A management method applied to tire storage system
By collecting warehouse environmental information and tire information in real time, calculating environmental impact coefficients and aging coefficients, and adjusting tire storage locations, the aging problem caused by environmental factors in the tire storage system is solved, and orderly tire management is achieved.
Patent Information
- Application Number
- CN202411078067.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-07
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2044-08-07
AI Technical Summary
The prior art cannot effectively manage tire aging caused by environmental factors in tire storage systems, resulting in messy storage.
By collecting warehouse environmental information and tire information in real time, calculating environmental impact coefficients and tire aging coefficients, adjusting tire storage locations based on risk values, and realizing warehousing control of tires.
It effectively reduces the messy tire storage situation in the tire storage system and improves the efficiency of tire screening.
Smart Images

Figure CN119168531B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of management and control technology, and in particular to a management method applied to a tire storage system. Background Art
[0002] A warehousing system manages warehouses and the materials stored therein, using them to store and safeguard goods. "Warehouse," also known as a warehouse, is a building or site for storing goods. It can be a house, large container, cave, or specific location, and serves to store and protect goods. "Chu" means to collect and store for use, and has the connotations of collecting, storing, and delivering for use. When applied to tangible items, it is also called storage. "Warehousing" is the practice of using a warehouse to store or hold items that are not immediately needed. Simply put, warehousing is the practice of storing goods in a specific location.
[0003] In the related art, in a tire storage system, tires may age in the warehouse due to environmental factors. However, in the existing art, it is impossible to perform storage control and management of tires based on the aging phenomenon of tires, and storage control and management of tires are not performed from the perspective of tire use, resulting in disorganized storage of tires in the tire storage system, which requires improvement. Summary of the Invention
[0004] In response to the deficiencies of the prior art, the present application provides a management method for a tire storage system.
[0005] This application provides a management method for a tire storage system, which adopts the following technical solutions:
[0006] A management method applied to a tire storage system comprises the following steps:
[0007] Collect the corresponding environmental information and tire information in the target warehouse in real time;
[0008] Determining an environmental impact coefficient corresponding to the target warehouse based on the corresponding environmental information in the target warehouse, and determining a tire aging coefficient based on the environmental impact coefficient;
[0009] Determining risk values corresponding to tires in a target warehouse based on the tire aging coefficient and the tire information;
[0010] The risk value corresponding to the tires in the target warehouse is compared with the preset risk value, and the storage location of the tires in the target warehouse is adjusted and controlled based on the comparison results.
[0011] Preferably, the environmental information includes the temperature value, humidity value and light intensity corresponding to the target warehouse, and the tire information includes the location information of the tire, the production date corresponding to the tire and the usage information corresponding to the tire.
[0012] Preferably, the environmental impact coefficient corresponding to the target warehouse is determined based on the corresponding environmental information in the target warehouse, specifically including:
[0013] The detection device confirms the temperature value of the target warehouse at each detection time node, and calculates the difference between the temperature value corresponding to each detection time node and the reference temperature value to confirm the temperature difference corresponding to each detection time node, and then calculates the average temperature difference corresponding to each detection time node to obtain the average temperature difference corresponding to the target warehouse at each detection time node, and sets the average temperature difference as the actual temperature difference corresponding to the target warehouse. ;
[0014] The humidity value of the target warehouse at each detection time node is confirmed by the detection device, and the humidity value corresponding to each detection time node is calculated with the reference humidity value to determine the humidity difference value corresponding to each detection time node, and then the average humidity difference value corresponding to each detection time node is calculated to obtain the average humidity difference value corresponding to each detection time node of the target warehouse, and the average humidity difference value is set as the actual humidity difference value corresponding to the target warehouse. ;
[0015] Extract the light intensity value corresponding to each detection time node in the target warehouse from the corresponding environmental information in the target warehouse, calculate the average light intensity value corresponding to the target warehouse by mean calculation, and set the average light intensity value as the actual light intensity value corresponding to the target warehouse ;
[0016] According to the actual temperature difference corresponding to the target warehouse The actual light intensity value corresponding to the target warehouse , calculated by the formula , and obtain the temperature influence coefficient corresponding to the target warehouse ,in, Expressed as the reference temperature difference corresponding to the target warehouse, Expressed as the allowable difference corresponding to the temperature difference, Expressed as the temperature influence coefficient corresponding to the unit light intensity value;
[0017] According to the actual humidity difference corresponding to the target warehouse The actual light intensity value corresponding to the target warehouse , calculated by the formula , and obtain the humidity influence coefficient corresponding to the target warehouse ,in, Expressed as the reference humidity difference corresponding to the target warehouse, Expressed as the allowable difference corresponding to the humidity difference, Expressed as the humidity influence coefficient corresponding to the unit light intensity value;
[0018] The temperature influence coefficient corresponding to the target warehouse Humidity impact coefficient corresponding to the target warehouse Substitute into the formula , calculate the environmental impact coefficient corresponding to the target warehouse ,in, They are respectively expressed as the weight factors corresponding to the temperature influence coefficient and the humidity influence coefficient.
[0019] Preferably, determining the tire aging coefficient according to the environmental impact coefficient specifically includes:
[0020] Obtain the first detection time interval corresponding to when the environmental impact coefficient is higher than the preset environmental impact threshold based on the environmental impact coefficient corresponding to the target warehouse , and obtain the second detection time interval corresponding to when the environmental impact coefficient is lower than the preset environmental impact threshold ;
[0021] Obtain the aging curve of tires in the target warehouse over time within the preset detection time interval ;
[0022] By calculating the formula , and obtain the tire aging coefficient corresponding to the target warehouse ,in, Expressed as the standard aging rate corresponding to the tire.
[0023] Preferably, determining the risk value corresponding to the tires in the target warehouse based on the tire aging coefficient and the tire information specifically includes:
[0024] Extract the tire location information and the tire's corresponding production date from the tire information, and then confirm the tire's corresponding production time ;
[0025] By calculating the formula , and obtain the risk value corresponding to the tires in the target warehouse ,in, Expressed as the correction factor, They are respectively expressed as weight coefficients corresponding to the environmental impact coefficient and the tire aging coefficient, Expressed as the position weight coefficient corresponding to the tire's position.
[0026] Preferably, the risk value corresponding to the tires in the target warehouse is compared with a preset risk value, and the storage location of the tires in the target warehouse is adjusted and controlled based on the comparison result, specifically including:
[0027] The risk value corresponding to the tires in the target warehouse Compare with the preset risk value;
[0028] like When the tire is stored in the area to be processed;
[0029] like When the tire is stored in the first area, it is further processed;
[0030] like , then the tire is stored in the second area.
[0031] Preferably, the further processing process specifically includes:
[0032] Extract the maintenance times of tires in the target warehouse based on the usage information of tires in the target warehouse , times used The usage duration corresponding to each usage count , Indicated as the number corresponding to each usage count, ;
[0033] By calculating the formula , and obtain the usage risk value corresponding to the tires in the target warehouse ,in, Expressed as the impact coefficient corresponding to the unit usage time, Expressed as a preset correction factor;
[0034] When the usage risk value of the tires in the target warehouse When the preset usage risk value threshold is exceeded, the tire is stored in the waiting area; otherwise, it is retained in the first area.
[0035] Preferably, it also includes:
[0036] Obtain usage risk values corresponding to tires in the first area, and sequentially sort, adjust, and control the tires in the first area according to the size of the usage risk values corresponding to the tires in the first area.
[0037] Preferably, a management method applied to a tire storage system is implemented by the following management system applied to a tire storage system:
[0038] A management system applied to a tire storage system, comprising:
[0039] Information collection module, used to collect corresponding environmental information and tire information in the target warehouse in real time;
[0040] An information analysis module, configured to determine an environmental impact coefficient corresponding to the target warehouse based on the corresponding environmental information in the target warehouse, and to determine a tire aging coefficient based on the environmental impact coefficient;
[0041] a risk value confirmation module, configured to confirm the risk value corresponding to the tires in the target warehouse based on the tire aging coefficient and the tire information;
[0042] The adjustment control module is used to compare the risk value corresponding to the tires in the target warehouse with the preset risk value, and adjust and control the storage position of the tires in the target warehouse based on the comparison result.
[0043] In summary, this application includes at least one of the following beneficial technical effects:
[0044] The present invention provides a management method for a tire storage system, which confirms an environmental impact coefficient corresponding to a target warehouse based on environmental information corresponding to the target warehouse, and confirms a tire aging coefficient based on the environmental impact coefficient. Then, based on the tire aging coefficient and the tire information, a risk value corresponding to the tires in the target warehouse is determined. The risk value corresponding to the tires in the target warehouse is compared with a preset risk value. Then, based on the comparison result, the storage position of the tires in the target warehouse is adjusted and controlled, thereby effectively controlling and managing the storage of tires according to the aging phenomenon of the tires, thereby effectively reducing the occurrence of disorderly storage of tires in the tire storage system.
[0045] By analyzing and processing the usage information corresponding to the tires in the target warehouse, the usage risk value corresponding to the tires in the target warehouse is confirmed, and then the storage position of the tires in the target warehouse is adjusted and controlled based on the usage risk value. Further, the sorting, adjustment and control of the tires in the first area are performed based on the usage risk value, and then the storage control and management of the tires are effectively carried out according to the usage angle of the tires, thereby effectively reducing the occurrence of disorganized tire storage in the tire storage system. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] Figure 1 This is a flow chart of a method for managing a tire storage system according to an embodiment of the present application.
[0047] Figure 2 This is a system diagram of an embodiment of the present application applied to the management of a tire storage system. DETAILED DESCRIPTION
[0048] The following is combined with Figure 1-2 This application is described in further detail.
[0049] Example 1
[0050] The embodiment of the present application discloses a management method applied to a tire storage system.
[0051] Reference Figure 1 A management method for a tire storage system includes the following steps:
[0052] S1. Real-time collection of environmental information and tire information within the target warehouse;
[0053] S2. Confirm the environmental impact coefficient of the target warehouse according to the corresponding environmental information in the target warehouse, and confirm the tire aging coefficient according to the environmental impact coefficient;
[0054] S3 based on the tire aging coefficient and the tire information to confirm the target warehouse tire corresponding risk value;
[0055] S4. Compare the risk value corresponding to the tires in the target warehouse with the preset risk value, and adjust and control the storage location of the tires in the target warehouse based on the comparison result.
[0056] Through the above technical solution, the embodiment of the present application collects the corresponding environmental information and tire information in the target warehouse in real time, and then confirms the environmental impact coefficient and tire aging coefficient corresponding to the target warehouse, and confirms the risk value corresponding to the tires in the target warehouse based on the tire aging coefficient and tire information. By analyzing the risk value corresponding to the tires in the target warehouse and the preset risk value, the tire storage position in the target warehouse is adjusted and controlled. Through the above settings, the target warehouse can be detected and analyzed based on environmental factors, and the aging conditions of the tires in the target warehouse can be analyzed and processed, and the tires can be stored and controlled according to the aging phenomenon of the tires, thereby effectively reducing the occurrence of disorderly tire storage in the tire storage system.
[0057] Furthermore, the environmental information includes the temperature value, humidity value and light intensity corresponding to the target warehouse, and the tire information includes the location information of the tire, the production date corresponding to the tire and the usage information corresponding to the tire.
[0058] Through the above technical solution, the temperature, humidity and light intensity corresponding to the target warehouse are the main reasons affecting the aging of tires in the target warehouse. Among them, the temperature value that is too high, the humidity value that is too low or the light intensity that is too strong in the warehouse will cause the tires to age faster. Then, the tires are stored and managed according to their aging degree. On the one hand, it can improve the efficiency of staff in screening and using tires, and on the other hand, it can reduce the occurrence of disorganized tire storage in the tire storage system.
[0059] Specifically, the usage information corresponding to the tire includes the number of maintenance times, the number of uses, and the usage duration corresponding to each number of uses.
[0060] It should be noted that the environmental impact coefficient of the target warehouse is determined based on the corresponding environmental information in the target warehouse, including:
[0061] The detection device confirms the temperature value of the target warehouse at each detection time node, and calculates the difference between the temperature value corresponding to each detection time node and the reference temperature value to confirm the temperature difference corresponding to each detection time node, and then calculates the average temperature difference corresponding to each detection time node to obtain the average temperature difference corresponding to the target warehouse at each detection time node, and sets the average temperature difference as the actual temperature difference corresponding to the target warehouse. ;
[0062] The humidity value of the target warehouse at each detection time node is confirmed by the detection device, and the humidity value corresponding to each detection time node is calculated with the reference humidity value to determine the humidity difference value corresponding to each detection time node, and then the average humidity difference value corresponding to each detection time node is calculated to obtain the average humidity difference value corresponding to each detection time node of the target warehouse, and the average humidity difference value is set as the actual humidity difference value corresponding to the target warehouse. ;
[0063] Specifically, the temperature value corresponding to each detection time node is detected by a temperature sensor, and the humidity value corresponding to each detection time node is detected by a humidity sensor.
[0064] Extract the light intensity value corresponding to each detection time node in the target warehouse from the corresponding environmental information in the target warehouse, calculate the average light intensity value corresponding to the target warehouse by mean calculation, and set the average light intensity value as the actual light intensity value corresponding to the target warehouse ;
[0065] According to the actual temperature difference corresponding to the target warehouse The actual light intensity value corresponding to the target warehouse , calculated by the formula , and obtain the temperature influence coefficient corresponding to the target warehouse ,in, Expressed as the reference temperature difference corresponding to the target warehouse, Expressed as the allowable difference corresponding to the temperature difference, Expressed as the temperature influence coefficient corresponding to the unit light intensity value;
[0066] According to the actual humidity difference corresponding to the target warehouse The actual light intensity value corresponding to the target warehouse , calculated by the formula , and obtain the humidity influence coefficient corresponding to the target warehouse ,in, Expressed as the reference humidity difference corresponding to the target warehouse, Expressed as the allowable difference corresponding to the humidity difference, Expressed as the humidity influence coefficient corresponding to the unit light intensity value;
[0067] The temperature influence coefficient corresponding to the target warehouse Humidity impact coefficient corresponding to the target warehouse Substitute into the formula , calculate the environmental impact coefficient corresponding to the target warehouse ,in, They are respectively expressed as the weight factors corresponding to the temperature influence coefficient and the humidity influence coefficient.
[0068] Through the above technical solution, by analyzing the temperature influence coefficient corresponding to the target warehouse and the humidity influence coefficient corresponding to the target warehouse, the environmental influence coefficient corresponding to the target warehouse is comprehensively obtained, and then the aging phenomenon of the tires in the warehouse is analyzed according to the environmental influence coefficient, and then the tires are further controlled and managed according to the aging phenomenon of the tires.
[0069] Furthermore, determining the tire aging coefficient according to the environmental impact coefficient specifically includes:
[0070] Obtain the first detection time interval corresponding to when the environmental impact coefficient is higher than the preset environmental impact threshold based on the environmental impact coefficient corresponding to the target warehouse , and obtain the second detection time interval corresponding to when the environmental impact coefficient is lower than the preset environmental impact threshold ;
[0071] Obtain the aging curve of tires in the target warehouse over time within the preset detection time interval ;
[0072] By calculating the formula , and obtain the tire aging coefficient corresponding to the target warehouse ,in, Expressed as the standard aging rate corresponding to the tire.
[0073] It should be noted that determining the risk value corresponding to the tires in the target warehouse based on the tire aging coefficient and the tire information specifically includes:
[0074] Extract the tire location information and the tire's corresponding production date from the tire information, and then confirm the tire's corresponding production time ;
[0075] By calculating the formula , and obtain the risk value corresponding to the tires in the target warehouse ,in, Expressed as the correction factor, They are respectively expressed as weight coefficients corresponding to the environmental impact coefficient and the tire aging coefficient, Expressed as the position weight coefficient corresponding to the tire's position.
[0076] Furthermore, the risk value corresponding to the tires in the target warehouse is compared with the preset risk value, and the storage location of the tires in the target warehouse is adjusted and controlled based on the comparison result, specifically including:
[0077] The risk value corresponding to the tires in the target warehouse Compare with the preset risk value;
[0078] like When the tire is stored in the area to be processed;
[0079] Specifically, the area to be processed is set as a retreading area, that is, the tires stored in the area to be processed are all unusable tires.
[0080] like When the tire is stored in the first area, it is further processed;
[0081] like , then the tire is stored in the second area.
[0082] Specifically, the first area is set as a used goods area, and the second area is set as a new goods area.
[0083] It should be noted that the further processing process specifically includes:
[0084] Extract the maintenance times of tires in the target warehouse based on the usage information of tires in the target warehouse , times used The usage duration corresponding to each usage count , Indicated as the number corresponding to each usage count, ;
[0085] By calculating the formula , and obtain the usage risk value corresponding to the tires in the target warehouse ,in, Expressed as the impact coefficient corresponding to the unit usage time, Expressed as a preset correction factor;
[0086] When the usage risk value of the tires in the target warehouse When the preset usage risk value threshold is exceeded, the tire is stored in the waiting area; otherwise, it is retained in the first area.
[0087] Furthermore, it also includes:
[0088] Obtain usage risk values corresponding to tires in the first area, and sequentially sort, adjust, and control the tires in the first area according to the size of the usage risk values corresponding to the tires in the first area.
[0089] Specifically, the tires can be stored in ascending order according to their usage risk values at the tire storage location, so that when workers select tires, they do not need to spend more time on selection and can select them in the order of arrangement, further improving the screening efficiency of the workers.
[0090] Reference Figure 2 A management method applied to a tire storage system is implemented by the following management system applied to the tire storage system:
[0091] A management system applied to a tire storage system, comprising:
[0092] Information collection module, used to collect corresponding environmental information and tire information in the target warehouse in real time;
[0093] An information analysis module, configured to determine an environmental impact coefficient corresponding to the target warehouse based on the corresponding environmental information in the target warehouse, and to determine a tire aging coefficient based on the environmental impact coefficient;
[0094] a risk value confirmation module, configured to confirm the risk value corresponding to the tires in the target warehouse based on the tire aging coefficient and the tire information;
[0095] The adjustment control module is used to compare the risk value corresponding to the tires in the target warehouse with the preset risk value, and adjust and control the storage position of the tires in the target warehouse based on the comparison result.
[0096] The above content is merely an example and explanation of the concept of the present invention. Those skilled in the art may make various modifications or additions to the described specific embodiments or replace them in a similar manner. As long as they do not deviate from the concept of the invention or exceed the scope defined by the claims, they should all fall within the scope of protection of the present invention.
[0097] Throughout this specification, references to terms such as "one embodiment," "example," or "specific example" indicate that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0098] The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. These preferred embodiments do not exhaustively describe all details, nor do they limit the present invention to specific embodiments. Obviously, many modifications and variations are possible based on the contents of this specification. These embodiments are selected and described in detail in this specification to better explain the principles and practical applications of the present invention, thereby enabling those skilled in the art to better understand and utilize the present invention. The present invention is limited only by the claims and their full scope and equivalents.
Claims
1. A management method applied to a tire storage system, characterized in that: The following steps are involved: Collect the corresponding environmental information and tire information in the target warehouse in real time; The environmental information includes the temperature value, humidity value and light intensity corresponding to the target warehouse, and the tire information includes the location information of the tire, the production date of the tire and the usage information of the tire; Determining an environmental impact coefficient corresponding to the target warehouse based on the corresponding environmental information in the target warehouse, and determining a tire aging coefficient based on the environmental impact coefficient; Determining risk values corresponding to tires in a target warehouse based on the tire aging coefficient and the tire information; Determining the risk value corresponding to the tires in the target warehouse based on the tire aging coefficient and the tire information specifically includes: Extract the tire location information and the tire's corresponding production date from the tire information, and then confirm the tire's corresponding production time ; By calculating the formula , and obtain the risk value corresponding to the tires in the target warehouse ,in, Expressed as the correction factor, Environmental impact coefficients , tire aging coefficient The corresponding weight coefficient is, Expressed as the position weight coefficient corresponding to the tire position; The risk value corresponding to the tires in the target warehouse is compared with the preset risk value, and the storage location of the tires in the target warehouse is adjusted and controlled based on the comparison results.
2. A management method for a tire storage system according to claim 1, characterized in that: Confirm the environmental impact coefficient of the target warehouse based on the corresponding environmental information in the target warehouse, including: The detection device confirms the temperature value of the target warehouse at each detection time node, and calculates the difference between the temperature value corresponding to each detection time node and the reference temperature value to confirm the temperature difference corresponding to each detection time node, and then calculates the average temperature difference corresponding to each detection time node to obtain the average temperature difference corresponding to the target warehouse at each detection time node, and sets the average temperature difference as the actual temperature difference corresponding to the target warehouse. ; The humidity value of the target warehouse at each detection time node is confirmed by the detection device, and the humidity value corresponding to each detection time node is calculated with the reference humidity value to determine the humidity difference value corresponding to each detection time node, and then the average humidity difference value corresponding to each detection time node is calculated to obtain the average humidity difference value corresponding to each detection time node of the target warehouse, and the average humidity difference value is set as the actual humidity difference value corresponding to the target warehouse. ; Extract the light intensity value corresponding to each detection time node in the target warehouse from the corresponding environmental information in the target warehouse, calculate the average light intensity value corresponding to the target warehouse by mean calculation, and set the average light intensity value as the actual light intensity value corresponding to the target warehouse ; According to the actual temperature difference corresponding to the target warehouse The actual light intensity value corresponding to the target warehouse , calculated by the formula , and obtain the temperature influence coefficient corresponding to the target warehouse ,in, Expressed as the reference temperature difference corresponding to the target warehouse, Expressed as the allowable difference corresponding to the temperature difference, Expressed as the temperature influence coefficient corresponding to the unit light intensity value; According to the actual humidity difference corresponding to the target warehouse The actual light intensity value corresponding to the target warehouse , calculated by the formula , and obtain the humidity influence coefficient corresponding to the target warehouse ,in, Expressed as the reference humidity difference corresponding to the target warehouse, Expressed as the allowable difference corresponding to the humidity difference, Expressed as the humidity influence coefficient corresponding to the unit light intensity value; The temperature influence coefficient corresponding to the target warehouse Humidity impact coefficient corresponding to the target warehouse Substitute into the formula , calculate the environmental impact coefficient corresponding to the target warehouse ,in, They are respectively expressed as the weight factors corresponding to the temperature influence coefficient and the humidity influence coefficient.
3. A management method for a tire storage system according to claim 2, characterized in that: The tire aging coefficient is determined based on the environmental impact coefficient, specifically including: Obtain the first detection time interval corresponding to when the environmental impact coefficient is higher than the preset environmental impact threshold based on the environmental impact coefficient corresponding to the target warehouse , and obtain the second detection time interval corresponding to when the environmental impact coefficient is lower than the preset environmental impact threshold ; Obtain the aging curve of tires in the target warehouse over time within the preset detection time interval ; By calculating the formula , and obtain the tire aging coefficient corresponding to the target warehouse ,in, Expressed as the standard aging rate corresponding to the tire.
4. A management method for a tire storage system according to claim 3, characterized in that: Compare the risk values corresponding to the tires in the target warehouse with the preset risk values, and adjust and control the storage location of the tires in the target warehouse based on the comparison results, specifically including: The risk value corresponding to the tires in the target warehouse Compare with the preset risk value; like When the tire is stored in the area to be processed; like When the tire is stored in the first area, it is further processed; like , then the tire is stored in the second area.
5. A management method for a tire storage system according to claim 4, characterized in that: The further processing process includes: Extract the maintenance times of tires in the target warehouse based on the usage information of tires in the target warehouse , times used The usage duration corresponding to each usage count , Indicated as the number corresponding to each usage count, ; By calculating the formula , and obtain the usage risk value corresponding to the tires in the target warehouse ,in, Expressed as the impact coefficient corresponding to the unit usage time, Expressed as a preset correction factor; When the usage risk value of the tires in the target warehouse When the preset usage risk value threshold is exceeded, the tire is stored in the waiting area; otherwise, it is retained in the first area.
6. A management method for a tire storage system according to claim 5, characterized in that: Also includes: Obtain usage risk values corresponding to tires in the first area, and sequentially sort, adjust, and control the tires in the first area according to the size of the usage risk values corresponding to the tires in the first area.
7. The management method for a tire storage system according to claim 1, characterized in that: A management method applied to a tire storage system is implemented by the following management system applied to the tire storage system: A management system applied to a tire storage system, comprising: Information collection module, used to collect corresponding environmental information and tire information in the target warehouse in real time; The environmental information includes the temperature value, humidity value and light intensity corresponding to the target warehouse, and the tire information includes the location information of the tire, the production date of the tire and the usage information of the tire; An information analysis module, configured to determine an environmental impact coefficient corresponding to the target warehouse based on the corresponding environmental information in the target warehouse, and to determine a tire aging coefficient based on the environmental impact coefficient; a risk value confirmation module, configured to confirm the risk value corresponding to the tires in the target warehouse based on the tire aging coefficient and the tire information; Determining the risk value corresponding to the tires in the target warehouse based on the tire aging coefficient and the tire information specifically includes: Extract the tire location information and the tire's corresponding production date from the tire information, and then confirm the tire's corresponding production time ; By calculating the formula , and obtain the risk value corresponding to the tires in the target warehouse ,in, Expressed as the correction factor, Environmental impact coefficients , tire aging coefficient The corresponding weight coefficient is Expressed as the position weight coefficient corresponding to the tire position; The adjustment control module is used to compare the risk value corresponding to the tires in the target warehouse with the preset risk value, and adjust and control the storage position of the tires in the target warehouse based on the comparison result.
Citation Information
Patent Citations
Tire cover service life management system and tire cover service life management method
CN115335243A
Medicine warehouse management method and system
CN116562768A