Label Recognition Management Method and System Based on Data Processing

Tracking goods flow information through RFID tags and calculating the optimal outbound efficiency time based on historical outbound data, solving the problem of insufficient data analysis capabilities in the existing technology, and improving the management efficiency and data analysis capabilities of storage warehouses.

CN118674372BActive Publication Date: 2025-06-17JIANGSU HONGYUAN TECHNOLOGY GROUP CO LTD
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Patent Information

Application Number
CN202410706315.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-03
Publication Date
2025-06-17
Estimated Expiration
2044-06-03

AI Technical Summary

Technical Problem

In the prior art, label identification management lacks capabilities in data analysis, resulting in inefficient storage warehouse management, especially during peak logistics periods, resulting in unnecessary waste of time and affecting the performance of the entire supply chain.

Method used

Track the cargo flow information through RFID tags, record the inlet and exit information, and divide the area based on historical outgoing data, calculate the optimal outgoing efficiency time, recommend the inlet and storage location, and build a software management platform for digital display.

Benefits of technology

It improves the management efficiency of storage warehouses, enhances data analysis capabilities, and ensures the improvement of the efficiency of goods shipped out during peak periods.

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Abstract

The present invention discloses a label recognition management method and system based on data processing, belonging to the technical field of logistics warehousing management. The system includes an inbound and outbound information record management module, a path time management module, an intelligent analysis and calculation module, and a human-computer interaction display module; the inbound and outbound information record management module is used to track the goods flow information through RFID tags and record the inbound and outbound information of the goods in the storage warehouse; the path time management module is used to divide the storage warehouse into regions and determine the outbound cycle duration of each good in each region; the intelligent analysis and calculation module is used to calculate the optimal outbound efficiency duration according to the remaining storage space, the types and volume information of the inbound goods in each region currently, and determine the inbound storage location information of each good; the human-computer interaction display module is used to construct a software management platform for the storage warehouse to digitally display the inbound and outbound information of the goods and the changes in the storage quantity.
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Description

Technical Field

[0001] The present invention relates to the technical field of logistics warehousing management, and particularly to a label recognition management method and system based on data processing. Background Art

[0002] Label recognition management refers to the use of automated technologies to identify, track, and manage items or assets with labels; in the management of goods in a storage warehouse, inventory control can be optimized and the efficiency of warehouse operations can be improved through label recognition; however, in the prior art, the data analysis ability generated during label recognition is seriously insufficient, and the utilization rate of data is not high, resulting in low management efficiency of the storage warehouse. Especially during the peak period of logistics circulation, unnecessary time waste will affect the performance of the entire supply chain. Summary of the Invention

[0003] The purpose of the present invention is to provide a label recognition management method and system based on data processing to solve the problems raised in the above background art.

[0004] To solve the above technical problems, the present invention provides the following technical solution: A label recognition management method based on data processing, the method comprising the following steps:

[0005] S10. Track the goods flow information through RFID tags, and record the inbound and outbound information of the goods in the storage warehouse; wherein, when the goods enter the storage warehouse, the type, volume, and storage location information of the goods are entered into the database, and are determined by searching in the database through the identifier on the RFID tag;

[0006] S20. Divide the storage warehouse into regions, and determine the outbound cycle duration of each good in each region based on historical goods outbound data;

[0007] S30. Calculate the optimal outbound efficiency duration when all goods are outbound according to the remaining storage space in each current region and the type and volume information of the inbound goods, and recommend the inbound storage location information of each good according to the optimal outbound efficiency duration;

[0008] S40. Build a software management platform for the storage warehouse, send the recommended inbound storage location information of each good to the management personnel, and digitally display the inbound and outbound information of the goods and the change in the storage quantity of each good in each region.

[0009] Further, RFID readers are installed at the entrance and exit of the storage warehouse; when the goods are outbound or inbound, the RFID tags attached to the goods are identified through the RFID readers, and the inbound and outbound information of the goods is automatically updated in the database; the inbound and outbound information includes the type, volume, storage location of the goods, and the time stamps corresponding to the inbound and outbound of the goods.

[0010] Further, the method steps of step S20 are as follows:

[0011] S201. Divide the storage warehouse into regions, dividing the storage warehouse into n regions; determine the number of types of goods m according to the goods stored in the storage warehouse;

[0012] where n represents the number of divided regions;

[0013] S202. Based on the historical goods outbound data, determine the outbound cycle duration of each good in each region to obtain T m×n ; where t ij represents the outbound cycle duration of the i-th type of goods in the j-th region of the storage warehouse; i = 1, 2,..., m; j = 1, 2,..., n;

[0014] Among them, use a camera to monitor the personnel access at the entrance and exit of the storage warehouse, and identify the personnel. Starting from the time stamp when the personnel enter the storage warehouse, the time stamp corresponding to the goods outbound when the personnel pass through the RFID reader is used as the end point; the time period from the start point to the end point is used as an outbound cycle; according to the goods outbound identified by the RFID reader, determine the type, volume, and corresponding storage region of the goods; according to the outbound cycle duration data of each good in each region recorded in the historical goods outbound data, determine the average value of the outbound cycle duration of each good in each region, and use the calculated average value as the outbound cycle duration of each good in each region; if the outbound cycle of a good in a certain region is not recorded in the historical goods outbound data, experimental simulation can be carried out, and the data from the experimental simulation can be used as historical goods outbound data for analysis.

[0015] Further, the method steps of step S30 are as follows:

[0016] S301. Monitor the storage space of each region. When goods enter the storage warehouse, determine the remaining storage space volume sizes V1, V2,..., V n of each region; the management personnel manually input to determine the volume sizes W1, W2,..., W m of various types of goods that need to enter the storage warehouse for storage;

[0017] S302. Based on the historical goods outbound data, determine the maximum outbound volume sizes Y1, Y2,..., Y m of personnel for various types of goods in one outbound cycle; according to the remaining storage space volume sizes of each region, the storage volume sizes required for various types of goods, and the outbound cycle duration of each good in each region, determine the storage volume sizes of various types of goods in each region of the storage warehouse to satisfy the conditional formula:

[0018]

[0019] Among them, W j represents the required storage volume of the j-th type of goods; Z ij represents the storage volume of the j-th type of goods in the i-th area of the storage warehouse; BT represents the calculated optimal outbound efficiency duration; Y j represents the maximum outbound volume of the j-th type of goods that personnel can perform outbound operations within one outbound cycle; V i represents the remaining storage space volume of the i-th area of the storage warehouse.

[0020] By calculating the optimal outbound efficiency duration when all goods are out of the warehouse, determine the storage volume of various types of goods in each area, so that during the peak period of logistics, personnel can perform outbound operations on goods faster, improving the management efficiency of the storage warehouse;

[0021] S303. According to the calculated Z ij , determine the storage volume of various types of goods in each area, and determine the storage location information, and automatically update it in the database.

[0022] Furthermore, when goods enter the storage warehouse, managers can view the recommended storage location information and volume of various types of goods for inbound storage through the software management platform; monitor the quantity of various types of goods and display them digitally; among them, when the quantity of goods is insufficient, send a replenishment message to the managers.

[0023] A label recognition management system based on data processing, the system includes an inbound and outbound information record management module, a path time management module, an intelligent analysis and calculation module, and a human-computer interaction display module;

[0024] The inbound and outbound information record management module is used to track the goods flow information through RFID tags and record the inbound and outbound information of goods in the storage warehouse; among them, when goods enter the storage warehouse, enter the type, volume, and storage location information of the goods into the database, and determine it by searching in the database through the identifier on the RFID tag; the path time management module is used to divide the storage warehouse into areas and determine the outbound cycle duration of each good in each area based on historical goods outbound data; the intelligent analysis and calculation module is used to calculate the optimal outbound efficiency duration when all goods are out of the warehouse according to the remaining storage space in each area currently and the type and volume information of inbound goods, and recommend the inbound storage location information of each good according to the optimal outbound efficiency duration; the human-computer interaction display module is used to build a software management platform for the storage warehouse, send the recommended inbound storage location information of each good to the managers, and digitally display the inbound and outbound information of goods and the change in the storage quantity of each good in each area.

[0025] Furthermore, the inbound and outbound information recording and management module includes a logistics status management unit and an information entry and storage unit;

[0026] The logistics status management unit is used to identify the RFID tags attached to the goods through an RFID reader when the goods are out of the warehouse or into the warehouse, and automatically update the inbound and outbound information of the goods in the database;

[0027] The information entry and storage unit is used to record the inbound and outbound information of the goods in the storage warehouse; the inbound and outbound information includes the type, volume, storage location of the goods, and the time stamps corresponding to the inbound and outbound of the goods.

[0028] Furthermore, the path time management module includes a regional division management unit, a goods management unit, and a cycle duration determination unit;

[0029] The regional division management unit is used to divide the storage warehouse into regions and determine the number of divided regions;

[0030] The goods management unit is used to determine the number of types of goods according to the goods stored in the storage warehouse;

[0031] The cycle duration determination unit is used to determine the outbound cycle duration of each good in each region based on historical goods outbound data.

[0032] Furthermore, the intelligent analysis and calculation module includes a storage space determination unit, a maximum outbound volume determination unit, a storage information entry unit, an analysis and calculation unit, and a database automatic update unit;

[0033] The storage space determination unit is used to monitor the storage space of each region and determine the remaining storage space volume of each region when the goods enter the storage warehouse;

[0034] The maximum outbound volume determination unit is used to determine the maximum outbound volume of each type of goods by personnel within one outbound cycle based on historical goods outbound data;

[0035] The storage information entry unit is used for manual entry by management personnel to determine the volume of each type of goods that need to enter the storage warehouse for storage;

[0036] The analysis and calculation unit is used to determine the storage volume of each type of goods in each region of the storage warehouse according to the remaining storage space volume of each region, the storage volume required for each type of goods, and the outbound cycle duration of each good in each region;

[0037] The database automatic update unit is used to determine the storage volume of each type of goods in each region and determine the storage location information, and automatically update it in the database.

[0038] Furthermore, the human-computer interaction display module includes a digital display unit and a monitoring and alarm unit;

[0039] The digital display unit is used for enabling the management personnel to view the recommended storage location information and volume size of various types of goods when the goods enter the storage warehouse through the software management platform;

[0040] The monitoring and alarm unit is used for monitoring the storage space of each area and the quantity of various types of goods, and performing digital display; wherein, when the quantity of goods is insufficient, replenishment information is sent to the management personnel.

[0041] Compared with the prior art, the beneficial effects achieved by the present invention are as follows: A label recognition management method and system based on data processing are provided. The goods in the storage warehouse are managed informatization through RFID technology and digitally displayed, improving the management efficiency of the management personnel for the storage warehouse; by calculating the optimal outbound efficiency duration of the goods, when the goods enter the storage warehouse, the storage volume size of various types of goods in each area is determined, and the storage location information is determined, improving the outbound efficiency of the goods during the peak period and the data analysis ability of the system. BRIEF DESCRIPTION OF THE DRAWINGS

[0042] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention, and do not constitute a limitation to the present invention.

[0043] In the drawings:

[0044] Figure 1 is a schematic structural diagram of the label recognition management system based on data processing of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0045] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0046] Please refer to Figure 1 , the present invention provides a technical solution: A label recognition management method based on data processing, the method includes the following steps:

[0047] S10. Track the goods flow information through RFID tags and record the inbound and outbound information of the goods in the storage warehouse. Among them, when the goods enter the storage warehouse, enter the type, volume, and storage location information of the goods into the database, and determine them by searching in the database through the identifier on the RFID tag.

[0048] S20. Divide the storage warehouse into regions, and based on the historical outbound data of the goods, determine the outbound cycle duration of each good in each region.

[0049] S30. According to the remaining storage space in each current region and the type and volume information of the inbound goods, calculate the optimal outbound efficiency duration when all goods are out of the warehouse, and recommend the inbound storage location information of each good according to the optimal outbound efficiency duration.

[0050] S40. Build a software management platform for the storage warehouse, send the recommended inbound storage location information of each good to the management personnel, and digitally display the inbound and outbound information of the goods and the change in the storage quantity of each good in each region.

[0051] An RFID reader is installed at the entrance and exit of the storage warehouse. When the goods are out of the warehouse or inbound, the RFID tag attached to the goods is identified through the RFID reader, and the inbound and outbound information of the goods is automatically updated in the database. The inbound and outbound information includes the type, volume, storage location of the goods, and the time stamps corresponding to the inbound and outbound of the goods.

[0052] The method steps of step S20 are as follows:

[0053] S201. Divide the storage warehouse into regions, divide the storage warehouse into n regions; according to the stored goods in the storage warehouse, determine the number of types of goods m.

[0054] Among them, n represents the number of divided regions;

[0055] S202. Based on the historical outbound data of the goods, determine the outbound cycle duration of each good in each region, and obtain T m×n ; Among them, t ij represents the outbound cycle duration of the i-th type of goods in the j-th region of the storage warehouse; i = 1, 2,..., m; j = 1, 2,..., n;

[0056] Among them, a camera is used to monitor the entry and exit of personnel at the entrance and exit of the storage warehouse, and the identity of the personnel is identified. Taking the timestamp when the personnel enter the storage warehouse as the starting point and the timestamp when the personnel pass through the RFID reader for corresponding goods outbound as the ending point; the time period from the starting point to the ending point is used as an outbound cycle; according to the goods outbound identified by the RFID reader, the types, volumes, and corresponding storage areas of the goods are determined; according to the outbound cycle duration data of each good in each area recorded in the historical goods outbound data, the average value of the outbound cycle duration of each good in each area is determined, and the calculated average value is used as the outbound cycle duration of each good in each area.

[0057] The method steps of the said step S30 are as follows:

[0058] S301. Monitor the storage space of each area. When goods enter the storage warehouse, determine the remaining storage space volume sizes V1, V2,..., V of each area n ; Manually entered by the administrator to determine the volume sizes W1, W2,..., W of various types of goods that need to be stored in the storage warehouse m ;

[0059] S302. Based on the historical goods outbound data, determine the maximum outbound volume sizes Y1, Y2,..., Y of personnel for various types of goods within one outbound cycle m ; According to the remaining storage space volume sizes of each area, the storage volume sizes required for various types of goods, and the outbound cycle duration of each good in each area, determine the storage volume sizes of various types of goods in each area of the storage warehouse to satisfy the conditional formula:

[0060]

[0061] Among them, W j represents the storage volume size required for the j-th type of good; Z ij represents the storage volume size of the j-th type of good in the i-th area of the storage warehouse; BT represents the calculated optimal outbound efficiency duration; Y j represents the maximum outbound volume size of personnel for the j-th type of good within one outbound cycle; V i represents the remaining storage space volume size of the i-th area of the storage warehouse;

[0062] S303. According to the calculated Z ij , determine the storage volume sizes of various types of goods in each area, and determine the storage location information, and automatically update it in the database.

[0063] When goods enter the storage warehouse, the management personnel can view the recommended storage location information and volume of various types of goods for warehousing through the software management platform; monitor the quantity of various types of goods and display them digitally; among them, when the quantity of goods is insufficient, replenishment information is sent to the management personnel.

[0064] A label recognition management system based on data processing, which includes an inbound and outbound information recording and management module, a path and time management module, an intelligent analysis and calculation module, and a human-computer interaction display module;

[0065] The inbound and outbound information recording and management module is used to track the goods flow information through RFID tags and record the inbound and outbound information of the goods in the storage warehouse; among them, when the goods enter the storage warehouse, the type, volume, and storage location information of the goods are entered into the database, and the identifier on the RFID tag is used to search and determine in the database; the path and time management module is used to divide the storage warehouse into regions and determine the outbound cycle duration of each good in each region based on historical goods outbound data; the intelligent analysis and calculation module is used to calculate the optimal outbound efficiency duration according to the remaining storage space in each region and the type and volume information of the inbound goods, and recommend the storage location information of each good for warehousing according to the optimal outbound efficiency duration; the human-computer interaction display module is used to build a software management platform for the storage warehouse, send the recommended storage location information of each good for warehousing to the management personnel, and digitally display the inbound and outbound information of the goods and the change in the storage quantity of each good in each region.

[0066] The inbound and outbound information recording and management module includes a logistics status management unit and an information entry and storage unit;

[0067] The logistics status management unit is used to identify the RFID tag attached to the goods through an RFID reader when the goods are out of the warehouse or in the warehouse, and automatically update the inbound and outbound information of the goods in the database;

[0068] The information entry and storage unit is used to record the inbound and outbound information of the goods in the storage warehouse; the inbound and outbound information includes the type, volume, storage location of the goods, and the time stamps corresponding to the inbound and outbound of the goods.

[0069] The path and time management module includes a region division management unit, a goods management unit, and a cycle duration determination unit;

[0070] The region division management unit is used to divide the storage warehouse into regions and determine the number of divided regions;

[0071] The goods management unit is used to determine the number of types of goods according to the goods stored in the storage warehouse;

[0072] The cycle duration determination unit is used to determine the outbound cycle duration of each item in each area based on historical outbound data of goods.

[0073] The intelligent analysis and calculation module includes a storage space determination unit, a maximum outbound volume determination unit, a storage information entry unit, an analysis and calculation unit, and a database automatic update unit;

[0074] The storage space determination unit is used to monitor the storage space of each area and determine the remaining storage space volume of each area when goods enter the storage warehouse;

[0075] The maximum outbound volume determination unit is used to determine the maximum outbound volume of each type of goods by personnel within one outbound cycle based on historical outbound data of goods;

[0076] The storage information entry unit is used for manual entry by management personnel to determine the volume of each type of goods that need to enter the storage warehouse for storage;

[0077] The analysis and calculation unit is used to determine the storage volume of each type of goods in each area of the storage warehouse according to the remaining storage space volume of each area, the storage volume required for each type of goods, and the outbound cycle duration of each item in each area;

[0078] The database automatic update unit is used to determine the storage volume of each type of goods in each area and determine the storage location information, and automatically update it in the database.

[0079] The human-computer interaction display module includes a digital display unit and a monitoring and alarm unit;

[0080] The digital display unit is used to enable management personnel to view the recommended storage location information and volume of each type of goods for inbound storage through the software management platform when goods enter the storage warehouse;

[0081] The monitoring and alarm unit is used to monitor the storage space of each area and the quantity of each type of goods, and perform digital display; among them, when the quantity of goods is insufficient, replenishment information is sent to management personnel.

[0082] In this embodiment:

[0083] This system is specifically a storage warehouse goods label recognition and management system; in this system, the storage warehouse is divided into areas, and the number of divided areas n = 6; according to the stored goods in the storage warehouse, the number of types of goods m = 20;

[0084] An RFID reader is installed at the entrance and exit of the storage warehouse; the flow information of goods is tracked through RFID tags. When goods are out of the warehouse or into the warehouse, the RFID tags attached to the goods are identified by the RFID reader, and the in and out warehouse information of the goods is automatically updated in the database;

[0085] Based on the historical goods outbound data, determine the outbound cycle duration of each good in each area to obtain T m×n ; among them, a camera is used to monitor the entry and exit of personnel at the entrance and exit of the storage warehouse and identify the personnel. Taking the timestamp when the personnel enter the storage warehouse as the starting point and the timestamp when the personnel pass through the RFID reader for corresponding goods outbound as the ending point; the time period from the starting point to the ending point is used as an outbound cycle; according to the outbound goods identified by the RFID reader, determine the type, volume and corresponding storage area of the goods; according to the outbound cycle duration data of each good in each area recorded in the historical goods outbound data, determine the average value of the outbound cycle duration of each good in each area, and use the calculated average value as the outbound cycle duration of each good in each area;

[0086] Monitor the storage space of each area. When goods enter the storage warehouse, determine the remaining storage space volume sizes V1, V2,..., V of each area n ; manually entered by the management personnel to determine the volume sizes W1, W2,..., W of various types of goods that need to enter the storage warehouse for storage m ; based on the historical goods outbound data, determine the maximum outbound volume sizes Y1, Y2,..., Y of various types of goods that personnel perform outbound operations within one outbound cycle m ;

[0087] According to the remaining storage space volume sizes of each area, the storage volume sizes required for various types of goods, and the outbound cycle duration of each good in each area, determine the storage volume sizes of various types of goods in each area of the storage warehouse to satisfy the conditional formula:

[0088]

[0089] According to the calculated Z ij Determine the storage volume sizes of various types of goods in each area and determine the storage location information, and automatically update it in the database;

[0090] When goods enter the storage warehouse, the management personnel can view the recommended storage location information and volume sizes of various types of goods for inbound storage through the software management platform; monitor the quantity of various types of goods and display them digitally; among them, when the quantity of goods is insufficient, send a replenishment message to the management personnel.

[0091] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.

[0092] Finally, it should be noted that the above are only preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A tag identification management method based on data processing, characterized in that: The method comprises the following steps: S10, tracking cargo flow information through RFID tags, and recording cargo entry and exit information in the storage warehouse; when cargo enters the storage warehouse, the cargo type, volume, and storage location information are entered into the database, and the identifier on the RFID tag is searched and determined in the database; S20, dividing the storage warehouse into regions, and determining the outbound cycle length of each product in each region based on historical outbound data of the goods; S30, calculating the optimal outbound efficiency duration for all goods when outbound according to the remaining storage space in each area and the types and volumes of goods in the warehouse, and recommending the inbound storage location information for each goods according to the optimal outbound efficiency duration; S40, constructing a software management platform for storage warehouses, sending the recommended storage location information of each cargo to the management personnel, and digitally displaying the cargo in and out information and the storage volume changes of each cargo in each area; RFID readers are installed at the entrances and exits of the storage warehouse; when goods are shipped in or out of the warehouse, the RFID tags attached to the goods are identified by the RFID readers, and the in and out information of the goods is automatically updated in the database; the in and out information includes the type, volume, storage location and time stamps of the goods shipped in and out of the warehouse; The method steps of step S20 are: S201, dividing the storage warehouse into n areas; determining the number m of types of goods according to the goods stored in the storage warehouse; Where n represents the number of divided regions; S202: Based on the historical cargo outbound data, determine the outbound cycle time of each cargo in each area, and obtain T m×n ;in, t ij represents the cycle time of the i-th type of goods being shipped out of the j-th area of ​​the storage warehouse; i = 1, 2, ..., m; j = 1, 2, ..., n; Among them, cameras are used to monitor the entry and exit of personnel at the entrance and exit of the storage warehouse, and to identify the personnel, with the timestamp of the personnel entering the storage warehouse as the starting point, and the timestamp corresponding to the personnel taking the goods out of the warehouse through the RFID reader as the ending point; the time period from the starting point to the ending point is regarded as a warehouse out cycle; according to the outbound goods identified by the RFID reader, the type, volume and corresponding storage area of ​​the goods are determined; according to the outbound cycle duration data of each goods in each area recorded in the historical goods outbound data, the average outbound cycle duration of each goods in each area is determined, and the calculated average value is used as the outbound cycle duration of each goods in each area; The method steps of step S30 are: S301, monitor the storage space of each area, and when the goods enter the storage warehouse, determine the remaining storage space volume V1, V2, ..., V n ; The manager manually enters and determines the volume size W1, W2, ..., W of various types of goods that need to be stored in the storage warehouse m ; S302: Based on historical cargo outbound data, determine the maximum outbound volume Y1, Y2, ..., Y3 for various types of cargo in an outbound cycle. m ; According to the remaining storage space volume of each area, the storage volume required for each type of goods and the outbound cycle time of each type of goods in each area, the storage volume of each type of goods in each area of ​​the storage warehouse is determined to meet the conditional formula: Among them, W j represents the storage volume required for the jth type of cargo; Z ij represents the storage volume of the jth type of goods in the i-th area of ​​the storage warehouse; BT represents the calculated optimal outbound efficiency time; Y j V represents the maximum outbound volume of the jth type of goods that can be outbound by personnel in one outbound cycle; i Indicates the remaining storage space volume of the i-th area of ​​the storage warehouse; S303, according to the calculated Z ij , determine the storage volume of various types of goods in each area, and determine the storage location information, and automatically update it in the database.

2. The tag identification management method based on data processing according to claim 1 is characterized in that: When goods enter the storage warehouse, managers can view the recommended storage location information and volume size of various types of goods through the software management platform; monitor the quantity of various types of goods and display them digitally; and send replenishment information to managers when there is insufficient quantity of goods.

3. A tag identification management system based on data processing, using the tag identification management method based on data processing as claimed in claim 1, characterized in that: The system includes an in-and-out information record management module, a path time management module, an intelligent analysis and calculation module, and a human-computer interaction display module; The in-and-out information recording management module is used to track the flow information of goods through RFID tags and record the in-and-out information of goods in the storage warehouse; when the goods enter the storage warehouse, the type, volume and storage location information of the goods are entered into the database, and the identifier on the RFID tag is searched and determined in the database; the path time management module is used to divide the storage warehouse into regions, and determine the out-and-out cycle duration of each goods in each region based on historical goods out-and-out data; the intelligent analysis and calculation module is used to calculate the optimal out-and-out efficiency duration of all goods when out of the warehouse according to the remaining storage space in each region and the type and volume information of the incoming goods, and recommend the incoming storage location information of each goods according to the optimal out-and-out efficiency duration; the human-computer interaction display module is used to build a software management platform for the storage warehouse, send the recommended incoming storage location information of each goods to the management personnel, and digitally display the in-and-out information of the goods and the storage volume changes of each goods in each region.

4. The tag identification management system based on data processing according to claim 3 is characterized in that: The in-and-out information record management module includes a logistics status management unit and an information entry storage unit; The logistics status management unit is used to identify the RFID tag attached to the goods through the RFID reader when the goods are shipped out or shipped in, and automatically update the shipping information of the goods in the database; The information entry storage unit is used to record the in-and-out information of goods in the storage warehouse; the in-and-out information includes the type, volume, storage location and timestamp corresponding to the in-and-out of goods.

5. The tag identification management system based on data processing according to claim 4 is characterized in that: The path time management module includes an area division management unit, a cargo management unit and a cycle duration determination unit; The area division management unit is used to divide the storage warehouse into areas and determine the number of divided areas; The cargo management unit is used to determine the number of types of cargo according to the stored cargo in the storage warehouse; The cycle duration determination unit is used to determine the outbound cycle duration of each cargo in each area based on historical cargo outbound data.

6. The tag identification management system based on data processing according to claim 5, characterized in that: The intelligent analysis and calculation module includes a storage space determination unit, a maximum outbound volume determination unit, a storage information entry unit, an analysis and calculation unit, and a database automatic update unit; The storage space determination unit is used to monitor the storage space of each area and determine the remaining storage space volume of each area when the goods enter the storage warehouse; The maximum outbound volume determination unit is used to determine the maximum outbound volume of various types of goods that personnel can outbound within an outbound cycle based on historical goods outbound data; The storage information input unit is used for the management personnel to manually input and determine the volume of various types of goods that need to be stored in the storage warehouse; The analysis and calculation unit is used to determine the storage volume of various types of goods in each area of ​​the storage warehouse according to the remaining storage space volume of each area, the storage volume required for various types of goods, and the outbound cycle time of each type of goods in each area; The database automatic updating unit is used to determine the storage volume size of various types of goods in various areas, and determine the storage location information, and automatically update it in the database.

7. The tag identification management system based on data processing according to claim 6, characterized in that: The human-computer interaction display module includes a digital display unit and a monitoring alarm unit; The digital display unit is used for when goods enter the storage warehouse, the management personnel can view the recommended storage location information and volume of various types of goods through the software management platform; The monitoring alarm unit is used to monitor the storage space in each area and the quantity of various types of goods, and to display them digitally; when the quantity of goods is insufficient, replenishment information is sent to the management personnel.

Citation Information

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