media include, but are not limited to, RAM, ROM, EEPROM, flash memory or other memory technology, CD-ROM, digital versatile disks (DVD) or other optical disk storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices, or any other medium that can be used to store the desired information and can be accessed by a computer. In addition, it is well known to those skilled in the art that communication media generally embodies computer-readable instructions, data structures, program modules, or other data in a modulated data signal such as a carrier wave or other transport mechanism, and may include any information delivery media.
[0219] So far, the technical solution of the present application has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it is easy for those skilled in the art to understand that the scope of protection of the present application is obviously not limited to these specific embodiments. The above embodiments are only used to illustrate the technical solution of the present application, rather than to limit it. Although the present application has been described in detail with reference to the aforementioned embodiments, ordinary technicians in this field should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some or all of the technical features therein. However, these modifications or replacements do not cause the essence of the corresponding technical solution to deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A method for preventing odor from smart home appliances, characterized in that: The method comprises: Obtaining an operating state of an anti-odor mode of a target smart home appliance, where the operating state includes: an on state; If the anti-odor mode is in the on state, obtaining the target operating time, target operating frequency, and target operating wind speed of the target smart home appliance, where the target operating time indicates the duration of the operating mode before the target smart home appliance is shut down; determining control parameters of the anti-odor mode according to the target operating time, the target operating frequency, and the target operating wind speed; The target smart home appliance is controlled to perform anti-odor treatment according to the control parameters.
2. The method according to claim 1, characterized in that Before obtaining the target operating time, target operating frequency, and target operating wind speed of the target smart home appliance, the method further includes: Obtaining a data definition table and a target number of operating steps of the target smart home appliance, wherein the data definition table is used to store parameter information related to the anti-odor mode of the target smart home appliance, and the target number of operating steps is used to indicate that the guide plate position of the target smart home appliance is in a closed state; Determining a preset number of operating steps of the target smart home appliance according to the data definition table, wherein the preset number of operating steps is used to control a position of a guide plate of the target smart home appliance; Obtaining a current running step count of the target smart home appliance, and determining whether the current running step count is consistent with the target running step count, wherein the current running step count is used to indicate real-time step count information of the target smart home appliance; When the current running step number is consistent with the target running step number, the target smart home appliance is controlled to adjust the position of the guide plate according to the preset running step number.
3. The method according to claim 2, characterized in that The control parameters include: anti-odor duration and anti-odor speed. The control parameters of the anti-odor mode are determined according to the target operation duration, the target operation frequency, and the target operation wind speed, including: Determining a preset duration and a preset frequency of the anti-odor mode according to the data definition table; Determining a target operating time interval of the target smart home appliance according to the preset time and the target operating time; Determining a target operating frequency range of the target smart home appliance according to the preset frequency and the target operating frequency; The anti-odor duration and the anti-odor rotation speed of the anti-odor mode are determined according to the target operating time interval, the target operating frequency interval, and the target operating wind speed.
4. The method according to claim 3, characterized in that The preset duration includes: a first preset duration and a second preset duration, the operation duration interval includes: a first operation duration interval, a second operation duration interval, and a third operation duration interval, and determining the operation duration interval of the target smart home appliance according to the preset duration and the target operation duration includes: Determining whether the target running time is less than the first preset time; If the target operating time is less than the first preset time, determining that the target operating time of the target smart home appliance is within the first operating time interval, and determining the first operating time interval as the target operating time interval; If the target running time is not less than the first preset time, determining whether the target running time is less than the second preset time, wherein the first preset time is less than the second preset time; If the target operating time is less than the second preset time, determining that the target operating time of the target smart home appliance is within the second operating time interval, and determining the second operating time interval as the target operating time interval, wherein the second operating time interval is greater than the first operating time interval; If the target operating time is not less than the second preset time, it is determined that the target operating time of the target smart appliance is in the third operating time interval, and the third operating time interval is determined as the target operating time interval, wherein the third operating time interval is greater than the second operating time interval.
5. The method according to claim 4, characterized in that The preset frequencies include: a first preset frequency and a second preset frequency; the operating frequency intervals include: a first operating frequency interval, a second operating frequency interval, and a third operating frequency interval; and determining the operating frequency interval of the target smart home appliance according to the preset frequencies and the target operating frequency includes: Determining whether the target operating frequency is less than the first preset frequency; If the target operating frequency is less than the first preset frequency, determining that the target operating frequency of the target smart home appliance is within the first operating frequency interval, and determining the first operating frequency interval as the target operating frequency interval; If the target operating frequency is not less than the first preset frequency, determining whether the target operating frequency is less than the second preset frequency, wherein the first preset frequency is less than the second preset frequency; If the target operating frequency is less than the second preset frequency, determining that the target operating frequency of the target smart appliance is in the second operating frequency interval, and determining the second operating frequency interval as the target operating frequency interval, wherein the second operating frequency interval is greater than the first frequency operating interval; If the target operating frequency is not less than the second preset frequency, it is determined that the target operating frequency of the target smart appliance is in the third operating frequency range, and the third operating frequency range is determined as the target operating frequency range, wherein the third operating frequency range is greater than the second frequency operating range.
6. The method according to claim 5, characterized in that The operating state also includes a standby state. After controlling the target smart home appliance to perform the anti-odor treatment according to the control parameters, the method further includes: Obtaining the running detection duration of the anti-odor mode; Determining, according to the data definition table, an operation protection duration of the anti-odor mode, wherein the operation protection duration is used to indicate a maximum length of time that the anti-odor mode can maintain operation; Determine whether the operation detection time is less than the operation protection time; If the operation detection duration is less than the operation protection duration, controlling the target smart home appliance to continue the anti-odor treatment according to the control parameters; If the operation detection time is not less than the operation protection time, the anti-odor mode of the target smart home appliance is controlled to be in the standby state, and the standby state is used to instruct the target smart home appliance not to perform anti-odor processing.
7. The method according to claim 6, characterized in that The method further comprises: If the anti-odor mode of the target smart home appliance is in the on state, generating a first display instruction, wherein the first display instruction is used to indicate that the target smart home appliance is performing an anti-odor process; controlling the target smart appliance to display according to the first display instruction; If the anti-odor mode of the target smart home appliance is in the standby state, generating a second display instruction, wherein the second display instruction is used to instruct the target smart home appliance not to perform the anti-odor treatment; Control the target smart appliance to display according to the second display instruction.
8. An intelligent home appliance anti-odor control device, characterized in that: include: An acquisition module is used to obtain the operating state of the anti-odor mode of the target smart home appliance, where the operating state includes: an on state; If the anti-odor mode is in the on state, the acquisition module is further configured to acquire a target operating time, a target operating frequency, and a target operating wind speed of the target smart home appliance, wherein the target operating time indicates the duration of the operating mode before the target smart home appliance is shut down; a determination module, configured to determine control parameters of the anti-odor mode according to the target operating time, the target operating frequency, and the target operating wind speed; A control module is used to control the target smart home appliance to perform anti-odor treatment according to the control parameters.
9. A smart home appliance anti-odor control device, characterized in that: include: Memory; processor; wherein the memory stores computer-executable instructions; The processor executes the computer-executable instructions stored in the memory to implement the smart home appliance anti-odor control method according to any one of claims 1 to 7.
10. A computer storage medium, characterized in that The computer storage medium stores computer execution instructions, which, when executed by a processor, are used to implement the smart home appliance anti-odor control method according to any one of claims 1 to 7.