A logistics transfer system and method based on automatic identification technology
Through the logistics transfer system with automatic identification technology, and by utilizing the automated sorting and pickup of logistics center warehouses, stations and mobile cabinets, the timeliness and accuracy issues in logistics transfer are solved, thus achieving efficient and accurate logistics management.
Patent Information
- Application Number
- CN202310729485.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-20
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2043-06-20
AI Technical Summary
The existing logistics transfer process has problems such as low timeliness, poor accuracy and high labor costs.
The logistics transfer system adopts automatic identification technology, including logistics center warehouse, logistics station, logistics mobile cabinet and cloud server. It realizes automatic sorting and pickup through USB and Internet communication, and uses display screens, cameras and ambient lights for information exchange and package management.
It improves the timeliness and accuracy of logistics transportation, reduces the workload of manual sorting and data entry, and saves labor costs.
Smart Images

Figure CN116692343B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of logistics and transportation, and in particular relates to a logistics transfer system and method based on automatic identification technology. Background Art
[0002] With the continuous development and advancement of the internet, people's lifestyles are gradually changing. They are no longer limited to shopping in malls and supermarkets to meet their daily needs. With the development of logistics, people's sense of well-being is gradually increasing. The massive amount of logistics items that require transfer and pickup is redundant and tedious. With increasing user demands for timeliness and reliability, providing users with an automatic identification logistics transfer solution to improve timeliness and accuracy is an inevitable trend in the internet. Existing logistics transfer technologies mainly rely on multiple manual sorting and data entry, which results in high labor costs and low accuracy. Summary of the Invention
[0003] In response to the above problems, one purpose of the present invention is to propose a logistics transfer solution using automated identification technology to address the timeliness and accuracy issues in the logistics transfer process in existing warehouse technologies. The specific technical solution is as follows:
[0004] A logistics transfer system with automatic identification technology, comprising: a logistics center warehouse, a logistics station, a logistics mobile cabinet, a logistics fixed cabinet, and a cloud server; the logistics mobile cabinet communicates with the logistics fixed cabinet via USB, and the logistics mobile cabinet communicates with the cloud server via 5G / 4G Internet;
[0005] The fixed logistics cabinet is placed at the logistics station and includes a power supply and a container encoder. The container encoder is used to establish communication with the decoder of the mobile logistics cabinet and upload the specific location to the cloud server through the mobile logistics cabinet; the power supply is used to charge the battery of the mobile cabinet's display screen;
[0006] The logistics mobile cabinet is used for transferring logistics items, and includes a display screen, a camera and an ambient light; the display screen interacts with the cloud server via a network connection.
[0007] Furthermore, the display screen of the logistics mobile cabinet includes a decoder, a battery, and the software and hardware necessary to drive and control the atmosphere light.
[0008] The present invention also provides a logistics transfer method of the logistics transfer system based on the aforementioned automatic identification technology, which specifically includes the following steps:
[0009] (1) The logistics parts in the logistics center warehouse are automatically dispatched to the set area through conveyor belts based on image recognition; the staff enters the package into the logistics mobile cabinet, including uploading the package details by the logistics mobile cabinet, storing the quantity in the display screen memory and displaying it in real time on the display screen interface. When the display screen of the logistics mobile cabinet has not established communication with the cloud server, the outbound and inbound tasks can be temporarily stored on the display screen. After the communication is established, the transmission and backup are completed;
[0010] (2) Logistics mobile cabinets that are set up in the area and go to different stations are used. Logistics items are sorted and entered into the logistics mobile cabinets by category. The staff opens the mobile app or uses the camera on the display screen to scan the information of the logistics items in circulation and synchronize it to the cloud server. The cloud server creates a database for each mobile cabinet and generates a unique pickup code and pickup barcode for each scanned logistics item. After completion, the uploaded logistics item quantity is compared. If there is any inconsistency, the staff will be prompted that the quantity is inconsistent. Until it is consistent, it will be transmitted back to the display screen.
[0011] (3) The logistics transfer vehicle transports the logistics mobile cabinet to the logistics station;
[0012] (4) The mobile logistics cabinet is pushed into the fixed logistics cabinet and connected, and successfully interacts with the cloud. The display screen on the mobile logistics cabinet parses the coding information of the fixed logistics cabinet through the decoding chip, and the display screen synchronizes the parsed coding information to the cloud server. After the cloud server receives the signal, it automatically triggers the sending of pickup vouchers to all users in the database, notifying the users to pick up the items.
[0013] (5) After the user finishes picking up the item, the logistics mobile cabinet is transported back to the logistics center warehouse by the logistics transfer vehicle.
[0014] Furthermore, in step (4), the user picks up the package in the following ways: (1) the station staff verifies the pickup certificate, triggering the cloud server to issue the pickup task; or (2) the user provides the pickup certificate himself, and according to the pickup certificate, goes to the designated mobile cabinet, scans the code through the camera on the mobile cabinet, and the camera synchronizes the scan result to the display screen of the mobile cabinet, and compares it with the package information entered in the database. After the comparison is successful, the ambient light of the corresponding layer where the package is located is lit, and the camera of the mobile cabinet takes a photo to complete the delivery task;
[0015] After picking up the item, the camera transmits the outbound photo to the display screen, which uploads it to the cloud server's outbound database to generate a trajectory. At the same time, the removal related information in the cloud server database is consistent with the count on the display screen.
[0016] Furthermore, the pickup voucher is in the form of a barcode, SMS, verification code or QR code.
[0017] Furthermore, the atmosphere light of the logistics mobile cabinet is customized according to the mobile cabinet to remind the user of the layer where the package is located. The atmosphere light of the layer is lit, and the power is automatically disconnected after the last pickup task is completed according to the preset time.
[0018] This invention solves the problem of multiple logistics transfers, improving timeliness and cost savings; reduces the workload of manual sorting and pickup at logistics stations, saving labor costs; and solves the problem of notifying users to pick up their parcels before the pickup conditions are met. Automatic recognition technology replaces multiple manual sorting and data entry tasks, solving logistics transfer tasks in a timely, accurate, and efficient manner. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 Flowchart of logistics transfer of the present invention;
[0020] Figure 2 The present invention automatically identifies the interaction diagram. DETAILED DESCRIPTION
[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0022] like Figure 1-2 As shown: A logistics transfer system with automatic identification technology, the system includes: a logistics center warehouse, a logistics station, a logistics mobile cabinet, a logistics fixed cabinet and a cloud server; the logistics mobile cabinet communicates with the logistics fixed cabinet via USB, and the logistics mobile cabinet communicates with the cloud server via the Internet 5G / 4G;
[0023] The fixed logistics cabinet is placed at the logistics station and includes a power supply and a container encoder. The container encoder is used to establish communication with the decoder of the mobile logistics cabinet and upload the specific location to the cloud server through the mobile logistics cabinet; the power supply is used to charge the battery of the mobile cabinet's display screen;
[0024] The logistics mobile cabinet is used for transferring logistics items, and includes a display screen, a camera and an ambient light; the display screen interacts with the cloud server via a network connection.
[0025] The display screen of the logistics mobile cabinet includes a decoder, a battery, and the software and hardware necessary to drive and control the atmosphere light.
[0026] The logistics transfer method of the logistics transfer system based on the aforementioned automatic identification technology specifically includes the following steps:
[0027] (1) The logistics parts in the logistics center warehouse are automatically dispatched to the set area through conveyor belts based on image recognition; the staff enters the package into the logistics mobile cabinet, including uploading the package details by the logistics mobile cabinet, storing the quantity in the display screen memory and displaying it in real time on the display screen interface. When the display screen of the logistics mobile cabinet has not established communication with the cloud server, the outbound and inbound tasks can be temporarily stored on the display screen. After the communication is established, the transmission and backup are completed;
[0028] (2) Logistics mobile cabinets that are set up in the area and go to different stations are used. Logistics items are sorted and entered into the logistics mobile cabinets by category. The staff opens the mobile app or uses the camera on the display screen to scan the information of the logistics items in circulation and synchronize it to the cloud server. The cloud server creates a database for each mobile cabinet and generates a unique pickup code and pickup barcode for each scanned logistics item. After completion, the uploaded logistics item quantity is compared. If there is any inconsistency, the staff will be prompted that the quantity is inconsistent. Until it is consistent, it will be transmitted back to the display screen.
[0029] (3) The logistics transfer vehicle transports the logistics mobile cabinet to the logistics station;
[0030] (4) The mobile logistics cabinet is pushed into the fixed logistics cabinet and connected, and successfully interacts with the cloud. The display screen on the mobile logistics cabinet parses the coding information of the fixed logistics cabinet through the decoding chip, and the display screen synchronizes the parsed coding information to the cloud server. After the cloud server receives the signal, it automatically triggers the sending of pickup vouchers to all users in the database, notifying the users to pick up the items.
[0031] (5) After the user finishes picking up the item, the logistics mobile cabinet is transported back to the logistics center warehouse by the logistics transfer vehicle.
[0032] In step (4), the user picks up the package in the following ways: (1) the station staff verifies the pickup certificate, triggering the cloud server to issue the pickup task; or (2) the user provides the pickup certificate himself, and according to the pickup certificate, goes to the designated mobile cabinet, scans the code through the camera on the mobile cabinet, and the camera synchronizes the scan result to the display screen of the mobile cabinet, compares it with the package information entered in the database, and after the comparison is successful, lights up the atmosphere light of the corresponding layer where the package is located, and takes a photo with the camera of the mobile cabinet to complete the delivery task;
[0033] After picking up the item, the camera transmits the outbound photo to the display screen, which uploads it to the cloud server's outbound database to generate a trajectory. At the same time, the removal related information in the cloud server database is consistent with the count on the display screen.
[0034] The pickup voucher is in the form of a barcode, SMS, verification code or QR code.
[0035] The atmosphere light of the logistics mobile cabinet is customized according to the mobile cabinet to remind the user of the layer where the package is located. The atmosphere light of the layer is lit, and the power is automatically disconnected after the last pickup task is completed according to the preset time.
[0036] The above describes in detail the preferred embodiments of this patent, but this patent is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by ordinary technicians in this field without departing from the purpose of this patent.
Claims
1. A transfer method for a logistics transfer system using automatic identification technology, characterized by: The system includes: a logistics center warehouse, a logistics post, a logistics mobile cabinet, a logistics fixed cabinet and a cloud server; the logistics mobile cabinet communicates with the logistics fixed cabinet via USB, and the logistics mobile cabinet communicates with the cloud server via the Internet 5G / 4G; the logistics fixed cabinet is placed at the logistics post, and includes a power supply and a container encoder. The container encoder is used to establish communication with the decoder of the logistics mobile cabinet and upload the specific location to the cloud server through the logistics mobile cabinet; the power supply is used to charge the battery of the mobile cabinet's display screen; the logistics mobile cabinet is used to transfer logistics items, and includes a display screen, a camera and an atmosphere light; the display screen interacts with the cloud server via a network connection; the display screen of the logistics mobile cabinet includes a decoder, a battery and the software and hardware necessary to drive and control the atmosphere light; The specific steps include: (1) The logistics parts in the logistics center warehouse are automatically dispatched to the set area through the conveyor belt based on image recognition; the staff enters the package into the logistics mobile cabinet, including uploading the package details to the logistics mobile cabinet, storing the quantity in the display screen memory and displaying it in real time on the display screen interface. When the display screen of the logistics mobile cabinet has not established communication with the cloud server, the outbound and inbound tasks can be temporarily stored on the display screen. After the communication is established, the transmission and backup are completed; (2) Logistics mobile cabinets are set up in the area to go to different stations. Logistics pieces are sorted and entered into the logistics mobile cabinets by category. The staff opens the mobile app or uses the camera on the display screen to scan the information of the logistics pieces in circulation and synchronize it to the cloud server. The cloud server creates a database for each mobile cabinet and generates a unique pickup code and pickup barcode for each scanned logistics piece. After completion, the number of uploaded logistics pieces is compared. If there is any inconsistency, the staff will be prompted that the number is inconsistent. Until they are consistent, the information is sent back to the display screen. (3) The logistics transfer vehicle transports the logistics mobile cabinet to the logistics station; (4) The mobile logistics cabinet is pushed into the fixed logistics cabinet and connected, and successfully interacts with the cloud. The display screen on the mobile logistics cabinet parses the coding information of the fixed logistics cabinet through the decoding chip, and the display screen synchronizes the parsed coding information to the cloud server. After the cloud server receives the coding information, it automatically triggers the sending of pickup vouchers to all users in the database, notifying the users to pick up the items; (5) After the user finishes picking up the item, the logistics mobile cabinet is transported back to the logistics center warehouse by the logistics transfer vehicle.
2. The method for transporting a logistics transport system using automatic identification technology according to claim 1, characterized in that: In step (4), the user picks up the package in the following ways: (1) the station staff verifies the pickup certificate, triggering the cloud server to issue the pickup task; or (2) the user provides the pickup certificate himself, and according to the pickup certificate, goes to the designated mobile cabinet, scans the code through the camera on the mobile cabinet, and the camera synchronizes the scan result to the display screen of the mobile cabinet, and compares it with the package information in the database. After the comparison is successful, the ambient light of the layer where the corresponding package is located is lit, and the camera of the mobile cabinet takes a photo to complete the outbound task; after the package is picked up, the camera transmits the outbound photo to the display screen, and the display screen is uploaded to the cloud server outbound database to generate a trajectory. At the same time, the relevant information removed from the cloud server database is consistent with the count on the display screen.
3. The method for transporting a logistics transport system using automatic identification technology according to claim 2, characterized in that: The pickup voucher is in the form of a barcode, SMS, verification code or QR code.
4. The method for transporting a logistics transport system using automatic identification technology according to claim 2, characterized in that: The atmosphere light of the logistics mobile cabinet is customized according to the mobile cabinet to remind the user of the layer where the package is located. The atmosphere light of the layer is lit, and the power is automatically disconnected after the last pickup task is completed according to the preset time.
Citation Information
Patent Citations
Intelligent internet of things system for campus express delivery and working method of system
CN108171893A