Method and apparatus for drying laundry
By detecting the temperature and humidity of the environment and the clothes, the system automatically calculates and compensates for the drying time, solving the problem of inaccurate drying time settings in existing technologies. This achieves intelligent clothes drying, improves the user experience, and saves resources.
Patent Information
- Application Number
- CN202111303655.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-11-05
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2041-11-05
AI Technical Summary
Existing clothes drying equipment relies on users to manually set the drying time, which can lead to drying times that are too long or too short, resulting in resource waste and a poor user experience.
By detecting the current environment and the temperature and humidity of the clothes, the system automatically calculates and compensates for the drying time to ensure that the clothes reach the specified humidity, thus achieving intelligent drying.
It enables automatic control of clothes drying time, avoids resource waste, and improves user experience.
Smart Images

Figure CN114197184B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to clothing drying technology, and more particularly to a method and apparatus for controlling the drying of clothing. Background Technology
[0002] Current drying equipment typically controls the drying time by having the user manually set it. This manual setting is not intelligent enough, and the drying time is usually fixed. This time can be too long, leading to over-drying and wasted resources, or too short, resulting in clothes not being completely dried. Both situations lead to a poor user experience. Summary of the Invention
[0003] This invention provides a method and apparatus for controlling the drying of clothing, which can avoid resource waste and improve user experience.
[0004] In a first aspect, embodiments of the present invention provide a method for controlling the drying of clothing, comprising:
[0005] Before drying the clothes, the current environment is detected to obtain the temperature and humidity of the current environment, and the clothes to be dried are detected to obtain the initial temperature and initial humidity of the clothes to be dried;
[0006] The drying humidity threshold is determined based on the current ambient humidity.
[0007] During the drying process, the real-time temperature and humidity of the clothes to be dried are detected, and the temperature of the hot air supplied for drying the clothes is detected.
[0008] When the real-time temperature of the clothes to be dried is the same as the temperature of the hot air, and the real-time humidity of the clothes to be dried reaches the drying humidity threshold, the drying compensation time is calculated based on the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air.
[0009] The drying time of the clothes to be dried is compensated according to the drying compensation time.
[0010] Secondly, embodiments of the present invention provide a clothing drying control device, comprising:
[0011] The first detection module is used to detect the current environment to obtain the temperature and humidity of the current environment before drying the clothes to be dried, and to detect the clothes to be dried to obtain the initial temperature and initial humidity of the clothes to be dried.
[0012] The determination module is used to determine the drying humidity threshold based on the current environmental humidity.
[0013] The second detection module is used to detect the clothes to be dried during the drying process to obtain the real-time temperature and real-time humidity of the clothes to be dried, and to detect the temperature of the hot air supplied to dry the clothes to be dried.
[0014] The calculation module is used to calculate the drying compensation time based on the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air when the real-time temperature of the clothes to be dried is the same as the temperature of the hot air and the real-time humidity of the clothes to be dried reaches the drying humidity threshold.
[0015] The compensation module is used to compensate the drying time of the clothes to be dried according to the drying compensation time.
[0016] Thirdly, embodiments of the present invention also provide a clothing drying device, including a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the program, it implements the clothing drying control method as described in any of the embodiments of the present invention.
[0017] Fourthly, embodiments of the present invention also provide a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the clothing drying control method as described in any of the embodiments of the present invention.
[0018] In this embodiment of the invention, before drying the clothes to be dried, the current environment's temperature and humidity can be detected, and the initial temperature and humidity of the clothes to be dried can be detected. A drying humidity threshold is determined based on the humidity of the current environment. During the drying process, the real-time temperature and humidity of the clothes to be dried are detected, and the temperature of the hot air supplied for drying the clothes is detected. When the real-time temperature of the clothes to be dried is the same as the temperature of the hot air, and the real-time humidity of the clothes to be dried reaches the drying humidity threshold, a drying compensation time is calculated based on the current environment's temperature and humidity, the initial temperature and humidity of the clothes to be dried, and the temperature of the hot air. The drying time of the clothes to be dried is then compensated according to the drying compensation time. In this embodiment of the invention, the clothes can be automatically dried to a specified humidity (i.e., drying humidity threshold) by referring to the current ambient humidity. Then, the drying time is compensated by taking into account the ambient temperature and humidity, the initial temperature and humidity of the clothes, etc., so as to ensure that the clothes are dried at an appropriate drying time. The entire drying time is automatically determined and executed by the equipment, making the drying method more intelligent and avoiding problems such as resource waste and poor user experience caused by manually setting the drying time. Attached Figure Description
[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0020] Figure 1 This is a schematic flowchart of a clothing drying control method provided in an embodiment of the present invention;
[0021] Figure 2 This is a schematic diagram of a clothing drying control device provided in an embodiment of the present invention;
[0022] Figure 3 This is another structural schematic diagram of the clothing drying control device provided in an embodiment of the present invention;
[0023] Figure 4 This is a schematic diagram of the structure of a clothes drying device provided in an embodiment of the present invention. Detailed Implementation
[0024] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, and not all of the structures.
[0025] Figure 1 This is a schematic flowchart illustrating a clothing drying control method provided in an embodiment of the present invention. This method can be executed by a clothing drying control device provided in this embodiment, which can be implemented using software and / or hardware. In a specific embodiment, the device can be integrated into a clothing drying device, which can be a dryer. The following embodiments will illustrate this using the integration of the device into a clothing drying device as an example. Figure 1 The method may specifically include the following steps:
[0026] S101. Before drying the clothes to be dried, detect the current environment to obtain the temperature and humidity of the current environment, and detect the clothes to be dried to obtain the initial temperature and initial humidity of the clothes to be dried.
[0027] The current ambient temperature and humidity refer to the current ambient temperature and the water vapor content in the air, measured by a certain method. The initial temperature and initial humidity of the clothes to be dried refer to the temperature of the clothes to be dried and the water vapor content in the clothes, measured by a certain method before the drying process begins. The current ambient temperature and humidity, as well as the temperature and humidity of the clothes to be dried, can be measured by a temperature sensor, a humidity sensor, or a temperature and humidity sensor. This embodiment of the invention does not limit the measurement of these parameters.
[0028] The clothes to be dried can be placed in a drying box, which is a washing machine used to remove moisture from clothing and other textiles. It can dry clothes by machine when it is difficult to dry them on rainy days or in humid climates, or when certain clothes need to be worn urgently. This embodiment of the invention does not limit this.
[0029] Specifically, under the suction of the drying box fan, fresh cold air from the outside environment can enter the drying box through the air inlet. After entering the drying box, the cold air exchanges heat with the heater and becomes dry hot air. Then, it exchanges heat with the clothes in the drying box and is discharged from the machine. The moisture in the clothes in the drying box will gradually evaporate under the action of the dry hot air until the clothes are dried.
[0030] For example, when clothes are placed in the drying box but before the drying box starts drying, the current ambient temperature and humidity, as well as the initial temperature and humidity of the clothes to be dried, are detected. For instance, a first temperature sensor measures the current ambient temperature, a first humidity sensor measures the current ambient humidity, and a second temperature sensor measures the initial temperature of the clothes to be dried, and a second humidity sensor measures the initial humidity of the clothes to be dried. Assuming the current ambient temperature is 28 degrees Celsius and the humidity is 45%, and the initial temperature of the clothes to be dried is 13 degrees Celsius and the humidity is 75%, then the first temperature sensor detects the current ambient temperature as 28 degrees Celsius, the first humidity sensor detects the current ambient humidity as 45%, the second temperature sensor detects the initial temperature of the clothes to be dried as 13 degrees Celsius, and the second humidity sensor detects the initial humidity of the clothes to be dried as 75%.
[0031] S102. Determine the drying humidity threshold based on the current ambient humidity.
[0032] Among them, the drying humidity threshold is a standard for measuring the degree of drying of clothes. In order to avoid the situation of over-drying or under-drying of clothes due to using time as the drying standard, using humidity as the evaluation standard can reduce the damage to clothes caused by over-drying. Specifically, different current environmental humidity corresponds to different drying humidity thresholds. The higher the environmental humidity, the higher the degree of drying. This embodiment of the invention does not limit this.
[0033] For example, suppose the relationship between the current ambient humidity and the drying humidity threshold is as follows: when the current ambient humidity is below 10%, the drying humidity threshold is 15%; when the current ambient humidity is between 10% and 35%, the drying humidity threshold is 14%; when the current ambient humidity is between 35% and 55%, the drying humidity threshold is 13%; when the current ambient humidity is between 55% and 75%, the drying humidity threshold is 12%; and when the current ambient humidity is greater than 75%, the drying humidity threshold is 10%. After detecting the current ambient humidity value, the drying humidity threshold can be determined according to the relationship between the current ambient humidity and the drying humidity threshold. For example, if the detected current ambient humidity is 48%, the drying humidity threshold can be determined to be 13%.
[0034] S103. During the drying process of clothes to be dried, the real-time temperature and humidity of the clothes to be dried are detected, and the temperature of the hot air supplied to dry the clothes is detected.
[0035] The hot air supplied for drying clothes refers to the dry hot air formed after the cold air in the external environment enters the drying box and exchanges heat with the heater.
[0036] Specifically, Figure 2 This is a schematic diagram of a clothing drying control device provided in an embodiment of the present invention. As can be seen from the figure, the clothing drying control device includes an air inlet and a hot air outlet inside the box. Cold air from the external environment enters the drying box through the air inlet, and the dry hot air formed after heat exchange with the heater is transmitted out from the hot air outlet inside the box.
[0037] Specifically, during the drying process, temperature and humidity sensors used to detect the clothes to be dried will also detect the temperature and humidity of the clothes to be dried in real time. For example, the temperature and humidity of the clothes to be dried will be detected at fixed intervals. The fixed intervals can be 30 seconds, 1 minute, 3 minutes, etc. The time can be set according to the volume and quantity of the clothes to be dried. This embodiment of the invention does not limit this.
[0038] Optionally, a temperature sensor can be used to detect the temperature of the hot air. The temperature sensor is located at the outlet of the fan duct inside the drying box.
[0039] Specifically, from Figure 2 As can be seen, the temperature sensor used to detect the hot air is arranged at the hot air outlet inside the drying box, which can detect the temperature of the hot air coming out of the hot air outlet in real time.
[0040] Optionally, after obtaining the temperature of the hot air, the method further includes: determining whether the temperature of the hot air exceeds a preset temperature threshold; and activating a constant temperature protection measure when the temperature of the hot air exceeds the preset temperature threshold.
[0041] The preset temperature threshold is the hot air temperature of the drying box for drying clothes, such as 48 degrees Celsius, 55 degrees Celsius, 62 degrees Celsius, etc. The specific preset temperature threshold can be set according to the material and quantity of the clothes to be dried. This embodiment of the invention does not limit this.
[0042] Specifically, to prevent damage to the drying box and clothes from continuous output of excessively hot air, the hot air output system will temporarily stop working when the temperature of the hot air exceeds the preset temperature threshold. It will not output hot air and will activate the constant temperature protection measures to maintain the existing temperature inside the drying box, thereby reducing damage to clothes and the drying box itself caused by excessively high temperatures inside the drying box.
[0043] For example, a second temperature sensor measures the temperature of the clothes to be dried, a second humidity sensor measures the humidity of the clothes to be dried, and a third temperature sensor (temperature sensor at the hot air outlet inside the drying box) measures the temperature of the hot air supplied by the drying box. The temperature and humidity of the clothes to be dried are checked every minute, and the preset temperature threshold is 55 degrees Celsius. During the drying process, the second temperature sensor and the second humidity sensor will check the temperature and humidity of the clothes to be dried every minute to obtain the current real-time temperature and humidity. The third temperature sensor will also measure the temperature of the hot air supplied by the drying box in real time. When the third temperature sensor detects that the temperature of the hot air supplied by the drying box is higher than 55 degrees Celsius, the drying box will activate a constant temperature protection measure, at which point the supply of hot air will stop, and the clothes to be dried will be dried at the current temperature.
[0044] S104. When the real-time temperature of the clothes to be dried is the same as the temperature of the hot air, and the real-time humidity of the clothes to be dried reaches the drying humidity threshold, calculate the drying compensation time based on the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air.
[0045] The drying compensation time is calculated based on the current ambient temperature and humidity, the initial temperature and humidity of the clothes to be dried, the temperature of the hot air, and the current temperature and humidity of the clothes to be dried. It is the time required for the clothes to be completely dried under the current environment.
[0046] Specifically, when the real-time temperature of the clothes to be dried is the same as the temperature of the hot air, the current temperature of the clothes to be dried is the hot air temperature; when the real-time humidity of the clothes to be dried reaches the drying humidity threshold, the current temperature of the clothes to be dried is the drying humidity threshold.
[0047] For example, the current ambient humidity is 48%, the drying humidity threshold is 13%, and the preset temperature threshold is 55 degrees Celsius. When the real-time temperature of the clothes to be dried is the same as the temperature of the hot air, and the real-time humidity of the clothes to be dried reaches the drying humidity threshold, the real-time temperature of the clothes to be dried is 55 degrees Celsius, and the real-time humidity of the clothes to be dried is 13%. Combining the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air (55 degrees Celsius), the drying compensation time is calculated.
[0048] S105. Compensate the drying time of the clothes to be dried according to the drying compensation time.
[0049] Specifically, compensating for the drying time of clothes by adjusting the drying compensation time means that the drying box continues to work until the working time meets the calculated drying compensation time.
[0050] For example, if the drying compensation time is calculated to be 10 minutes, the drying box will continue to dry the clothes to be dried. After 10 minutes, the clothes to be dried are considered to be dry and the drying box will stop working.
[0051] In this embodiment of the invention, before drying the clothes, the current environment's temperature and humidity are detected, and the initial temperature and humidity of the clothes to be dried are also detected. A drying humidity threshold is determined based on the current environmental humidity. During the drying process, the real-time temperature and humidity of the clothes to be dried are detected, and the temperature of the hot air supplied for drying the clothes is also detected. When the real-time temperature of the clothes to be dried is the same as the temperature of the hot air, and the real-time humidity of the clothes to be dried reaches the drying humidity threshold, a drying compensation time is calculated based on the current environmental temperature and humidity, the initial temperature and humidity of the clothes to be dried, and the temperature of the hot air. The drying time of the clothes to be dried is then compensated according to the drying compensation time. That is, in this embodiment of the invention, the clothes can be automatically dried to a specified humidity (i.e., the drying humidity threshold) by referring to the current environmental humidity, and then the drying time is compensated by combining the environmental temperature and humidity, the initial temperature and humidity of the clothes, etc., thereby ensuring that the clothes are dried using an appropriate drying time. The entire drying time is automatically determined and executed by the equipment, making the drying method more intelligent and avoiding problems such as resource waste and poor user experience caused by manually setting the drying time.
[0052] In a specific embodiment, based on the above embodiments, the specific implementation method of detecting the initial temperature and initial humidity of the clothes to be dried is described, mainly including:
[0053] Step 1: Start the fan without starting the heating module and control the fan to run for the preset time.
[0054] The fan can accelerate the dissipation of temperature and humidity from the clothes. The preset operating time of the fan refers to the working time of the fan set to accelerate the dissipation of temperature and humidity from the clothes, such as 30 seconds, 40 seconds, 1 minute, etc. The specific time can be set according to the quantity and material of the clothes to be dried. This embodiment of the invention does not limit this.
[0055] Specifically, under natural evaporation conditions, the temperature and humidity of clothing diffuse outwards slowly. Accurately measuring the initial temperature and humidity of clothing may take 30 minutes or even an hour. However, by setting the fan to run for a preset time, the temperature and humidity of the clothing can be quickly brought out, improving the accuracy of the measured initial temperature and humidity, and providing data support for accurately determining the drying compensation time later.
[0056] Step 2: After a preset time, detect the initial temperature and initial humidity of the clothes to be dried.
[0057] Specifically, after the preset time is reached, the initial temperature and initial humidity of the clothes to be dried will be within the entire internal environment. The initial temperature and initial humidity of the clothes to be dried can be obtained by detecting the temperature and humidity of the internal environment through the second temperature sensor and the second humidity sensor.
[0058] For example, if the preset operating time of the fan is set to 30 seconds, then after the clothes to be dried are placed into the drying box, the fan will be started first without activating the heating module, and the fan will be controlled to run for 30 seconds to generate the initial temperature and initial humidity of the clothes to be dried. After 30 seconds, the second temperature sensor measures the temperature of the environment inside the drying box, and the second humidity sensor measures the humidity of the environment inside the drying box. If the humidity detected by the second humidity sensor is 63% and the temperature detected by the second temperature sensor is 15 degrees Celsius, then the initial temperature of the clothes to be dried is 15 degrees Celsius, and the real-time humidity of the clothes to be dried is 63%.
[0059] Optionally, the current environment temperature and humidity are detected, and the clothes to be dried are detected to obtain the initial temperature and initial humidity of the clothes to be dried. This includes: using a target temperature and humidity sensor to detect the current environment temperature and humidity, and using the target temperature and humidity sensor to detect the clothes to be dried to obtain the initial temperature and initial humidity of the clothes to be dried; wherein the target temperature and humidity sensor is located on the top of the drying box, and when the current environment is detected, the target temperature and humidity sensor is controlled to rotate to the outside of the drying box, and when the clothes to be dried are detected, the target temperature and humidity sensor is controlled to rotate to the inside of the drying box.
[0060] The temperature sensor used to detect the current ambient temperature and the temperature sensor used to detect the temperature of the clothes to be dried can be the same temperature sensor. Similarly, the humidity sensor used to detect the current ambient humidity and the humidity sensor used to detect the humidity of the clothes to be dried can be the same humidity sensor. Specifically, depending on the object being measured, the control system adjusts the positions of the temperature and humidity sensors to place them in different measurement environments, thus measuring the temperature and humidity in different environments. Alternatively, the temperature and humidity sensors can be integrated into a single unit, namely a target temperature and humidity sensor.
[0061] For example, depending on the type of target for which temperature and humidity need to be detected, the temperature sensor and humidity sensor are controlled to rotate to the environment to be detected, and the temperature and humidity of the environment are detected. For example, when it is necessary to detect the temperature and humidity of the clothes to be dried inside the drying box, the temperature sensor and humidity sensor are controlled to rotate to the inside of the drying box to detect the temperature and humidity of the clothes to be dried. When it is necessary to detect the temperature and humidity of the current environment, the temperature sensor and humidity sensor are controlled to rotate to the outside of the drying box to detect the temperature and humidity of the current environment.
[0062] Optionally, the system detects the current ambient temperature and humidity, and detects the clothes to be dried to obtain their initial temperature and humidity. This includes: using a first temperature and humidity sensor to detect the current ambient temperature and humidity, and using a second temperature and humidity sensor to detect the clothes to be dried to obtain their initial temperature and humidity. The first temperature and humidity sensor is located on the outside of the drying box, and the second temperature and humidity sensor is located inside the top of the drying box. Alternatively, the temperature and humidity sensors can be integrated into one unit, i.e., either the first or the second temperature and humidity sensor.
[0063] Specifically, temperature and humidity sensors for detecting the current ambient temperature and humidity are located on the outside of the top of the drying box, while temperature and humidity sensors for detecting the temperature and humidity of the clothes to be dried are located inside the top of the drying box. For example, when it is necessary to detect the temperature and humidity of the clothes to be dried inside the drying box, the temperature and humidity sensors located inside the top of the drying box will detect the temperature and humidity of the clothes to be dried. When it is necessary to detect the temperature and humidity of the current ambient temperature and humidity, the temperature and humidity sensors located on the outside of the top of the drying box will detect the temperature and humidity of the current ambient temperature and humidity.
[0064] The method described in this embodiment can quickly and accurately obtain the initial temperature and humidity of the clothes to be dried, with high measurement accuracy, greatly shortening the drying time and improving the drying efficiency. Furthermore, this embodiment also includes two methods and devices for detecting the current environment to obtain its temperature and humidity, and for detecting the clothes to be dried to obtain their initial temperature and humidity. Users can choose according to the device design and their needs, thus expanding their options.
[0065] In one specific embodiment, based on the above embodiments, the specific implementation method of determining the drying humidity threshold according to the current environmental humidity is described, mainly including:
[0066] Based on the humidity of the current environment, the humidity threshold relationship information is queried to obtain the drying humidity threshold. The humidity threshold relationship information includes the drying humidity threshold corresponding to each environmental humidity.
[0067] Among them, the drying humidity threshold is a standard for measuring the degree of drying of clothes. Different current ambient humidity corresponds to different drying humidity thresholds. The higher the ambient humidity, the higher the degree of drying.
[0068] Specifically, the relationship between the current environmental humidity and the humidity threshold is shown in Table 1.
[0069] Table 1
[0070] Current ambient humidity Drying humidity threshold ≤10% 15% 10%~35% 14% 35%~55% 13% 55%~75% 12% >75% 10%
[0071] As shown in Table 1, the relationship between the current ambient humidity and the drying humidity threshold is as follows: when the current ambient humidity is within 10%, the drying humidity threshold is 15%; when the current ambient humidity is between 10% and 35%, the drying humidity threshold is 14%; when the current ambient humidity is between 35% and 55%, the drying humidity threshold is 13%; when the current ambient humidity is between 55% and 75%, the drying humidity threshold is 12%; and when the current ambient humidity is greater than 75%, the drying humidity threshold is 10%.
[0072] The method of this embodiment can determine the drying humidity threshold according to the correspondence between the current ambient humidity and the drying humidity threshold after detecting the current ambient humidity value. This can quickly determine the initial degree of drying required for the clothes to be dried. For example, if the current ambient humidity is detected to be 48%, the drying humidity threshold can be determined to be 13% by looking up a table.
[0073] In one specific embodiment, based on the above embodiment, the specific implementation method of calculating the drying compensation time according to the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air is described, mainly including:
[0074] Step 1: Based on the current ambient temperature, query the first temperature relationship information to obtain the first compensation time. The first temperature relationship information includes the compensation time corresponding to each ambient temperature.
[0075] Different ambient temperatures have different effects on the drying process of clothes; the higher the ambient temperature, the shorter the first compensation time.
[0076] Specifically, the information table showing the first temperature relationship between the current ambient temperature and the first compensation time corresponding to the ambient temperature is shown in Table 2.
[0077] Table 2
[0078] Current ambient temperature (degrees Celsius) First compensation time (minutes) ≤5 18 5~15 15 15~28 10 28~35 8 >35 5
[0079] Table 2 shows the correspondence between the current ambient temperature and the corresponding first compensation time: when the current ambient temperature is less than 5 degrees Celsius, the corresponding first compensation time is 18 minutes; when the current ambient temperature is between 5 and 15 degrees Celsius, the corresponding first compensation time is 15 minutes; when the current ambient temperature is between 15 and 28 degrees Celsius, the corresponding first compensation time is 10 minutes; when the current ambient temperature is between 28 and 35 degrees Celsius, the corresponding first compensation time is 8 minutes; and when the current ambient temperature is greater than 35 degrees Celsius, the corresponding first compensation time is 5 minutes. After obtaining the current ambient temperature, the corresponding first compensation time can be quickly obtained by looking up the table. For example, if the detected current ambient temperature is 23 degrees Celsius, the corresponding first compensation time is 10 minutes.
[0080] Step 2: Based on the current environmental humidity, query the first humidity relationship information to obtain the second compensation time. The first humidity relationship information includes the compensation time corresponding to each environmental humidity.
[0081] Different ambient humidity levels have different effects on the drying of clothes; the higher the current ambient humidity, the longer the second compensation time.
[0082] Specifically, the first humidity relationship information between the current ambient humidity and the corresponding compensation time is shown in Table 3.
[0083] Table 3
[0084] Current ambient humidity Second compensation time (minutes) ≤10% 3 10%~35% 6 35%~55% 10 55%~75% 12 >75% 15
[0085] Table 3 shows the correspondence between the current ambient humidity and the corresponding second compensation time: when the current ambient humidity is below 10%, the corresponding second compensation time is 3 minutes; when the current ambient humidity is between 10% and 35%, the corresponding second compensation time is 6 minutes; when the current ambient humidity is between 35% and 55%, the corresponding second compensation time is 10 minutes; when the current ambient humidity is between 55% and 75%, the corresponding second compensation time is 12 minutes; and when the current ambient humidity is greater than 75%, the corresponding second compensation time is 15 minutes. After obtaining the current ambient humidity, the corresponding second compensation time can be quickly obtained by looking up the table. For example, if the detected current ambient humidity is 48%, the corresponding second compensation time is 10 minutes.
[0086] Step 3: Based on the initial temperature of the clothes to be dried, query the second temperature relationship information to obtain the third compensation time. The second temperature relationship information includes the compensation time corresponding to the temperature of each type of clothing.
[0087] The initial temperature of different clothes to be dried has different effects on the degree of drying. The lower the initial temperature of the clothes to be dried, the longer the third compensation time.
[0088] Specifically, the second temperature relationship information between the initial temperature of the clothes to be dried and the third compensation time corresponding to the temperature of the clothes is shown in Table 4.
[0089] Table 4
[0090] Initial temperature (degrees Celsius) of clothes to be dried. Third compensation time (minutes) ≤3 0 3~10 8 10~18 6 18~22 5 >22 3
[0091] Table 4 shows the correspondence between the initial temperature of the clothes to be dried and the corresponding third compensation time: when the initial temperature is less than 3 degrees Celsius, the corresponding third compensation time is 10 minutes; when the initial temperature is between 3 and 10 degrees Celsius, the corresponding third compensation time is 8 minutes; when the initial temperature is between 10 and 18 degrees Celsius, the corresponding third compensation time is 6 minutes; when the initial temperature is between 18 and 22 degrees Celsius, the corresponding third compensation time is 5 minutes; and when the initial temperature is greater than 22 degrees Celsius, the corresponding third compensation time is 3 minutes. After obtaining the initial temperature of the clothes to be dried, the corresponding third compensation time can be quickly obtained by looking up the table. For example, if the initial temperature of the clothes to be dried is detected to be 8 degrees Celsius, the corresponding third compensation time is 8 minutes.
[0092] Step 4: Based on the initial humidity of the clothes to be dried, query the second humidity relationship information to obtain the fourth compensation time. The fourth temperature relationship information includes the compensation time corresponding to the humidity of each type of clothing.
[0093] The initial humidity of different clothes to be dried has different effects on the degree of drying. The higher the initial humidity of the clothes to be dried, the longer the fourth compensation time.
[0094] Specifically, the second humidity relationship information between the initial humidity of the clothes to be dried and the fourth compensation time corresponding to the humidity of the clothes is shown in Table 5.
[0095] Table 5
[0096] Initial humidity of clothes to be dried Fourth compensation time (minutes) ≤55% 0 55%~68% 3 68%~75% 6 75%~90% 10 >90% 15
[0097] Table 5 shows the correspondence between the initial humidity of the clothes to be dried and the corresponding fourth compensation time: when the initial humidity is below 55%, the fourth compensation time is 0 minutes (no compensation is needed); when the initial humidity is between 55% and 68%, the fourth compensation time is 3 minutes; when the initial humidity is between 68% and 75%, the fourth compensation time is 6 minutes; when the initial humidity is between 75% and 90%, the fourth compensation time is 10 minutes; and when the initial humidity is above 90%, the fourth compensation time is 15 minutes. After obtaining the initial humidity of the clothes to be dried, the corresponding fourth compensation time can be quickly obtained by looking up the table. For example, if the initial humidity of the clothes to be dried is 70%, the corresponding fourth compensation time is 6 minutes.
[0098] Step 5: Determine the fifth compensation time based on the temperature of the hot air.
[0099] Specifically, due to aging and power degradation of the heating module in the drying box, there may be a certain deviation between the actual hot air output from the hot air outlet inside the drying box and the set output hot air temperature.
[0100] For example, the hot air temperature required for drying clothes in the drying box is set to 60 degrees Celsius. However, due to the aging of the heating module and power degradation of the drying box, the actual output hot air is 58 degrees Celsius. The clothes to be dried will be dried differently with hot air at 58 degrees Celsius and hot air at 60 degrees Celsius. Based on the temperature of the hot air, a fifth compensation time is determined to compensate for the difference in the degree of drying caused by the difference in hot air temperature.
[0101] Optionally, the fifth compensation time is determined based on the temperature of the hot air, including: determining the difference between the temperature of the hot air and the standard temperature; querying the third temperature relationship information based on the difference to obtain the fifth compensation time, wherein the third temperature relationship information includes the compensation time corresponding to each temperature difference.
[0102] Different hot air differences have different effects on the drying degree of clothes. The larger the hot air difference, the longer the fifth compensation time.
[0103] Specifically, the information table showing the relationship between the hot air temperature difference and the third temperature at the corresponding fifth compensation time is shown in Table 6.
[0104] Table 6
[0105]
[0106]
[0107] Table 6 shows the correspondence between the hot air temperature difference and the corresponding fifth compensation time: when the hot air temperature difference is less than 2 degrees Celsius, the corresponding fifth compensation time is 1 minute; when the hot air temperature difference is between 2 and 5 degrees Celsius, the corresponding fifth compensation time is 3 minutes; when the hot air temperature difference is between 5 and 8 degrees Celsius, the corresponding fifth compensation time is 6 minutes; when the hot air temperature difference is between 8 and 10 degrees Celsius, the corresponding fifth compensation time is 10 minutes; and when the hot air temperature difference is greater than 10 degrees Celsius, the corresponding fifth compensation time is 15 minutes. After obtaining the hot air temperature difference, the corresponding fifth compensation time can be quickly obtained by looking up the table. For example, if a hot air temperature difference of 4 degrees Celsius is detected, the corresponding fifth compensation time is 3 minutes.
[0108] Step 6: Calculate the drying compensation time based on the first compensation time, the second compensation time, the third compensation time, the fourth compensation time, and the fifth compensation time.
[0109] Specifically, the drying compensation time is calculated based on the first compensation time, the second compensation time, the third compensation time, the fourth compensation time, and the fifth compensation time, including summing the first compensation time, the second compensation time, the third compensation time, the fourth compensation time, and the fifth compensation time to obtain the drying compensation time.
[0110] For example, if the first compensation time is 10 minutes, the second compensation time is 10 minutes, the third compensation time is 8 minutes, the fourth compensation time is 6 minutes, and the fifth compensation time is 3 minutes, then the drying compensation time is 37 minutes.
[0111] Optionally, after determining the drying compensation time based on the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air, the method may also include: displaying the drying compensation time.
[0112] The display of drying compensation time is intended to help users understand the drying process and completion status of the clothes to be dried. Specifically, the display can be done by showing the time on a screen and emitting beeping sounds such as "ding ding ding," "squeak squeak squeak," "beep beep beep," and "beep beep beep" to prompt users to check and understand the working status of the drying box. Alternatively, the drying compensation time can be announced via voice broadcast.
[0113] The method described in this embodiment can quantitatively calculate and display the drying compensation time for clothes to be dried, allowing users to understand the drying status of their clothes in a timely manner and greatly enhancing the user experience.
[0114] The clothing drying control device provided in this embodiment of the invention can execute the clothing drying control method provided in any of the above embodiments of the invention, and has the corresponding functional modules and beneficial effects of the method.
[0115] Figure 3 This is another structural schematic diagram of the clothing drying control device provided in the embodiments of the present invention, as shown below. Figure 3 As shown, it includes: a first detection module 301, a determination module 302, a second detection module 303, a calculation module 304, and a compensation module 305.
[0116] The first detection module 301 is used to detect the current environment to obtain the temperature and humidity of the current environment before drying the clothes to be dried, and to detect the clothes to be dried to obtain the initial temperature and initial humidity of the clothes to be dried.
[0117] The determination module 302 is used to determine the drying humidity threshold based on the current ambient humidity.
[0118] The second detection module 303 is used to detect the real-time temperature and humidity of the clothes to be dried during the drying process, and to detect the temperature of the hot air supplied to dry the clothes.
[0119] The calculation module 304 is used to calculate the drying compensation time based on the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried and the temperature of the hot air when the real-time temperature of the clothes to be dried is the same as the temperature of the hot air and the real-time humidity of the clothes to be dried reaches the drying humidity threshold.
[0120] The compensation module 305 is used to compensate the drying time of the clothes to be dried according to the drying compensation time.
[0121] The clothing drying control device provided in this embodiment is to implement the clothing drying control method in the above embodiment. The implementation principle and technical effect of the clothing drying control device provided in this embodiment are similar to those in the above embodiment, and will not be repeated here.
[0122] Optionally, the first detection module 301 is specifically used to start the fan without starting the heating module and control the fan to run for a preset time; after the preset time, it detects the clothes to be dried to obtain the initial temperature and initial humidity of the clothes to be dried.
[0123] Optionally, the determining module 302 is specifically used to query humidity threshold relationship information based on the current environmental humidity to obtain the drying humidity threshold. The humidity threshold relationship information includes the drying humidity threshold corresponding to each environmental humidity.
[0124] Optionally, the second detection module 303 is specifically used to detect the temperature of the hot air using a temperature sensor, which is located at the outlet of the fan duct inside the drying box.
[0125] Optionally, the second detection module 303 is also used to determine whether the temperature of the hot air exceeds a preset temperature threshold after obtaining the temperature of the hot air; and to activate the constant temperature protection measures when the temperature of the hot air exceeds the preset temperature threshold.
[0126] Optionally, the calculation module 304 is further configured to: query first temperature relationship information based on the current ambient temperature to obtain a first compensation time, wherein the first temperature relationship information includes the compensation time corresponding to each ambient temperature; query first humidity relationship information based on the current ambient humidity to obtain a second compensation time, wherein the first humidity relationship information includes the compensation time corresponding to each ambient humidity; query second temperature relationship information based on the initial temperature of the clothes to be dried to obtain a third compensation time, wherein the second temperature relationship information includes the compensation time corresponding to each clothing temperature; query second humidity relationship information based on the initial humidity of the clothes to be dried to obtain a fourth compensation time, wherein the fourth temperature relationship information includes the compensation time corresponding to each clothing humidity; determine a fifth compensation time based on the temperature of the hot air; and calculate the drying compensation time based on the first compensation time, second compensation time, third compensation time, fourth compensation time, and fifth compensation time.
[0127] Optionally, the calculation module 304 is specifically used to determine the difference between the temperature of the hot air and the standard temperature; based on the difference, it queries the third temperature relationship information to obtain the fifth compensation time, which includes the compensation time corresponding to each temperature difference.
[0128] Optionally, the calculation module 304 is specifically used to sum the first compensation time, the second compensation time, the third compensation time, the fourth compensation time, and the fifth compensation time to obtain the drying compensation time.
[0129] Optionally, the clothing drying control device also includes a compensation time display module 306, which is used to determine the drying compensation time based on the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air, and then display the drying compensation time.
[0130] Optionally, the first detection module 301 is specifically used to detect the current environment using a target temperature and humidity sensor to obtain the temperature and humidity of the current environment, and to detect the clothes to be dried using the target temperature and humidity sensor to obtain the initial temperature and initial humidity of the clothes to be dried; wherein, the target temperature and humidity sensor is set on the top of the drying box, and when detecting the current environment, the target temperature and humidity sensor is controlled to rotate to the outside of the drying box, and when detecting the clothes to be dried, the target temperature and humidity sensor is controlled to rotate to the inside of the drying box.
[0131] Optionally, the first detection module 301 is specifically used to detect the current environment using a first temperature and humidity sensor to obtain the current temperature and humidity, and to detect the clothes to be dried using a second temperature and humidity sensor to obtain the initial temperature and initial humidity of the clothes to be dried; wherein, the first temperature and humidity sensor is set on the outside of the drying box, and the second temperature and humidity sensor is set on the inside of the top of the drying box.
[0132] Figure 4This is a schematic diagram of the structure of a clothes drying device provided in an embodiment of the present invention. Figure 4 A block diagram is shown of an exemplary clothes drying apparatus 12 suitable for implementing embodiments of the present invention. Figure 4 The clothes drying device 12 shown is merely an example and should not be construed as limiting the functionality and scope of use of the embodiments of the present invention.
[0133] like Figure 4 As shown, the clothes drying device 12 is represented in the form of a general-purpose computing device. The components of the clothes drying device 12 may include, but are not limited to: one or more processors or processing units 16, system memory 28, and bus 18 connecting different system components (including system memory 28 and processing unit 16).
[0134] Bus 18 represents one or more of several bus architectures, including a memory bus or memory controller, a peripheral bus, a graphics acceleration port, a processor, or a local bus using any of the various bus architectures. For example, these architectures include, but are not limited to, the Industry Standard Architecture (ISA) bus, the Micro Channel Architecture (MAC) bus, the Enhanced ISA bus, the Video Electronics Standards Association (VESA) local bus, and the Peripheral Component Interconnect (PCI) bus.
[0135] Clothes drying equipment 12 typically includes a variety of computer-readable media. These media can be any available media that can be accessed by clothes drying equipment 12, including volatile and non-volatile media, removable and non-removable media.
[0136] System memory 28 may include computer system readable media in the form of volatile memory, such as random access memory (RAM) 30 and / or cache memory 32. The clothes drying apparatus 12 may further include other removable / non-removable, volatile / non-volatile computer system storage media. By way of example only, storage system 34 may be used to read and write non-removable, non-volatile magnetic media (…). Figure 4 Not shown; usually referred to as a "hard drive"). Although Figure 4 Not shown, a disk drive for reading and writing to a removable non-volatile disk (e.g., a "floppy disk") and an optical disk drive for reading and writing to a removable non-volatile optical disk (e.g., a CD-ROM, DVD-ROM, or other optical media) may be provided. In these cases, each drive may be connected to bus 18 via one or more data media interfaces. Memory 28 may include at least one program product having a set (e.g., at least one) of program modules configured to perform the functions of the embodiments of the present invention.
[0137] A program / utility 40 having a set (at least one) of program modules 42 may be stored, for example, in memory 28. Such program modules 42 include—but are not limited to—an operating system, one or more application programs, other program modules, and program data. Each or some combination of these examples may include an implementation of a network environment. Program modules 42 typically perform the functions and / or methods described in the embodiments of the present invention.
[0138] The clothes drying device 12 can also communicate with one or more external devices 14 (e.g., keyboard, pointing device, display 24, etc.), and with one or more devices that allow a user to interact with the clothes drying device 12, and / or with any device that allows the clothes drying device 12 to communicate with one or more other computing devices (e.g., network card, modem, etc.). This communication can be performed via the input / output (I / O) interface 22. Furthermore, in this embodiment, the display 24 is not a separate entity but is embedded in a mirror, so that when the display surface of the display 24 is not displayed, it visually blends seamlessly with the mirror surface. Additionally, the clothes drying device 12 can also communicate with one or more networks (e.g., local area network (LAN), wide area network (WAN), and / or public networks, such as the Internet) via the network adapter 20. Figure 4 As shown, network adapter 20 communicates with other modules of the clothes drying equipment 12 via bus 18. It should be understood that, although... Figure 4 As not shown, other hardware and / or software modules can be used in conjunction with the clothes drying equipment 12, including but not limited to: microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data backup storage systems.
[0139] Processing unit 16 executes various functional applications and data processing by running programs stored in system memory 28, such as implementing the clothing drying control method provided in this embodiment of the invention, which includes:
[0140] Before drying the clothes, the current environment temperature and humidity are detected, and the initial temperature and humidity of the clothes to be dried are detected.
[0141] Determine the drying humidity threshold based on the current ambient humidity;
[0142] During the drying process, the real-time temperature and humidity of the clothes to be dried are detected, and the temperature of the hot air supplied to dry the clothes is also detected.
[0143] When the real-time temperature of the clothes to be dried is the same as the temperature of the hot air, and the real-time humidity of the clothes to be dried reaches the drying humidity threshold, the drying compensation time is calculated based on the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air.
[0144] The drying time of the clothes to be dried is compensated according to the drying compensation time.
[0145] This invention provides a computer-readable storage medium storing a computer program thereon. When executed by a processor, the program implements the clothing drying control method provided in all embodiments of this invention, the method comprising:
[0146] Before drying the clothes, the current environment temperature and humidity are detected, and the initial temperature and humidity of the clothes to be dried are detected.
[0147] Determine the drying humidity threshold based on the current ambient humidity;
[0148] During the drying process, the real-time temperature and humidity of the clothes to be dried are detected, and the temperature of the hot air supplied to dry the clothes is also detected.
[0149] When the real-time temperature of the clothes to be dried is the same as the temperature of the hot air, and the real-time humidity of the clothes to be dried reaches the drying humidity threshold, the drying compensation time is calculated based on the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air.
[0150] The drying time of the clothes to be dried is compensated according to the drying compensation time.
[0151] Any combination of one or more computer-readable media may be used. A computer-readable medium can be a computer-readable signal medium or a computer-readable storage medium. A computer-readable storage medium can be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination thereof. More specific examples (a non-exhaustive list) of computer-readable storage media include: an electrical connection having one or more wires, a portable computer disk, a hard disk, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fiber, portable compact disk read-only memory (CD-ROM), optical storage device, magnetic storage device, or any suitable combination thereof. In this document, a computer-readable storage medium can be any tangible medium that contains or stores a program that can be used by or in connection with an instruction execution system, apparatus, or device.
[0152] Computer-readable signal media may include data signals propagated in baseband or as part of a carrier wave, carrying computer-readable program code. Such propagated data signals may take various forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination thereof. Computer-readable signal media may also be any computer-readable medium other than computer-readable storage media, capable of sending, propagating, or transmitting programs for use by or in connection with an instruction execution system, apparatus, or device.
[0153] Program code contained on a computer-readable medium may be transmitted using any suitable medium, including but not limited to wireless, wire, optical fiber, RF, etc., or any suitable combination thereof.
[0154] Computer program code for performing the operations of this invention can be written in one or more programming languages or a combination thereof, including object-oriented programming languages such as Java, Smalltalk, and C++, as well as conventional procedural programming languages such as C or similar languages. The program code can be executed entirely on the user's computer, partially on the user's computer, as a standalone software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In cases involving remote computers, the remote computer can be connected to the user's computer via any type of network—including a local area network (LAN) or a wide area network (WAN)—or can be connected to an external computer (e.g., via the Internet using an Internet service provider).
[0155] Note that the above description is merely a preferred embodiment of the present invention and the technical principles employed. Those skilled in the art will understand that the present invention is not limited to the specific embodiments described herein, and various obvious changes, readjustments, and substitutions can be made without departing from the scope of protection of the present invention. Therefore, although the present invention has been described in detail through the above embodiments, the present invention is not limited to the above embodiments, and may include many other equivalent embodiments without departing from the concept of the present invention, the scope of which is determined by the scope of the appended claims.
Claims
1. A method for controlling the drying of clothing, characterized in that, include: Before drying the clothes, the current environment is detected to obtain the temperature and humidity of the current environment, and the clothes to be dried are detected to obtain the initial temperature and initial humidity of the clothes to be dried; The drying humidity threshold is determined based on the current ambient humidity. During the drying process, the real-time temperature and humidity of the clothes to be dried are detected, and the temperature of the hot air supplied for drying the clothes is detected. When the real-time temperature of the clothes to be dried is the same as the temperature of the hot air and the real-time humidity of the clothes to be dried reaches the drying humidity threshold, the drying compensation time is calculated based on the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air. The drying time of the clothes to be dried is compensated according to the drying compensation time.
2. The method according to claim 1, characterized in that, Determining the drying humidity threshold based on the current environmental humidity includes: Based on the humidity of the current environment, the humidity threshold relationship information is queried to obtain the drying humidity threshold. The humidity threshold relationship information includes the drying humidity threshold corresponding to each environmental humidity.
3. The method according to claim 1, characterized in that, The calculation of drying compensation time based on the current ambient temperature and humidity, the initial temperature and humidity of the clothes to be dried, and the temperature of the hot air includes: Based on the temperature of the current environment, query the first temperature relationship information to obtain the first compensation time. The first temperature relationship information includes the compensation time corresponding to each ambient temperature. Based on the humidity of the current environment, query the first humidity relationship information to obtain the second compensation time. The first humidity relationship information includes the compensation time corresponding to each environmental humidity. Based on the initial temperature of the clothes to be dried, the second temperature relationship information is queried to obtain the third compensation time. The second temperature relationship information includes the compensation time corresponding to the temperature of each type of clothing. Based on the initial humidity of the clothes to be dried, the second humidity relationship information is queried to obtain the fourth compensation time. The second humidity relationship information includes the compensation time corresponding to the humidity of each type of clothing. The fifth compensation time is determined based on the temperature of the hot air; and The drying compensation time is calculated based on the first compensation time, the second compensation time, the third compensation time, the fourth compensation time, and the fifth compensation time.
4. The method according to claim 3, characterized in that, The determination of the fifth compensation time based on the temperature of the hot air includes: Determine the difference between the temperature of the hot air and the standard temperature; Based on the difference, the third temperature relationship information is queried to obtain the fifth compensation time. The third temperature relationship information includes the compensation time corresponding to each temperature difference.
5. The method according to claim 3, characterized in that, The step of calculating the drying compensation time based on the first compensation time, the second compensation time, the third compensation time, the fourth compensation time, and the fifth compensation time includes: The drying compensation time is obtained by summing the first compensation time, the second compensation time, the third compensation time, the fourth compensation time, and the fifth compensation time.
6. The method according to claim 1, characterized in that, The detection of the initial temperature and initial humidity of the clothes to be dried includes: Start the fan without activating the heating module, and control the fan to run for a preset time; After the preset time, the initial temperature and initial humidity of the clothes to be dried are detected.
7. The method according to claim 1, characterized in that, After obtaining the temperature of the hot air, the method further includes: Determine whether the temperature of the hot air exceeds a preset temperature threshold; When the temperature of the hot air exceeds the preset temperature threshold, a constant temperature protection measure is activated.
8. The method according to claim 1, characterized in that, After determining the drying compensation time based on the current ambient temperature and humidity, the initial temperature and humidity of the clothes to be dried, and the temperature of the hot air, the process further includes: The drying compensation time is shown.
9. The method according to any one of claims 1 to 8, characterized in that, The process of detecting the current environment to obtain its temperature and humidity, and detecting the clothes to be dried to obtain their initial temperature and initial humidity, includes: The target temperature and humidity sensor is used to detect the current environment to obtain the temperature and humidity of the current environment, and the target temperature and humidity sensor is used to detect the clothes to be dried to obtain the initial temperature and initial humidity of the clothes to be dried; The target temperature and humidity sensor is located on the top of the drying box. When the current environment is detected, the target temperature and humidity sensor is controlled to rotate to the outside of the drying box. When the clothes to be dried are detected, the target temperature and humidity sensor is controlled to rotate to the inside of the drying box.
10. The method according to any one of claims 1 to 8, characterized in that, The process of detecting the current environment to obtain its temperature and humidity, and detecting the clothes to be dried to obtain their initial temperature and initial humidity, includes: The temperature and humidity of the current environment are obtained by using a first temperature and humidity sensor, and the initial temperature and humidity of the clothes to be dried are obtained by using a second temperature and humidity sensor. The first temperature and humidity sensor is located on the outside of the drying box, and the second temperature and humidity sensor is located inside the top of the drying box.
11. The method according to any one of claims 1 to 8, characterized in that, The method of detecting the temperature of the hot air supplied for drying the clothes includes: The temperature of the hot air is obtained by detecting the hot air using a temperature sensor, which is located at the outlet of the fan duct inside the drying box.
12. A clothing drying control device, characterized in that, The first detection module is used to detect the current environment to obtain the temperature and humidity of the current environment before drying the clothes to be dried, and to detect the clothes to be dried to obtain the initial temperature and initial humidity of the clothes to be dried. The determination module is used to determine the drying humidity threshold based on the current environmental humidity. The second detection module is used to detect the clothes to be dried during the drying process to obtain the real-time temperature and real-time humidity of the clothes to be dried, and to detect the temperature of the hot air supplied to dry the clothes to be dried. The calculation module is used to calculate the drying compensation time based on the current ambient temperature and humidity, the initial temperature and initial humidity of the clothes to be dried, and the temperature of the hot air when the real-time temperature of the clothes to be dried is the same as the temperature of the hot air and the real-time humidity of the clothes to be dried reaches the drying humidity threshold. The compensation module is used to compensate the drying time of the clothes to be dried according to the drying compensation time.
Citation Information
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