Dehumidifier control method and device and computer storage medium
By applying the automatic mode and dry clothes mode control method in the dehumidifier, and using environmental information, user information and clothing information generation control strategies, the existing dehumidifier's degree of intelligence and low dehumidification efficiency are solved, and more efficient and intelligent humidity adjustment is achieved.
Patent Information
- Application Number
- CN202510513079.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2025-06-13
AI Technical Summary
The existing dehumidifier control technology has low intelligence and dehumidification efficiency, making it difficult to effectively adjust humidity in different operating modes.
By applying the automatic mode and drying mode control method in the dehumidifier, the corresponding control strategy is generated using environmental information, user information and clothing information, and the operating parameters of the compressor and fan are dynamically adjusted to improve the intelligence degree and dehumidification efficiency of the dehumidifier.
It improves the intelligence degree and dehumidification efficiency of the dehumidifier in different modes, enhances the dehumidification accuracy in automatic mode and the intelligence of the dry clothes dehumidification in dry clothes mode, and improves the user experience.
Smart Images

Figure CN120140905A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioning, and particularly to a dehumidifier control method, a device, and a computer storage medium. Background Art
[0002] With the continuous progress and development of technology, people's requirements for the quality of life are getting higher and higher. Adjusting the air to improve people's living experience is becoming more and more popular, such as adjusting the air humidity.
[0003] In a humid climate environment or a clothing drying scenario, a dehumidifier is an important device for adjusting the indoor humidity and achieving rapid drying of clothes. However, the existing dehumidifier control technology usually adopts a fixed operation mode, that is, the operating power of the compressor and / or the fan remains unchanged in different operation modes, resulting in low intelligence and dehumidification efficiency of the dehumidifier. Therefore, it is particularly important to propose a technical solution that can improve the intelligence and dehumidification efficiency of the dehumidifier in different modes. Summary of the Invention
[0004] The present invention provides a dehumidifier control method, a device, and a computer storage medium, which can help improve the intelligence and dehumidification efficiency of the dehumidifier in different modes.
[0005] To solve the above technical problems, in the first aspect of the present invention, a dehumidifier control method is disclosed. The method is applied to a dehumidifier, and the dehumidifier includes an automatic mode and a clothes drying mode. The method includes:
[0006] When the dehumidifier is in the automatic mode, determine a first humidity threshold corresponding to the automatic mode;
[0007] Obtain environmental information of the environment where the dehumidifier is located, and detect user information in the environment where the dehumidifier is located based on a user detection sensor;
[0008] Generate a first control strategy according to the environmental information, the first humidity threshold, and the user information;
[0009] When the dehumidifier is in the clothes drying mode, determine a second humidity threshold corresponding to the clothes drying mode;
[0010] Obtain clothing information of the target clothing, and generate a second control strategy according to the clothing information and the second humidity threshold;
[0011] Control the operation of the dehumidifier according to the first control strategy or the second control strategy.
[0012] As an alternative implementation, in the first aspect of the present invention, the environmental information includes environmental temperature and environmental humidity, and the first control strategy includes a first sub-control strategy or a second sub-control strategy;
[0013] Generating the first control strategy according to the environmental information, the first humidity threshold, and the user information includes:
[0014] Determine whether the environmental humidity is greater than the first humidity threshold. When the environmental humidity is less than or equal to the first humidity threshold, calculate a first humidity difference according to the environmental humidity and the first humidity threshold, and generate the first sub-control strategy according to the environmental temperature and the first humidity difference;
[0015] When the environmental humidity is greater than the first humidity threshold, determine at least one humidity influencing factor in the environment, and analyze the degree of humidity influence of each humidity influencing factor on the environment;
[0016] Judge whether there is at least one target user in the environment where the dehumidifier is located according to the user information, obtain a judgment result, and generate the second sub-control strategy according to the judgment result, each humidity influencing factor, and the degree of humidity influence corresponding to each humidity influencing factor.
[0017] As an alternative implementation, in the first aspect of the present invention, generating the second sub-control strategy according to the judgment result, each humidity influencing factor, and the degree of humidity influence corresponding to each humidity influencing factor includes:
[0018] When the judgment result indicates that there is no target user in the environment where the dehumidifier is located, obtain a preset rapid dehumidification control strategy, and the rapid dehumidification control strategy is used to control the compressor and / or the fan in the dehumidifier to operate at the maximum power;
[0019] When the judgment result indicates that there is at least one target user in the environment where the dehumidifier is located, determine the user needs of each target user according to the user information, and the user needs include user humidity needs and user noise needs;
[0020] Calculate a second humidity difference according to the environmental humidity and the first humidity threshold, and generate a user dehumidification control strategy according to the second humidity difference, the user needs of each target user, each humidity influencing factor, and the degree of humidity influence corresponding to each humidity influencing factor;
[0021] Generate the second sub-control strategy according to the rapid dehumidification control strategy or the user dehumidification control strategy.
[0022] As an alternative embodiment, in the first aspect of the present invention, the clothing information includes clothing humidity, the number of clothing items, clothing types, and the location of the clothing;
[0023] Generating a second control strategy according to the clothing information and the second humidity threshold includes:
[0024] Calculating a third humidity difference according to the clothing humidity and the second humidity threshold;
[0025] Determining the standard dry - clothing requirement of the target clothing in a preset database according to the clothing type, and adjusting the standard dry - clothing requirement according to the number of clothing items to obtain the target dry - clothing requirement of the target clothing, where the target dry - clothing requirement includes a dry - clothing humidity requirement and a dry - clothing duration requirement;
[0026] Constructing a mapping relationship model of the third humidity difference, the dry - clothing duration requirement, and the dry - clothing intensity control parameter, and inputting the third humidity difference and the target dry - clothing requirement into the mapping relationship model for analysis to obtain the dry - clothing intensity control parameter for the dehumidifier;
[0027] Generating a dry - clothing range control parameter for the dehumidifier according to the clothing location, and generating a second control strategy according to the dry - clothing intensity control parameter and the dry - clothing range control parameter.
[0028] As an alternative embodiment, in the first aspect of the present invention, during the process of controlling the dehumidifier to operate according to the second control strategy, the method further includes:
[0029] Monitoring the humidity change speed and the effective dry - clothing range of the target clothing based on a target sensor associated with the target clothing, and predicting the dry - clothing completion duration of the target clothing according to the humidity change speed;
[0030] Judging whether the dry - clothing completion duration is greater than the dry - clothing duration requirement to obtain a first judgment result, and judging whether the effective dry - clothing range covers the target clothing to obtain a second judgment result;
[0031] Updating the second control strategy according to the first judgment result and the second judgment result, and optimizing the mapping relationship model according to the first judgment result, the second judgment result, and the updated second control strategy.
[0032] As an alternative embodiment, in the first aspect of the present invention, when the dehumidifier is in the automatic mode or in the dry - clothing mode, the method further includes:
[0033] Monitor the frost layer thickness of the dehumidifier based on a frost layer thickness sensor, and determine whether the frost layer thickness is greater than a preset frost layer thickness threshold;
[0034] When the frost layer thickness is greater than the frost layer thickness threshold, generate defrost control parameters for the dehumidifier according to the frost layer thickness;
[0035] Control the compressor in the dehumidifier to stop working according to the defrost control parameters, and control the fan in the dehumidifier to perform a defrost operation.
[0036] As an alternative implementation, in the first aspect of the present invention, the user requirements further include a dehumidification duration requirement, and the method further includes:
[0037] Determine the maximum dehumidification capacity of the dehumidifier when meeting the user's noise requirement, and determine the shortest dehumidification duration of the dehumidifier according to the user's humidity requirement and the maximum dehumidification capacity;
[0038] Judge whether the shortest dehumidification duration is greater than the dehumidification duration requirement. When the shortest dehumidification duration is greater than the dehumidification duration requirement, obtain the device information of at least one associated device in the environment where the dehumidifier is located;
[0039] Calculate the duration difference according to the shortest dehumidification duration and the dehumidification duration requirement, and generate a linkage dehumidification control parameter according to the device information of each associated device and the duration difference, and control each associated device to perform an auxiliary dehumidification operation according to the linkage dehumidification control parameter.
[0040] The second aspect of the present invention discloses a dehumidifier control device, which is applied to a dehumidifier. The dehumidifier includes an automatic mode and a clothes drying mode. The device includes:
[0041] A determination module, configured to determine a first humidity threshold corresponding to the automatic mode when the dehumidifier is in the automatic mode;
[0042] An acquisition module, configured to acquire environmental information of the environment where the dehumidifier is located, and detect user information in the environment where the dehumidifier is located based on a user detection sensor;
[0043] A generation module, configured to generate a first control strategy according to the environmental information, the first humidity threshold, and the user information;
[0044] The determination module is further configured to determine a second humidity threshold corresponding to the clothes drying mode when the dehumidifier is in the clothes drying mode;
[0045] The acquisition module is further configured to acquire clothing information of target clothing;
[0046] The generating module is further configured to generate a second control strategy according to the clothing information and the second humidity threshold;
[0047] The control module is configured to control the dehumidifier to operate according to the first control strategy or the second control strategy.
[0048] As an optional implementation manner, in the second aspect of the present invention, the environmental information includes environmental temperature and environmental humidity, and the first control strategy includes a first sub-control strategy or a second sub-control strategy;
[0049] The manner in which the generating module generates the first control strategy according to the environmental information, the first humidity threshold, and the user information specifically includes:
[0050] Judge whether the environmental humidity is greater than the first humidity threshold. When the environmental humidity is less than or equal to the first humidity threshold, calculate a first humidity difference according to the environmental humidity and the first humidity threshold, and generate the first sub-control strategy according to the environmental temperature and the first humidity difference;
[0051] When the environmental humidity is greater than the first humidity threshold, determine at least one humidity influencing factor in the environment, and analyze the humidity influence degree of each humidity influencing factor on the environment;
[0052] Judge whether there is at least one target user in the environment where the dehumidifier is located according to the user information, obtain a judgment result, and generate the second sub-control strategy according to the judgment result, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor.
[0053] As an optional implementation manner, in the second aspect of the present invention, the manner in which the generating module generates the second sub-control strategy according to the judgment result, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor specifically includes:
[0054] When the judgment result indicates that there is no target user in the environment where the dehumidifier is located, obtain a preset rapid dehumidification control strategy, and the rapid dehumidification control strategy is used to control the compressor and / or the fan in the dehumidifier to operate at the maximum power;
[0055] When the judgment result indicates that there is at least one target user in the environment where the dehumidifier is located, determine the user requirements of each target user according to the user information, and the user requirements include user humidity requirements and user noise requirements;
[0056] Calculate a second humidity difference based on the environmental humidity and the first humidity threshold, and generate a user dehumidification control strategy according to the second humidity difference, the user requirements of each target user, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor;
[0057] Generate the second sub-control strategy according to the fast dehumidification control strategy or the user dehumidification control strategy.
[0058] As an optional implementation manner, in the second aspect of the present invention, the clothing information includes clothing humidity, clothing quantity, clothing type, and clothing location;
[0059] The specific manner in which the generating module generates the second control strategy according to the clothing information and the second humidity threshold includes:
[0060] Calculate a third humidity difference based on the clothing humidity and the second humidity threshold;
[0061] Determine the standard dry clothing requirement of the target clothing in a preset database according to the clothing type, and adjust the standard dry clothing requirement according to the clothing quantity to obtain the target dry clothing requirement of the target clothing, where the target dry clothing requirement includes a dry clothing humidity requirement and a dry clothing duration requirement;
[0062] Construct a mapping relationship model of the third humidity difference, the dry clothing duration requirement, and the dry clothing intensity control parameter, and input the third humidity difference and the target dry clothing requirement into the mapping relationship model for analysis to obtain the dry clothing intensity control parameter for the dehumidifier;
[0063] Generate a dry clothing range control parameter for the dehumidifier according to the clothing location, and generate a second control strategy according to the dry clothing intensity control parameter and the dry clothing range control parameter.
[0064] As an optional implementation manner, in the second aspect of the present invention, the device further includes:
[0065] A first monitoring module, configured to monitor the humidity change speed and the effective dry clothing range of the target clothing based on a target sensor associated with the target clothing during the process of the control module controlling the dehumidifier to operate according to the second control strategy, and predict the dry clothing completion duration of the target clothing according to the humidity change speed;
[0066] A first judgment module, configured to judge whether the dry clothing completion duration is greater than the dry clothing duration requirement to obtain a first judgment result, and judge whether the effective dry clothing range covers the target clothing to obtain a second judgment result;
[0067] An update module, configured to update the second control strategy according to the first judgment result and the second judgment result, and optimize the mapping relationship model according to the first judgment result, the second judgment result, and the updated second control strategy.
[0068] As an optional implementation manner, in the second aspect of the present invention, the device further includes:
[0069] A second monitoring module, configured to monitor the frost layer thickness of the dehumidifier based on a frost layer thickness sensor when the dehumidifier is in the automatic mode or the clothes drying mode, and determine whether the frost layer thickness is greater than a preset frost layer thickness threshold;
[0070] The generation module is further configured to generate defrost control parameters for the dehumidifier according to the frost layer thickness when the frost layer thickness is greater than the frost layer thickness threshold;
[0071] The control module is further configured to control the compressor in the dehumidifier to stop working according to the defrost control parameters, and control the fan in the dehumidifier to perform a defrost operation.
[0072] As an optional implementation manner, in the second aspect of the present invention, the user requirements further include a dehumidification duration requirement;
[0073] The determination module is further configured to determine the maximum dehumidification capacity of the dehumidifier when meeting the user's noise requirement, and determine the shortest dehumidification duration of the dehumidifier according to the user's humidity requirement and the maximum dehumidification capacity;
[0074] The device further includes:
[0075] A second judgment module, configured to judge whether the shortest dehumidification duration is greater than the dehumidification duration requirement, and when the shortest dehumidification duration is greater than the dehumidification duration requirement, obtain the device information of at least one associated device in the environment where the dehumidifier is located;
[0076] A calculation module, configured to calculate a duration difference according to the shortest dehumidification duration and the dehumidification duration requirement, generate linkage dehumidification control parameters according to the device information of each associated device and the duration difference, and control each associated device to perform an auxiliary dehumidification operation according to the linkage dehumidification control parameters.
[0077] The third aspect of the present invention discloses another dehumidifier control device, and the device includes:
[0078] A memory storing executable program code;
[0079] A processor coupled to the memory;
[0080] The processor calls the executable program code stored in the memory and executes the dehumidifier control method disclosed in the first aspect of the present invention.
[0081] The fourth aspect of the present invention discloses a computer storage medium storing computer instructions, which are used to execute the dehumidifier control method disclosed in the first aspect of the present invention when called.
[0082] Compared with the prior art, the embodiments of the present invention have the following beneficial effects:
[0083] In the embodiments of the present invention, when the dehumidifier is in the automatic mode, a first humidity threshold corresponding to the automatic mode is determined, environmental information of the environment where the dehumidifier is located is obtained, and user information in the environment where the dehumidifier is located is detected based on a user detection sensor. According to the environmental information, the first humidity threshold, and the user information, a first control strategy is generated. When the dehumidifier is in the clothes drying mode, a second humidity threshold corresponding to the clothes drying mode is determined, clothing information of the target clothing is obtained, and a second control strategy is generated according to the clothing information and the second humidity threshold. It can be seen that implementing the present invention can improve the intelligence level of the dehumidifier in different operating modes, improve the dehumidification efficiency and accuracy of the dehumidifier in the automatic mode, improve the intelligence, accuracy, and efficiency of clothes drying and dehumidification in the clothes drying mode, and thus improve the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0084] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0085] Figure 1 It is a flowchart of a dehumidifier control method disclosed in an embodiment of the present invention;
[0086] Figure 2 It is a flowchart of another dehumidifier control method disclosed in an embodiment of the present invention;
[0087] Figure 3 It is a structural diagram of a dehumidifier control device disclosed in an embodiment of the present invention;
[0088] Figure 4 It is a structural diagram of another dehumidifier control device disclosed in an embodiment of the present invention;
[0089] Figure 5 It is a structural diagram of yet another dehumidifier control device disclosed in an embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0090] In order to enable those skilled in the art to better understand the solution of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without making creative efforts belong to the scope of protection of the present invention.
[0091] The terms "first", "second", etc. in the specification and claims of the present invention and the above-mentioned drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product or terminal comprising a series of steps or units is not limited to the listed steps or units, but optionally further includes steps or units not listed, or optionally further includes other steps or units inherent to these processes, methods, products or terminals.
[0092] Reference to "embodiment" herein means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the present invention. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.
[0093] The present invention discloses a dehumidifier control method, device, and computer storage medium, which can improve the intelligence level of the dehumidifier in different operating modes, improve the dehumidification efficiency and accuracy of the dehumidifier in the automatic mode, and improve the dryness and dehumidification intelligence, accuracy, and efficiency in the drying mode, thereby improving the user experience. The following will be described in detail respectively.
[0094] Embodiment 1
[0095] Please refer to Figure 1 , Figure 1 which is a schematic flowchart of a dehumidifier control method disclosed in an embodiment of the present invention. Among them, Figure 1The described dehumidifier control method can be applied to a dehumidifier, which can include an automatic mode and a clothes drying mode. The dehumidifier can include a display screen, a compressor, and a blower, and can also include a dehumidifier control device. The dehumidifier control device can include any one of a user device, an intelligent server, or an intelligent platform for controlling the dehumidifier. The user device includes, but is not limited to, at least one of a smart phone (such as an Android phone, an iOS phone, etc.), a smart phone number watch, and a smart home device, etc. The intelligent server includes a local server or a cloud server, which is not limited in the embodiments of the present invention. As Figure 1 shown, the dehumidifier control method can include the following operations:
[0096] 101. When the dehumidifier is in the automatic mode, determine the first humidity threshold corresponding to the automatic mode.
[0097] In the embodiments of the present invention, optionally, after the dehumidifier is powered on, it can automatically enter the automatic mode or the clothes drying mode based on the operating state before the last shutdown, or it can automatically enter the automatic mode or the clothes drying mode based on the temperature and humidity information of the current environment. It can also be set by the user to the automatic mode or the clothes drying mode. Among them, the user can set the operating mode of the dehumidifier to the automatic mode through the physical buttons or virtual buttons on the dehumidifier. The user can also set the operating mode of the dehumidifier to the automatic mode by voice control. The user can also set the operating mode of the dehumidifier to the automatic mode through a smart device wirelessly connected to the dehumidifier. The dehumidifier has WIFI / Internet of Things, infrared sensing / receiving functions, such as a smart phone in the same local area network as the dehumidifier. The dehumidifier does not directly display the current humidity within a fixed duration after being powered on, but displays it in the form of a running light to prevent the situation of excessive change in the humidity display data when starting up. The fixed duration can be 10 seconds, which is not limited in the present invention.
[0098] In the embodiments of the present invention, optionally, when the dehumidifier is in the automatic mode, the first humidity threshold corresponding to the automatic mode can be determined. The first humidity threshold can represent the humidity setting value of the dehumidifier in the current environment and the automatic mode. The first humidity threshold can be set by the user or automatically calculated by the dehumidifier. For example, the user can increase or decrease the first humidity threshold by clicking a button on the dehumidifier. For example, the setting range of the first humidity threshold of the dehumidifier can include 35%-70%. Each time the user clicks the button, the first humidity threshold increases by 5%. After the first humidity threshold reaches 70% and the user clicks the button again, the first humidity threshold returns to 35%, which is not limited in the present invention.
[0099] 102. Obtain the environmental information of the environment where the dehumidifier is located, and detect the user information in the environment where the dehumidifier is located based on the user detection sensor.
[0100] In an embodiment of the present invention, optionally, environmental information can be obtained through a temperature and humidity sensor integrated on the dehumidifier, or through a temperature and humidity sensor that is linked to the dehumidifier and is disposed in the environment where the dehumidifier is located. The environment where the dehumidifier is located can include a bedroom environment, a basement environment, a living room environment, an office environment, etc. The environmental information can include environmental temperature and environmental humidity. The user detection sensor can include an infrared thermal imaging sensor and / or a motion sensing sensor. Among them, the user detection sensor can be integrated on the dehumidifier, or can be disposed in the environment where the dehumidifier is located and is linked with the dehumidifier for control. The user information can include whether there is a user in the environment. When there is a user, the user information can include one or more combinations of information such as the number of users, age, health status, and exercise status. The present invention does not make any limitations in this regard.
[0101] 103. Generate a first control strategy according to the environmental information, the first humidity threshold, and the user information.
[0102] In an embodiment of the present invention, optionally, a first control strategy can be generated according to the relationship between the environmental humidity and the first humidity threshold, the environmental temperature, and whether there is a target user in the environment where the dehumidifier is located. The first control strategy can include a first compressor control parameter for the compressor of the dehumidifier and a first fan control parameter for the fan. Specifically, the first compressor control parameter can include a first compressor operating frequency control parameter and a first compressor operating duration control parameter, and the first fan control parameter can include a first fan speed control parameter and a first fan operating duration control parameter. The present invention does not make any limitations in this regard.
[0103] 104. When the dehumidifier is in the clothes drying mode, determine the second humidity threshold corresponding to the clothes drying mode.
[0104] In an embodiment of the present invention, optionally, the second humidity threshold corresponding to the clothes drying mode can represent the humidity value that the target clothes or the position or environment where the target clothes are located needs to reach after performing the clothes drying operation on the target clothes. The second humidity threshold can be set by the user or automatically determined by the dehumidifier. The present invention does not make any limitations in this regard.
[0105] 105. Obtain the clothing information of the target clothes, and generate a second control strategy according to the clothing information and the second humidity threshold.
[0106] In an embodiment of the present invention, optionally, the clothing information of the target clothing may include clothing humidity, the number of clothing items, clothing types, and the location of the clothing. The clothing information of the target clothing can be obtained based on temperature and humidity sensors, infrared sensors, cameras, etc. integrated in the dehumidifier, or can also be obtained based on temperature and humidity sensors, infrared sensors, cameras, etc. fixed at the clothing drying location. The second control strategy may include a second compressor control parameter for the compressor of the dehumidifier and a second fan control parameter for the fan. Specifically, the second compressor control parameter may include a second compressor operating frequency control parameter and a second compressor operating duration control parameter, and the second fan control parameter may include a second fan speed control parameter and a second fan operating duration control parameter. The second control strategy may also include a dry clothing and dehumidification range control parameter for the dehumidifier, which is not limited in the present invention.
[0107] 106. Control the operation of the dehumidifier according to the first control strategy or the second control strategy.
[0108] It can be seen that the Figure 1 described dehumidifier control method can, when the dehumidifier is in the automatic mode, determine the first humidity threshold corresponding to the automatic mode, obtain the environmental information of the environment where the dehumidifier is located, and based on the user detection sensor, detect the user information in the environment where the dehumidifier is located. According to the environmental information, the first humidity threshold, and the user information, generate the first control strategy, which can improve the intelligence level, dehumidification efficiency, and dehumidification accuracy of the dehumidifier. When the dehumidifier is in the dry clothing mode, determine the second humidity threshold corresponding to the dry clothing mode, obtain the clothing information of the target clothing, and according to the clothing information and the second humidity threshold, generate the second control strategy, which can automatically determine the dry clothing strategy according to the clothing information, improve the dry clothing and dehumidification intelligence, accuracy, and efficiency of the dehumidifier, and further improve the user experience.
[0109] In an optional embodiment, the clothing information includes clothing humidity, the number of clothing items, clothing types, and the location of the clothing;
[0110] Generating the second control strategy according to the clothing information and the second humidity threshold may include the following operations:
[0111] Calculate a third humidity difference according to the clothing humidity and the second humidity threshold;
[0112] According to the clothing type, determine the standard dry clothing requirement of the target clothing in the preset database, and adjust the standard dry clothing requirement according to the number of clothing items to obtain the target dry clothing requirement of the target clothing. The target dry clothing requirement includes a dry clothing humidity requirement and a dry clothing duration requirement;
[0113] Construct a mapping relationship model for the third humidity difference, dry - clothes duration requirement, and dry - clothes intensity control parameters, and input the third humidity difference and the target dry - clothes requirement into the mapping relationship model for analysis to obtain the dry - clothes intensity control parameters for the dehumidifier;
[0114] Generate the dry - clothes range control parameters for the dehumidifier according to the clothing position, and generate the second control strategy according to the dry - clothes intensity control parameters and the dry - clothes range control parameters.
[0115] In this optional embodiment, optionally, the clothing information includes clothing humidity, the number of clothes, clothing types, and clothing position. Among them, the clothing types can include clothing material types, such as cotton, linen, silk, wool, etc. The humidity requirements for each type of clothing material are different after the dry - clothes operation. The clothing position can include the height, width of the clothes, and the distance from the dehumidifier, etc. This embodiment does not make any limitations.
[0116] In this optional embodiment, optionally, the standard dry - clothes requirement for the target clothing can be determined in the preset database according to the clothing type. Different types of clothing have different shrinkage degrees at different humidities, so the standard dry - clothes requirements for different clothes can be different. The standard dry - clothes requirement can include the standard dry - clothes humidity requirement and the standard dry - clothes duration requirement. Specifically, when performing the dry - clothes operation on the target clothing according to the standard dry - clothes requirement, the deformation degree of the clothing is within the preset acceptable range. If the humidity of the clothing is too low after the dry - clothes operation is completed, it may cause excessive deformation of the clothing; the standard dry - clothes requirement can be adjusted according to the number of clothes to obtain the target dry - clothes requirement for the target clothing. The target dry - clothes requirement includes the dry - clothes humidity requirement and the dry - clothes duration requirement. This embodiment does not make any limitations.
[0117] In this optional embodiment, optionally, a mapping relationship model for the third humidity difference, dry - clothes duration requirement, and dry - clothes intensity control parameters can be constructed. The mapping relationship model can be obtained by training based on machine - learning algorithms or an empirical formula summarized from a large amount of experimental data. Input the third humidity difference and the target dry - clothes requirement into the mapping relationship model for analysis to obtain the dry - clothes intensity control parameters for the dehumidifier. The dry - clothes intensity control parameters can include the operating power control parameters of the compressor of the dehumidifier, the fan speed control parameters, and the operating duration control parameters of the compressor and / or the fan. This embodiment does not make any limitations.
[0118] In this optional embodiment, optionally, the dry - clothes range control parameters for the dehumidifier can be generated according to the clothing position. The dry - clothes range control parameters can include the dry - clothes height range control parameters, the dry - clothes width range, and the dry - clothes distance control parameters. Specifically, it can include the air - supply angle control parameters of the fan, the swing range control parameters, and the swing frequency control parameters. This embodiment does not make any limitations.
[0119] In this optional embodiment, optionally, during the process of controlling the dehumidifier to perform the clothes drying operation according to the second strategy, the humidity of the target clothes can be monitored in real time. When it is detected that the humidity of the target clothes decreases, the operating frequencies of the compressor and / or the blower of the dehumidifier can be controlled step by step according to the humidity decrease data of the target clothes, so as to reduce the energy consumption. This embodiment is not limited.
[0120] It can be seen that implementing this optional embodiment can calculate the third humidity difference according to the clothes humidity and the second humidity threshold, determine the standard clothes drying requirement of the target clothes in the preset database according to the clothes type, and adjust the standard clothes drying requirement according to the number of clothes to obtain the target clothes drying requirement of the target clothes. The target clothes drying requirement includes the clothes drying humidity requirement and the clothes drying duration requirement. A mapping relationship model of the third humidity difference, the clothes drying duration requirement, and the clothes drying intensity control parameter is constructed, and the third humidity difference and the target clothes drying requirement are input into the mapping relationship model for analysis to obtain the clothes drying intensity control parameter for the dehumidifier. According to the clothes position, a clothes drying range control parameter for the dehumidifier is generated, and a second control strategy is generated according to the clothes drying intensity control parameter and the clothes drying range control parameter. It can determine the clothes dehumidification requirement according to information such as the clothes type, and then determine the dehumidification intensity for the clothes. According to information such as the number and position of the clothes, the dehumidification range is determined, which can improve the dehumidification accuracy and efficiency of the clothes, improve the dehumidification coverage comprehensiveness of the clothes, and reduce the damage degree of the dehumidification operation to the clothes, thereby improving the user experience.
[0121] In another optional embodiment, during the process of controlling the dehumidifier to operate according to the second control strategy, the dehumidifier control method may further include the following operations:
[0122] Based on the target sensor associated with the target clothes, monitor the humidity change speed and the effective clothes drying range of the target clothes, and predict the clothes drying completion duration of the target clothes according to the humidity change speed;
[0123] Judge whether the clothes drying completion duration is greater than the clothes drying duration requirement to obtain a first judgment result, and judge whether the effective clothes drying range covers the target clothes to obtain a second judgment result;
[0124] Update the second control strategy according to the first judgment result and the second judgment result, and optimize the mapping relationship model according to the first judgment result, the second judgment result, and the updated second control strategy.
[0125] In this optional embodiment, optionally, the humidity change rate and the effective drying range of the target clothing can be monitored based on a target sensor associated with the target clothing. The target sensor associated with the target clothing can include a humidity sensor integrated in the dehumidifier or a humidity sensor arranged at the clothing drying position. The dryness completion duration of the target clothing can be predicted according to the humidity change rate, which is not limited in this embodiment.
[0126] In this optional embodiment, optionally, it can be determined whether the dryness completion duration is greater than the required drying duration to obtain a first determination result, and it can be determined whether the effective drying range covers the target clothing to obtain a second determination result. The second control strategy can be updated according to the first determination result and the second determination result. Specifically, when the first determination result indicates that the dryness completion duration is greater than the required drying duration, the operating power of the compressor and the fan in the dehumidifier can be increased to accelerate the dehumidification speed. When the first determination result indicates that the dryness completion duration is less than the required drying duration, the operating power of the compressor and the fan in the dehumidifier can be reduced to reduce the probability of excessive deformation caused by rapid drying of the clothing. When the second determination result indicates that the effective drying range does not cover the target clothing, the air outlet coverage range of the dehumidifier can be increased to ensure that all clothing is effectively dried. The mapping relationship model can be optimized according to the first determination result, the second determination result, and the updated second control strategy, which is not limited in this embodiment.
[0127] It can be seen that implementing this optional embodiment can monitor the humidity change rate and the effective drying range of the target clothing based on a target sensor associated with the target clothing, predict the dryness completion duration of the target clothing according to the humidity change rate, determine whether the dryness completion duration is greater than the required drying duration to obtain a first determination result, determine whether the effective drying range covers the target clothing to obtain a second determination result, update the second control strategy according to the first determination result and the second determination result, and optimize the mapping relationship model according to the first determination result, the second determination result, and the updated second control strategy. It can update the control strategy according to the clothing humidity change during the clothing dehumidification process, improve the dehumidification efficiency and accuracy of the clothing, reduce the energy consumption of the dehumidifier, improve the user experience, and optimize the mapping relationship model to improve the model accuracy.
[0128] In another optional embodiment, when the dehumidifier is in the automatic mode or the drying mode, the dehumidifier control method may further include the following operations:
[0129] Monitor the frost layer thickness of the dehumidifier based on a frost layer thickness sensor, and determine whether the frost layer thickness is greater than a preset frost layer thickness threshold;
[0130] When the frost layer thickness is greater than the frost layer thickness threshold, defrost control parameters for the dehumidifier are generated according to the frost layer thickness;
[0131] According to the defrost control parameters, the compressor in the dehumidifier is controlled to stop working, and the fan in the dehumidifier is controlled to perform defrosting operation.
[0132] In this optional embodiment, optionally, the frost layer thickness sensor can be integrated on the dehumidifier. When the frost layer thickness is greater than the frost layer thickness threshold, the dehumidifier is controlled to enter the defrost mode. The defrost control parameters for the dehumidifier can be generated according to the frost layer thickness. The defrost control parameters can be used to control the compressor in the dehumidifier to stop working, and the fan in the dehumidifier is controlled to perform defrosting operation. When the frost layer thickness in the dehumidifier meets the condition for exiting the defrost mode, the dehumidifier is controlled to exit the defrost mode. This embodiment is not limited.
[0133] It can be seen that implementing this optional embodiment can monitor the frost layer thickness of the dehumidifier based on the frost layer thickness sensor, and determine whether the frost layer thickness is greater than the preset frost layer thickness threshold. When the frost layer thickness is greater than the frost layer thickness threshold, the defrost control parameters for the dehumidifier are generated according to the frost layer thickness. According to the defrost control parameters, the compressor in the dehumidifier is controlled to stop working, and the fan in the dehumidifier is controlled to perform defrosting operation. It can perform defrosting operation based on the frost layer thickness in the automatic mode or the drying mode, ensure the normal operation of the dehumidifier, improve the operation stability of the dehumidifier, and can accurately judge whether the frost layer is completely removed, avoid frequently entering the defrost mode, improve the defrost efficiency, and reduce the impact of the frost layer on the normal operation of the dehumidifier.
[0134] Embodiment Two
[0135] Please refer to Figure 2 , Figure 2 which is a schematic flow chart of a dehumidifier control method disclosed in an embodiment of the present invention. Among them, Figure 2 The described dehumidifier control method can be applied to a dehumidifier. The dehumidifier can include an automatic mode and a drying mode. The dehumidifier can include a display screen, a compressor, and a fan, and can also include a dehumidifier control device. The dehumidifier control device can include any one of a user device, an intelligent server, or an intelligent platform for controlling the dehumidifier. The user device includes, but is not limited to, at least one of a smart phone (such as an Android phone, an iOS phone, etc.), a smart phone watch, and a smart home device, etc. The intelligent server includes a local server or a cloud server. This embodiment of the present invention is not limited. As Figure 2 shown, the dehumidifier control method can include the following operations:
[0136] 201. When the dehumidifier is in the automatic mode, determine the first humidity threshold corresponding to the automatic mode.
[0137] 202. Obtain the environmental information of the environment where the dehumidifier is located, and based on the user detection sensor, detect the user information in the environment where the dehumidifier is located.
[0138] 203. Determine whether the environmental humidity is greater than the first humidity threshold.
[0139] 204. When the environmental humidity is less than or equal to the first humidity threshold, calculate the first humidity difference according to the environmental humidity and the first humidity threshold, and generate a first sub-control strategy according to the environmental temperature and the first humidity difference.
[0140] In an embodiment of the present invention, optionally, when the environmental humidity is less than or equal to the first humidity threshold, calculate the first humidity difference according to the environmental humidity and the first humidity threshold. The first sub-control strategy can be generated by calculating the environmental temperature and the first humidity difference, or can be screened out after matching the environmental temperature and the first humidity difference in the database. Different humidity differences corresponding to the compressor operating frequency and / or fan speed can be stored in the database, and the present invention does not make a limitation.
[0141] 205. When the environmental humidity is greater than the first humidity threshold, determine at least one humidity influencing factor in the environment, and analyze the humidity influence degree of each humidity influencing factor on the environment.
[0142] In an embodiment of the present invention, optionally, when the environmental humidity is greater than the first humidity threshold, determine at least one humidity influencing factor in the environment. The humidity influencing factors can include one or more combinations of outdoor temperature and humidity, weather conditions, indoor moisture evaporation conditions (such as cooking, boiling soup, taking a bath, mopping the floor, etc.), ventilation conditions, equipment operation conditions (such as air conditioners, heaters, etc.), etc., and the present invention does not make a limitation.
[0143] 206. Determine whether there is at least one target user in the environment where the dehumidifier is located according to the user information, obtain the judgment result, and generate a second sub-control strategy according to the judgment result, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor.
[0144] In an embodiment of the present invention, optionally, it can be determined whether there is at least one target user in the environment where the dehumidifier is located according to the user information. When there is no user in the environment where the dehumidifier is located, the compressor and / or fan of the dehumidifier can be controlled to operate at the maximum operating power to achieve rapid dehumidification. When there is at least one target user in the environment where the dehumidifier is located, a second sub-control strategy can be generated according to the user information, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor, and the present invention does not make a limitation.
[0145] 207. When the dehumidifier is in the clothes drying mode, determine the second humidity threshold corresponding to the clothes drying mode.
[0146] 208. Obtain the clothing information of the target clothing, and generate a second control strategy based on the clothing information and the second humidity threshold.
[0147] 209. Control the operation of the dehumidifier according to the first control strategy or the second control strategy.
[0148] In the embodiments of the present invention, for other descriptions of steps 201, 202, and steps 207-209, please refer to the detailed descriptions of steps 101, 102, and steps 104-106 in Embodiment 1 of the present invention, and the embodiments of the present invention will not be elaborated herein.
[0149] It can be seen that the Figure 2 described dehumidifier control method can, when the dehumidifier is in the automatic mode, determine the first humidity threshold corresponding to the automatic mode, obtain the environmental information of the environment where the dehumidifier is located, and based on the user detection sensor to detect the user information in the environment where the dehumidifier is located, determine whether the environmental humidity is greater than the first humidity threshold. When the environmental humidity is less than or equal to the first humidity threshold, calculate the first humidity difference according to the environmental humidity and the first humidity threshold, and generate a first sub-control strategy according to the environmental temperature and the first humidity difference. When the environmental humidity is greater than the first humidity threshold, determine at least one humidity influencing factor in the environment, and analyze the humidity influence degree of each humidity influencing factor on the environment. Determine whether there is at least one target user in the environment where the dehumidifier is located according to the user information, obtain the judgment result, and generate a second sub-control strategy according to the judgment result, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor. It can automatically generate corresponding dehumidification strategies according to different environmental humidities and user information in the scenario, improve the intelligence level, dehumidification accuracy, and dehumidification efficiency of the dehumidifier. When the dehumidifier is in the dry clothing mode, determine the second humidity threshold corresponding to the dry clothing mode, obtain the clothing information of the target clothing, and generate a second control strategy according to the clothing information and the second humidity threshold, which can automatically determine the dry clothing strategy according to the clothing information, improve the dry clothing and dehumidification intelligence, accuracy, and efficiency of the dehumidifier, and further improve the user experience.
[0150] In an alternative embodiment, generating the second sub-control strategy according to the judgment result, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor may include the following operations:
[0151] When the judgment result indicates that there is no target user in the environment where the dehumidifier is located, obtain the preset rapid dehumidification control strategy, and the rapid dehumidification control strategy is used to control the compressor and / or the blower in the dehumidifier to operate at the maximum power;
[0152] When the judgment result indicates that there is at least one target user in the environment where the dehumidifier is located, determine the user requirements of each target user according to the user information. The user requirements include the user's humidity requirement and the user's noise requirement;
[0153] Calculate the second humidity difference according to the ambient humidity and the first humidity threshold, and generate a user dehumidification control strategy according to the second humidity difference, the user requirements of each target user, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor;
[0154] Generate a second sub-control strategy according to the fast dehumidification control strategy or the user dehumidification control strategy.
[0155] In this optional embodiment, optionally, when the judgment result indicates that there is no target user in the environment where the dehumidifier is located, obtain a preset fast dehumidification control strategy. The fast dehumidification control strategy can be used to control the compressor and / or the fan in the dehumidifier to operate at the maximum power to achieve the effect of fast dehumidification. This embodiment is not limited.
[0156] In this optional embodiment, optionally, when the judgment result indicates that there is at least one target user in the environment where the dehumidifier is located, the user requirements of each target user can be determined according to the user information. The user requirements can include the user's humidity requirement and the user's noise requirement. Specifically, the user age, user health status, user movement status, etc. of each target user can be comprehensively analyzed to determine the user requirements of each target user. For example, the user movement status can include the sleep state. When the user is in the sleep state, the user's noise requirement of the target user can include less noise; further, the historical requirements of each target user can also be obtained from the database, and the user requirements can be corrected according to the historical requirements. This embodiment is not limited.
[0157] In this optional embodiment, optionally, the second humidity difference can be calculated according to the ambient humidity and the first humidity threshold, and a user dehumidification control strategy can be generated according to the second humidity difference, the user requirements of each target user, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor. The user dehumidification control strategy can include a control strategy for the compressor of the dehumidifier and a control strategy only for the fan, and when the dehumidifier is controlled to operate according to the user dehumidification control strategy, the noise generated by the dehumidifier meets the user's noise requirement of the target user. This embodiment is not limited.
[0158] It can be seen that implementing this optional embodiment can obtain a preset fast dehumidification control strategy when the judgment result indicates that there is no target user in the environment where the dehumidifier is located, and can perform fast dehumidification when there is no user in the environment, improving the dehumidification efficiency of the dehumidifier. When the judgment result indicates that there is at least one target user in the environment where the dehumidifier is located, determine the user needs of each target user according to the user information, calculate the second humidity difference according to the environmental humidity and the first humidity threshold, and generate a user dehumidification control strategy according to the second humidity difference, the user needs of each target user, each humidity influencing factor, and the humidity influencing degree corresponding to each humidity influencing factor. Generate a second sub-control strategy according to the fast dehumidification control strategy or the user dehumidification control strategy, which can reduce the noise of the dehumidifier while meeting the user's dehumidification needs when there is a user in the environment, improve the intelligence and dehumidification efficiency of the dehumidifier, and enhance the user experience.
[0159] In another optional embodiment, the user needs further include a dehumidification duration requirement, and the dehumidifier control method may further include the following operations:
[0160] Determine the maximum dehumidification capacity of the dehumidifier when meeting the user's noise requirement, and determine the shortest dehumidification duration of the dehumidifier according to the user's humidity requirement and the maximum dehumidification capacity;
[0161] Judge whether the shortest dehumidification duration is greater than the dehumidification duration requirement. When the shortest dehumidification duration is greater than the dehumidification duration requirement, obtain the device information of at least one associated device in the environment where the dehumidifier is located;
[0162] Calculate the duration difference according to the shortest dehumidification duration and the dehumidification duration requirement, generate linkage dehumidification control parameters according to the device information of each associated device and the duration difference, and control each associated device to perform auxiliary dehumidification operations according to the linkage dehumidification control parameters.
[0163] In this optional embodiment, optionally, the user needs may further include a dehumidification duration requirement. The dehumidification duration requirement may indicate the longest duration that the target user allows the dehumidifier to adjust the indoor humidity to the optimal humidity. The maximum dehumidification capacity of the dehumidifier when meeting the user's noise requirement can be determined, that is, the maximum operating frequency of the compressor and the maximum rotational speed of the fan when the dehumidifier meets the user's noise requirement. The shortest dehumidification duration of the dehumidifier can be determined according to the user's humidity requirement and the maximum dehumidification capacity, that is, the dehumidification duration when the dehumidifier operates at its maximum dehumidification capacity when meeting the user's noise requirement. This embodiment is not limited.
[0164] In this optional embodiment, optionally, it can be determined whether the shortest dehumidification duration is greater than the dehumidification duration requirement. When the shortest dehumidification duration is less than the dehumidification duration requirement, it indicates that the dehumidifier can meet the user's needs. When the shortest dehumidification duration is greater than the dehumidification duration requirement, it means that when the dehumidifier meets the user's noise requirement, it cannot complete the dehumidification operation within the duration corresponding to the dehumidification duration requirement. At this time, the device information of at least one associated device in the environment where the dehumidifier is located can be obtained. The associated device can refer to a device that can change or affect the environmental humidity of the environment where the dehumidifier is located. Specifically, the associated devices of the dehumidifier can include one or more combinations of an air conditioner, an exhaust fan, a fresh air system, a heater, a humidifier, etc. The device information of the associated device can include the device operation state, the humidity influence ability of the associated device, etc., which are not limited in this embodiment.
[0165] In this optional embodiment, optionally, the duration difference can be calculated based on the shortest dehumidification duration and the dehumidification duration requirement. The duration difference can reflect the dehumidification capacity gap of the dehumidifier. Based on the device information of each associated device and the duration difference, a linkage dehumidification control parameter is generated, and each associated device is controlled to perform an auxiliary dehumidification operation according to the linkage dehumidification control parameter. For example, the heater can be controlled to work to increase the indoor temperature, thereby reducing the humidity, which is not limited in this embodiment.
[0166] It can be seen that implementing this optional embodiment can determine the maximum dehumidification capacity of the dehumidifier when meeting the user's noise requirement, and determine the shortest dehumidification duration of the dehumidifier according to the user's humidity requirement and the maximum dehumidification capacity. Determine whether the shortest dehumidification duration is greater than the dehumidification duration requirement. When the shortest dehumidification duration is greater than the dehumidification duration requirement, obtain the device information of at least one associated device in the environment where the dehumidifier is located, calculate the duration difference based on the shortest dehumidification duration and the dehumidification duration requirement, and generate a linkage dehumidification control parameter based on the device information of each associated device and the duration difference, and control each associated device to perform an auxiliary dehumidification operation according to the linkage dehumidification control parameter. It can perform auxiliary dehumidification through associated devices when the dehumidification capacity of the dehumidifier is insufficient, meet the user's dehumidification requirement while ensuring the dehumidification effect, and improve the user experience.
[0167] Embodiment III
[0168] Please refer to Figure 3 , Figure 3 which is a schematic structural diagram of a dehumidifier control device disclosed in an embodiment of the present invention. Among them, Figure 3The described dehumidifier control device can be applied to a dehumidifier, which can include an automatic mode and a clothes drying mode. The dehumidifier can include a display screen, a compressor, and a blower. The dehumidifier control device can include any one of a user device, an intelligent server, or an intelligent platform for controlling the dehumidifier. The user device includes, but is not limited to, at least one of a smart phone (such as an Android phone, an iOS phone, etc.), a smart phone number watch, and a smart home device. The intelligent server includes a local server or a cloud server, which is not limited in the embodiments of the present invention. As Figure 3 shown, the dehumidifier control device can include:
[0169] A determination module 301, configured to determine a first humidity threshold corresponding to the automatic mode when the dehumidifier is in the automatic mode;
[0170] An acquisition module 302, configured to acquire environmental information of the environment where the dehumidifier is located, and detect user information in the environment where the dehumidifier is located based on a user detection sensor;
[0171] A generation module 303, configured to generate a first control strategy according to the environmental information, the first humidity threshold, and the user information;
[0172] The determination module 301 is further configured to determine a second humidity threshold corresponding to the clothes drying mode when the dehumidifier is in the clothes drying mode;
[0173] The acquisition module 302 is further configured to acquire clothing information of the target clothing;
[0174] The generation module 303 is further configured to generate a second control strategy according to the clothing information and the second humidity threshold;
[0175] A control module 304, configured to control the operation of the dehumidifier according to the first control strategy or the second control strategy.
[0176] It can be seen that implementing Figure 3 the described dehumidifier control device can, when the dehumidifier is in the automatic mode, determine a first humidity threshold corresponding to the automatic mode, acquire environmental information of the environment where the dehumidifier is located, and detect user information in the environment where the dehumidifier is located based on a user detection sensor, and generate a first control strategy according to the environmental information, the first humidity threshold, and the user information, which can improve the intelligence level, dehumidification efficiency, and dehumidification accuracy of the dehumidifier. When the dehumidifier is in the clothes drying mode, it can determine a second humidity threshold corresponding to the clothes drying mode, acquire clothing information of the target clothing, and generate a second control strategy according to the clothing information and the second humidity threshold, which can automatically determine the clothes drying strategy according to the clothing information, improve the clothes drying and dehumidification intelligence, accuracy, and efficiency of the dehumidifier, and further improve the user experience.
[0177] In an alternative embodiment, asFigure 4 As shown, the environmental information includes environmental temperature and environmental humidity, and the first control strategy includes a first sub-control strategy or a second sub-control strategy;
[0178] The specific manner in which the generation module 303 generates the first control strategy according to the environmental information, the first humidity threshold, and the user information includes:
[0179] Judge whether the environmental humidity is greater than the first humidity threshold. When the environmental humidity is less than or equal to the first humidity threshold, calculate the first humidity difference according to the environmental humidity and the first humidity threshold, and generate a first sub-control strategy according to the environmental temperature and the first humidity difference;
[0180] When the environmental humidity is greater than the first humidity threshold, determine at least one humidity influencing factor in the environment, and analyze the degree of humidity influence of each humidity influencing factor on the environment;
[0181] Judge whether there is at least one target user in the environment where the dehumidifier is located according to the user information, obtain the judgment result, and generate a second sub-control strategy according to the judgment result, each humidity influencing factor, and the degree of humidity influence corresponding to each humidity influencing factor.
[0182] It can be seen that implementing Figure 4 The described dehumidifier control device can, when the dehumidifier is in the automatic mode, determine the first humidity threshold corresponding to the automatic mode, obtain the environmental information of the environment where the dehumidifier is located, and based on the user detection sensor to detect the user information in the environment where the dehumidifier is located, judge whether the environmental humidity is greater than the first humidity threshold. When the environmental humidity is less than or equal to the first humidity threshold, calculate the first humidity difference according to the environmental humidity and the first humidity threshold, and generate a first sub-control strategy according to the environmental temperature and the first humidity difference. When the environmental humidity is greater than the first humidity threshold, determine at least one humidity influencing factor in the environment, and analyze the degree of humidity influence of each humidity influencing factor on the environment. Judge whether there is at least one target user in the environment where the dehumidifier is located according to the user information, obtain the judgment result, and generate a second sub-control strategy according to the judgment result, each humidity influencing factor, and the degree of humidity influence corresponding to each humidity influencing factor. It can automatically generate corresponding dehumidification strategies according to different environmental humidities and user information in the scenario, improve the intelligence level, dehumidification accuracy, and dehumidification efficiency of the dehumidifier. When the dehumidifier is in the clothes drying mode, determine the second humidity threshold corresponding to the clothes drying mode, obtain the clothing information of the target clothing, and generate a second control strategy according to the clothing information and the second humidity threshold. It can automatically determine the clothes drying strategy according to the clothing information, improve the clothes drying and dehumidification intelligence, accuracy, and efficiency of the dehumidifier, and thus improve the user experience.
[0183] In another alternative embodiment, as Figure 4As shown in the figure, the specific manner in which the generation module 303 generates the second sub-control strategy according to the judgment result, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor includes:
[0184] When the judgment result indicates that there is no target user in the environment where the dehumidifier is located, obtain a preset rapid dehumidification control strategy, and the rapid dehumidification control strategy is used to control the compressor and / or the fan in the dehumidifier to operate at the maximum power;
[0185] When the judgment result indicates that there is at least one target user in the environment where the dehumidifier is located, determine the user requirements of each target user according to the user information, and the user requirements include user humidity requirements and user noise requirements;
[0186] Calculate a second humidity difference according to the environmental humidity and the first humidity threshold, and generate a user dehumidification control strategy according to the second humidity difference, the user requirements of each target user, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor;
[0187] Generate the second sub-control strategy according to the rapid dehumidification control strategy or the user dehumidification control strategy.
[0188] It can be seen that implementing Figure 4 the described dehumidifier control device can obtain a preset rapid dehumidification control strategy when the judgment result indicates that there is no target user in the environment where the dehumidifier is located, can perform rapid dehumidification when there is no user in the environment, improve the dehumidification efficiency of the dehumidifier, and when the judgment result indicates that there is at least one target user in the environment where the dehumidifier is located, determine the user requirements of each target user according to the user information, calculate a second humidity difference according to the environmental humidity and the first humidity threshold, and generate a user dehumidification control strategy according to the second humidity difference, the user requirements of each target user, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor, and generate the second sub-control strategy according to the rapid dehumidification control strategy or the user dehumidification control strategy, which can reduce the noise of the dehumidifier while meeting the user's dehumidification requirements when there is a user in the environment, improve the intelligence level and dehumidification efficiency of the dehumidifier, and enhance the user experience.
[0189] In yet another alternative embodiment, as Figure 4 shown, the clothing information includes clothing humidity, the number of clothes, clothing types, and the location of the clothes;
[0190] The specific manner in which the generation module 303 generates the second control strategy according to the clothing information and the second humidity threshold includes:
[0191] Calculate a third humidity difference according to the clothing humidity and the second humidity threshold;
[0192] Determine the standard drying requirement of the target clothing in the preset database according to the clothing type, and adjust the standard drying requirement according to the number of clothes to obtain the target drying requirement of the target clothing, where the target drying requirement includes the drying humidity requirement and the drying duration requirement;
[0193] Construct a mapping relationship model of the third humidity difference, the drying duration requirement, and the drying intensity control parameter, and input the third humidity difference and the target drying requirement into the mapping relationship model for analysis to obtain the drying intensity control parameter for the dehumidifier;
[0194] Generate the drying range control parameter for the dehumidifier according to the clothing position, and generate the second control strategy according to the drying intensity control parameter and the drying range control parameter.
[0195] It can be seen that implementing Figure 4 The described dehumidifier control device can calculate the third humidity difference according to the clothing humidity and the second humidity threshold, determine the standard drying requirement of the target clothing in the preset database according to the clothing type, and adjust the standard drying requirement according to the number of clothes to obtain the target drying requirement of the target clothing, where the target drying requirement includes the drying humidity requirement and the drying duration requirement, construct a mapping relationship model of the third humidity difference, the drying duration requirement, and the drying intensity control parameter, input the third humidity difference and the target drying requirement into the mapping relationship model for analysis to obtain the drying intensity control parameter for the dehumidifier, generate the drying range control parameter for the dehumidifier according to the clothing position, and generate the second control strategy according to the drying intensity control parameter and the drying range control parameter. It can determine the clothing dehumidification requirement according to information such as the clothing type, and then determine the dehumidification intensity for the clothing, determine the dehumidification range according to information such as the number and position of the clothes, improve the dehumidification accuracy and efficiency for the clothes, improve the dehumidification coverage comprehensiveness for the clothes, and reduce the damage degree of the dehumidification operation to the clothes, thereby improving the user experience.
[0196] In another optional embodiment, as Figure 4 shown, the dehumidifier control device may further include:
[0197] The first monitoring module 305 is configured to, during the process of the control module 304 controlling the dehumidifier to operate according to the second control strategy, monitor the humidity change speed and the effective drying range of the target clothing based on the target sensor associated with the target clothing, and predict the drying completion duration of the target clothing according to the humidity change speed;
[0198] The first judgment module 306 is configured to judge whether the drying completion duration is greater than the drying duration requirement to obtain the first judgment result, and judge whether the effective drying range covers the target clothing to obtain the second judgment result;
[0199] An update module 307, configured to update the second control strategy according to the first judgment result and the second judgment result, and optimize the mapping relationship model according to the first judgment result, the second judgment result, and the updated second control strategy.
[0200] It can be seen that implementing Figure 4 the described dehumidifier control device can monitor the humidity change rate and the effective drying range of the target clothing based on the target sensor associated with the target clothing, predict the drying completion duration of the target clothing according to the humidity change rate, determine whether the drying completion duration is greater than the drying duration requirement to obtain the first judgment result, and determine whether the effective drying range covers the target clothing to obtain the second judgment result. Update the second control strategy according to the first judgment result and the second judgment result, and optimize the mapping relationship model according to the first judgment result, the second judgment result, and the updated second control strategy. It can update the control strategy according to the clothing humidity change during the clothing dehumidification process, improve the dehumidification efficiency and accuracy of the clothing, reduce the energy consumption of the dehumidifier, improve the user experience, and optimize the mapping relationship model to improve the model accuracy.
[0201] In another optional embodiment, as Figure 4 shown, the dehumidifier control device may further include:
[0202] A second monitoring module 308, configured to monitor the frost layer thickness of the dehumidifier based on a frost layer thickness sensor when the dehumidifier is in the automatic mode or the drying mode, and determine whether the frost layer thickness is greater than a preset frost layer thickness threshold;
[0203] The generation module 303 is further configured to generate defrost control parameters for the dehumidifier according to the frost layer thickness when the frost layer thickness is greater than the frost layer thickness threshold;
[0204] The control module 304 is further configured to control the compressor in the dehumidifier to stop working according to the defrost control parameters, and control the fan in the dehumidifier to perform a defrost operation.
[0205] It can be seen that implementing Figure 4The described dehumidifier control device can monitor the frost layer thickness of the dehumidifier based on a frost layer thickness sensor, and determine whether the frost layer thickness is greater than a preset frost layer thickness threshold. When the frost layer thickness is greater than the frost layer thickness threshold, defrost control parameters for the dehumidifier are generated according to the frost layer thickness. According to the defrost control parameters, the compressor in the dehumidifier is controlled to stop working, and the fan in the dehumidifier is controlled to perform a defrost operation. It can perform a defrost operation based on the frost layer thickness in the automatic mode or the clothes drying mode, ensure the normal operation of the dehumidifier, improve the operation stability of the dehumidifier, and can accurately judge whether the frost layer is completely removed, avoid frequently entering the defrost mode, improve the defrost efficiency, and reduce the impact of the frost layer on the normal operation of the dehumidifier.
[0206] In yet another alternative embodiment, as Figure 4 shown, the user requirements also include dehumidification duration requirements;
[0207] The determination module 301 is further configured to determine the maximum dehumidification capacity of the dehumidifier when meeting the user's noise requirement, and determine the shortest dehumidification duration of the dehumidifier according to the user's humidity requirement and the maximum dehumidification capacity;
[0208] The dehumidifier control device may further include:
[0209] The second determination module 309 is configured to determine whether the shortest dehumidification duration is greater than the dehumidification duration requirement. When the shortest dehumidification duration is greater than the dehumidification duration requirement, obtain the device information of at least one associated device in the environment where the dehumidifier is located;
[0210] The calculation module 310 is configured to calculate a duration difference according to the shortest dehumidification duration and the dehumidification duration requirement, and generate linkage dehumidification control parameters according to the device information of each associated device and the duration difference, and control each associated device to perform an auxiliary dehumidification operation according to the linkage dehumidification control parameters.
[0211] It can be seen that implementing Figure 4 the described dehumidifier control device can determine the maximum dehumidification capacity of the dehumidifier when meeting the user's noise requirement, determine the shortest dehumidification duration of the dehumidifier according to the user's humidity requirement and the maximum dehumidification capacity, determine whether the shortest dehumidification duration is greater than the dehumidification duration requirement. When the shortest dehumidification duration is greater than the dehumidification duration requirement, obtain the device information of at least one associated device in the environment where the dehumidifier is located, calculate a duration difference according to the shortest dehumidification duration and the dehumidification duration requirement, and generate linkage dehumidification control parameters according to the device information of each associated device and the duration difference, and control each associated device to perform an auxiliary dehumidification operation according to the linkage dehumidification control parameters. It can perform auxiliary dehumidification through associated devices when the dehumidification capacity of the dehumidifier is insufficient, meet the user's dehumidification requirements while ensuring the dehumidification effect, and improve the user experience.
[0212] Embodiment 4
[0213] Please refer to Figure 5 , Figure 5 which is a schematic structural diagram of another dehumidifier control device disclosed in an embodiment of the present invention. As Figure 5 shown, the dehumidifier control device may include:
[0214] A memory 401 storing executable program code;
[0215] A processor 402 coupled to the memory 401;
[0216] The processor 402 calls the executable program code stored in the memory 401 and executes the steps in the dehumidifier control method described in Embodiment 1 or Embodiment 2 of the present invention.
[0217] Embodiment 5
[0218] An embodiment of the present invention discloses a computer storage medium. The computer storage medium stores computer instructions, and when the computer instructions are called, they are used to execute the steps in the dehumidifier control method described in Embodiment 1 or Embodiment 2 of the present invention.
[0219] Embodiment 6
[0220] An embodiment of the present invention discloses a computer program product. The computer program product includes a non-transitory computer-readable storage medium storing a computer program, and the computer program is operable to cause a computer to execute the steps in the dehumidifier control method described in Embodiment 1 or Embodiment 2.
[0221] The device embodiments described above are merely illustrative. The modules described as separate components may or may not be physically separated, and the components shown as modules may or may not be physical modules, that is, they may be located in one place or distributed to multiple network modules. Some or all of the modules can be selected according to actual needs to achieve the purpose of the solution of this embodiment. Those of ordinary skill in the art can understand and implement it without creative labor.
[0222] Through the specific descriptions of the above embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus a necessary general hardware platform, and of course, it can also be implemented by hardware. Based on such an understanding, the essence of the above technical solution, or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, and the storage medium includes read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically-erasable programmable read-only memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disc memories, magnetic disc memories, tape memories, or any other medium that can be used to carry or store data and is computer-readable.
[0223] Finally, it should be noted that: the dehumidifier control method, device, and computer storage medium disclosed in the embodiments of the present invention only disclose the preferred embodiments of the present invention, and are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A dehumidifier control method, characterized in that: The method is applied to a dehumidifier, the dehumidifier includes an automatic mode and a clothes drying mode, and the method includes: When the dehumidifier is in the automatic mode, determining a first humidity threshold corresponding to the automatic mode; Acquire environmental information of the environment in which the dehumidifier is located, and detect user information in the environment in which the dehumidifier is located based on a user detection sensor; generating a first control strategy according to the environmental information, the first humidity threshold and the user information; When the dehumidifier is in the clothes drying mode, determining a second humidity threshold corresponding to the clothes drying mode; Acquiring clothing information of target clothing, and generating a second control strategy according to the clothing information and the second humidity threshold; The dehumidifier is controlled to operate according to the first control strategy or the second control strategy.
2. The dehumidifier control method according to claim 1, characterized in that: The environmental information includes environmental temperature and environmental humidity, and the first control strategy includes a first sub-control strategy or a second sub-control strategy; The generating a first control strategy according to the environmental information, the first humidity threshold and the user information includes: Determine whether the ambient humidity is greater than the first humidity threshold, and when the ambient humidity is less than or equal to the first humidity threshold, calculate a first humidity difference according to the ambient humidity and the first humidity threshold, and generate the first sub-control strategy according to the ambient temperature and the first humidity difference; When the ambient humidity is greater than the first humidity threshold, determining at least one humidity influencing factor in the environment, and analyzing the degree of influence of each humidity influencing factor on the humidity of the environment; Determine whether there is at least one target user in the environment where the dehumidifier is located based on the user information, obtain a judgment result, and generate the second sub-control strategy based on the judgment result, each humidity influencing factor and the humidity influence degree corresponding to each humidity influencing factor.
3. The dehumidifier control method according to claim 2, characterized in that: The generating the second sub-control strategy according to the judgment result, each humidity influencing factor and the humidity influence degree corresponding to each humidity influencing factor includes: When the judgment result indicates that the target user does not exist in the environment where the dehumidifier is located, obtaining a preset rapid dehumidification control strategy, wherein the rapid dehumidification control strategy is used to control the compressor and / or fan in the dehumidifier to operate at maximum power; When the judgment result indicates that there is at least one target user in the environment where the dehumidifier is located, determining a user requirement of each target user according to the user information, wherein the user requirement includes a user humidity requirement and a user noise requirement; Calculating a second humidity difference according to the ambient humidity and the first humidity threshold, and generating a user dehumidification control strategy according to the second humidity difference, the user demand of each target user, each humidity influencing factor, and the humidity influence degree corresponding to each humidity influencing factor; The second sub-control strategy is generated according to the fast dehumidification control strategy or the user dehumidification control strategy.
4. The dehumidifier control method according to any one of claims 1 to 3, characterized in that: The clothing information includes clothing humidity, clothing quantity, clothing type, and clothing location; The generating a second control strategy according to the clothing information and the second humidity threshold comprises: Calculating a third humidity difference value according to the clothing humidity and the second humidity threshold; According to the type of clothing, a standard drying requirement of the target clothing is determined in a preset database, and the standard drying requirement is adjusted according to the number of clothing to obtain a target drying requirement of the target clothing, wherein the target drying requirement includes a drying humidity requirement and a drying time requirement; constructing a mapping relationship model of the third humidity difference, the drying time requirement, and a drying intensity control parameter, and inputting the third humidity difference and the target drying time requirement into the mapping relationship model for analysis to obtain a drying intensity control parameter for the dehumidifier; A clothes drying range control parameter for the dehumidifier is generated according to the clothes position, and a second control strategy is generated according to the clothes drying intensity control parameter and the clothes drying range control parameter.
5. The dehumidifier control method according to claim 4, characterized in that: In the process of controlling the operation of the dehumidifier according to the second control strategy, the method further includes: monitoring the humidity change speed and effective drying range of the target clothing based on a target sensor associated with the target clothing, and predicting the drying completion time of the target clothing according to the humidity change speed; Determine whether the drying completion time is greater than the drying time requirement to obtain a first determination result, and determine whether the effective drying range covers the target clothes to obtain a second determination result; The second control strategy is updated according to the first judgment result and the second judgment result, and the mapping relationship model is optimized according to the first judgment result, the second judgment result and the updated second control strategy.
6. The dehumidifier control method according to any one of claims 1 to 3, characterized in that: When the dehumidifier is in the automatic mode or in the clothes drying mode, the method further includes: Monitoring the frost thickness of the dehumidifier based on a frost thickness sensor, and determining whether the frost thickness is greater than a preset frost thickness threshold; When the frost layer thickness is greater than the frost layer thickness threshold, generating a defrost control parameter for the dehumidifier according to the frost layer thickness; The compressor in the dehumidifier is controlled to stop working according to the defrost control parameter, and the fan in the dehumidifier is controlled to perform a defrost operation.
7. The dehumidifier control method according to claim 3, characterized in that: The user demand also includes a dehumidification time requirement, and the method further includes: Determining the maximum dehumidification capacity of the dehumidifier when meeting the user's noise requirement, and determining the shortest dehumidification time of the dehumidifier according to the user's humidity requirement and the maximum dehumidification capacity; Determine whether the shortest dehumidification time is greater than the dehumidification time requirement, and when the shortest dehumidification time is greater than the dehumidification time requirement, obtain device information of at least one associated device in the environment where the dehumidifier is located; The duration difference is calculated according to the shortest dehumidification duration and the dehumidification duration requirement, and a linkage dehumidification control parameter is generated according to the device information of each associated device and the duration difference, and each associated device is controlled to perform an auxiliary dehumidification operation according to the linkage dehumidification control parameter.
8. A dehumidifier control device, characterized in that: The device is applied to a dehumidifier, the dehumidifier includes an automatic mode and a clothes drying mode, and the device includes: a determination module, configured to determine, when the dehumidifier is in the automatic mode, a first humidity threshold value corresponding to the automatic mode; An acquisition module, used for acquiring environmental information of the environment in which the dehumidifier is located, and detecting user information in the environment in which the dehumidifier is located based on a user detection sensor; A generating module, configured to generate a first control strategy according to the environmental information, the first humidity threshold and the user information; The determination module is further configured to determine a second humidity threshold corresponding to the clothes drying mode when the dehumidifier is in the clothes drying mode; The acquisition module is further used to acquire clothing information of the target clothing; The generating module is further used to generate a second control strategy according to the clothing information and the second humidity threshold; A control module is used to control the operation of the dehumidifier according to the first control strategy or the second control strategy.
9. A dehumidifier control device, characterized in that: The device comprises: A memory storing executable program code; a processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the dehumidifier control method according to any one of claims 1-7.
10. A computer storage medium, characterized in that: The computer storage medium stores computer instructions, and when the computer instructions are called, they are used to execute the dehumidifier control method according to any one of claims 1-7.