Drying control method, apparatus, and laundry treatment apparatus
By controlling the drying components of the first drum in the clothing processing device to operate at high power and adjusting the power of the drying components, the problem of excessive total power in the dual-drying drum mode is solved, achieving efficient clothing drying and improving the user experience.
Patent Information
- Application Number
- CN202210137883.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-02-15
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2042-02-15
AI Technical Summary
Existing garment processing devices, in dual-drying-tub mode, have excessive total power, affecting safety and resulting in low drying efficiency.
When the temperature of the first tank is lower than the target temperature, the drying unit of the first tank is controlled to operate at high power, while the drying unit of the second tank stops operating. After the temperature of the first tank reaches the target temperature, the power of the drying unit is adjusted to balance the heating and evaporation capacity, ensuring that the total power is within the limit.
While ensuring the total power limit, the drying efficiency of the first drum was improved, the drying time was shortened, the user experience was enhanced, and the programs of the two drying drums were ensured to not interfere with each other.
Smart Images

Figure CN116641219B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of household appliance technology, and in particular to drying control methods, devices, and clothing treatment devices. Background Technology
[0002] With the advancement of technology, more and more clothing processing devices with drying functions have appeared on the market, such as dryers and washer-dryer combos. Using these products can dry clothes in humid seasons or rainy weather when clothes are difficult to dry, bringing convenience to users' daily lives.
[0003] To meet users' needs for drying clothes, some clothing processing devices with two drying drums have appeared on the market. In order to achieve rapid drying of one of the drying drums, it is usually necessary to increase the drying power of that drum. This not only increases the drying power consumption of the clothing processing device, but may also cause the total power of the clothing processing device to exceed the rated power standard of the household power grid when both drying drums are running, affecting the safety of the clothing processing device and household electricity use. Summary of the Invention
[0004] This invention aims to at least solve one of the technical problems existing in the prior art. To this end, this invention proposes a drying control method that helps to achieve rapid drying of clothes and improves user experience.
[0005] According to a first aspect of the present invention, a drying control method is applied to a garment processing apparatus having at least a first tub and a second tub, the method comprising:
[0006] While the first barrel is operating, obtain the first temperature of the first barrel;
[0007] When the first temperature is lower than the first target temperature, the drying component corresponding to the first barrel is controlled to operate at the first power, and the drying component corresponding to the second barrel is controlled to stop operating.
[0008] The drying component corresponding to the first barrel has the first power and the second power, wherein the first power is greater than the second power.
[0009] According to the drying control method of the present invention, when the first temperature of the first tub is lower than the first target temperature, the drying component corresponding to the first tub is controlled to operate at a first power, and the drying component corresponding to the second tub is controlled to stop operating. While ensuring the total power limit of the dryer, the drying efficiency of the first tub is effectively improved and the drying time of the first tub is shortened.
[0010] According to one embodiment of the present invention, the method further includes:
[0011] When the first temperature is not less than the first target temperature and the drying component corresponding to the second barrel is working, the drying component corresponding to the first barrel is controlled to work at the second power or the third power, wherein the second power is greater than the third power.
[0012] According to one embodiment of the present invention, controlling the drying assembly corresponding to the first tub to operate at the second power or the third power includes:
[0013] The drying component corresponding to the first barrel is controlled to operate intermittently at the second power or the third power.
[0014] According to one embodiment of the present invention, the method further includes:
[0015] When the first temperature is not lower than the first target temperature and the drying component corresponding to the second barrel is not working, the drying component corresponding to the first barrel is controlled to work intermittently at the first power or the second power.
[0016] According to one embodiment of the present invention, after controlling the drying assembly corresponding to the first tub to operate at a first power, the method further includes:
[0017] Obtain the first humidity level of the first bucket;
[0018] If the first humidity is less than the first target humidity, the drying component corresponding to the first barrel is controlled to stop working.
[0019] A drying control device according to a second aspect of the present invention is applied to a garment processing apparatus having at least a first tub and a second tub, the drying control device comprising:
[0020] The acquisition module is used to acquire the first temperature of the first barrel when the first barrel is in operation;
[0021] The processing module is used to control the drying component corresponding to the first barrel to operate at a first power when the first temperature is lower than the first target temperature, and to control the drying component corresponding to the second barrel to stop operating.
[0022] The drying component corresponding to the first barrel has the first power and the second power, wherein the first power is greater than the second power.
[0023] A garment processing apparatus according to a third aspect of the present invention includes:
[0024] First barrel and second barrel;
[0025] A controller, which is electrically connected to the drying components corresponding to the first barrel and the second barrel, is used to control the operation of the drying components corresponding to the first barrel and the second barrel based on the above-described drying control method.
[0026] The drying component corresponding to the first barrel has a first power and a second power, wherein the first power is greater than the second power.
[0027] An electronic device according to a fourth aspect of the present invention includes a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the steps of any of the drying control methods described above.
[0028] According to a fifth aspect of the present invention, a non-transitory computer-readable storage medium is provided thereon storing a computer program that, when executed by a processor, implements the steps of any of the drying control methods described above.
[0029] A computer program product according to a sixth aspect of the present invention includes a computer program that, when executed by a processor, implements the steps of any of the drying control methods described above.
[0030] The above-described one or more technical solutions in the embodiments of the present invention have at least one of the following technical effects:
[0031] By controlling the drying components of the first tub to operate at a first power when the first temperature of the first tub is lower than the first target temperature, and controlling the drying components of the second tub to stop working, the drying efficiency of the first tub is effectively improved and the drying time of the first tub is shortened while ensuring the total power limit of the clothing processing device, thus effectively improving the user experience.
[0032] After the first tub enters the working stage, the corresponding drying component of the first tub is controlled to work at the second or third power. This ensures a balance between the heating capacity and evaporation drying capacity of the first tub during its working stage, guarantees the total power limit of the clothing processing device, and allows the first and second tubs to dry clothes simultaneously without affecting each other's drying programs.
[0033] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0034] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0035] Figure 1 This is a schematic flowchart of the drying control method provided in an embodiment of the present invention;
[0036] Figure 2 This is a schematic diagram of the structure of the clothing processing device provided in an embodiment of the present invention;
[0037] Figure 3 This is a schematic diagram of the working stages of the clothing processing device provided in an embodiment of the present invention;
[0038] Figure 4 This is a schematic diagram of the drying control device provided in an embodiment of the present invention;
[0039] Figure 5 This is a schematic diagram of the structure of the electronic device provided in an embodiment of the present invention.
[0040] Figure label:
[0041] 100: First tank; 101: First fan; 102: First main heating element; 103: First auxiliary heating element; 104: First condenser;
[0042] 200: Second barrel; 201: Second fan; 202: Second heating element; 203: Second condenser. Detailed Implementation
[0043] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.
[0044] In the description of the embodiments of the present invention, it should be noted that the terms "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the embodiments of the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of the present invention. In addition, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0045] In the description of the embodiments of the present invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of the present invention based on the specific circumstances.
[0046] In embodiments of the present invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0047] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0048] In this embodiment of the invention, the clothing processing device can be a dryer used only for drying clothes or a washer-dryer combo used for washing and drying clothes, etc. The clothing processing device can be a drum-type or impeller-type clothing processing device.
[0049] like Figure 2 As shown, the clothing processing device provided in this embodiment of the invention includes a first tub 100 and a second tub 200.
[0050] In this embodiment of the invention, the clothing processing device can be an exhaust-type, condenser-type, or heat pump-type clothing processing device, and the drying components corresponding to the first tub 100 and the second tub 200 of the clothing processing device can be components such as heating tubes or heat pumps to achieve the drying effect.
[0051] For example, the first drum 100 may be equipped with a first fan 101 and a first condenser 104. Air is heated by the drying component corresponding to the first drum 100 and becomes hot air. The hot air passes through the clothes and becomes humid cold air. The humid cold air is condensed by the first condenser 104 to remove moisture and becomes dry cold air. The dry cold air is carried by the first fan 101 to the drying component corresponding to the first drum 100 for heating. This cycle continues to remove moisture from the clothes.
[0052] The second drum 200 can be equipped with a second fan 201 and a second condenser 204, which work in conjunction with the drying components of the second drum 200 to remove moisture from the clothes in the second drum 200.
[0053] In this embodiment, the drying component corresponding to the first barrel 100 has a first power and a second power, the first power being greater than the second power, and the heating rate of the drying component corresponding to the first barrel 100 when operating at the first power is higher than the heating rate of the drying component corresponding to the first barrel 100 when operating at the second power.
[0054] For example, the drying component corresponding to the first barrel 100 consists of two heating tubes, namely the first main heating tube 102 and the first auxiliary heating tube 103, with the power of the first main heating tube 102 being greater than that of the first auxiliary heating tube 103.
[0055] The drying component corresponding to the first barrel 100 operates at the first power, which can simultaneously turn on the first main heating tube 102 and the first auxiliary heating tube 103 of the first barrel 100.
[0056] Correspondingly, the drying component corresponding to the first barrel 100 operates at the second power, which can turn on the first main heating tube 102 of the first barrel 100.
[0057] In this embodiment, the capacity of the first tub 100 and the second tub 200 refers to the volume or weight of clothes that the first tub 100 and the second tub 200 can hold. The capacity of the first tub 100 can be smaller than the capacity of the second tub 200. The first tub 100 can be used to dry a small amount or light clothes, and the second tub 200 can be used to dry a large amount or heavy clothes.
[0058] For example, the first bucket 100 has a capacity of 3 kg, and the second bucket 200 has a capacity of 10 kg. The first bucket 100 can be used to dry shirts, light shirts or underwear, while the second bucket 200 can be used to dry woolen clothes, down jackets, cotton-padded clothes or bedding.
[0059] The following is combined Figures 1 to 3 The present invention describes a drying control method according to an embodiment of the invention, wherein the subject executing the method may be the controller of a clothing processing device.
[0060] like Figure 1As shown, the drying control method of this embodiment includes steps 110 to 120.
[0061] Step 110: While the first tub 100 of the garment processing device is operating, obtain the first temperature of the first tub 100.
[0062] When both the first tub 100 and the second tub 200 of the garment processing device are working, it indicates that both the first tub 100 and the second tub 200 need to dry the clothes in their respective tubs. Due to the total power limitation of the garment processing device, the drying components corresponding to the first tub 100 and the second tub 200 cannot operate at maximum power at the same time.
[0063] It should be noted that when the first tub 100 and the second tub 200 of the clothing processing device dry clothes, the drying process includes three stages.
[0064] During the heating stage, the temperature of the first tub (100°C) or the second tub (200°C) is rising. When the preset temperature is reached, the working stage begins. During the working stage, a large amount of water is evaporated from the clothes, and the clothes are gradually dried. The working stage requires maintaining a balance between heating capacity and evaporation and drying capacity.
[0065] The third stage is the cooling stage. When entering the cooling stage, the clothes have been dried, but the temperature of the first tub 100 or the second tub 200 is still very high. In order to ensure the safety of opening the tub, the drying components corresponding to the first tub 100 or the second tub 200 need to be turned off, and the temperature is reduced by condensation. During this stage, the drying components do not work, and the overall power of the clothes processing device is low.
[0066] In this embodiment, the first tub 100 of the garment processing device refers to the tub used to achieve rapid drying. The first tub 100 can be a tub with a small capacity or a tub specified by the user for priority rapid drying.
[0067] In this embodiment, by obtaining the first temperature of the first tub 100, it is determined whether the first tub 100 is in the heating stage, working stage or cooling stage of drying clothes.
[0068] The first temperature of the first barrel 100 can be either the temperature inside the first barrel 100 or the temperature of the exhaust vent from the first barrel 100 where humid air is discharged.
[0069] In actual implementation, the first temperature of the first barrel 100 can be collected in real time, or the temperature value can be collected multiple times within a fixed period of time (e.g., 10 seconds). For example, the temperature value of the first barrel 100 can be collected once per second, and the average of these temperature values (e.g., 10 temperature values collected in 10 seconds) can be used as the first temperature.
[0070] It should be noted that by obtaining the first temperature of the first tub 100 and determining the drying stage of the first tub 100, and then controlling the drying components corresponding to the first tub 100 and the second tub 200 according to the drying stage, the clothes in the first tub 100 can be dried quickly while ensuring the total power limit of the clothing processing device.
[0071] In this embodiment, when the user sets the requirement to quickly dry the clothes in the first tub 100, the first temperature of the first tub 100 can be obtained when both the first tub 100 and the second tub 200 of the clothing processing device are working.
[0072] For example, the first tub 100 of the garment processing device may include a quick drying mode. When the user selects the quick drying mode, with both the first tub 100 and the second tub 200 of the garment processing device working, the first temperature of the first tub 100 is obtained to determine the drying stage of the first tub 100.
[0073] Step 120: When the first temperature is lower than the first target temperature, control the drying component corresponding to the first barrel 100 to work at the first power, and control the drying component corresponding to the second barrel 200 to stop working.
[0074] When the first temperature of the first barrel 100 is lower than the first target temperature, it indicates that the first barrel 100 is in the heating stage and the temperature of the first barrel 100 is in a rising and climbing state. The first target temperature is the temperature inflection point at which the first barrel 100 enters the working stage.
[0075] In this embodiment, when the first temperature is lower than the first target temperature, the drying component corresponding to the first barrel 100 is controlled to operate at the first power, so that the temperature of the first barrel 100 rises rapidly, reducing the duration of the heating stage of the first barrel 100, and allowing the first barrel 100 to quickly enter the working stage.
[0076] In actual operation, once the working phase begins, a large amount of water evaporates from the clothes, and the clothes in the drum gradually dry. It is only necessary to control the drying components to operate at low power to maintain a balance between heating capacity and evaporation drying capacity, without having to control the drying components to operate at high power.
[0077] It should be noted that when the first temperature of the first barrel 100 is lower than the first target temperature, the drying component corresponding to the first barrel 100 is controlled to operate at its maximum first power, while the drying component corresponding to the second barrel 200 is controlled to stop working.
[0078] When the capacity of the first tank 100 is less than that of the second tank 200, the first tank 100 can enter the working stage in a short time and control the drying component corresponding to the second tank 200 with a larger capacity to stop working in a short time, without affecting the drying process of the second tank 200.
[0079] In addition, controlling the drying component corresponding to the first tub 100 to operate at its maximum first power and controlling the drying component corresponding to the second tub 200 to stop operating can effectively ensure that the total power of the clothing processing device is within the power limit range.
[0080] The following is a specific example.
[0081] The power of the first main heating tube 102 of the first barrel 100 is W1, the power of the first auxiliary heating tube 103 is W2, and the power of the second heating tube 202 of the drying component corresponding to the second barrel 200 is W3.
[0082] Where W1>W2, W1+W2≤W3, W1+W3<total power limit, W2+W3<total power limit, and W1+W2+W3>limit value.
[0083] When both the first tub 100 and the second tub 200 of the garment processing device are working and the first temperature of the first tub 100 is lower than the first target temperature, the first tub 100 is controlled to work at a first power of W1+W2, and the second heating tube 202 of the drying component corresponding to the second tub 200 is controlled to stop working.
[0084] In this embodiment, while ensuring that the total power of the clothing processing device is within the power limit range, the first tub 100 can quickly enter the working stage, and the first main heating tube 102 with a power of W1 or the first auxiliary heating tube 103 with a power of W2 can be turned on separately. At this time, the second heating tube 202 with a power of W3 can be turned on, which will not have a significant impact on the drying process of the second tub 200.
[0085] Understandably, controlling the drying component corresponding to the first drum 100 to operate at its maximum first power, so that the first drum 100 can quickly enter the working stage, can effectively shorten the drying time of the first drum 100.
[0086] like Figure 3 As shown, the horizontal axis represents the drying time of the first drum 100, and the vertical axis represents the first temperature of the first drum 100.
[0087] Curve 310 indicates that the first barrel 100 operates at the first power, point A is the turning point when the first barrel 100 operates at the first power and enters the working stage, curve 320 indicates that the first barrel 100 operates at the second power or other lower power, and point B is the turning point when the first barrel 100 operates at the power corresponding to curve 320 and enters the working stage.
[0088] In this embodiment, when the drying component corresponding to the first tub 100 is controlled to operate at the first power, the first tub 100 can quickly enter the working stage, which can effectively shorten the drying time of the first tub 100, realize fast drying of clothes, and improve the user experience.
[0089] According to the drying control method provided in the embodiments of the present invention, when the first temperature of the first tub 100 is lower than the first target temperature, the drying component corresponding to the first tub 100 is controlled to work at a first power, and the drying component corresponding to the second tub 200 is controlled to stop working. While ensuring the total power limit of the clothing processing device, the drying efficiency of the first tub 100 is effectively improved and the drying time of the first tub 100 is shortened, thus effectively improving the user experience.
[0090] In some embodiments, the drying control method further includes:
[0091] When the first temperature is not lower than the first target temperature and the drying component corresponding to the second barrel 200 is working, the drying component corresponding to the first barrel 100 is controlled to work at the second power or the third power.
[0092] In this embodiment, the first temperature is not less than the first target temperature, and the first temperature may be greater than or equal to the first target temperature.
[0093] The operation of the drying component corresponding to the second barrel 200 indicates that the second barrel 200 is in the heating stage or working stage of the drying process. The first temperature of the first barrel 100 is not less than the first target temperature, indicating that the first barrel 100 has entered the working stage.
[0094] In actual operation, after the first drum 100 enters the working stage, a large amount of moisture in the clothes in the first drum 100 is evaporated, and the clothes are gradually dried. At this time, the drying component corresponding to the first drum 100 can be controlled to work at the second power or the third power, so that the heating capacity and evaporation drying capacity of the drying component corresponding to the first drum 100 are kept in balance.
[0095] Among them, the second power is greater than the third power, and the heating capacity of the drying component corresponding to the first barrel 100 when operating at the second power is greater than the heating capacity of the drying component corresponding to the first barrel 100 when operating at the third power.
[0096] For example, the first tank 100 includes a first main heating tube 102 and a first auxiliary heating tube 103, the power of the first main heating tube 102 is W1, and the power of the first auxiliary heating tube 103 is W2.
[0097] When both the first main heating tube 102 and the first auxiliary heating tube 103 are turned on, the drying component corresponding to the first tub 100 operates at a first power of W1+W2. When the first main heating tube 102 is turned on and the first auxiliary heating tube 103 is turned off, the drying component corresponding to the first tub 100 operates at a second power of W1. When the first auxiliary heating tube 103 is turned on and the first main heating tube 102 is turned off, the drying component corresponding to the first tub 100 operates at a third power of W2.
[0098] The power of the second heating tube 202 of the drying component corresponding to the second tub 200 is W3. When the drying component corresponding to the second tub 200 is working, and the drying component corresponding to the first tub 100 is working at the second power or the third power, the power of the whole garment processing device is W1+W3 or W2+W3, where W1+W3 < total power limit value and W2+W3 < total power limit value.
[0099] In this embodiment, after the first tub 100 enters the working stage, the drying component corresponding to the first tub 100 is controlled to work at the second power or the third power, which can ensure the balance between the heating capacity and the evaporation drying capacity of the first tub 100 during the working stage, ensure the total power limit of the clothing processing device, and enable the first tub 100 and the second tub 200 to dry clothes at the same time, and the drying programs of the first tub 100 and the second tub 200 do not affect each other.
[0100] In some embodiments, when the first tank 100 enters the working stage and the drying component corresponding to the second tank 200 is working, controlling the drying component corresponding to the first tank 100 to operate at a second power or a third power includes:
[0101] The heater drying assembly corresponding to the first barrel 100 is controlled to operate intermittently at the second power or the third power;
[0102] Alternatively, the drying unit corresponding to the first drum 100 can be controlled to continuously operate at the second or third power.
[0103] In this embodiment, the drying component corresponding to the first tub 100 is controlled to operate at a second or third power, ensuring that the total power of the clothing processing device does not exceed the total power limit when the drying component corresponding to the second tub 200 is working.
[0104] The heater drying component corresponding to the first tank 100 is controlled to operate intermittently at a second power or a third power. This can be achieved by controlling the drying component corresponding to the first tank 100 to operate at a second power or a third power at a preset time interval.
[0105] For example, the first main heating tube 102 of the first tub 100 is controlled to work at a preset time interval, while the first auxiliary heating tube 103 is kept off. The corresponding drying component of the first tub 100 works intermittently at the second power.
[0106] For example, the first auxiliary heating tube 103 of the first tub 100 is controlled to work at a preset time interval, while the first main heating tube 102 is kept off. The corresponding drying component of the first tub 100 works intermittently at the third power.
[0107] In this embodiment, the first tub 100 has entered the working stage. By controlling the drying component corresponding to the first tub 100 to work intermittently at the second power or the third power, the heating capacity and evaporation drying capacity of the first tub 100 during the working stage can be balanced, which will reduce the energy consumption of the clothing processing device without affecting the drying efficiency of the first tub 100.
[0108] By controlling the heater drying component corresponding to the first drum 100 to continuously operate at the second or third power, the drying efficiency of the clothes in the first drum 100 can be improved and the drying time shortened.
[0109] For example, the first main heating tube 102 of the first tub 100 is controlled to work continuously, while the first auxiliary heating tube 103 is controlled to be turned off, and the corresponding drying component of the first tub 100 continues to work at the second power.
[0110] For example, the first auxiliary heating tube 103 of the first tub 100 is controlled to work continuously, while the first main heating tube 102 is kept off, and the corresponding drying component of the first tub 100 continues to work at the third power.
[0111] In some embodiments, when the first tank 100 enters the working stage and the drying component corresponding to the second tank 200 is not working, the drying component corresponding to the first tank 100 is controlled to intermittently switch between the first power and the second power working states.
[0112] In this embodiment, the first tub 100 has entered the working stage, the drying component corresponding to the second tub 200 is not working, the total power of the clothing processing device will not exceed the total power limit, and the drying component corresponding to the first tub 100 is controlled to switch intermittently between the first power and the second power working state to ensure the balance between the heating capacity and the evaporation drying capacity of the first tub 100 during the working stage, thereby improving the drying efficiency of the first tub 100 and reducing drying energy consumption.
[0113] For example, at a preset time interval, the first main heating tube 102 and the first auxiliary heating tube 103 of the first tank 100 can be controlled to work simultaneously, and the drying component corresponding to the first tank 100 can operate at the first power to improve the drying efficiency of the first tank 100. Then, the first main heating tube 102 of the first tank 100 can be controlled to work, and the drying component corresponding to the first tank 100 can operate at the second power to reduce drying energy consumption.
[0114] In some embodiments, after the first tank 100 enters the working stage, the target power requirement of the first tank 100 is obtained, and based on the target power requirement of the first tank 100, the drying component corresponding to the first tank 100 is controlled to work at a second power or a third power.
[0115] Understandably, during the working phase, it is necessary to control and adjust the working state of the drying components corresponding to the first drum 100 so that the temperature of the first drum 100 is kept within a temperature range that can achieve a balance between heating capacity and evaporation drying capacity.
[0116] In this embodiment, the target power requirement refers to the heating power of the drying component corresponding to the first barrel 100 required to maintain the temperature of the first barrel 100 within a temperature range that balances the heating capacity and the evaporation and drying capacity during the working phase.
[0117] In this embodiment, the target power requirement corresponding to the first barrel 100 can be determined by obtaining the temperature of the hot air outlet or the humid cold air exhaust outlet in the first barrel 100.
[0118] The temperature of the hot air outlet or the humid cold air exhaust outlet in the first barrel 100 represents the relationship between heating capacity and evaporation drying capacity, and can effectively reflect the target power requirement corresponding to the first barrel 100.
[0119] Based on the target power requirement corresponding to the first barrel 100, the drying component corresponding to the first barrel 100 is controlled to work in the second or third power mode, which can maintain the balance between the heating capacity and evaporation drying capacity of the first barrel 100 and ensure the drying efficiency of the first barrel 100 during the working stage.
[0120] In some embodiments, when the drying component corresponding to the second drum 200 of the garment handling device is operating, controlling the drying component corresponding to the first drum 100 to operate at a second power or a third power based on the target power demand includes:
[0121] If the target power requirement is less than the first power, and the target power requirement is determined to be no less than the second power, the drying component corresponding to the first barrel 100 is controlled to work at the second power.
[0122] Alternatively, if the target power requirement is less than the first power, determine that the target power requirement is not less than the third power, and control the drying component corresponding to the first barrel 100 to operate at the third power.
[0123] In this embodiment, the target power requirement of the first tank 100 is less than the first power, indicating that when the first tank 100 achieves a balance between heating capacity and evaporation and drying capacity, it is in a situation of excess first power.
[0124] If the target power requirement of the first tank 100 is determined to be no less than the second power, that is, if the target power requirement is greater than or equal to the second power, it indicates that the first tank 100 is in a situation where the second power is insufficient or balanced. At this time, the drying component corresponding to the first tank 100 is controlled to work at the second power to maintain the balance between the heating capacity and the evaporation drying capacity of the first tank 100.
[0125] The drying component corresponding to the second tub 200 of the garment processing device operates, while the drying component corresponding to the first tub 100 operates at the second power. This ensures the heating efficiency of both the second tub 200 and the first tub 100, while also keeping the total power of the garment processing device within the power limit range.
[0126] In this embodiment, if the target required power is not less than the third power, that is, if the target required power is greater than or equal to the third power, it indicates that the first tank 100 is in a state of insufficient or balanced third power. At this time, the drying component corresponding to the first tank 100 is controlled to work at the third power.
[0127] It is understandable that when the first tank 100 is in a situation where the first power is excessive and the third power is insufficient or balanced, the target power demand of the first tank 100 is less than the second power, and the target demand is closer to the third power. At this time, the drying component corresponding to the first tank 100 is controlled to work at the third power.
[0128] In some embodiments, when the target power requirement is less than the second power, the drying component corresponding to the first drum 100 is controlled to operate intermittently at the second power.
[0129] When the target power requirement is less than the third power, the drying component corresponding to the first barrel 100 is controlled to work intermittently at the third power.
[0130] In this embodiment, the target power demand of the first tank 100 is less than the second power, indicating that the first tank 100 is in a state of second power surplus. The target power demand of the first tank 100 is less than the third power, indicating that the first tank 100 is in a state of third power surplus.
[0131] To maintain a balance between the heating capacity and the evaporation and drying capacity of the first tank 100, the drying component corresponding to the first tank 100 is controlled to operate intermittently at the second power or the third power.
[0132] It should be noted that controlling the drying components corresponding to the first tub 100 to work intermittently at the second or third power can effectively control the temperature of the first tub 100 and prevent the temperature of the first tub 100 from being too high and damaging the clothes.
[0133] In actual operation, the drying component corresponding to the first barrel 100 can be controlled to work intermittently at the second power according to a preset time interval. Alternatively, the drying component corresponding to the first barrel 100 can be controlled to stop heating when the temperature of the first barrel 100 reaches a preset temperature, and then the drying component corresponding to the first barrel 100 can be controlled to start heating again when the temperature of the first barrel 100 drops to another preset temperature.
[0134] It is understandable that by controlling the drying components corresponding to the first drum 100 to work intermittently at the second or third power, the temperature of the first drum 100 can be kept within the temperature range of the working stage, thus ensuring the drying efficiency of the working stage.
[0135] In some embodiments, after controlling the drying component corresponding to the first drum 100 to operate at a first power, the drying control method further includes:
[0136] Obtain the initial humidity of the first bucket at 100%.
[0137] When the first humidity is lower than the first target humidity, the drying component corresponding to the first drum 100 is controlled to stop working.
[0138] In this embodiment, a humidity sensor can be installed inside the first bucket 100 or at the vent to obtain the first humidity of the first bucket 100. The first humidity is a parameter characterizing the dryness or wetness of the clothes inside the first bucket 100.
[0139] When the first humidity of the first tub 100 is less than the first target humidity, it indicates that the clothes in the first tub 100 have reached the drying standard. At this time, the drying component corresponding to the first tub 100 is controlled to stop working, and the first tub 100 enters the cooling stage of the drying process.
[0140] In practice, the primary target humidity can be adjusted and set according to the type of clothing.
[0141] It should be noted that when the first humidity is lower than the first target humidity, the drying component corresponding to the first tub 100 stops working. However, the first tub 100 cannot be opened immediately. It is necessary to wait until the temperature reaches the safe opening temperature before opening the first tub 100 and taking out the clothes.
[0142] In some embodiments, the drying control method further includes: when the first temperature is not lower than the first target temperature and the drying component corresponding to the second barrel 200 is not working, controlling the drying component corresponding to the first barrel 100 to work at a first power, a second power, or a third power.
[0143] In this embodiment, the drying component corresponding to the second tub 200 not working means that only the first tub 100 is drying clothes in the clothing processing device. The first temperature of the first tub 100 is not lower than the first target temperature, indicating that the first tub 100 has entered the working stage. In order to ensure the balance between the heating capacity and evaporation drying capacity of the first tub 100 and improve the drying efficiency, the control of the heating component corresponding to the first tub can be expressed in the following three control methods:
[0144] Firstly, the second or third power is insufficient, while the first power is excessive.
[0145] In this embodiment, when the second power of the first tank 100 is insufficient relative to the target power requirement during the working stage, the drying component corresponding to the first tank 100 can be controlled to switch between the working states of the second power and the first power to achieve a balance between heating capacity and evaporation drying capacity. Similarly, when the third power is insufficient, the drying component corresponding to the first tank 100 can also be controlled to switch between the working states of the third power and the first power.
[0146] For example, if the first power W1+W2 of the first tank 100 is excessive and the second power W1 is insufficient, the first main heating tube 102 with power W1 can be continuously turned on, while the first auxiliary heating tube 103 with power W2 can be turned on intermittently.
[0147] When the first power W1+W2 of the first tank 100 is excessive and the third power W2 is insufficient, the first auxiliary heating tube 103 with a power of W2 can be continuously turned on, while the first main heating tube 102 with a power of W1 can be turned on intermittently.
[0148] Secondly, there is an excess of second or third power.
[0149] In this embodiment, the second power is excessive relative to the target power requirement, and the drying component corresponding to the first drum 100 can be controlled to operate intermittently at the second power.
[0150] Correspondingly, the third power is excessive relative to the target power requirement, and the drying component corresponding to the first barrel 100 can be controlled to work intermittently at the third power.
[0151] For example, when the second power W1 is excessive relative to the target power requirement, the first main heating tube 102 with a power of W1 can be turned on intermittently; when the third power W2 is excessive relative to the target power requirement, the first auxiliary heating tube 103 with a power of W2 can be turned on intermittently.
[0152] Third, the second or third power balance.
[0153] In this embodiment, the second power is balanced relative to the target power requirement, and the drying component corresponding to the first drum 100 can be controlled to operate at the second power until the cooling stage is entered.
[0154] Correspondingly, the third power is balanced with the target power requirement, and the drying component corresponding to the first barrel 100 can be controlled to work at the third power until the cooling stage is entered.
[0155] The following is a specific example.
[0156] The first tank 100 includes a first main heating tube 102 with a power of W1 and a first auxiliary heating tube 103 with a power of W2. The first power of the first tank 100 is W1+W2, the second power is W1, and the third power is W2.
[0157] The second barrel 200 includes a second heating element 202 with a power of 3 W.
[0158] Table 1 shows the control logic for the first barrel 100 and the second barrel 200 during different drying processes.
[0159] As shown in Table 1, when the drying process of the second drum 200 is in the heating stage and the early stage of the working stage, the second heating tube 202 with a power of W3 is always working, and the first drum 100 can be controlled in the following ways:
[0160] (1) The first bucket 100 is in the heating stage, and the first heating tube with high power is kept working. The total power of the clothing processing device is W1+W3.
[0161] (2) When the first barrel 100 is in the early stage of operation, the second or third power is insufficient relative to the target power requirement, that is, the power of a single heating tube is insufficient.
[0162] When the second power is insufficient, if only the first tank 100 is working and the second tank 200 is not working, the first main heating tube 102 with a control power of W1 is turned on, and the first auxiliary heating tube 103 with a control power of W2 is turned on and off.
[0163] At this time, when the second heating tube 202 of the second tank 200 is working, the first main heating tube 102 of the first tank 100 is set to have a power of W1 and is turned on, and the total power of the clothing processing device is W3+W1.
[0164] Correspondingly, when the third power is insufficient, the first auxiliary heating tube 103, which is set to power W2, is turned on, and the total power of the clothing processing device is W3+W2.
[0165] Table 1
[0166]
[0167] (3) When the first barrel 100 is in the early stage of operation, the second or third power is in excess relative to the target demand power, that is, the power of a single heating tube is in excess.
[0168] When the second power is excessive, the second heating tube 202 of the second tank 200 works, and the first main heating tube 102 of the first tank 100 is set to start and stop with a power of W1. The total power of the clothing processing device is W3 + W1.
[0169] When the third power is excessive, the second heating tube 202 of the second tank 200 works, and the first auxiliary heating tube 103 of the first tank 100 is set to start and stop with a power of W2. The total power of the clothing processing device is W3 + W2.
[0170] (4) When the first barrel 100 is in the early stage of operation, the second or third power is balanced relative to the target power requirement, that is, the power balance of a single heating tube occurs.
[0171] In the second power balance, the first tank 100 is set to operate with the first main heating tube 102 having a power of W1, and the total power of the clothing processing device is W3 + W1; in the third power balance, the first tank 100 is set to operate with the first auxiliary heating tube 103 having a power of W2, and the total power of the clothing processing device is W3 + W2.
[0172] When the drying process of the second drum 200 is in the later stage of operation, and the second heating tube 202 with a power of W3 starts and stops, the first drum 100 can be controlled in the following way:
[0173] (1) When the first tub 100 is in the heating stage, when the second heating tube 202 is started, the first tub 100 is set to work with the first main heating tube 102 with a power of W1, and the total power of the clothing processing device is W3+W1.
[0174] When the second heating element 202 stops working, the first tub 100 is set to operate with the first main heating element 102 with a power of W1 and the first auxiliary heating element 103 with a power of W2, and the total power of the clothing processing device is W2+W1.
[0175] (2) When the first tub 100 is in the early stage of operation, if the power of a single heating tube is insufficient, when the second heating tube 202 is started, the first tub 100 is set to work with the first main heating tube 102 and the first auxiliary heating tube 103, and the total power of the clothing processing device is W3+W1 or W3+W2.
[0176] When the second heating element 202 is not working, the first tub 100 is set to have the first main heating element 102 and the first auxiliary heating element 103 working intermittently, and the total power of the clothing processing device is either W1+W2 start-stop or W2+W1 start-stop.
[0177] It should be noted that when the first tank 100 or the second tank 200 is in the cooling stage, the first tank 100 and the second tank 200 do not affect each other and can operate according to their own control logic.
[0178] The drying control device provided in the embodiments of the present invention is described below. The drying control device described below can be referred to in correspondence with the drying control method described above.
[0179] like Figure 4 As shown, the drying control device provided in this embodiment of the invention includes:
[0180] The acquisition module 410 is used to acquire the first temperature of the first barrel 100 when the first barrel 100 is working;
[0181] The processing module 420 is used to control the drying component corresponding to the first barrel 100 to operate at a first power when the first temperature is lower than the first target temperature, and to control the drying component corresponding to the second barrel 200 to stop operating.
[0182] The drying component corresponding to the first barrel 100 has a first power and a second power, with the first power being greater than the second power.
[0183] According to the drying control device provided in the embodiment of the present invention, when the first temperature of the first tub 100 is lower than the first target temperature, the drying component corresponding to the first tub 100 is controlled to work at a first power, and the drying component corresponding to the second tub 200 is controlled to stop working. While ensuring the total power limit of the clothing processing device, the drying efficiency of the first tub 100 is effectively improved and the drying time of the first tub 100 is shortened, thereby effectively improving the user experience.
[0184] In some embodiments, the processing module 420 is further configured to control the drying component corresponding to the first barrel 100 to operate at a second power or a third power when the first temperature is not less than the first target temperature and the drying component corresponding to the second barrel 200 is working, wherein the second power is greater than the third power.
[0185] In some embodiments, the processing module 420 is used to control the heater drying assembly corresponding to the first barrel 100 to operate intermittently at a second power or a third power;
[0186] Alternatively, the drying unit corresponding to the first drum 100 can be controlled to continuously operate at the second or third power.
[0187] In some embodiments, the processing module 420 is further configured to control the drying component corresponding to the first barrel 100 to intermittently switch between second power and third power operating states when the first temperature is not lower than the first target temperature and the drying component corresponding to the second barrel 200 is not working.
[0188] In some embodiments, the acquisition module 410 is further configured to acquire the target power demand of the first bucket 100;
[0189] The processing module 420 is also used to control the drying component corresponding to the first drum 100 to operate at a second power or a third power based on the target power requirement.
[0190] In some embodiments, the processing module 420 is further configured to determine that the target demand power is not less than the second power when the target demand power is less than the first power, and control the drying component corresponding to the first barrel 100 to operate at the second power.
[0191] Alternatively, if the target power requirement is less than the first power, determine that the target power requirement is not less than the third power, and control the drying component corresponding to the first barrel 100 to operate at the third power.
[0192] In some embodiments, the processing module 420 is further configured to control the drying component corresponding to the first drum 100 to operate intermittently at the second power when the target required power is less than the second power.
[0193] When the target power requirement is less than the third power, the drying component corresponding to the first barrel 100 is controlled to work intermittently at the third power.
[0194] In some embodiments, the acquisition module 410 is further configured to acquire the first humidity of the first barrel 100;
[0195] The processing module 420 is also used to control the drying component corresponding to the first drum 100 to stop working when the first humidity is less than the first target humidity.
[0196] In some embodiments, the processing module 420 is further configured to control the drying component corresponding to the first barrel 100 to operate at a first power, a second power, or a third power when the first temperature is not lower than the first target temperature and the drying component corresponding to the second barrel 200 is not working.
[0197] This invention also provides a clothing processing device, which includes a first tub 100 and a second tub 200. The controller of the clothing processing device is electrically connected to the drying component corresponding to the first tub 100 and the drying component corresponding to the second tub 200, and is used to control the operation of the drying component corresponding to the first tub 100 and the drying component corresponding to the first tub 100 based on the above-described drying control method.
[0198] In this embodiment of the invention, the clothing treatment device can be an exhaust-type, condensing-type, or heat pump-type clothing treatment device.
[0199] For example, the first drum 100 may be equipped with a first fan 101 and a first condenser 104. Air is heated by the drying component corresponding to the first drum 100 and becomes hot air. The hot air passes through the clothes and becomes humid cold air. The humid cold air is condensed by the first condenser 104 to remove moisture and becomes dry cold air. The dry cold air is carried by the first fan 101 to the drying component corresponding to the first drum 100 for heating. This cycle continues to remove moisture from the clothes.
[0200] The second drum 200 can be equipped with a second fan 201 and a second condenser 204, which work in conjunction with the drying components of the second drum 200 to remove moisture from the clothes in the second drum 200.
[0201] In this embodiment, the drying component corresponding to the first barrel 100 has a first power and a second power, the first power being greater than the second power, and the heating rate of the drying component corresponding to the first barrel 100 when operating at the first power is higher than the heating rate of the drying component corresponding to the first barrel 100 when operating at the second power.
[0202] For example, the drying component corresponding to the first barrel 100 consists of two heating tubes, namely the first main heating tube 102 and the first auxiliary heating tube 103, with the power of the first main heating tube 102 being greater than that of the first auxiliary heating tube 103.
[0203] The drying component corresponding to the first barrel 100 operates at the first power, which can simultaneously turn on the first main heating tube 102 and the first auxiliary heating tube 103 of the first barrel 100.
[0204] Correspondingly, the drying component corresponding to the first barrel 100 operates at the second power, which can turn on the first main heating tube 102 of the first barrel 100.
[0205] In this embodiment, the first bucket 100 refers to a bucket used to achieve rapid drying, which can be a small-capacity bucket or a bucket that the user specifies as the priority for drying.
[0206] The capacity of the first tub 100 can be smaller than that of the second tub 200. The capacity of the first tub 100 and the second tub 200 refers to the volume or weight of clothes that the first tub 100 and the second tub 200 can hold. The first tub 100 can be used to dry a small amount or light clothes, while the second tub 200 can be used to dry a large amount or heavy clothes.
[0207] For example, the first bucket 100 has a capacity of 3 kg, and the second bucket 200 has a capacity of 10 kg. The first bucket 100 can be used to dry shirts, light shirts or underwear, while the second bucket 200 can be used to dry woolen clothes, down jackets, cotton-padded clothes or bedding.
[0208] According to the clothing processing device provided in the embodiment of the present invention, when the first temperature of the first tub 100 is lower than the first target temperature, the drying component corresponding to the first tub 100 is controlled to work at a first power, and the drying component corresponding to the second tub 200 is controlled to stop working. While ensuring the total power limit of the clothing processing device, the drying efficiency of the first tub 100 is effectively improved and the drying time of the first tub 100 is shortened, thereby effectively improving the user experience.
[0209] Figure 5 An example is a schematic diagram of the physical structure of an electronic device, such as... Figure 5 As shown, the electronic device may include a processor 510, a communications interface 520, a memory 530, and a communication bus 540, wherein the processor 510, communications interface 520, and memory 530 communicate with each other via the communication bus 540. The processor 510 can call logical instructions in the memory 530 to execute a drying control method. This method is applied to a clothing processing device having at least a first drum and a second drum. The method includes: when the first drum is operating, acquiring a first temperature of the first drum; when the first temperature is lower than a first target temperature, controlling the drying component corresponding to the first drum to operate at a first power, and controlling the drying component corresponding to the second drum to stop operating; wherein the drying component corresponding to the first drum has a first power and a second power, with the first power being greater than the second power.
[0210] Furthermore, the logical instructions in the aforementioned memory 530 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, essentially, or the part that contributes to the prior art, or a part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.
[0211] Furthermore, the present invention also provides a computer program product, the computer program product including a computer program, which can be stored on a non-transitory computer-readable storage medium. When the computer program is executed by a processor, the computer can execute the drying control method provided in the above-described method embodiments. The method is applied to a clothing processing device having at least a first tub and a second tub. The method includes: when both first tubs are working, obtaining a first temperature of the first tub; when the first temperature is lower than a first target temperature, controlling the drying component corresponding to the first tub to work at a first power, and controlling the drying component corresponding to the second tub to stop working; wherein the drying component corresponding to the first tub has a first power and a second power, and the first power is greater than the second power.
[0212] On the other hand, embodiments of the present invention also provide a non-transitory computer-readable storage medium storing a computer program thereon. When executed by a processor, the computer program is implemented to perform the drying control method provided in the above embodiments. The method is applied to a clothing processing device having at least a first tub and a second tub. The method includes: when the first tub is operating, acquiring a first temperature of the first tub; when the first temperature is lower than a first target temperature, controlling the drying component corresponding to the first tub to operate at a first power and controlling the drying component corresponding to the second tub to stop operating; wherein the drying component corresponding to the first tub has a first power and a second power, and the first power is greater than the second power.
[0213] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.
[0214] Through the above description of the embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence 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, such as ROM / RAM, magnetic disk, optical disk, etc., and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute the methods described in the various embodiments or some parts of the embodiments.
[0215] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
[0216] The above embodiments are for illustrative purposes only and are not intended to limit the scope of the invention. Although the invention has been described in detail with reference to the embodiments, those skilled in the art should understand that various combinations, modifications, or equivalent substitutions of the technical solutions of the invention do not depart from the spirit and scope of the invention and should be covered within the scope of the claims of the invention.
Claims
1. A drying control method, applied to a garment processing apparatus having at least a first drum and a second drum, characterized in that, The drying assembly corresponding to the first tub consists of two heating elements, namely a first main heating element and a first auxiliary heating element, wherein the power of the first main heating element is greater than the power of the first auxiliary heating element; the drying assembly corresponding to the second tub consists of a second heating element; the method includes: While the first barrel is operating, obtain the first temperature of the first barrel; When the first temperature is lower than the first target temperature, the drying component corresponding to the first barrel is controlled to operate at the first power, and the drying component corresponding to the second barrel is controlled to stop operating. The drying component corresponding to the first barrel has the first power and the second power, wherein the first power is greater than the second power. When the first temperature is not less than the first target temperature and the drying component corresponding to the second barrel is working, the drying component corresponding to the first barrel is controlled to work at the second power or the third power, wherein the second power is greater than the third power; When the first temperature is not lower than the first target temperature and the drying component corresponding to the second barrel is not working, the drying component corresponding to the first barrel is controlled to intermittently switch between the second power and the third power working states; The first power operation is when the first main heating element and the first auxiliary heating element are both turned on; the second power operation is when the first main heating element is turned on; the third power operation is when the first auxiliary heating element is turned on and the first main heating element is turned off. When the drying process of the second drum is in the later stage of operation and the second heating element is turned on and off: When the first tank is in the early stage of operation, if the power of a single heating element is insufficient and the second heating element is started, the first tank is set to work with either the first main heating element or the first auxiliary heating element; when the second heating element is not working, the first tank is set to work with the first main heating element and start / stop the first auxiliary heating element, or the first tank is set to work with the first auxiliary heating element and start / stop the first main heating element.
2. The drying control method according to claim 1, characterized in that, The control of the drying component corresponding to the first barrel to operate at the second power or the third power includes: The drying component corresponding to the first barrel is controlled to operate intermittently at the second power or the third power.
3. The drying control method according to claim 1, characterized in that, The method further includes: When the first temperature is not lower than the first target temperature and the drying component corresponding to the second barrel is not working, the drying component corresponding to the first barrel is controlled to work intermittently at the first power or the second power.
4. The drying control method according to any one of claims 1-3, characterized in that, After controlling the drying assembly corresponding to the first tub to operate at a first power, the method further includes: Obtain the first humidity level of the first bucket; If the first humidity is less than the first target humidity, the drying component corresponding to the first barrel is controlled to stop working.
5. A drying control device, applied to a garment processing device having at least a first tub and a second tub, characterized in that, The drying assembly corresponding to the first tub consists of two heating elements, namely a first main heating element and a first auxiliary heating element, wherein the power of the first main heating element is greater than the power of the first auxiliary heating element; the drying assembly corresponding to the second tub consists of a second heating element; the drying control device includes: The acquisition module is used to acquire the first temperature of the first barrel when the first barrel is in operation; The processing module is used to control the drying component corresponding to the first barrel to operate at a first power when the first temperature is lower than the first target temperature, and to control the drying component corresponding to the second barrel to stop operating. The drying component corresponding to the first barrel has the first power and the second power, wherein the first power is greater than the second power. When the first temperature is not less than the first target temperature and the drying component corresponding to the second barrel is working, the drying component corresponding to the first barrel is controlled to work at the second power or the third power, wherein the second power is greater than the third power; When the first temperature is not lower than the first target temperature and the drying component corresponding to the second barrel is not working, the drying component corresponding to the first barrel is controlled to intermittently switch between the second power and the third power working states; The first power operation is when the first main heating element and the first auxiliary heating element are both turned on; the second power operation is when the first main heating element is turned on; the third power operation is when the first auxiliary heating element is turned on and the first main heating element is turned off. When the drying process of the second drum is in the later stage of operation and the second heating element is turned on and off: When the first tank is in the early stage of operation, if the power of a single heating element is insufficient and the second heating element is started, the first tank is set to work with either the first main heating element or the first auxiliary heating element; when the second heating element is not working, the first tank is set to work with the first main heating element and start / stop the first auxiliary heating element, or the first tank is set to work with the first auxiliary heating element and start / stop the first main heating element.
6. A garment processing device, characterized in that, include: First barrel and second barrel; A controller, which is electrically connected to the drying components corresponding to the first barrel and the second barrel, is used to control the drying components corresponding to the first barrel and the second barrel to operate based on the drying control method according to any one of claims 1-4. The drying component corresponding to the first barrel has a first power and a second power, wherein the first power is greater than the second power.
7. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the program, it implements the steps of the drying control method as described in any one of claims 1 to 4.
8. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that, When executed by a processor, the computer program implements the steps of the drying control method as described in any one of claims 1 to 4.
9. A computer program product, comprising a computer program, characterized in that, When the computer program is executed by the processor, it implements the steps of the drying control method as described in any one of claims 1 to 4.
Citation Information
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