Partition management control method of storage cabinet, electronic device, readable storage medium and computer program product

CN122840588APending Publication Date: 2026-09-29GUANGDONG SIWAN NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202611199907.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-08-10
Publication Date
2026-09-29

AI Technical Summary

Technical Problem

该模式适用于人员相对固定的场景,如酒店员工布草管理,但无法灵活处理临时访客或流动用户的随机存取需求,且固定分配模式在人员流动或任务变化时会导致大量柜格闲置或分配不合理

Benefits of technology

[0041]通过持续监测各逻辑分区的实时占用率,并设置双阈值作为分区重分配的触发条件,实现了分区容量的按需调整。当某类物品的存储需求突发性增长时,实现从低占用率分区中调配空闲柜格至高需求分区,无需人工介入或物理改造。相较于固定物理分区模式中,存在分区一旦设定便无法更改,导致部分分区拥挤、部分分区闲置的问题,本申请实施例使柜体资源能够实时跟随需求分布动态变化,避免了因分区僵化导致的部分排队部分闲置的不均衡现象,达到提高储物柜整体资源利用率的目的。

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Abstract

The application relates to the technical field of locker data processing, in particular to a partition management control method of a locker, an electronic device, a readable storage medium and a computer program product. The method comprises the following steps: monitoring real-time occupancy rates of each logical partition of the locker; triggering a partition redistribution event when the real-time occupancy rate of a first logical partition is greater than or equal to a first preset threshold value and the real-time occupancy rate of a second logical partition is less than a second preset threshold value; in response to the partition redistribution event, allocating at least one physical storage compartment in the second logical partition to the first logical partition; when a storage request is received, obtaining a service attribute of an article to be stored, determining a target logical partition according to the service attribute, and according to the service attribute, allocating an idle physical storage compartment in the target logical partition and generating an unlocking instruction to open the idle physical storage compartment. The logical space of the locker is dynamically redistributed and configured, so that the resource utilization rate of the commercial locker is improved.
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Description

Technical Field

[0001] This application relates to the field of locker data processing technology, and in particular to a locker partition management and control method, electronic device, readable storage medium and computer program product. Background Technology

[0002] Commercial lockers are widely used in public places such as shopping malls, hotels, gyms, swimming pools, libraries, and logistics transfer stations to provide temporary storage, categorized storage, and management services for items. With the diversification of application scenarios, lockers need to handle the storage needs of multiple types of items simultaneously. For example, they can store customers' personal belongings, handle the receipt and dispatch of hotel linens, temporarily store online-ordered goods for retrieval, and store shoes and clothing for gym users. Different types of items vary significantly in terms of storage duration, retrieval frequency, hygiene requirements, and management rules.

[0003] Currently, there are three main management methods for commercial lockers. The first is a uniform management model, where all lockers are of the same size, and the system randomly assigns empty lockers to users. Under this model, the system cannot identify or differentiate the types of items to be stored, and all items are managed using the same strategy. When small, valuable items occupy large lockers, or large luggage is assigned to small lockers, it results in wasted space or the items becoming unusable. Furthermore, different items such as linens, merchandise, and luggage are stored together, making it impossible to differentiate management based on their storage duration, frequency of access, and other characteristics.

[0004] The second is the fixed physical zoning model, which pre-divides the cabinets into several fixed areas, such as large, medium, and small cabinet areas, with each area corresponding to preset management rules, such as pricing standards and maximum storage time. While this model achieves initial classification, the zoning cannot be changed once set. When the occupancy rate of a certain area remains low while other areas are in short supply, the vacant physical cabinets cannot be reallocated to items with higher demand, resulting in an uneven utilization of overall cabinet resources. Furthermore, this model cannot cope with dynamic changes in business needs, such as a surge in temporary inventory during promotional activities or a sudden increase in luggage storage during peak hotel check-out periods, as fixed zoning cannot be flexibly expanded.

[0005] The third is the binding model based on user identity or order, which assigns fixed cabinets to specific users. This model is suitable for scenarios with relatively fixed personnel, such as hotel staff linen management, but it cannot flexibly handle the random access needs of temporary visitors or transient users. Furthermore, the fixed allocation model can lead to a large number of cabinets being idle or poorly allocated when personnel move or tasks change.

[0006] In summary, current commercial lockers, when needing to handle the storage needs of multiple types of items simultaneously, suffer from low utilization of locker resources because their zoning strategies are static, preset, and unadjustable. This is because they cannot dynamically re-divide and configure the logical space of the lockers according to real-time business characteristics, such as item type, storage duration, and access frequency.

[0007] The above content is only used to help understand the technical solution of this application and does not represent an admission that the above content is prior art. Summary of the Invention

[0008] The main objective of this application is to provide a method for partitioned management and control of lockers, electronic devices, readable storage media, and computer program products, aiming to solve the technical problem of how to dynamically repartition and configure the logical space of lockers to improve the resource utilization rate of commercial lockers.

[0009] To achieve the above objectives, this application proposes a method for zoned management and control of lockers, the method comprising:

[0010] Monitor the real-time occupancy rate of each logical partition of the locker;

[0011] When the real-time occupancy rate of the first logical partition is greater than or equal to the first preset threshold, and the real-time occupancy rate of the second logical partition is less than the second preset threshold, a partition reallocation event is triggered.

[0012] In response to the partition reallocation event, at least one physical storage cell in the second logical partition is allocated to the first logical partition;

[0013] Upon receiving a storage request, the system retrieves the business attributes of the items to be stored and determines the target logical partition based on these attributes; and...

[0014] Based on the business attributes, an idle physical storage compartment is allocated in the target logical partition, and an unlocking command is generated to open the idle physical storage compartment.

[0015] In one embodiment, the step of obtaining the business attributes of the item to be stored when a storage request is received, and determining the target logical partition based on the business attributes, includes:

[0016] Control the RFID reader to read the RFID tag of the item to be stored to obtain the tag ID, and / or control the camera to capture the image data of the item to be stored;

[0017] Based on the tag ID, query the preset business database to match the item category, and / or transmit the image data to the pre-trained image recognition model to output the item category;

[0018] The business attributes are determined based on the item category, and the business attributes include item size, temperature control requirements, access frequency, and security level.

[0019] In one embodiment, the step of allocating a free physical storage compartment in the target logical partition according to the business attribute and generating an unlocking command to open the free physical storage compartment includes:

[0020] Based on the item size according to the business attributes, allocate the items to be stored to physical storage cells of corresponding size specifications in the target logical partition; and / or,

[0021] Based on the temperature control requirements of the aforementioned business attributes, the items to be stored are allocated to physical storage compartments within the corresponding constant temperature range of the target logical partition; and / or,

[0022] Based on the access frequency of the aforementioned business attributes, allocate the items to be stored to physical storage cells in the corresponding high-frequency or low-frequency access areas of the target logical partition; and / or,

[0023] Based on the security level of the business attributes, the items to be stored are allocated to physical storage cells with the corresponding encryption permission level in the target logical partition.

[0024] In one embodiment, after the step of allocating a free physical storage compartment in the target logical partition according to the business attribute and generating an unlocking command to open the free physical storage compartment, the method further includes:

[0025] Once it is detected that the physical storage compartment has been successfully opened and the item has been actually stored, a corresponding storage time limit threshold is set according to the business attributes.

[0026] Monitor the occupancy status of the physical storage compartments. If the duration of the occupancy status is greater than or equal to the storage timeout threshold, execute a timeout storage action based on the business attributes. The timeout storage action includes pushing a timeout reminder to the user terminal and / or the management terminal, and / or performing a renewal confirmation process, and / or performing a clearing operation.

[0027] In one embodiment, the step of obtaining the business attributes of the item to be stored when a storage request is received, and determining the target logical partition based on the business attributes, further includes:

[0028] When the business attribute of the item to be stored is determined to be linen based on the RFID tag of the item to be stored, the corresponding staff account and task order are obtained based on the RFID tag.

[0029] Associate the business attributes with the staff account and task order, and assign the items to be stored to the linen logical partition to which the task order belongs;

[0030] When the staff member's account initiates another retrieval request, the corresponding linen storage compartment is opened from the linen logical partition according to the task order.

[0031] In one embodiment, the partition management and control method for the locker further includes:

[0032] After detecting the storage of items, a disinfection and drying strategy is determined based on the business attributes and / or the type of the target logical partition;

[0033] Based on the aforementioned disinfection and drying strategy, the corresponding physical storage compartments are controlled to activate ultraviolet irradiation, ozone release, and hot air circulation programs of corresponding intensities for a preset duration.

[0034] In one embodiment, the step of determining a disinfection and drying strategy based on the business attributes and / or the type of the target logical partition after detecting the storage of an item includes:

[0035] When the business attributes include footwear, the disinfection and drying strategy is determined to include ultraviolet disinfection, ozone deodorization, and medium-temperature hot air drying, and the drying time is adjusted according to the feedback value of the humidity sensor in the physical storage compartment.

[0036] When the business attribute includes dirty linen recycling, the disinfection and drying strategy is determined to include ozone deodorization strategy and high-temperature hot air drying strategy, and based on the temperature sensor feedback value in the physical storage compartment, it is determined whether to release the cabinet lock.

[0037] In addition, to achieve the above objectives, this application also proposes an electronic device comprising: a memory, a processor, and a computer program stored in the memory and executable on the processor, the computer program being configured to implement the steps of the locker partition management control method described above.

[0038] In addition, to achieve the above objectives, this application also proposes a readable storage medium, which is a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, it implements the steps of the locker partition management and control method described above.

[0039] In addition, to achieve the above objectives, this application also provides a computer program product, which includes a computer program that, when executed by a processor, implements the steps of the storage locker partition management and control method described above.

[0040] One or more technical solutions proposed in this application have at least the following technical effects:

[0041] By continuously monitoring the real-time occupancy rate of each logical partition and setting dual thresholds as triggering conditions for partition reallocation, on-demand adjustment of partition capacity is achieved. When the storage demand for a certain type of item suddenly increases, vacant cabinets can be allocated from low-occupancy partitions to high-demand partitions without manual intervention or physical modification. Compared to the fixed physical partition mode, where partitions cannot be changed once set, leading to some partitions being crowded and others idle, this application embodiment enables cabinet resources to dynamically change in real time according to demand distribution, avoiding the imbalance caused by rigid partitioning resulting in some parts queuing and others being idle, thereby improving the overall resource utilization rate of the storage cabinets. Attached Figure Description

[0042] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0043] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0044] Figure 1 This is a flowchart illustrating the first embodiment of the partitioned management and control method for lockers in this application.

[0045] Figure 2 This is a schematic diagram of the process involved in step S400 of the storage locker partition management and control method of this application;

[0046] Figure 3 This is a flowchart illustrating another embodiment of step S400 in the locker partition management and control method of this application;

[0047] Figure 4 This is a flowchart illustrating the second embodiment of the partition management and control method for lockers in this application.

[0048] Figure 5 This is a schematic diagram of the hardware operating environment involved in the partition management and control method of the locker in this application embodiment.

[0049] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0050] It should be understood that the specific embodiments described herein are merely illustrative of the technical solutions of this application and are not intended to limit this application.

[0051] To better understand the technical solution of this application, a detailed description will be provided below in conjunction with the accompanying drawings and specific implementation methods.

[0052] It should be noted that the execution subject of the method in the various embodiments of the locker partition management and control method of this application can be the locker partition management and control system, or a computing service device with data processing, network communication and program running functions, such as a tablet computer, personal computer, mobile phone, etc., or an electronic device capable of realizing the above functions, etc. This embodiment does not specifically limit it. The following uses the locker partition management and control system as the execution subject as an example to describe this embodiment and the following embodiments.

[0053] Based on this, this application proposes a first embodiment of a locker partition management and control method, please refer to... Figure 1 The partition management and control method for the locker includes steps S100 to S500:

[0054] Step S100: Monitor the real-time occupancy rate of each logical partition of the locker.

[0055] It should be noted that the locker's partitioned management and control system includes multiple physical storage compartments equipped with electronic locks and status sensors, a main control unit, a communication unit, a human-machine interface touchscreen, and a cloud management platform. Status sensors may include, for example, infrared sensors and pressure sensors. The cloud management platform maintains information such as the unique identifier of each physical storage compartment, its logical partition, and its real-time occupancy status.

[0056] When the system initially runs, the administrator configures the initial logical partitions through the cloud management platform. For example, in a shopping mall locker system, three logical partitions are configured: first, a luggage partition for customers to store suitcases and backpacks; second, a merchandise partition for temporary storage of takeout and express deliveries; and third, a linen partition for the circulation of linens by hotel staff. Each logical partition is associated with a type of item and is allocated a certain number of physical storage compartments. The cloud management platform maintains a unique identifier for each physical storage compartment, such as the compartment ID [01-100], the logical partition it belongs to, its real-time occupancy status (idle / occupied), and the start time of occupancy.

[0057] In this embodiment, the cloud management platform periodically, for example every 5 minutes, or in real time, acquires the occupancy status of each physical storage compartment through the main control unit, and calculates the occupancy rate by logical partition. It can determine whether a physical storage compartment is occupied by reading data from the status sensors of each compartment. When the status sensor detects an item, it reports an "occupied" status and the corresponding storage compartment ID; when an item is removed, it reports an "idle" status. The main control unit reports this status data to the cloud management platform. The cloud management platform calculates the occupancy rate by logical partition, specifically using the formula: Occupancy rate = Number of occupied storage compartments in the partition / Total number of storage compartments in the partition × 100%.

[0058] Step S200: When the real-time occupancy rate of the first logical partition is greater than or equal to the first preset threshold, and the real-time occupancy rate of the second logical partition is less than the second preset threshold, a partition reallocation event is triggered.

[0059] In this embodiment, monitoring and judgment are performed on every two logical partition combinations. When the reallocation conditions are met, a partition reallocation event is triggered. The reallocation conditions include condition one: the real-time occupancy rate of the first logical partition is greater than or equal to a first preset threshold, indicating that the partition is resource-scarce and there are no free cabinets available; condition two: the real-time occupancy rate of the second logical partition is less than or equal to a second preset threshold, indicating that the partition has abundant resources and there are many free cabinets.

[0060] For example, suppose the first preset threshold is 90%, the second preset threshold is 30%, the first logical partition is the luggage partition, and the second logical partition is the merchandise partition. When the real-time occupancy rate of the luggage partition is detected to be greater than 90%, while the real-time occupancy rate of the merchandise partition is less than 30%, it is determined that the current resource allocation is unreasonable, and a partition reallocation event is triggered.

[0061] Step S300: In response to the partition reallocation event, at least one physical storage cell in the second logical partition is allocated to the first logical partition.

[0062] It should be noted that one or more currently idle physical storage cells are selected from the second logical partition, and their logical affiliation is changed from the second logical partition to the first logical partition. When responding to a partition reallocation event, only the logical partition mapping table in the cloud database is modified; no hardware configuration of the physical storage cells is changed. After the change is complete, a notification can be pushed to the administrator.

[0063] For example, physical storage compartments currently in an "idle" state are selected from the product partition as available storage compartments. Then, the number of compartments to be allocated is determined based on the occupancy rate of the luggage partition. Assuming the luggage partition occupancy rate is 92%, which is between 90% and 95%, the number of storage compartments to be allocated is determined to be 5. Next, in the cloud database, 5 available storage compartments from the product partition are selected as the storage compartments to be allocated, and their "logical partition" field is changed from "product partition" to "luggage partition". Subsequently, the cloud management platform sends the updated partition mapping table to the main control unit, which updates its local cache to ensure that subsequent access requests can be correctly routed.

[0064] Optionally, after updating the local cache, the cloud management platform pushes a notification to the administrator, such as "Due to high demand for luggage compartments, 5 compartments have been allocated from the merchandise compartment, and the total number of luggage compartments has now been expanded to 55. Please be aware."

[0065] Step S400: When a storage request is received, the business attributes of the items to be stored are obtained, and the target logical partition is determined based on the business attributes.

[0066] In this embodiment, when a user triggers a storage request, the system obtains the business attributes of the item to be stored. Business attributes refer to the characteristic information of the item in the storage management dimension, including but not limited to item type, item size, temperature control requirements, storage / access frequency, and security level. Item type can include luggage, linens, and merchandise; item size can be categorized as large, medium, and small; temperature control requirements can include room temperature, refrigerated, and frozen; storage / access frequency can be categorized as high-frequency and low-frequency; and security level corresponds to the distinction between ordinary items and valuable items.

[0067] Optionally, when a user directly enters a luggage storage instruction, the system directly determines the business attribute as ordinary luggage and determines the target logical partition as the luggage partition according to the preset mapping rule [ordinary luggage corresponds to luggage partition].

[0068] Step S500: Based on the business attributes, allocate an idle physical storage compartment in the target logical partition and generate an unlocking command to open the idle physical storage compartment.

[0069] In this embodiment, the cloud management platform queries all available storage compartments within the target logical partition, including existing compartments and compartments allocated from other logical partitions, and selects an available storage compartment according to a preset allocation strategy. The preset allocation strategy includes prioritizing the allocation of the available compartment with the lowest number, or prioritizing the allocation of a compartment that matches the size of the item, etc.

[0070] The cloud management platform sends an unlocking command to the main control unit via the communication unit. The command includes the target storage compartment ID. After parsing the command, the main control unit unlocks the electronic lock of the physical storage compartment corresponding to the storage compartment ID. Simultaneously, it outputs a prompt message, such as "Please place the item in compartment 51 of zone 01 and close the door." After the user places the item and closes the door, the status sensor detects the item's presence. The main control unit reports the status "Storage compartment ID [01-51] is occupied" to the cloud management platform. The cloud management platform updates the storage compartment status to "occupied" and records the storage time.

[0071] In the technical solution provided in this embodiment, by continuously monitoring the real-time occupancy rate of each logical partition and setting dual thresholds as triggering conditions for partition reallocation, the on-demand adjustment of partition capacity is achieved. When the storage demand for a certain type of item suddenly increases, vacant cabinets can be allocated from low-occupancy partitions to high-demand partitions without manual intervention or physical modification. Compared to the fixed physical partition mode, where partitions cannot be changed once set, leading to some partitions being crowded and others idle, this embodiment allows cabinet resources to dynamically change in real time according to demand distribution, avoiding the imbalance caused by rigid partitioning resulting in some parts queuing and others being idle, thereby improving the overall resource utilization rate of the storage cabinets.

[0072] Reference Figure 2 In one feasible implementation, in order to reduce the number of user operation steps and the probability of misoperation, step S400 may include steps S410 to S430:

[0073] Step S410: Control the RFID reader to read the RFID tag of the item to be stored to obtain the tag ID, and / or control the camera to capture the image data of the item to be stored.

[0074] Step S420: Based on the tag ID, query the preset business database to match the item category, and / or transmit the image data to the pre-trained image recognition model to output the item category;

[0075] Step S430: Determine the business attributes based on the item category. The business attributes include item size, temperature control requirements, access frequency, and security level.

[0076] In this embodiment, the locker integrates an RFID reader and a miniature camera equipped with an LED fill light at the access point. When the user places an item in the identification area within the access point, the system triggers the identification process upon detecting the item's placement using a photoelectric sensor.

[0077] During RFID identification, the reader emits a radio frequency signal to activate the passive RFID tag attached to the item, and the RFID tag returns its unique ID. For items without RFID tags, no result is returned. After receiving the RFID tag ID, the cloud management platform uses it as a key to query the preset business database. The preset business database stores the mapping relationship between tag IDs and item information. For example, tag ID [300833B2DDD900000001] corresponds to [linen - bed sheet, belonging to hotel A, task order number T20260521-001]; tag ID [30123456789ABCDEF000] corresponds to [goods - express delivery, recipient Zhang San, mobile phone number ending in 1234]. The query results include item category, belonging information, task order, etc. For unfamiliar tags without a mapping relationship, the system can prompt the user to manually supplement the information. Item categories include, but are not limited to, linen, goods, and luggage.

[0078] During visual recognition, the camera captures images of the items to be stored and performs preprocessing operations to obtain image data. Preprocessing operations include grayscale conversion, noise suppression, edge enhancement, and size normalization to improve image recognition accuracy. Subsequently, the image data is fed into a pre-trained image classification and object detection model. This pre-trained model can employ a convolutional neural network architecture (such as ResNet-50 or MobileNetV3) and is trained and fine-tuned on the stored item image dataset. The model output includes item category, size estimation, and auxiliary attributes. Item categories include suitcases, backpacks, shoes, handbags, and clothing; size estimation is obtained by converting the bounding box pixel dimensions output by an object detection algorithm (such as YOLOv8) into known camera calibration parameters (object distance, focal length), including the actual length, width, and height of the item; auxiliary attributes include wheels for determining whether it is a large piece of luggage and brand logos for determining whether it is a valuable item.

[0079] Then, the RFID identification results and / or visual identification results are integrated to form structured business attributes.

[0080] The item size is estimated based on the dimensions (length × width × height) output by visual recognition. If it is less than or equal to 30cm × 30cm × 40cm, it is considered small; if any dimension is greater than 30cm but not more than 50cm, it is considered medium; and if any dimension exceeds 50cm, it is considered large. For items identified by RFID, if the item dimensions are pre-stored in the database, they can be used directly. Alternatively, the corresponding size can be found in a category-size mapping table based on the item category output by visual recognition, for example, large size for suitcases and small size for handbags.

[0081] Temperature control requirements can be inferred from the category of the item. For example, fresh fruits and frozen foods require refrigeration (2-8℃) or freezing (below -18℃); ordinary luggage and linens require room temperature.

[0082] The frequency of storage and retrieval can be inferred from the item category and scenario rules. For example, the frequency of customer luggage storage and retrieval is once for storage and once for retrieval, which corresponds to "low frequency"; in the linen management scenario, the frequency of linen storage and retrieval is multiple times a day, which corresponds to "medium frequency"; and the temporary storage of takeout food requires storage and retrieval within fifteen minutes, which corresponds to "high frequency".

[0083] Security levels can be inferred from item category and user selection. For example, for items identified as laptop bags or luxury handbags, an inquiry command is output (e.g., is the item valuable?), and after user confirmation, the security level is marked as "high"; ordinary items are marked as "standard" by default.

[0084] Thus, this application's embodiments utilize two complementary automatic identification methods—RFID and vision—to replace the traditional method of users manually selecting service types. The RFID solution boasts near 100% accuracy and is suitable for batch processing and pre-labeling scenarios; the vision solution achieves classification through deep learning and is suitable for unlabeled items. Automatic identification not only improves the efficiency of user access operations but also reduces the probability of misplacement due to user errors, such as misselecting linens as luggage. Furthermore, the multi-dimensional business attributes output by automatic identification provide a data foundation for subsequent refined allocation, transforming locker partitioning from simple type-based zoning to intelligent attribute-based matching.

[0085] Further, step S500 includes: allocating the item to be stored to a physical storage cell of the corresponding size in the target logical partition according to the item size of the business attribute; and / or, allocating the item to be stored to a physical storage cell in the target logical partition corresponding to a constant temperature range according to the temperature control requirements of the business attribute; and / or, allocating the item to be stored to a physical storage cell in the target logical partition corresponding to a high-frequency access area or a low-frequency access area according to the access frequency of the business attribute; and / or, allocating the item to be stored to a physical storage cell in the target logical partition corresponding to an encryption permission level according to the security level of the business attribute.

[0086] It should be noted that the target logical partition is equipped with physical storage compartments of various specifications and functions, and the cloud management platform maintains the attribute tags of each storage compartment.

[0087] For example, the size attributes include small cabinets (300mm×300mm×400mm), medium cabinets (400mm×400mm×600mm), and large cabinets (600mm×600mm×800mm). Temperature attributes include refrigerated and frozen cabinets. Location attributes include high-frequency and low-frequency access areas. Security attributes include standard cabinets with only electronic locks and cabinets with facial recognition encryption.

[0088] Once the business attributes of the items to be stored are obtained, the corresponding matching logic is executed based on the business attributes.

[0089] Specifically, the system matches cabinet specifications to item dimensions. It compares estimated item dimensions with cabinet specifications and selects the smallest cabinet size that can accommodate the items, thus saving space. If an item's dimensions are less than or equal to the inner diameter of a small cabinet, it is assigned to a small cabinet; if the item's dimensions are between small and medium, it is assigned to a medium cabinet; if the item's dimensions are between medium and large, it is assigned to a large cabinet; if the item's dimensions are greater than the inner diameter of a large cabinet, a message indicating that the item's dimensions exceed the capacity of a single cabinet is output. And / or, it matches temperature-controlled cabinets based on temperature requirements. If the temperature control requirement in the business attribute is refrigeration or freezing, the system only allocates cabinets within the target logical partition. If there are no available temperature-controlled cabinets within the target logical partition, it outputs "No available temperature-controlled cabinets." And / or, match items with location attributes based on access frequency. For items with high access frequency in the business attributes, such as linen handling and daily employee access, allocate cabinets located in high-frequency access areas to reduce the frequency of users bending over or tiptoeing, thus improving operational efficiency. For items with low access frequency, such as customer luggage and long-term storage, allocate cabinets outside the high-frequency access areas. And / or, match encryption permission levels based on security level. If the security level in the business attributes is high, allocate encrypted cabinets.

[0090] For example, suppose a user stores a high-end medicine that requires refrigeration. The system first identifies its dimensions as 280mm × 280mm × 380mm, determining that it falls within the capacity of a small cabinet; it then parses the temperature control requirement as refrigeration and the security level as high. Next, it locks onto the refrigerated cabinets in the high-frequency access area, and further filters from these, selecting encrypted small cabinets with facial recognition functionality. Understandably, medicines are frequently and urgently needed supplies, therefore, they are prioritized for matching to encrypted small refrigerated cabinets in the high-frequency access area.

[0091] Thus, this embodiment expands the zoning method of lockers from solely based on item size to include four business attributes: size, temperature control, frequency, and security, and establishes matching rules with the physical attributes of the storage compartments. This avoids the space waste caused by a uniform management model where small items occupy large compartments and large items cannot be stored, as well as the problem that a fixed physical zoning model cannot meet differentiated needs such as temperature control and security. Through multi-attribute matching, large luggage will not occupy multiple small compartments, and small items will not waste space in large compartments; high-frequency users will have convenient storage locations; valuables will receive a higher level of security; and fresh food will be kept at a suitable temperature. Overall, this improves the space utilization rate of lockers and the security of stored items.

[0092] In an optional implementation, to prevent storage compartments from being occupied ineffectively for extended periods and to improve turnover efficiency, steps S610 and S620 may be included after step S500:

[0093] Step S610: When it is detected that the physical storage compartment has been successfully opened and the item has been actually stored, set the corresponding storage time limit according to the business attribute.

[0094] Step S620: Monitor the occupancy status of the physical storage compartment. If the duration of the occupancy status is greater than or equal to the storage timeout threshold, execute a timeout storage action according to the business attribute. The timeout storage action includes pushing a timeout reminder to the user terminal and / or the management terminal, and / or performing a renewal confirmation process, and / or performing a clearing operation.

[0095] In this embodiment, upon receiving a signal that the cabinet door is closed and an item is present, a timeout setting process is triggered. Specifically, the business attributes associated with this storage request are read, and the storage timeout threshold, i.e., the maximum allowed storage duration, is determined according to a preset timeout rule table. As shown in Table 1:

[0096] Table 1: Time-Limited Rules Table

[0097] Luggage compartments ordinary luggage Basic validity period and high-value items are automatically extended. The 12-hour period for identifying laptop bags / camera bags has been extended to 24 hours. Luggage compartments valuables Short delivery time encourages users to pick up their items as soon as possible. 6 hours Linen Sections Employee tasks The required return time for the bound task order. Based on the task sheet Product zoning takeout Extremely short lead time, ensuring rapid turnover 1 hour Product zoning express delivery Regular delivery time 48 hours Constant temperature zone Fresh food Short timeframe to prevent corruption Freeze for 2 hours, refrigerate for 4 hours

[0098] After setting the time limit, the system records the storage timestamp and expiration timestamp of the corresponding storage compartment in the database and starts a scheduled monitoring task.

[0099] The scheduled task scans all occupied storage slots at fixed intervals (e.g., 60 seconds) and compares the current time with the expiration timestamp. If the current time is greater than or equal to the expiration timestamp, a timeout is detected, and timeout processing is performed.

[0100] Optionally, timeout handling is divided into three levels: Level 1: Reminder; Level 2: Continue Saving; and Level 3: Clear.

[0101] Specifically, Level 1 reminders send SMS and app notifications to users 15 minutes before the timeout, including the timeout period, locker number, and quick renewal option. Level 2 renewal allows users to pay for renewal within 2 hours after the timeout via the app, extending the validity period; upon successful renewal, the system updates the expiration timestamp. Level 3 clearing triggers a clearing process if no renewal is made after 2 hours, marking the locker as abnormally occupied and notifying management personnel for on-site handling. After identifying management personnel, the system opens the locker marked as abnormally occupied, and releases it after the status sensor indicates it is empty, updating its status to idle. For linens not returned on time, the system records the incomplete task by linking it to the staff account and simultaneously sends Level 1 reminders to the corresponding supervisor and employee.

[0102] Thus, this application embodiment achieves refined time management by setting differentiated storage time thresholds for items with different business attributes. Short time limits are set for fresh produce to encourage users to pick it up promptly and avoid spoilage and waste; time limits are tied to task orders to ensure a closed-loop workflow; and temporary storage time limits ensure high-frequency turnover of lockers. This three-tiered timeout handling mechanism balances user experience and operational efficiency, preventing lockers from being locked for extended periods due to user forgetfulness. This achieves the goal of differentiated control over storage time for different item types, further improving the turnover rate and operational revenue of commercial lockers.

[0103] Reference Figure 3 As an optional implementation, in order to combine locker zoning management with staff task order workflows to achieve full-process tracking and accountability for linens from requisition, use to recycling in a linen management scenario, step S400 may further include steps S441 to S443:

[0104] Step S441: When the business attribute of the item to be stored is determined to be linen based on the RFID tag of the item to be stored, the corresponding staff account and task order are obtained based on the RFID tag.

[0105] Step S442: Associate the business attributes with the staff account and task order, and assign the items to be stored to the linen logical partition to which the task order belongs;

[0106] Step S443: When the staff account initiates another retrieval request, the corresponding linen storage compartment is opened from the linen logical partition according to the task order.

[0107] It should be noted that linen management scenarios can include hotel room linen receipt and dispatch, and laundry factory logistics management. Each piece of linen is sewn or embedded with an RFID tag after washing and processing. The RFID tag contains a unique linen ID. After reading the linen ID, the system queries the backend business database to obtain associated information. This associated information may include the task order number corresponding to this linen receipt and dispatch, and the account of the staff member performing the task. The task order number for this linen receipt and dispatch is generated by the hotel's housekeeping system and includes the floor, room number, and the type and quantity of linen required. The staff member's account is linked to employee information entered before retrieving the linens, such as by scanning an employee ID card or using facial recognition login.

[0108] Subsequently, the storage request for linens is bound to the task order, and an available storage slot is allocated in the linen logical partition. Furthermore, the task order number, staff ID, linen list, and storage time are recorded in the access log of that storage slot.

[0109] When the employee's account initiates another retrieval request, the system identifies the employee, retrieves the employee's incomplete task list, finds the storage compartment previously assigned to store clean linens, and opens the corresponding storage compartment. After the employee retrieves the clean linens and closes the cabinet door, the task list is marked as completed.

[0110] Thus, this embodiment of the application links RFID linen tags, staff accounts, and task orders, achieving end-to-end digital tracking of linens from distribution to collection. Compared to traditional manual signing and inventory methods, this reduces the rate of linen loss and missed orders. When linens are missing, the responsible person, task order, and last access record can be quickly located, providing data support for linen management. Simultaneously, setting up dedicated linen zones avoids cross-contamination and management chaos caused by mixing linens with customers' luggage.

[0111] Reference Figure 4 Based on the first embodiment of this application, in the second embodiment of this application, the content that is the same as or similar to that in the first embodiment described above can be referred to the above description and will not be repeated hereafter. Furthermore, to avoid cross-contamination caused by the mixed storage of linens, shoes, and other items, the zoning management and control method for storage lockers may further include steps S700 to S800:

[0112] Step S700: After detecting the storage of items, determine the disinfection and drying strategy based on the business attributes and / or the type of the target logical partition;

[0113] Step S800: Based on the disinfection and drying strategy, control the corresponding physical storage compartment to start ultraviolet irradiation, ozone release and hot air circulation programs of corresponding intensity for a preset duration.

[0114] In this embodiment, after receiving an event indicating that the cabinet door is closed and items have been stored, the cloud management platform determines a disinfection and drying strategy in the disinfection and drying decision logic table based on the target logical partition type and the item's business attributes. The disinfection and drying strategy includes disinfection type, disinfection duration, drying temperature, airflow rate, and drying duration. As shown in Table 2:

[0115] Table 2: Disinfection and Drying Decision Logic Table

[0116] Luggage compartments sneakers 15 minutes 10 minutes 45℃, medium fan speed, 30 minutes Luggage compartments leather shoes 10 minutes 5 minutes none Linen Sections Dirty linen recycling none 15 minutes 80℃, strong wind, 60 minutes Linen Sections Clean linen storage 20 minutes none none Luggage storage ordinary luggage 10 minutes none none Constant temperature zone Fresh food none none none

[0117] Optionally, for athletic shoes, hot air drying is performed first, followed by ultraviolet sterilization, and finally ozone deodorization; for leather shoes, since high temperatures can cause deformation, only disinfection and deodorization are performed; for soiled linen recycling, high-temperature disinfection is the main method, with ozone assisting in deodorization; for clean linen storage, only ultraviolet light is used to maintain hygiene, and drying is not required; for ordinary luggage, only basic disinfection is performed, and drying is not required; chemical / optical disinfection is prohibited in food areas.

[0118] It should be noted that each physical storage compartment integrates a UV LED light panel, an ozone generator, a PTC heater, a miniature fan, and a sensor array. The UV LED light panel's irradiation intensity is adjustable, for example, from a low setting of 100 μW / cm² to a high setting of 500 μW / cm². The ozone generator's ozone output is adjustable between 50 and 200 mg / h, working in conjunction with the miniature fan to achieve internal circulation. The PTC heater's surface temperature is kept constant at a fixed setting, such as 45℃ or 80℃. The miniature fan's airflow is adjustable between 5 and 15 CFM for hot air circulation and ozone diffusion. The sensor array includes temperature and humidity sensors, a UV intensity sensor, and an ozone concentration sensor, used for closed-loop feedback control.

[0119] After receiving the disinfection command from the cloud management platform, the main control unit controls the start and stop of each device according to the preset sequence. For example, for sports shoes stored in the luggage compartment, during the hot air drying stage, the PTC heater (45℃) and fan (medium speed) are activated for 30 minutes. The humidity sensor reads every minute; if the humidity drops below 30% and remains stable for 5 minutes, the drying process ends early. During the ultraviolet disinfection stage, the heater is turned off, and the ultraviolet LED lamp panel (high speed) is turned on for 15 minutes. The ultraviolet sensor detects the intensity; if the intensity decreases by more than 20%, a maintenance alarm is reported. During the ozone deodorization stage, the ultraviolet lamp is turned off, and the ozone generator (100mg / h) and fan (low speed) are turned on for 10 minutes. The ozone concentration sensor monitors and ensures that the peak concentration does not exceed the safety limit of 1ppm. During the exhaust stage, the ozone generator is turned off, and the exhaust fan is turned on, running for 5 minutes to expel residual ozone outside the cabinet. Understandably, if an unlocking command is received during each stage of execution, the current process will be terminated immediately, the user's request to retrieve items will be prioritized, and the safety interlock mechanism will be triggered to shut down all high-energy devices. After ensuring the safety and stability of the environment inside the cabinet, the unlocking action will be performed.

[0120] In the technical solution provided in this embodiment, by adapting the disinfection and drying scheme according to different items and partition types, shoe cabinets can deodorize, sterilize, and prevent fungi; linen cabinets can be disinfected at high temperatures to kill pathogens; and ordinary storage cabinets can also provide basic ultraviolet hygiene protection. Compared with traditional storage cabinets that have no disinfection function or rely on irregular operations such as manual spraying of disinfectants, this embodiment achieves automated, standardized, and traceable hygiene management. At the same time, selective activation based on business attributes, such as disabling ozone in food areas and disabling high-temperature drying for leather shoes, avoids unnecessary energy consumption and damage to items.

[0121] Further, step S700 may include, when the business attribute includes footwear, determining that the disinfection and drying strategy includes ultraviolet disinfection, ozone deodorization, and medium-temperature hot air drying, and adjusting the drying time based on the feedback value of the humidity sensor in the physical storage compartment; when the business attribute includes dirty linen recycling, determining that the disinfection and drying strategy includes ozone deodorization and high-temperature hot air drying, and determining whether to release the cabinet lock based on the feedback value of the temperature sensor in the physical storage compartment.

[0122] In this embodiment, when the system identifies the item to be stored as footwear, such as sneakers or leather shoes, the disinfection and drying strategy is determined to include ultraviolet disinfection, ozone deodorization, and medium-temperature hot air drying.

[0123] Specifically, the 45℃ hot air drying is initiated, while the humidity sensor inside the cabinet reads the relative humidity every 30 seconds. The initial drying time is 30 minutes. If the humidity value drops below 30% and stabilizes, drying is terminated early; if the humidity is still above 50% after 30 minutes, the drying time is extended by 10 minutes, with a maximum of 3 extensions. After drying, 15 minutes of ultraviolet disinfection and 10 minutes of ozone deodorization are performed sequentially, followed by 5 minutes of exhaust ventilation.

[0124] In this way, the drying time can be dynamically adjusted through humidity feedback to avoid over-drying and damaging the shoe materials or under-drying and leaving residual odors.

[0125] When the system identifies the items to be stored as dirty linens for recycling, the disinfection and drying strategy is determined to include ozone deodorization and high-temperature hot air drying.

[0126] Specifically, the system initiates high-temperature 80℃ hot air drying, running for a fixed 60 minutes to kill pathogens using high temperature. After drying, it performs 15 minutes of ozone deodorization to decompose odors. Throughout the entire treatment process and afterward, the temperature sensor inside the cabinet monitors the temperature in real time. If the temperature is greater than or equal to 50℃, the system locks the cabinet door, prohibiting any unlocking operation; once the temperature drops below 50℃, the lock is released, allowing the user to retrieve the items.

[0127] In this way, dirty linens are disinfected by high-temperature treatment, and the temperature interlocking mechanism prevents users from accidentally opening the high-temperature cabinet door and getting burned, ensuring the safety of high-temperature disinfection in unattended scenarios.

[0128] This application provides an electronic device, which includes: at least one processor; and a memory communicatively connected to the at least one processor; wherein the memory stores instructions executable by the at least one processor, the instructions being executed by the at least one processor to enable the at least one processor to perform the locker partition management control method in the above embodiments.

[0129] The following is for reference. Figure 5 The diagram illustrates a structural schematic of an electronic device suitable for implementing embodiments of this application. The electronic devices in these embodiments may include, but are not limited to, mobile terminals such as mobile phones, laptops, digital broadcast receivers, PDAs (Personal Digital Assistants), PADs (Portable Application Descriptions), PMPs (Portable Media Players), in-vehicle terminals (e.g., in-vehicle navigation terminals), and fixed terminals such as digital TVs and desktop computers. Figure 5 The electronic device shown is merely an example and should not impose any limitation on the functionality and scope of use of the embodiments of this application.

[0130] like Figure 5 As shown, the electronic device may include a processing unit 1001 (e.g., a central processing unit, a graphics processing unit, etc.), which can perform various appropriate actions and processes according to a program stored in a read-only memory 1002 or a program loaded from a storage device 1003 into a random access memory 1004. The random access memory 1004 also stores various programs and data required for the operation of the electronic device. The processing unit 1001, the read-only memory 1002, and the random access memory 1004 are interconnected via a bus 1005. An input / output interface 1006 is also connected to the bus. Typically, the following systems can be connected to the input / output interface 1006: input devices 1007 including, for example, touchscreens, touchpads, keyboards, mice, image sensors, microphones, accelerometers, gyroscopes, etc.; output devices 1008 including, for example, liquid crystal displays (LCDs), speakers, vibrators, etc.; storage devices 1003 including, for example, magnetic tapes, hard disks, etc.; and communication devices 1009. The communication device 1009 allows the electronic device to communicate wirelessly or wiredly with other devices to exchange data. Although the diagrams show electronic devices with various systems, it should be understood that it is not required to implement or have all of the systems shown. More or fewer systems may be implemented alternatively.

[0131] Specifically, according to the embodiments disclosed in this application, the processes described above with reference to the flowcharts can be implemented as computer software programs. For example, embodiments disclosed in this application include a computer program product comprising a computer program carried on a 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, or installed from storage device 1003, or installed from read-only memory 1002. When the computer program is executed by processing device 1001, it performs the functions defined in the methods of the embodiments disclosed in this application.

[0132] The electronic device provided in this application, employing the locker partition management and control method described in the above embodiments, can solve the technical problem of how to dynamically re-divide and configure the logical space of lockers to improve the resource utilization rate of commercial lockers. Compared with the prior art, the beneficial effects of the electronic device provided in this application are the same as those of the locker partition management and control method provided in the above embodiments, and other technical features of this electronic device are the same as those disclosed in the methods of the above embodiments, and will not be repeated here.

[0133] It should be understood that the various parts disclosed in this application can be implemented using hardware, software, firmware, or a combination thereof. In the description of the above embodiments, specific features, structures, materials, or characteristics can be combined in any suitable manner in one or more embodiments or examples.

[0134] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

[0135] This application provides a computer-readable storage medium having computer-readable program instructions (i.e., a computer program) stored thereon, the computer-readable program instructions being used to execute the locker partition management control method in the above embodiments.

[0136] The computer-readable storage medium provided in this application may be, for example, a USB flash drive, but is not limited to, electrical, magnetic, optical, electromagnetic, infrared, or semiconductor systems or devices, or any combination thereof. More specific examples of computer-readable storage media may include, but are not limited to: electrical connections having one or more wires, portable computer disks, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fibers, portable compact disk read-only memory (CD-ROM), optical storage devices, magnetic storage devices, or any suitable combination thereof. In this embodiment, the computer-readable storage medium may be any tangible medium containing or storing a program that can be used by or in conjunction with an instruction execution system or device. The program code contained on the computer-readable storage medium may be transmitted using any suitable medium, including but not limited to: wires, optical cables, RF (Radio Frequency), etc., or any suitable combination thereof.

[0137] The aforementioned computer-readable storage medium may be included in an electronic device or may exist independently without being assembled into an electronic device.

[0138] The aforementioned computer-readable storage medium carries one or more programs. When the aforementioned one or more programs are executed by an electronic device, the electronic device causes the electronic device to: monitor the real-time occupancy rate of each logical partition of the locker; trigger a partition reallocation event when the real-time occupancy rate of the first logical partition is greater than or equal to a first preset threshold and the real-time occupancy rate of the second logical partition is less than a second preset threshold; respond to the partition reallocation event by allocating at least one physical storage cell from the second logical partition to the first logical partition; when a storage request is received, obtain the business attributes of the item to be stored and determine the target logical partition based on the business attributes; and allocate an empty physical storage cell in the target logical partition based on the business attributes and generate an unlocking command to open the empty physical storage cell.

[0139] Computer program code for performing the operations of this application can be written in one or more programming languages ​​or a combination thereof, including object-oriented programming languages ​​such as Java, Smalltalk, and C++, and conventional procedural programming languages ​​such as the "C" language or similar programming 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).

[0140] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to various embodiments of this application. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing a specified logical function. It should also be noted that in some alternative implementations, the functions indicated in the blocks may occur in a different order than those indicated in the drawings. For example, two consecutively indicated blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. It should also be noted that each block in the block diagrams and / or flowcharts, and combinations of blocks in the block diagrams and / or flowcharts, can be implemented using a dedicated hardware-based system that performs the specified function or operation, or using a combination of dedicated hardware and computer instructions.

[0141] The modules described in the embodiments of this application can be implemented in software or hardware. The names of the modules do not necessarily limit the functionality of the unit itself.

[0142] The readable storage medium provided in this application is a computer-readable storage medium, which stores computer-readable program instructions (i.e., a computer program) for executing the above-described locker partition management and control method. Compared with the prior art, the beneficial effects of the computer-readable storage medium provided in this application are the same as the beneficial effects of the locker partition management and control method provided in the above embodiments, and will not be repeated here.

[0143] This application provides a computer program product, including a computer program that, when executed by a processor, implements the steps of the storage locker partition management and control method described above.

[0144] Compared with the prior art, the computer program product provided in this application has the same beneficial effects as the storage cabinet partition management and control method provided in the above embodiments, and will not be described in detail here.

[0145] The above are merely preferred embodiments of this application and do not limit the patent scope of this application. Any equivalent structural or procedural transformations made using the content of this application's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent scope of this application.

Claims

1. A method for zoned management and control of lockers, characterized in that, The partitioned management and control method for the lockers includes: Monitor the real-time occupancy rate of each logical partition of the locker; When the real-time occupancy rate of the first logical partition is greater than or equal to the first preset threshold, and the real-time occupancy rate of the second logical partition is less than the second preset threshold, a partition reallocation event is triggered. In response to the partition reallocation event, at least one physical storage cell in the second logical partition is allocated to the first logical partition; Upon receiving a storage request, the system retrieves the business attributes of the items to be stored and determines the target logical partition based on these attributes; and... Based on the business attributes, an idle physical storage compartment is allocated in the target logical partition, and an unlocking command is generated to open the idle physical storage compartment. The steps of obtaining the business attributes of the items to be stored when a storage request is received, and determining the target logical partition based on the business attributes, include: Control the RFID reader to read the RFID tag of the item to be stored to obtain the tag ID, and / or control the camera to capture the image data of the item to be stored; Based on the tag ID, query the preset business database to match the item category, and / or transmit the image data to the pre-trained image recognition model to output the item category; The business attributes are determined based on the item category, and the business attributes include item size, temperature control requirements, access frequency, and security level.

2. The method for zoned management and control of lockers as described in claim 1, characterized in that, The step of allocating an empty physical storage compartment in the target logical partition according to the business attributes and generating an unlocking command to open the empty physical storage compartment includes: Based on the item size according to the business attributes, allocate the items to be stored to physical storage cells of corresponding size specifications in the target logical partition; and / or, Based on the temperature control requirements of the aforementioned business attributes, the items to be stored are allocated to physical storage compartments within the corresponding constant temperature range of the target logical partition; and / or, Based on the access frequency of the aforementioned business attributes, allocate the items to be stored to physical storage cells in the corresponding high-frequency or low-frequency access areas of the target logical partition; and / or, Based on the security level of the business attributes, the items to be stored are allocated to physical storage cells with the corresponding encryption permission level in the target logical partition.

3. The method for zoned management and control of lockers as described in claim 1, characterized in that, After the step of allocating an empty physical storage compartment in the target logical partition according to the business attributes and generating an unlocking command to open the empty physical storage compartment, the method further includes: Once it is detected that the physical storage compartment has been successfully opened and the item has been actually stored, a corresponding storage time limit threshold is set according to the business attributes. Monitor the occupancy status of the physical storage compartments. If the duration of the occupancy status is greater than or equal to the storage timeout threshold, execute a timeout storage action based on the business attributes. The timeout storage action includes pushing a timeout reminder to the user terminal and / or the management terminal, and / or performing a renewal confirmation process, and / or performing a clearing operation.

4. The method for partitioned management and control of lockers as described in claim 1, characterized in that, The step of obtaining the business attributes of the items to be stored when a storage request is received, and determining the target logical partition based on the business attributes, further includes: When the business attribute of the item to be stored is determined to be linen based on the RFID tag of the item to be stored, the corresponding staff account and task order are obtained based on the RFID tag. Associate the business attributes with the staff account and task order, and assign the items to be stored to the linen logical partition to which the task order belongs; When the staff member's account initiates another retrieval request, the corresponding linen storage compartment is opened from the linen logical partition according to the task order.

5. The method for partitioned management and control of lockers as described in claim 1, characterized in that, The partitioned management and control method for the lockers also includes: After detecting the storage of items, a disinfection and drying strategy is determined based on the business attributes and / or the type of the target logical partition; Based on the aforementioned disinfection and drying strategy, the corresponding physical storage compartments are controlled to activate ultraviolet irradiation, ozone release, and hot air circulation programs of corresponding intensities for a preset duration.

6. The partitioned management and control method for lockers as described in claim 5, characterized in that, The step of determining a disinfection and drying strategy based on the business attributes and / or the type of the target logical partition after detecting the storage of items includes: When the business attributes include footwear, the disinfection and drying strategy is determined to include ultraviolet disinfection, ozone deodorization, and medium-temperature hot air drying, and the drying time is adjusted according to the feedback value of the humidity sensor in the physical storage compartment. When the business attribute includes dirty linen recycling, the disinfection and drying strategy is determined to include ozone deodorization strategy and high-temperature hot air drying strategy, and based on the temperature sensor feedback value in the physical storage compartment, it is determined whether to release the cabinet lock.

7. An electronic device, characterized in that, The device includes: a memory, a processor, and a computer program stored in the memory and executable on the processor, the computer program being configured to implement the steps of the locker partition management control method as described in any one of claims 1 to 6.

8. A readable storage medium, characterized in that, The readable storage medium is a computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, it implements the steps of the locker partition management and control method as described in any one of claims 1 to 6.

9. A computer program product, characterized in that, The computer program product includes a computer program that, when executed by a processor, implements the steps of the locker partition management control method as described in any one of claims 1 to 6.