Clothes airing method and electronic equipment
By selecting suitable drying areas and utilizing a transportation system for sun-dried clothes, the problem of clothes not drying well in areas with insufficient sunlight has been solved, achieving an efficient and environmentally friendly drying solution.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SF TECH CO LTD
- Filing Date
- 2025-11-27
- Publication Date
- 2026-05-01
AI Technical Summary
In some areas, insufficient sunshine makes it difficult for clothes to dry naturally in a short time, often accompanied by musty smells and dust mite problems. Existing drying methods are energy-intensive and ineffective, and many laundry and drying services fail to make effective use of regional differences in sunshine and ultraviolet radiation intensity.
By acquiring information on available drying sites, including sunshine and logistics information, suitable drying sites are selected, and the clothing is transported to these sites using a transportation system for sun drying. The drying process is monitored in real time using sensors and control modules to ensure drying quality.
It effectively meets the sun-drying needs of clothes in areas with insufficient sunlight, improves the quality and efficiency of drying, avoids the risks of high-energy-consuming drying, and ensures that clothes are dry and free of musty smells and mites.
Smart Images

Figure CN121961685A_ABST
Abstract
Description
Clothes drying methods and electronic devices Technical Field
[0001] This invention relates to the field of clothing drying technology, specifically to clothing drying methods and electronic devices. Background Technology
[0002] Currently, some areas with insufficient sunshine have a need for drying clothes in the sun. Therefore, how to meet the demand for drying clothes in the sun has become an urgent problem to be solved. Summary of the Invention
[0003] This invention provides a method and electronic device for drying clothes, in order to solve the problem of the need for drying clothes in sunlight.
[0004] In a first aspect, the present invention provides a method for drying clothes, the method comprising: in response to a drying order for a first drying object, obtaining station information of at least one optional drying area, the station information including sunshine information of the optional drying area and logistics information between the location of the first drying object and the optional drying area; selecting a first drying area from the at least one optional drying area based on the station information; and sending a first transportation instruction for the first drying object to a transportation system based on the first drying area, the first transportation instruction instructing the transportation system to transport the first drying object to the first drying area for sun drying.
[0005] In a second aspect, the present invention provides an electronic device, comprising: a memory and a processor, wherein the memory and the processor are communicatively connected to each other, the memory stores computer instructions, and the processor executes the computer instructions to perform the clothing drying method of the first aspect or any corresponding embodiment described above.
[0006] The code protection method provided in this application, upon receiving a drying order for a first drying object, filters out a first drying yard from at least one optional drying yard using yard information. The yard information includes sunshine information and logistics information between the location of the first drying object and the optional drying yard. Therefore, by comprehensively considering the sunshine conditions of the optional drying yards and the logistics information between the location of the first drying object and the optional drying yards, a suitable first drying yard can be selected, ensuring the quality of the sunshine drying service. Furthermore, based on the first drying yard, a first transportation instruction for the first drying object is sent to the transportation system, causing the transportation system to transport the first drying object to the first drying yard for sunshine drying, thereby effectively meeting the sunshine drying needs of the first drying object (such as clothing). Attached Figure Description
[0007] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0008] Figure 1 is a schematic diagram of an application scenario according to an embodiment of the present invention; Figure 2 is a schematic diagram of a first process of a clothes drying method according to an embodiment of the present invention; Figure 3 is a schematic diagram of an optional drying area according to an embodiment of the present invention; Figure 4 is a schematic diagram of a second process of a clothes drying method according to an embodiment of the present invention; Figure 5 is a schematic diagram of a third process of a clothes drying method according to an embodiment of the present invention; Figure 6 is a schematic diagram of a packaging and outbound process according to an embodiment of the present invention; Figure 7 is a timing diagram of second drying information and control parameters according to an embodiment of the present invention; Figure 8 is a schematic diagram of a quality inspection and traceability system according to an embodiment of the present invention; Figure 9 is a structural block diagram of a clothes drying device according to an embodiment of the present invention; Figure 10 is a schematic diagram of the hardware structure of an electronic device according to an embodiment of the present invention. Detailed Implementation
[0009] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0010] It is understood that before using the technical solutions disclosed in the various embodiments of the present invention, users should be informed of the types, scope of use, and usage scenarios of the personal information involved in the present invention and their authorization should be obtained in accordance with relevant laws and regulations through appropriate means.
[0011] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.
[0012] In some areas, high humidity and frequent rainy days make it difficult for clothes and bedding to dry naturally in a short time, often resulting in musty smells and dust mites. Common methods for drying clothes include home drying, commercial drying, dry cleaning, and indoor dehumidification. However, these methods are often energy-intensive, pose a risk of damaging clothing fibers, and are insufficient for naturally removing dust mites and odors from thick bedding. Therefore, there is a need for sun-drying clothes in these areas.
[0013] Currently, most laundry and drying services rely on local drying or baking, failing to utilize regional differences in sunshine, ultraviolet radiation intensity, and climate stability to achieve sun drying of clothes (i.e., sun drying).
[0014] Therefore, this application aims to combine logistics to provide users with clothing sun drying services to meet their clothing sun drying needs.
[0015] As a specific application scenario of this application, as shown in Figure 1, the clothing drying scenario of this application involves terminal equipment and a logistics system. The logistics system includes a drying service system, a transportation system, a packaging and warehousing system, a quality inspection and traceability system, and at least one optional drying area, each equipped with at least one drying device. Users can create drying orders for clothing and other items on the terminal equipment. The drying order includes the shipping address of the item (i.e., the sender's address and the recipient's address; typically, the sender's address and recipient's address are the same). The terminal equipment sends the drying order to the drying service system. The drying service system selects a first drying area from the at least one optional drying area for the item. The transportation system then transports the item to the first drying area, where the drying device is used to sun-dry the item. The drying device is equipped with various sensors to collect environmental information and drying information of the item. Meanwhile, the optional drying area is also equipped with a network module (such as an edge gateway). The drying devices communicate with the drying service system through the network module's communication interface to send information collected by sensors to the drying service system and receive information from the drying service system. After the drying of the objects is completed, the quality inspection and traceability system inspects the drying quality and performs traceability processing. Then, the packaging and warehousing system packages the dried objects, and the transportation system transports the packaged objects to the corresponding waybill address.
[0016] According to an embodiment of the present invention, a method for drying clothes is provided. It should be noted that the steps shown in the flowchart in the accompanying drawings can be executed in a computer system such as a set of computer-executable instructions. Also, although a logical order is shown in the flowchart, in some cases the steps shown or described may be executed in a different order than that shown here.
[0017] According to an embodiment of the present invention, a method for drying clothes is provided. It should be noted that the steps shown in the flowchart in the accompanying drawings can be executed in a computer system such as a set of computer-executable instructions. Also, although a logical order is shown in the flowchart, in some cases the steps shown or described may be executed in a different order than that shown here.
[0018] This embodiment provides a method for drying clothes, which can be used in the above-mentioned drying service system. Figure 2 is a flowchart of the method for drying clothes according to an embodiment of the present invention. As shown in Figure 2, the process includes the following steps: Step S201, in response to a drying order for a first drying object, obtain the station information of at least one optional drying field. The station information includes the sunshine information of the optional drying field and the logistics information between the location of the first drying object and the optional drying field.
[0019] Specifically, the optional drying area is equipped with a control module, a safety module, a sensor assembly, and at least one drying device. The sensor assembly includes at least one sensor, such as a temperature sensor, a light sensor, an ultraviolet sensor, a wind speed sensor, a raindrop sensor, and a weight sensor. The sensor assembly is used to collect environmental information (such as the humidity of the drying area) and drying information of the objects being dried (such as the surface humidity and internal humidity of the objects). The control module is used to communicate with the drying service system and control the drying device based on information sent by the drying service system. The safety module is used to execute corresponding protective measures when a safety problem is detected.
[0020] The sunshine information includes at least one of the following: sunshine duration at the selectable drying yard within a preset time period (e.g., 48 hours) and rainfall information. Additionally, sunshine information can include other sunshine-related meteorological data. Logistics information includes the transportation time from the location of the first drying object to the selectable drying yard. Furthermore, logistics information can also include time windows for each link in the chain when the selectable drying yard is used, such as the pickup time window (i.e., the time for door-to-door pickup, the cut-off time of the courier network), the time windows corresponding to the transportation vehicles between the location of the first drying object and the selectable drying yard (e.g., departure time window, arrival time window, cut-off time window), the time window for the first drying object to enter the warehouse, the time window for the first drying object to undergo quality inspection, the time window for the first drying object to leave the warehouse, the time window for the first drying object to undergo sunshine drying at the selectable drying yard, and the promised delivery time window for the first drying object. Furthermore, logistics information may also include the transport schedules, loading capacity, loading utilization rate, and transshipment costs of the means of transport (such as outbound and return transport) between the location of the first drying object and the optional drying site, without any limitations.
[0021] Furthermore, the site information also includes drying resource information (also known as available capacity) for the optional drying yards. This drying resource information includes the number of drying devices available at the optional drying yards. For example, the number of drying devices that are idle when the first object to be dried is transported to the optional drying yard.
[0022] Optionally, the site information also includes historical drying quality analysis results for the optional drying yards. Specifically, the historical drying quality analysis results are recorded in the operation log of the optional drying yard, and can be obtained from the operation log of the optional drying yard.
[0023] In practical applications, users can create drying orders for the primary drying object using terminal devices (such as mobile phones). For example, they can create such orders through the mini-program or official account provided by the drying service system. After receiving the drying order for the primary drying object, the drying service system obtains information on all available drying yards.
[0024] Step S202: Based on the site information, select the first drying field from at least one selectable drying field.
[0025] Specifically, for each optional drying field, the drying quality of the optional drying fields is comprehensively analyzed based on the information in the field information, and the optional drying field with the best drying quality is selected as the first drying field based on the analysis results.
[0026] Step S203: Based on the first drying yard, a first transportation instruction is sent to the transportation system for the first drying object. The first transportation instruction is used to instruct the transportation system to transport the first drying object to the first drying yard for sun drying.
[0027] Specifically, the transportation system can be a fully automated system, automatically transporting the first items to be dried to the first drying area for sun drying; or it can be a semi-automated system, where the first items are loaded into an autonomous vehicle by personnel, who then input the address of the first drying area, and the autonomous vehicle transports the items to the drying area for sun drying. No restrictions are placed on the mode of transportation used in this system.
[0028] As an example, a hardware flowchart of the optional drying area is shown in Figure 3. The optional drying area is equipped with multiple drying devices, sensor components, a control module, a safety module, and a mobile tracked vehicle (AGV). The drying devices include liftable drying racks and a turning mechanism. The safety module includes a shading mechanism (such as a rain canopy) and a wind speed protection mechanism. The sensor components are used to monitor real-time information about the optional drying area (e.g., temperature, humidity, sunshine, UV radiation, wind speed, weight, etc.). The control module communicates with the drying service system via a network module. The network module includes an edge gateway (such as a programmable logic controller module, industrial gateway, or embedded Linux), a communication bus, and a wireless networking module (such as Wi-Fi, LoRa, or Thread) to achieve bidirectional communication with the drying service system. The safety module includes a windproof reinforcement unit, a weight overload protection unit, a drying device jamming protection unit, an emergency retraction unit, and a power failure protection unit.
[0029] The clothing drying method provided in this embodiment, upon receiving a drying order for a first drying object, selects a first drying area from at least one selectable drying areas based on the station information of at least one selectable drying area. The station information includes sunshine information and logistics information between the location of the first drying object and the selectable drying area. Therefore, by comprehensively considering the sunshine conditions and logistics information of the selectable drying areas, a suitable first drying area can be selected, ensuring the quality of the sunshine drying service. Furthermore, based on the first drying area, a first transportation instruction for the first drying object is sent to the transportation system, causing the transportation system to transport the first drying object to the first drying area for sunshine drying, thereby effectively meeting the sunshine drying needs of the first drying object (such as clothing).
[0030] In some optional implementations, the step S202 above, which selects the first drying field from at least one optional drying field based on the field information, includes: step a1, for each optional drying field, analyzing the drying quality of the optional drying field based on the corresponding field information, and obtaining the current drying quality analysis result of the optional drying field.
[0031] The current drying quality analysis results can be characterized by a drying quality score.
[0032] Specifically, for each available drying yard, the information in the corresponding site information (such as sunshine information and logistics information) is analyzed separately to obtain the first quality analysis result (such as quality score) for each piece of information. The first weight corresponding to each piece of information is then obtained. Based on the first weight, the first quality analysis results corresponding to each piece of information are weighted to obtain the current drying quality analysis result for the available drying yard.
[0033] Step a2: Based on the current drying quality analysis results, select the first drying field from at least one optional drying field.
[0034] Specifically, the current drying quality analysis results of each optional drying field are sorted, and the optional drying field corresponding to the highest-ranked (e.g., first) current drying quality analysis result is taken as the first drying field.
[0035] As an application example, referring to Figure 4, after receiving a drying order for the first drying object, the drying service system obtains the site information of all available drying yards. Based on the site information of all available drying yards, it analyzes the drying quality of the available drying yards to obtain the current drying quality analysis results. Then, the available drying yard with the best current drying quality analysis result is selected as the first drying yard. Finally, based on the first drying yard, a first transportation instruction is sent to the transportation system to transport the first drying object to the first drying yard for drying.
[0036] The clothing drying method provided in this embodiment uses site information to analyze the drying quality of selectable drying sites and obtain the current drying quality analysis results of the selectable drying sites. Therefore, it is possible to quantify the screening conditions of each selectable drying site, so as to provide a standardized screening process for selectable drying sites, thereby screening out selectable drying sites with relatively good drying quality for use in the sun drying of the first drying object.
[0037] In some optional implementations, step a1 above includes: step a11, analyzing the drying quality of the optional drying yards based on each piece of information in the site information, and obtaining the first quality analysis result corresponding to each piece of information.
[0038] Step a12: Perform a comprehensive analysis on the first quality analysis results corresponding to each piece of information to obtain the current drying quality analysis results of the selectable drying yards.
[0039] As one optional implementation, the site information includes sunshine information for the optional drying yard, historical drying quality analysis results, drying resource information, and logistics information between the location of the first drying object and the optional drying yard. The sunshine information includes the sunshine duration and rainfall information of the optional drying yard within a preset time period. The logistics information includes the transportation time from the location of the first drying object to the optional drying yard. The current drying quality analysis result of the optional drying yard is obtained using the following formula: S = α × sunshine information β×future rainfall risk + γ×current available capacity + y×transportation timeliness + z×historical drying quality analysis results; where S is the current drying quality analysis result, α is the weight of the first quality analysis result corresponding to sunshine duration, β is the weight of the first quality analysis result corresponding to rainfall information (also known as rainfall risk reverse scoring), γ is the weight of the first quality analysis result corresponding to drying resource information, y is the weight of the first quality analysis result corresponding to transportation timeliness, and z is the weight of the first quality analysis result corresponding to historical drying quality analysis results.
[0040] It should be noted that the weights of the first quality analysis results corresponding to the above information can be adjusted according to business needs. For example, if the business needs are during a period of business expansion, the weights corresponding to drying resource information and transportation timeliness can be increased to ensure that peak drying orders can be handled.
[0041] As an alternative implementation, the site information includes sunshine information for the optional drying yard, drying risks (including weather and equipment risks) of the optional drying yard, logistics information between the location of the first drying object and the optional drying yard, and drying costs. Sunshine information includes sunshine quality. Logistics information includes transportation time from the location of the first drying object to the optional drying yard and the degree of congestion along the transportation route. Drying costs include transportation costs and the cost of drying the first drying object at the optional drying yard. The current drying quality analysis result of the optional drying yard is obtained using the following formula: S = w1 × transportation time. w2×Sunlight quality + w3×Transportation route congestion level + w4×Drying cost + w5×Drying risk; where S is the current drying quality analysis result, w1 is the weight of the first quality analysis result corresponding to transportation timeliness, w2 is the weight of the first quality analysis result corresponding to sunlight quality, w3 is the weight of the first quality analysis result corresponding to the transportation route congestion level, w4 is the weight of the first quality analysis result corresponding to drying cost, and w5 is the weight of the first quality analysis result corresponding to drying risk.
[0042] Optionally, w1 is 0.4, w2 is 0.25, w3 is 0.15, w4 is 0.1, and w5 is 0.1. In practical applications, the model can also learn the correlation between the current drying quality analysis and transportation timeliness, sunshine quality, transportation route congestion, drying cost, and drying risk, and then dynamically adjust the weights of each piece of information.
[0043] Understandably, transportation timeliness is positively correlated with the drying quality indicated by the current drying quality analysis results; that is, the shorter the transportation timeliness, the better the drying quality indicated by the current drying quality analysis results. Sunlight quality is also positively correlated with the drying quality indicated by the current drying quality analysis results; that is, the better the sunlight quality within a predetermined timeframe (e.g., 72 hours) (e.g., high effective irradiance or high sunlight stability), the better the drying quality indicated by the current drying quality analysis results. The degree of congestion on the transportation route is negatively correlated with the drying quality indicated by the current drying quality analysis results; that is, the lower the congestion on the transportation route, the better the drying quality indicated by the current drying quality analysis results. Finally, drying cost is negatively correlated with the drying quality indicated by the current drying quality analysis results; that is, the lower the drying cost, the better the drying quality indicated by the current drying quality analysis results. The drying risk is negatively correlated with the drying quality represented by the current drying quality analysis results; that is, the lower the drying risk, the better the drying quality represented by the current drying quality analysis results.
[0044] In some alternative implementations, the site information also includes drying resource information of the optional drying fields. The step S202 above, which selects the first drying field from at least one optional drying field based on the site information, includes: step b1, obtaining the business timeliness of the drying order.
[0045] Among them, business timeliness is used to characterize the time required to complete the drying service for a drying order.
[0046] For example, some drying orders specify a completion time for the drying service; this specified completion time is the business timeframe. Alternatively, for drying orders with a promised completion time (such as drying orders with an urgent timeframe), this completion time is the business timeframe. Or, for drying orders without a specified completion time (i.e., non-time-sensitive orders), the pre-configured time tolerance for the drying service is used as the business timeframe.
[0047] Step b2: Analyze the business completion time of the first drying object corresponding to the selectable drying yard based on logistics information.
[0048] Specifically, based on the time windows of each link in the logistics information when an optional drying yard is selected, the business completion time of the first drying object corresponding to the optional drying yard is analyzed.
[0049] Step b3: Analyze the estimated arrival time of the first drying object corresponding to the available drying yard based on logistics information.
[0050] Specifically, based on the processing time (such as pickup time), packing time, waiting time for loading and transportation, and transportation time from the location of the first drying object to the optional drying yard in the logistics information, the estimated arrival time of the first drying object to the optional drying yard can be analyzed.
[0051] Alternatively, based on the transportation time from the location of the first drying object to the optional drying yard, and the transportation schedule of the means of transport from the location of the first drying object to the optional drying yard, the estimated arrival time of the first drying object corresponding to the optional drying yard can be analyzed.
[0052] Step b5: Analyze the loading capacity of the transport vehicles between the location of the first drying object and the available drying sites based on logistics information.
[0053] The loading capacity of the transport vehicle includes a first loading capacity for the transport vehicle from the location of the first drying object to the optional drying yard (i.e., the loading capacity for the outbound journey), and a second loading capacity for the transport vehicle from the optional drying yard to the waybill address of the first drying object (i.e., the loading capacity for the return journey). The waybill address mentioned here can be the address of the location of the first drying object on the outbound journey.
[0054] Step b6: If the business completion time corresponding to the optional drying yard meets the business timeliness, the drying resource information of the optional drying yard indicates that the optional drying yard can accept the first drying object at the expected arrival time, and the loading capacity meets the loading requirements of the first drying object, then the optional drying yard is selected as the first candidate drying yard, and the first drying yard is determined from the first candidate drying yard.
[0055] Optionally, the drying resource information includes the number of drying devices available at the optional drying yard. For example, the number of drying devices that are idle when the first object to be dried is transported to the optional drying yard. In addition, the drying resource information also includes the effective drying area of the optional drying yard, the processing efficiency of the drying devices at the optional drying yard, the availability rate of the drying devices at the optional drying yard, and the number of objects that can be dried.
[0056] It should be noted that the loading requirements of the first drying object mentioned above indicate that the loading capacity of the transport vehicle is sufficient to load the first drying object.
[0057] In some optional implementations, determining the first drying field from the first candidate drying fields in step b6 above includes: step b61, in the case that there are multiple first candidate drying fields, determining the first drying field from the first candidate drying fields based on the time sequence of the expected arrival times corresponding to the first candidate drying fields.
[0058] Specifically, when there are multiple first candidate drying yards, the estimated arrival times of the multiple first candidate drying yards are sorted in order from shortest to longest, and the first drying yard is determined from the first candidate drying yards.
[0059] Optionally, the candidate drying yard with the shortest expected arrival time can be selected as the first drying yard, or the candidate drying yard ranked first can be selected as the first drying yard according to a preset ratio.
[0060] It is worth noting that if there is only one first candidate drying yard, then the first candidate drying yard will be used as the first drying yard.
[0061] In some optional implementations, the step b61 above, which determines the first drying field from the first candidate drying fields based on the time sequence of the expected arrival times corresponding to the first candidate drying fields, includes: step b611, which determines the second candidate drying field from the first candidate drying fields based on the time sequence of the expected arrival times corresponding to the first candidate drying fields.
[0062] Step b612: If there are multiple second candidate drying yards, the second candidate drying yards are screened according to the priority order of ultraviolet radiation intensity of the available drying yards, the degree of congestion from the location of the first drying object to the available drying yards, and transportation costs, to obtain the first drying yard.
[0063] It is worth noting that if there is only one second candidate drying yard, then the second candidate drying yard will be used as the first drying yard.
[0064] Optionally, the priority of ultraviolet radiation intensity is higher than the priority of congestion from the location of the first drying object to the optional drying area, and the priority of congestion from the location of the first drying object to the optional drying area is higher than the priority of transportation cost from the location of the first drying object to the optional drying area.
[0065] Specifically, the second candidate drying yard is selected based on the intensity of ultraviolet radiation to obtain a third candidate drying yard. If there is only one third candidate drying yard, it is designated as the first drying yard. If there are multiple third candidate drying yards, they are selected based on the congestion level from the location of the first drying object to the available drying yards to obtain a fourth candidate drying yard. If there is only one fourth candidate drying yard, it is designated as the first drying yard. If there are multiple fourth candidate drying yards, they are selected based on the transportation cost from the location of the first drying object to the available drying yards to obtain the first drying yard.
[0066] The process of selecting the second candidate drying yard based on ultraviolet radiation intensity to obtain the third candidate drying yard can be based on the ultraviolet radiation intensity of the available drying yards. For example, the second candidate drying yard with the strongest ultraviolet radiation intensity can be selected as the third candidate drying yard. Alternatively, the second candidate drying yards can be ranked in descending order of ultraviolet radiation intensity, and then the second candidate drying yard with the highest preset ranking can be selected as the third candidate drying yard.
[0067] Furthermore, based on the degree of congestion from the location of the first drying object to the available drying area, the third candidate drying area is screened to obtain the fourth candidate drying area. The third candidate drying area with the lowest congestion level can be selected as the fourth candidate drying area. Alternatively, the third candidate drying area with a congestion level below a preset congestion level threshold can be selected as the fourth candidate drying area.
[0068] Furthermore, based on the transportation cost from the location of the first drying object to the available drying site, the fourth candidate drying site is screened to obtain the first drying site. The fourth candidate drying site with the lowest transportation cost can be selected as the first drying site.
[0069] Therefore, given that business timeliness is met, the available drying yards can accommodate the first drying item and meet its loading requirements, the option with the shortest transportation time and the best drying service can be selected. The preferred option is the closest available drying yard, the one with good drying quality, and the lowest congestion level.
[0070] As a specific application example, referring to Figure 5, the clothing drying method of this application further includes: step S501, in response to the information that the first drying object is drying in the first drying field, obtaining the first drying information of the first drying object.
[0071] The first drying information includes at least one of the following: the first weight of the first drying object, the surface humidity of the first drying object, the internal humidity of the first drying object, the weight change rate of the first drying object within a preset time range, the cumulative total ultraviolet radiation dose of the first drying object, and the first cumulative ultraviolet radiation dose of different drying surfaces of the first drying object. It can be adjusted according to the actual situation.
[0072] Specifically, the first drying information of the first drying object is obtained through the information collected by the sensor components in the first drying field.
[0073] Step S502: Based on the first drying information, analyze the drying status of the first drying object to obtain the drying analysis result of the first drying object.
[0074] As one optional implementation, the first drying information includes the weight change rate of the first drying object within a preset time range, the humidity in the optional drying area, the ambient humidity, the temperature of the first drying object, the ambient temperature, and the drying time of the first drying object. The drying analysis result is determined to indicate that the first drying object has been dried if at least two of the following conditions are met: Condition 1: The weight change rate is less than a preset change rate threshold; Condition 2: The difference between the humidity in the optional drying area and the ambient humidity is less than a preset humidity difference, and the difference between the temperature of the first drying object and the ambient temperature is less than a preset temperature difference; Condition 3: The drying time of the first drying object reaches a preset minimum drying time.
[0075] Optionally, the preset conversion rate threshold is 0.1% / 30min, which can be determined based on empirical values.
[0076] Optionally, the preset minimum drying time is determined based on the material of the first object to be dried. For example, the drying time for the first object to be dried is ≥ N minutes for cotton.
[0077] Step S503: If the drying analysis result indicates that the first drying object has been dried, a first recycling instruction is generated for the first drying object. The first recycling instruction is used to instruct the first drying object to be recycled and packaged.
[0078] In practical applications, if the drying analysis results indicate that the first drying object has completed drying, a first recycling instruction is generated and pushed to the target object, such as the worker's terminal. After seeing the first recycling instruction, the worker recycles and packages the first drying object. Alternatively, the first recycling instruction can be sent to the control module in the first drying area. The control module then controls the first drying device or other equipment used to dry the first drying object to recycle it. Subsequently, the packaging and warehousing system packages the first drying object.
[0079] In step S504, in response to the packaging completion information for the first drying object, a second transportation instruction for the first drying object is sent to the transportation system. The second transportation instruction is used to instruct the transportation system to transport the first drying object to the waybill address corresponding to the first drying object.
[0080] Specifically, after the first drying object is packaged, a second transportation instruction is sent to the transportation system. After receiving the second transportation instruction, the transportation system transports the first drying object to the waybill address corresponding to the first drying object.
[0081] As an application example, a flowchart illustrating the packaging and outbound process is shown in Figure 6. The recycling and packaging process for the first drying item is as follows: Select materials for folding and packaging the first drying item, such as vacuum-sealed bags, low-oxygen sealed bags, desiccants, deodorizing packets, moisture-proof rating markings on the outer box, and breathable materials with controllable permeability (suitable for sensitive drying items to prevent secondary moisture absorption). Pack the first drying item using the selected materials. After packaging the first drying item, a traceability label is affixed to the packaging surface and the package is sealed. Then, the packaged first drying item is outbound. During outbound processing, the packaged first drying item is weighed to verify that its weight meets the standard. Finally, the transportation system transports the first drying item to the corresponding waybill address.
[0082] The clothing drying method provided in this embodiment analyzes the drying status of the first drying object based on its initial drying information, thereby enabling timely monitoring of the drying status. Upon completion of drying, the first drying object is collected and packaged, and transported to its corresponding waybill address using a transmission system. This achieves a complete drying service process for the first drying object, improving the service quality of the drying service in Rizhao.
[0083] In some optional implementations, the first drying information includes the first weight of the first drying object, the surface humidity of the first drying object, and the internal humidity (also known as core humidity). The surface humidity is the humidity of the surface of the first drying object facing the sunlight (i.e., the drying surface), and the internal humidity is the humidity inside the first drying object or the humidity of the side of the first drying object away from the sunlight.
[0084] Further, the above step S502, which analyzes the drying status of the first drying object based on the first drying information to obtain the drying analysis result of the first drying object, includes: step c1, if the first weight is less than a preset weight threshold, then the first humidity difference between the surface humidity and the internal humidity is determined, and the preset weight threshold is determined based on the original weight of the first drying object.
[0085] Specifically, before the first object to be dried is placed in the sun, its original weight is recorded. A preset weight threshold is then determined based on the original weight of the first object to be dried.
[0086] In practical applications, the preset weight threshold can be determined by combining the material of the first object to be dried and its original weight.
[0087] For example, the weight range for cotton is 8–10%, for down it's 6–8%, for wool or silk it's 12–14%, and for synthetic fibers it's 6–8%. A preset weight threshold can be determined based on the weight range of the material of the first item to be dried and its original weight. Taking cotton as the material of the first item to be dried, with a weight range of 8%, as an example, the preset weight threshold is the product of the original weight and 1.08. It should be noted that the upper limit of the weight range for heavy bedding is 10%, meaning the maximum preset weight threshold for heavy bedding is 1.1 times its original weight.
[0088] Specifically, if the first weight of the first object to be dried is less than a preset weight threshold, it indicates that the first object to be dried meets the initial drying completion standard.
[0089] Furthermore, provided that the first object to be dried meets the initial drying completion standard, the first humidity difference between the surface humidity and the internal humidity of the first object to be dried is determined.
[0090] Step c2: Based on the comparison between the first humidity difference and the preset humidity difference threshold, the drying analysis results of the first drying object are obtained.
[0091] The clothing drying method provided in this embodiment analyzes the drying status of the first drying object only when the first weight of the first drying object is less than a preset weight threshold, based on the first temperature difference between the surface humidity and the internal humidity of the first drying object. Therefore, it avoids frequently determining the drying analysis results of the first drying object, thereby reducing unnecessary computational resource usage.
[0092] In some optional implementations, the first drying information also includes the weight change rate of the first drying object within a preset time range, where the end time of the preset time range is the current time. The weight change rate is used to characterize the weight change of the first drying object within the preset time range.
[0093] Furthermore, the drying analysis result of the first drying object obtained in step c2 above based on the comparison between the first humidity difference and the preset humidity difference threshold includes: step c21, if the first humidity difference is greater than the preset humidity difference threshold, then the drying analysis result is determined to be that the first drying object has not been dried.
[0094] Optionally, for thin items to be dried, the preset humidity difference threshold can be set to 1.5%. For thick items to be dried, the preset humidity difference threshold can be set to 2.5%, which can be determined based on experience.
[0095] Understandably, if the first humidity difference is greater than the preset humidity difference threshold, the surface of the first object to be dried is dry but the inside is still damp. In this case, it is necessary to repeat the measurement of the drying information of the first object to be dried and re-analyze the drying situation of the first object to be dried.
[0096] Step c22: If the first humidity difference is less than or equal to the preset humidity difference threshold, the drying analysis result of the first drying object is obtained based on the comparison between the weight change rate and the preset change rate threshold.
[0097] Specifically, if the first humidity difference is less than or equal to the preset humidity difference threshold, it indicates that the humidity of the first object to be dried meets the standard.
[0098] Furthermore, after the humidity of the first drying object reaches the standard, the drying condition of the first drying object is further judged based on the humidity inside the first drying area. If the humidity inside the area is close to the ambient humidity, it is determined that the temperature difference between the surface temperature and the internal temperature of the first drying object has fallen back to near the ambient temperature.
[0099] Furthermore, the drying condition of the first drying object is further determined based on its weight change rate. The drying analysis results of the first drying object are obtained by comparing the weight change rate with a preset change rate threshold.
[0100] The clothing drying method provided in this embodiment, after the internal and external humidity of the first drying object reaches the standard, further combines the comparison relationship between the weight change rate of the first drying object within a preset time range and a preset change rate threshold to obtain the drying analysis result of the first drying object. Therefore, it is possible to analyze the drying status of the first drying object from multiple dimensions, effectively avoiding errors in judgment due to a single factor and improving the accuracy of the drying analysis result.
[0101] In some optional embodiments, the first drying information also includes the total cumulative ultraviolet radiation dose of the first drying object and the first cumulative ultraviolet radiation dose of different drying surfaces of the first drying object. The drying analysis result of the first drying object obtained in step c22 above, based on the comparison between the weight change rate and a preset change rate threshold, includes: step c221, if the weight change rate is greater than the preset change rate threshold, then the drying analysis result is determined to be that the first drying object has not been completely dried.
[0102] Specifically, the weight change of the first object to be dried is continuously monitored within a preset time range to obtain the weight change rate of the first object to be dried. The relationship between the weight change rate and the preset change rate threshold is analyzed by inflection point detection. If the weight change rate is greater than the preset change rate threshold, an inflection point appears, indicating that the weight change of the first object to be dried is unstable and may have just dropped from a highly humid state to the current humidity. In this case, the drying analysis result is determined that the first object to be dried is not yet fully dried.
[0103] Step c222: If the weight change rate is less than or equal to the preset change rate threshold, then determine the target dose difference of the first cumulative ultraviolet radiation dose between different drying surfaces.
[0104] The first cumulative ultraviolet radiation dose is the integral of the ultraviolet radiation dose over a first preset time period.
[0105] Specifically, when the weight change rate is less than or equal to a preset change rate threshold, the first cumulative dose of ultraviolet radiation between different drying surfaces of the first drying object is detected within a first preset time period, and the target dose difference of the first cumulative dose of ultraviolet radiation between different drying surfaces is obtained.
[0106] Step c223: If the target dose difference is less than the preset dose difference threshold and the cumulative total dose of ultraviolet radiation is greater than the preset minimum total dose, then the drying analysis result is determined to be that the first drying object has been dried.
[0107] The preset minimum total dose is determined based on the material of the first object to be dried.
[0108] Understandably, different materials require different cumulative UV radiation doses for drying. Therefore, the minimum total dose for each material can be determined in advance based on its required cumulative UV radiation dose. Furthermore, a preset minimum total dose can be determined based on the material of the first object to be dried.
[0109] Optionally, the preset dose difference threshold is 0.5%, which can be adjusted based on empirical values.
[0110] Specifically, if the target dose difference corresponding to the first drying object is less than the preset dose difference threshold, and the cumulative total dose of ultraviolet radiation is greater than the preset minimum total dose, then the drying analysis result is determined to be that the first drying object has been dried. If the target dose difference is greater than the preset dose difference threshold, it indicates that the drying conditions of different drying surfaces of the first drying object vary greatly, or the cumulative total dose of ultraviolet radiation has not met the standard, then the drying and re-drying stage begins.
[0111] The clothing drying method provided in this embodiment initially judges the drying status by comparing the weight change rate with a preset change rate threshold. Then, it combines the target dose difference of different drying surfaces and the total cumulative ultraviolet radiation dose to comprehensively determine whether the first drying object has been dried. It also considers the stability of weight change and whether the ultraviolet radiation dose meets the standard, enabling a more comprehensive determination of whether the first drying object has been dried, effectively improving the accuracy of the drying analysis results.
[0112] In some optional embodiments, the clothing drying method of this application further includes: step d1, obtaining environmental information of the first drying area.
[0113] The environmental information includes at least one of rainfall and wind speed information, and may also include other environmental factors that may affect the drying of objects under sunlight, such as snowfall information.
[0114] Step d2: If the environmental information indicates an abnormal drying environment, a drying stop command is generated for the first drying object. The drying stop command is used to instruct the first drying object to stop drying.
[0115] Specifically, when the environmental information of the first drying area indicates an abnormal drying environment, a drying stop command is generated to stop the drying of the first drying object.
[0116] In practical applications, when the rainfall at the first drying area exceeds the preset rainfall or wind speed exceeds the preset wind speed, the drying equipment at the first drying area automatically retracts the drying racks and stops drying the first item according to the drying stop command. Furthermore, if the local weather is continuously cloudy within a preset period, the control module / drying service system of the first drying area automatically generates a cross-site command. Upon receiving the cross-site command, staff reassign the first drying order to the next available drying area, ensuring the continuity of drying operations and improving drying efficiency. If the first drying equipment at the first drying area malfunctions, the first item is transferred to the backup drying equipment at the first drying area, and a maintenance work order is generated for the first drying equipment.
[0117] It should be noted that if the environmental information indicates that the drying environment is normal, then the original state should be maintained.
[0118] The clothing drying method provided in this embodiment obtains environmental information of the first drying area and generates a drying stop command when the drying environment is abnormal, so as to avoid damage to the first drying object due to bad weather.
[0119] In some optional embodiments, the first drying area is equipped with a first drying device, and the first object to be dried is sun-dried through the first drying device. The clothing drying method of this application further includes: step e1, obtaining second drying information of the first object to be dried.
[0120] Optionally, the second drying information may include at least one of the following: material, thickness, moisture content, and cumulative ultraviolet radiation dose of the first drying object. In addition, other information related to the drying of the first drying object may be used, such as rainfall information and wind speed.
[0121] Step e2: Input the second drying information into the target model to obtain the target control parameters of the drying device; wherein, the target model is obtained by training a preset model based on the historical drying information of the second drying object in the second drying field and the historical control parameters of the second drying device used for drying the second drying object in the second drying field.
[0122] Specifically, the historical drying information of the second drying object in the second drying yard, as well as the historical control parameters of the second drying device used for drying the second drying object in the second drying yard, are used as training data. The training data is input into the preset model for training to obtain the target model.
[0123] Furthermore, the second drying information is input into the target model to obtain the target control parameters of the drying device.
[0124] Optionally, the target control parameters include the lifting height of the first drying device relative to the first drying object / liftable drying rack and the turning frequency of the first drying device relative to the turning mechanism.
[0125] Step e3: Control the first drying device based on the target control parameters.
[0126] Specifically, the first drying device is controlled according to the target control parameters.
[0127] Furthermore, the target model's output for the second drying information also includes control parameters for the shading mechanism of the first drying area. The clothing drying method of this application further includes: controlling the shading mechanism according to its control parameters.
[0128] The clothing drying method provided in this embodiment obtains second drying information of the first drying object, inputs the second drying information into a target model, obtains target control parameters for the first drying device, and controls the first drying device. Therefore, the first drying device can be flexibly adjusted according to real-time conditions, effectively improving the efficiency and quality of drying.
[0129] In practical applications, control parameters for the first drying device and the shading mechanism are generated based on the second drying information, as shown in Figure 7. A dynamic baseline calibration method is used to continuously calibrate the control parameters corresponding to the first drying device and the shading mechanism, making the control of these devices more accurate. The control of the first drying device includes controlling the raising and lowering of the corresponding height-adjustable drying rack and the frequency of turning the drying mechanism. For example, the first drying object may be turned once within a preset turning cycle (e.g., 45 minutes or 60 minutes), or the first drying object may be turned when the rate of weight change of the first drying object is detected to remain stable.
[0130] In some optional embodiments, the clothing drying method of this application further includes: step f1, obtaining ultraviolet information of a first drying area, the ultraviolet information including at least one of a second cumulative ultraviolet radiation dose and ultraviolet radiation intensity.
[0131] Step f2: If the second cumulative ultraviolet radiation dose is greater than the preset cumulative dose threshold, or the ultraviolet radiation intensity is greater than the preset intensity threshold, a sunlight suspension command is generated for the first drying object. The sunlight suspension command is used to instruct the first drying object to suspend sunlight drying. The preset cumulative dose threshold is related to the material of the first drying object.
[0132] In practical applications, different thresholds for cumulative ultraviolet radiation dose can be configured for different materials to obtain the correspondence between materials and cumulative dose thresholds. Then, a preset cumulative dose threshold is determined based on the material of the first object to be dried and the pre-configured correspondence between materials and cumulative dose thresholds.
[0133] Specifically, if the second cumulative ultraviolet radiation dose exceeds a preset cumulative dose threshold, or the ultraviolet radiation intensity exceeds a preset intensity threshold, indicating that the first drying object is being overexposed, a sunlight suspension command is generated. Upon receiving the sunlight suspension command, the first drying area suspends the drying of the first drying object.
[0134] As an application embodiment of the present invention, see Figure 8. After a user places a drying order for the first drying object on a terminal device (such as an APP / mini-program), the drying service system obtains the site information of all available drying areas. Then, based on the site information of the available drying areas, the system analyzes the drying quality of the available drying areas to obtain the current drying quality analysis result. The drying service system selects the first drying area based on the current drying quality analysis result and coordinates with the transportation system for logistics scheduling. The drying service system generates control parameters for the first drying device used to dry the first drying object based on the second drying information of the first drying area. The control module in the first drying area controls the first drying device according to the control parameters of the first drying device (e.g., raising and lowering the drying rack, turning the drying rack, etc.). When it is determined that the first drying object has been dried, the quality inspection and traceability system inspects the drying status of the first drying object. After the first batch of items undergoes quality inspection and passes inspection, the packaging and warehousing system packages and ships the items, and the transportation system delivers them to the waybill address. Finally, the data analysis system analyzes and controls the risks associated with the drying service process.
[0135] As an application embodiment of the present invention, referring to Figure 9, the quality inspection and traceability system for the first drying object includes the following steps: The quality inspection and traceability system summarizes the data of the drying process (e.g., transportation timeliness, weight change rate, first humidity difference, ultraviolet information, etc.) and conducts random checks. A quality inspection score is calculated based on the drying process data, and this score is used for data storage and risk control of the drying service process. Furthermore, traceability data is generated, and the data is recorded to facilitate subsequent anomaly audits. Simultaneously, a unique identifier and traceability label (e.g., NFC label, QR code label) are generated for each packaged parcel to bind the entire drying service process data (e.g., time, location, ultraviolet information, quality inspection score, anomaly handling, etc.). Users can obtain the entire drying service process information for the first drying object by scanning the code.
[0136] This embodiment also provides a clothes drying device for implementing the above embodiments and preferred embodiments; details already described will not be repeated. As used below, the term "module" can refer to a combination of software and / or hardware that performs a predetermined function. Although the device described in the following embodiments is preferably implemented in software, hardware implementation, or a combination of software and hardware, is also possible and contemplated.
[0137] This embodiment provides a clothing drying device, as shown in FIG9, including: a first acquisition module 901, used to acquire at least one site information of an optional drying field in response to a drying order for a first drying object, the site information including sunshine information of the optional drying field, and logistics information between the location of the first drying object and the optional drying field.
[0138] The first processing module 902 is used to select a first drying field from at least one selectable drying field based on the field information.
[0139] The first sending module 903 is used to send a first transportation instruction to the transportation system based on the first drying yard for the first drying object. The first transportation instruction is used to instruct the transportation system to transport the first drying object to the first drying yard for sun drying.
[0140] In some optional implementations, the first processing module 902 includes: a first processing unit, used to analyze the drying quality of each optional drying field based on the corresponding site information, and obtain the current drying quality analysis result of the optional drying field.
[0141] The second processing unit is used to select the first drying field from at least one optional drying field based on the current drying quality analysis results.
[0142] In some alternative implementations, the site information also includes drying resource information of optional drying yards. The first processing module 902 includes: a second acquisition module for acquiring the business timeliness of drying orders; a second processing module for analyzing the business completion time of the first drying object corresponding to the optional drying yard based on logistics information; a third processing module for analyzing the estimated arrival time of the first drying object corresponding to the optional drying yard based on logistics information; a fourth processing module for analyzing the loading capacity of the transport vehicle between the location of the first drying object and the optional drying yard based on logistics information; and a fifth processing module for selecting the optional drying yard as the first candidate drying yard if the business completion time of the optional drying yard meets the business timeliness requirement, the drying resource information of the optional drying yard indicates that the optional drying yard can accept the first drying object at the estimated arrival time, and the loading capacity meets the loading requirements of the first drying object.
[0143] In some optional implementations, the fifth processing module includes: a site screening unit, used to determine the first drying field from among the first candidate drying fields based on the time sequence of the expected arrival times corresponding to the first candidate drying fields when there are multiple first candidate drying fields.
[0144] In some optional implementations, the site screening unit includes: a first screening unit, used to determine a second candidate drying field from the first candidate drying fields based on the time sequence of the expected arrival times corresponding to the first candidate drying fields; and a second screening unit, used to, when there are multiple second candidate drying fields, screen the second candidate drying fields according to the priority order between the ultraviolet radiation intensity of the available drying fields, the congestion level from the location of the first drying object to the available drying fields, and transportation costs, to obtain the first drying field.
[0145] In some optional embodiments, the clothing drying device of this application further includes: a third acquisition module, used to acquire first drying information of the first drying object in response to information that the first drying object is drying in the first drying field; a sixth processing module, used to analyze the drying status of the first drying object based on the first drying information to obtain a drying analysis result of the first drying object; a first generation module, used to generate a first recycling instruction for the first drying object if the drying analysis result indicates that the first drying object has been dried, the first recycling instruction being used to instruct the first drying object to be recycled and packaged; and a second sending module, used to send a second transportation instruction for the first drying object to the transportation system in response to information that the first drying object has been packaged, the second transportation instruction being used to instruct the transportation system to transport the first drying object to the waybill address corresponding to the first drying object.
[0146] In some optional implementations, the first drying information includes the first weight of the first drying object, the surface humidity of the first drying object, and the internal humidity. The sixth processing module includes: a third processing unit, used to determine a first humidity difference between the surface humidity and the internal humidity if the first weight is less than a preset weight threshold, the preset weight threshold being determined based on the original weight of the first drying object; and a fourth processing unit, used to obtain the drying analysis result of the first drying object based on the comparison between the first humidity difference and the preset humidity difference threshold.
[0147] In some optional implementations, the first drying information also includes the weight change rate of the first drying object within a preset time range, where the end time of the preset time range is the current time. The fourth processing unit includes: a first analysis subunit, used to determine that the drying analysis result is that the first drying object has not been completely dried if the first humidity difference is greater than a preset humidity difference threshold; and a second analysis subunit, used to obtain the drying analysis result of the first drying object based on a comparison between the weight change rate and the preset change rate threshold if the first humidity difference is less than or equal to the preset humidity difference threshold.
[0148] In some optional implementations, the first drying information also includes the total cumulative ultraviolet radiation dose of the first drying object and the first cumulative ultraviolet radiation dose of different drying surfaces of the first drying object. The second analysis subunit is specifically used to: if the weight change rate is greater than a preset change rate threshold, determine that the drying analysis result is that the first drying object is not yet fully dried; if the weight change rate is less than or equal to the preset change rate threshold, determine the target dose difference of the first cumulative ultraviolet radiation dose between different drying surfaces; if the target dose difference is less than a preset dose difference threshold, and the total cumulative ultraviolet radiation dose is greater than a preset minimum total dose, determine that the drying analysis result is that the first drying object is fully dried.
[0149] In some optional embodiments, the clothing drying method of this application further includes: a fourth acquisition module, used to acquire environmental information of the first drying area; and a second generation module, used to generate a drying stop instruction for the first drying object if the environmental information indicates that the drying environment is abnormal, the drying stop instruction being used to instruct the first drying object to stop drying.
[0150] In some optional embodiments, the first drying area is equipped with a first drying device, and the first drying object is dried in the sun through the first drying device. The clothing drying method of this application further includes: a fifth acquisition module for acquiring second drying information of the first drying object; a seventh processing module for inputting the second drying information into a target model to obtain target control parameters of the drying device; wherein the target model is obtained by training a preset model based on historical drying information of the second drying object in the second drying area and historical control parameters of the second drying device used for drying the second drying object in the second drying area; and a control module for controlling the first drying device based on the target control parameters.
[0151] In some optional embodiments, the clothing drying method of this application further includes: a sixth acquisition module, used to acquire ultraviolet information of the first drying area, the ultraviolet information including at least one of a second ultraviolet radiation cumulative dose and ultraviolet radiation intensity; a third generation module, used to generate a sunshine suspension command for the first drying object if the second ultraviolet radiation cumulative dose is greater than a preset cumulative dose threshold, or the ultraviolet radiation intensity is greater than a preset intensity threshold, the sunshine suspension command being used to instruct the suspension of sunshine drying for the first drying object; the preset cumulative dose threshold is related to the material of the first drying object.
[0152] The clothes drying device provided in this embodiment of the invention can perform the clothes drying method provided in any embodiment of the invention, and has the corresponding functional modules and beneficial effects for performing the method. Further functional descriptions of the various modules and units are the same as in the corresponding embodiments described above, and will not be repeated here.
[0153] Figure 10 is a schematic diagram of the structure of an electronic device provided in an embodiment of the present invention.
[0154] Referring specifically to FIG10, a schematic diagram of a structure suitable for implementing an electronic device according to an embodiment of the present invention is shown below. The electronic device may include a processor (e.g., a central processing unit, a graphics processor, etc.) 1001, which can perform various appropriate actions and processes according to a program stored in a read-only memory (ROM) 1002 or a program loaded from a memory 1008 into a random access memory (RAM) 1003. The RAM 1003 also stores various programs and data required for the operation of the electronic device. The processor 1001, ROM 1002, and RAM 1003 are interconnected via a bus 1004. An input / output (I / O) interface 1005 is also connected to the bus 1004.
[0155] Typically, the following devices can be connected to the I / O interface 1005: input devices 1006 including, for example, a touchscreen, touchpad, keyboard, mouse, camera, microphone, accelerometer, gyroscope, etc.; output devices 1007 including, for example, a liquid crystal display (LCD), speaker, vibrator, etc.; memory 1008 including, for example, magnetic tape, hard disk, etc.; and communication devices 1009. Communication devices 1009 allow the electronic device to communicate wirelessly or wiredly with other devices to exchange data. Although Figure 10 shows an electronic device with various devices, it should be understood that it is not required to implement or possess all the devices shown, and more or fewer devices may be implemented alternatively.
[0156] In particular, according to embodiments of the present invention, the processes described above with reference to the flowcharts can be implemented as computer software programs. For example, embodiments of the present invention include a computer program product comprising a computer program carried on a non-transitory computer-readable medium, the computer program containing program code for performing the methods shown in the flowcharts. In such embodiments, the computer program can be downloaded and installed from a network via a communication device 1009, or installed from a memory 1008, or installed from a ROM 1002. When the computer program is executed by the processor 1001, it performs the functions defined in the clothing drying method of the embodiments of the present invention.
[0157] The electronic device shown in Figure 10 is merely an example and should not impose any limitations on the functionality and scope of use of the embodiments of the present invention.
[0158] This invention also provides a computer-readable storage medium. The methods described above according to embodiments of the invention can be implemented in hardware or firmware, or implemented as computer code that can be recorded on a storage medium, or implemented as computer code downloaded via a network and originally stored on a remote storage medium or a non-transitory machine-readable storage medium and then stored on a local storage medium. Thus, the methods described herein can be processed by software stored on a storage medium using a general-purpose computer, a dedicated processor, or programmable or dedicated hardware. The storage medium can be a magnetic disk, optical disk, read-only memory, random access memory, flash memory, hard disk, or solid-state drive, etc.; further, the storage medium can also include combinations of the above types of memory. It is understood that the computer, processor, microprocessor control module, or programmable hardware includes storage components capable of storing or receiving software or computer code. When the software or computer code is accessed and executed by the computer, processor, or hardware, the clothing drying method shown in the above embodiments is implemented.
[0159] A portion of this invention can be applied as a computer program product, such as computer program instructions, which, when executed by a computer, can invoke or provide the methods and / or technical solutions according to the invention through the operation of the computer. Those skilled in the art will understand that the forms in which computer program instructions exist in a computer-readable medium include, but are not limited to, source files, executable files, installation package files, etc. Correspondingly, the ways in which computer program instructions are executed by a computer include, but are not limited to: the computer directly executing the instructions, or the computer compiling the instructions and then executing the corresponding compiled program, or the computer reading and executing the instructions, or the computer reading and installing the instructions and then executing the corresponding installed program. Here, the computer-readable medium can be any available computer-readable storage medium or communication medium accessible to a computer.
[0160] Although embodiments of the invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the invention, and such modifications and variations all fall within the scope defined by the appended claims.
Claims
1. A method for drying clothes, characterized in that, The method includes: in response to a drying order for a first drying object, obtaining station information of at least one optional drying yard, the station information including sunshine information of the optional drying yard and logistics information between the location of the first drying object and the optional drying yard; selecting a first drying yard from the at least one optional drying yard based on the station information; and sending a first transportation instruction for the first drying object to a transportation system based on the first drying yard, the first transportation instruction instructing the transportation system to transport the first drying object to the first drying yard for sun drying.
2. The method for drying clothes according to claim 1, characterized in that, The step of selecting a first drying field from the at least one selectable drying fields based on the site information includes: for each selectable drying field, analyzing the drying quality of the selectable drying field based on the corresponding site information to obtain the current drying quality analysis result of the selectable drying field; and selecting the first drying field from the at least one selectable drying fields based on the current drying quality analysis result.
3. The method for drying clothes according to claim 1, characterized in that, The station information also includes drying resource information of the optional drying yards; the step of selecting a first drying yard from the at least one optional drying yard based on the station information includes: obtaining the business timeliness of the drying order; analyzing the business completion time of the first drying object corresponding to the optional drying yard based on the logistics information; analyzing the expected arrival time of the first drying object corresponding to the optional drying yard based on the logistics information; analyzing the loading capacity of the transport vehicle between the location of the first drying object and the optional drying yard based on the logistics information; if the business completion time corresponding to the optional drying yard meets the business timeliness, the drying resource information of the optional drying yard indicates that the optional drying yard can accept the first drying object at the expected arrival time, and the loading capacity meets the loading requirements of the first drying object, then the optional drying yard is selected as the first candidate drying yard, and the first drying yard is determined from the first candidate drying yards.
4. The method for drying clothes according to claim 3, characterized in that, The step of determining the first drying field from the first candidate drying fields includes: when there are multiple first candidate drying fields, determining the first drying field from the first candidate drying fields based on the time sequence of the expected arrival times corresponding to the first candidate drying fields.
5. The method for drying clothes according to claim 4, characterized in that, The step of determining the first drying yard from the first candidate drying yards based on the time order of the expected arrival times corresponding to the first candidate drying yards includes: determining a second candidate drying yard from the first candidate drying yards based on the time order of the expected arrival times corresponding to the first candidate drying yards; and, if there are multiple second candidate drying yards, filtering the second candidate drying yards according to the priority order between the ultraviolet radiation intensity of the optional drying yards, the congestion level from the location of the first drying object to the optional drying yards, and transportation costs, to obtain the first drying yard.
6. The method for drying clothes according to claim 1, characterized in that, Also includes: In response to the information that the first drying object is drying in the first drying field, the first drying information of the first drying object is obtained; Based on the first drying information, the drying status of the first drying object is analyzed to obtain the drying analysis results of the first drying object; If the drying analysis result indicates that the first drying object has been dried, a first recycling instruction is generated for the first drying object. The first recycling instruction is used to instruct the first drying object to be recycled and packaged. In response to the packaging completion information for the first drying object, a second transportation instruction is sent to the transportation system for the first drying object. The second transportation instruction is used to instruct the transportation system to transport the first drying object to the waybill address corresponding to the first drying object.
7. The method for drying clothes according to claim 6, characterized in that, The first drying information includes the first weight of the first drying object, the surface humidity of the first drying object, and the internal humidity of the first drying object; the step of analyzing the drying condition of the first drying object based on the first drying information to obtain the drying analysis result of the first drying object includes: if the first weight is less than a preset weight threshold, then determining a first humidity difference between the surface humidity and the internal humidity, wherein the preset weight threshold is determined based on the original weight of the first drying object; and obtaining the drying analysis result of the first drying object based on the comparison between the first humidity difference and the preset humidity difference threshold.
8. The method for drying clothes according to claim 7, characterized in that, The first drying information also includes the weight change rate of the first drying object within a preset time range, where the end time of the preset time range is the current time; the step of obtaining the drying analysis result of the first drying object based on the comparison between the first humidity difference and a preset humidity difference threshold includes: if the first humidity difference is greater than the preset humidity difference threshold, then the drying analysis result is determined to be that the first drying object has not been completely dried; if the first humidity difference is less than or equal to the preset humidity difference threshold, then the drying analysis result of the first drying object is obtained based on the comparison between the weight change rate and the preset change rate threshold.
9. The method for drying clothes according to claim 6, characterized in that, The first drying yard is equipped with a first drying device, and the first object to be dried is sun-dried through the first drying device; the method further includes: acquiring second drying information of the first object to be dried; inputting the second drying information into a target model to obtain target control parameters of the drying device; wherein, the target model is obtained by training a preset model based on historical drying information of the second object to be dried in the second drying yard and historical control parameters of the second drying device used to dry the second object to be dried in the second drying yard; and controlling the first drying device based on the target control parameters.
10. An electronic device, characterized in that, include: The device includes a memory and a processor, which are communicatively connected to each other. The memory stores computer instructions, and the processor executes the computer instructions to perform the clothing drying method according to any one of claims 1 to 9.