Multi-size cell compatibility and weight identification method and material storage system
By using multi-size cell compatibility and weight recognition methods in the smart terminal cabinet, the entry and exit information of objects in the cell is recorded and calibrated in real time, the inaccuracy problem of space use judgment in the smart terminal cabinet is solved, and the accuracy and user experience of the system are improved.
Patent Information
- Application Number
- CN202510009324.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-03
- Publication Date
- 2025-05-06
AI Technical Summary
There are inaccurate problems when judging the use of spaces in the existing smart terminal cabinet, especially when the delivery person does not put the object in or the pickup person does not pick up the object, which leads to a decline in the user experience.
Multi-size cell compatibility and weight recognition methods are adopted to record the entry and exit data of objects in the cell, weigh the weight of objects in the cell, and the weight changes of the overall area, and use preset matching algorithms and calibration algorithms to obtain and calibrate cell entry and exit information in real time to ensure more accurate judgment on space usage.
By obtaining and calibrating cell entry and exit information in real time, the inaccuracy problem of the smart terminal cabinet in the judgment of space use is solved, and the accuracy and user experience of the system are improved.
Smart Images

Figure CN119941119A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of material cabinets, and more particularly to a multi-size cell compatibility and weight identification method and a material storage system. Background Art
[0002] With the development of logistics technology, the technical content of logistics management is constantly improving, giving birth to the express delivery industry. As the express delivery industry continues to develop today, due to the large delivery volume and the epidemic and other reasons, technologies such as express delivery cabinets or takeaway cabinets have been developed.
[0003] An express cabinet or takeaway cabinet is an intelligent terminal cabinet that can store multiple express parcels or takeaways. It has multiple individually controllable spaces. The delivery person uses the APP to place items in the spaces in the intelligent terminal cabinet. After placing the items and closing the cabinet door, the intelligent terminal cabinet will send a message to the recipient, allowing the recipient to pick up the item with the code.
[0004] In the process of using existing smart terminal cabinets, although the smart terminal cabinet can estimate whether there is an object in the space through the delivery person's use of the space and the recipient's collection record, if the delivery person does not put the object in or the recipient has not picked up all the objects, it is not conducive to the smart terminal cabinet's software to accurately judge the usage of its space, resulting in a decrease in the user experience. Summary of the invention
[0005] In order to enable the intelligent terminal cabinet to more accurately determine the usage of its spaces, the present application provides a multi-size cell compatibility and weight recognition method and a material storage system.
[0006] The first object of this application is to provide a multi-size cell compatibility and weight recognition method, which adopts the following technical solution: A multi-size cell compatibility and weight recognition method comprises the following steps: Record the entry and exit data of objects in multiple cells and generate cell entry and exit information; Weighing the weight of an object in a single cell to generate cell weight information; A plurality of cells are arranged on a bracket, and the weight of all cells on the bracket and the objects therein are weighed to generate regional weight information; Acquire the cell access information, the cell weight information and the regional weight information in real time, match the first accuracy of the cell access information using a preset first matching algorithm according to the change of the cell weight information, and match the second accuracy of the cell weight information using a preset second matching algorithm according to the change of the regional weight information; After obtaining the first accuracy and the second accuracy, a preset calibration algorithm is used to calculate calibration data, and a preset calibration instruction matching the calibration data is generated; The newly generated cell access information is calibrated in response to the calibration data and the calibration instruction.
[0007] By adopting the above technical scheme, the access information of objects in the cell is recorded from the perspective of the software APP, the access information of objects in the cell is recorded from the change of the weight of the object in the cell, and the access information of objects in the area is recorded from the change of the overall weight of the area where multiple cells are located. The access information recorded by the software is relatively fast and concise, the access information formed by the weight change of the object in the cell is more accurate for a single cell, and the access information formed by the weight change of the object in the area is more accurate for multiple cells. The first accuracy can be used to correct the space judgment error caused by improper operation of the software APP, and the second accuracy can be used to correct the space judgment error caused by temporary weight detection drift in a single cell. The calibration data and calibration instructions can correct the entry and exit information of the cell to realize the calibration of the material storage process, so that the smart terminal cabinet can more accurately judge the usage of its space.
[0008] Preferably, the first matching algorithm comprises: Acquire multiple timestamps of a cell access process from the cell access information, and acquire corresponding multiple cell weight information according to the multiple timestamps; Calculate the first change data of the multiple cell weight information. If the first change data is matched from a preset first accurate template, the generated content includes the accuracy of the cell input and output information and the first accuracy of the first change data; if the first change data is matched from a preset first deviation module, the generated content includes the deviation of the cell input and output information and the first accuracy of the first change data.
[0009] By adopting the above technical solution, the weight of a single cell before and after a storage process should be equal or the difference in values should be small. If the object recorded in the cell input and output information has been taken out, and the weight value of the cell before and after the storage process differs too much, it means that the record in the cell input and output information is incorrect. The first accuracy can be output based on the first change data to assist in correcting the erroneous cell input and output information.
[0010] Preferably, the second matching algorithm comprises: Acquire multiple timestamps of a single access process of multiple cells in a preset area from the cell access information, and acquire corresponding multiple cell weight information according to the multiple timestamps; Calculate the second change data of the multiple cell weight information. If the second change data is matched from the preset second accurate template, the generated content includes the accuracy of the cell input and output information and the second accuracy of the second data; if the second change data is matched from the preset second deviation module, the generated content includes the deviation of the cell input and output information and the second accuracy of the second change data.
[0011] By adopting the above technical solution, the weights of multiple cells in the area before and after a storage process should be equal or the difference in values should be small. If the object recorded in the cell input and output information has been taken out, and the weight values of multiple cells before and after the storage process differ too much, it means that the cell input and output information is incorrect. The second accuracy can be output based on the second change data to assist in correcting the erroneous cell input and output information.
[0012] Preferably, the calibration algorithm comprises: Calculating a plurality of continuous changing trends of the first accuracy to obtain a first trend value, wherein the content of the first trend value is the deviation of the cell weight information; Calculating a plurality of continuous changing trends of the second accuracy to obtain a second trend value, wherein the content of the second trend value is the deviation of the regional weight information; If the first trend value minus the second trend value is greater than the preset trend error value, multiple timestamps of a cell access process corresponding to the first accuracy are obtained from the cell access information, and the corresponding multiple area weight information is obtained based on the multiple timestamps, and the change values of the multiple area weight information before and after the access process are taken to calculate the calibration data and generate the calibration instruction; otherwise, multiple timestamps of a cell access process corresponding to the first accuracy are obtained from the cell access information, and the corresponding multiple cell weight information is obtained based on the multiple timestamps, and the change values of the multiple cell weight information before and after the access process are taken to calculate the calibration data and generate the calibration instruction.
[0013] By adopting the above technical solution, regional weight information can be calculated from multiple cell weight information. If the result of the cell weight information calculation is significantly different from the result of the regional weight information, it means that the hardware generating the cell weight information has a temporary weight detection drift. At this time, the regional weight information is used to generate calibration data and calibration instructions. Otherwise, the hardware generating the cell weight information has no temporary weight detection drift, and the cell weight information is used to generate calibration data and calibration instructions.
[0014] Preferably, the calibration algorithm further comprises: if the first trend value minus the second trend value is greater than a preset trend error value, then obtaining multiple timestamps of a cell access process corresponding to the first accuracy from the cell access information, obtaining corresponding multiple regional weight information according to the multiple timestamps, obtaining multiple change values of the regional weight information before and after the access process, and continuously calculating multiple times to generate multiple change values; The average of the multiple change values is used and the average is merged into the newly generated cell weight information as a bias value.
[0015] By adopting the above technical solution, regional weight information can be calculated from multiple cell weight information. If the result of the cell weight information calculation is significantly different from the result of the regional weight information, it means that the hardware that generates the cell weight information produces a temporary weight detection drift. At this time, the regional weight information is used to calibrate the hardware that generates the cell weight information, so that the subsequently generated cell weight information is more accurate.
[0016] The second purpose of this application is to provide a material storage system, which adopts the following technical solution: A material storage system includes the following modules: An access management module, used to record access data of objects in a plurality of cells and generate cell access information; and also used to respond to a received calibration instruction to calibrate the cell access information; A cell weighing module, arranged in a single cell, for weighing the weight of an object in a single cell and generating cell weight information; A regional weighing module, arranged on a bracket for carrying a plurality of the cells, for weighing the weight of all the cells on the bracket and the objects inside the cells, and generating regional weight information; A data processing module, which is data-connected to the access management module, the cell weighing module and the regional weighing module, and is used to obtain the cell access information, the cell weight information and the regional weight information in real time, wherein the data processing module uses a preset first matching algorithm to match the first accuracy of the cell access information according to the change of the cell weight information, and the data processing module uses a preset second matching algorithm to match the second accuracy of the cell weight information according to the change of the regional weight information; And, a data calibration module is data-connected to the data processing module and the access management module, and is used to obtain the first accuracy and the second accuracy, then calculate the calibration data using a preset calibration algorithm, and generate a preset calibration instruction that matches the calibration data, and send the calibration data and the calibration instruction to the access management module.
[0017] By adopting the above technical scheme, the access management module records the access information of objects in the cell from the perspective of the software APP, the cell weighing module records the access information of objects in the cell from the change of the weight of the object in the cell, and the regional weighing module records the access information of objects in the region from the change of the overall weight of the region where multiple cells are located. The access information recorded by the software is relatively fast and concise, the access information formed by the weight change of the object in the cell is more accurate for the record of a single cell, and the access information formed by the weight change of the object in the region is more accurate for the record of multiple cells. The data processing module uses the first accuracy to correct the space judgment error caused by improper operation of the software APP, and the data processing module uses the second accuracy to correct the space judgment error caused by temporary weight detection drift in a single cell. The calibration data and calibration instructions in the data calibration module can correct the access information of the cell to realize the calibration of the material storage process, so that the smart terminal cabinet can more accurately judge the usage of its space.
[0018] Preferably, the first matching algorithm comprises: A first acquisition unit is used to acquire multiple timestamps of a cell access process from the cell access information, and acquire corresponding multiple cell weight information according to the multiple timestamps; A first calculation unit is used to calculate the first change data of the weight information of multiple cells. If the first change data is matched from a preset first accurate template, the generated content includes the accuracy of the cell input and output information and the first accuracy of the first change data; if the first change data is matched from a preset first deviation module, the generated content includes the deviation of the cell input and output information and the first accuracy of the first change data.
[0019] By adopting the above technical solution, the first acquisition unit can obtain the weight or value of a single cell before and after a storage process. If the object recorded in the cell input and output information has been taken out, and the first calculation unit calculates that the weight value of the cell before and after the storage process is too different, it means that the record in the cell input and output information is incorrect. Employees or the system can output the first accuracy based on the first change data to assist in correcting the erroneous cell input and output information.
[0020] Preferably, the second matching algorithm comprises: A second acquisition unit is used to acquire multiple timestamps of a single access process of multiple cells in a preset area from the cell access information, and acquire corresponding multiple cell weight information according to the multiple timestamps; A second calculation unit is used to calculate the second change data of the weight information of multiple cells. If the second change data is matched from a preset second accurate template, the generated content includes the accuracy of the cell input and output information and the second accuracy of the second data; if the second change data is matched from a preset second deviation module, the generated content includes the deviation of the cell input and output information and the second accuracy of the second change data.
[0021] By adopting the above technical solution, the second acquisition unit can obtain the weight or value of multiple cells in the area before and after a storage process. If the object recorded in the cell input and output information has been taken out, and the second calculation unit calculates that the weight values of multiple cells before and after the storage process are too different, it means that the record in the cell input and output information is incorrect. Employees or the system can output the second accuracy based on the second change data to assist in correcting the erroneous cell input and output information.
[0022] Preferably, the calibration algorithm comprises: a trend calculation unit, configured to calculate a plurality of continuous changing trends of the first accuracy to obtain a first trend value, wherein the content of the first trend value is the deviation of the cell weight information; and calculate a plurality of continuous changing trends of the second accuracy to obtain a second trend value, wherein the content of the second trend value is the deviation of the area weight information; A calibration unit is used to determine if the first trend value minus the second trend value is greater than a preset trend error value, then obtain multiple timestamps of a cell access process corresponding to the first accuracy from the cell access information, obtain the corresponding multiple area weight information based on the multiple timestamps, take the change values of the multiple area weight information before and after the access process to calculate the calibration data and generate the calibration instruction; otherwise, obtain multiple timestamps of a cell access process corresponding to the first accuracy from the cell access information, obtain the corresponding multiple cell weight information based on the multiple timestamps, take the change values of the multiple cell weight information before and after the access process to calculate the calibration data and generate the calibration instruction.
[0023] By adopting the above technical solution, the trend calculation unit senses that the hardware that generates the cell weight information produces a temporary weight detection drift, and the calibration unit uses the regional weight information to generate calibration data and calibration instructions. Otherwise, the calibration unit will use the cell weight information to generate calibration data and calibration instructions.
[0024] Preferably, the calibration algorithm further comprises: a change value obtaining unit, used for determining if the first trend value minus the second trend value is greater than a preset trend error value, then obtaining multiple timestamps of a cell access process corresponding to a first accuracy from the cell access information, obtaining corresponding multiple regional weight information according to the multiple timestamps, obtaining multiple change values of the regional weight information before and after the access process, and continuously calculating multiple times to generate multiple change values; A fusion unit is used to use the average of multiple change values and fuse the average as a bias value into the newly generated cell weight information.
[0025] By adopting the above technical solution, if the change value unit perceives that the result of the cell weight information calculation is significantly different from the result of the regional weight information, it means that the hardware generating the cell weight information produces a temporary weight detection drift. The fusion unit uses the regional weight information to calibrate the hardware generating the cell weight information, so that the subsequently generated cell weight information is more accurate. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 This is a schematic diagram of a method flow of a multi-size cell compatibility and weight identification method in an embodiment of the present application; Figure 2 It is a system block diagram of a material storage system in an embodiment of the present application.
[0027] Figure numerals: 1. Access management module; 2. Cell weighing module; 3. Area weighing module; 4. Data processing module; 5. Data calibration module. DETAILED DESCRIPTION
[0028] The following is combined with Figure 1-2 This application is described in further detail.
[0029] The present application embodiment discloses a method for multi-size cell compatibility and weight recognition. Figure 1 , a multi-size cell compatibility and weight recognition method, comprising the following steps: Record the entry and exit data of objects in multiple cells and generate cell entry and exit information; Weigh the weight of the object in a single cell and generate cell weight information; A plurality of cells are arranged on a bracket, and the weight of all cells on the bracket and the objects inside the cells are weighed to generate regional weight information; Acquire cell access information, cell weight information and regional weight information in real time, and use a preset first matching algorithm to match the first accuracy of the cell access information according to the change of the cell weight information. The first matching algorithm includes: acquiring multiple timestamps of a cell access process from the cell access information, and acquiring corresponding multiple cell weight information according to the multiple timestamps; calculating multiple cell weight information to obtain first change data, if the first change data is matched from the preset first accurate template, then the generated content includes the accuracy of the cell access information and the first accuracy of the first change data; if the first change data is matched from the preset first deviation module, then the generated content includes the deviation of the cell access information and the first accuracy of the first change data.
[0030] According to the change of the regional weight information, the second accuracy of the cell weight information is matched using the preset second matching algorithm. The second matching algorithm includes: obtaining multiple timestamps of the access process of multiple cells in the preset area from the cell access information, and obtaining the corresponding multiple cell weight information according to the multiple timestamps; calculating the multiple cell weight information to obtain the second change data, if the second change data is matched from the preset second accurate template, then the generated content includes the accuracy of the cell access information and the second accuracy of the second data; if the second change data is matched from the preset second deviation module, then the generated content includes the deviation of the cell access information and the second accuracy of the second change data.
[0031] After obtaining the first accuracy and the second accuracy, the calibration data is calculated using a preset calibration algorithm, and a preset calibration instruction that matches the calibration data is generated. The calibration algorithm includes: calculating the change trends of multiple consecutive first accuracies to obtain a first trend value, the content of the first trend value is the deviation of the cell weight information; calculating the change trends of multiple consecutive second accuracies to obtain a second trend value, the content of the second trend value is the deviation of the regional weight information; if the first trend value minus the second trend value is greater than the preset trend error value, then obtaining multiple timestamps of a cell access process corresponding to the first accuracy from the cell access information, obtaining the corresponding multiple regional weight information according to the multiple timestamps, taking the change values of the multiple regional weight information before and after the access process to calculate the calibration data and generate the calibration instruction; otherwise, obtaining multiple timestamps of a cell access process corresponding to the first accuracy from the cell access information, obtaining the corresponding multiple cell weight information according to the multiple timestamps, taking the change values of the multiple cell weight information before and after the access process to calculate the calibration data and generate the calibration instruction. If the first trend value minus the second trend value is greater than the preset trend error value, multiple timestamps of a cell access process corresponding to the first accuracy are obtained from the cell input and output information, and the corresponding multiple area weight information is obtained according to the multiple timestamps, and the change values of the multiple area weight information before and after the access process are obtained, and multiple change values are generated by continuous calculation multiple times; the average of the multiple change values is used and the average is used as a bias value to be merged into the newly generated cell weight information.
[0032] The newly generated cell input and output information is calibrated in response to the calibration data and the calibration instruction. The regional weight information can be calculated from multiple cell weight information. If the result of the cell weight information calculation is significantly different from the result of the regional weight information, it means that the hardware generating the cell weight information has a temporary weight detection drift. At this time, the regional weight information is used to generate the calibration data and the calibration instruction. Otherwise, the hardware generating the cell weight information has no temporary weight detection drift, and the cell weight information is used to generate the calibration data and the calibration instruction. At the same time, the regional weight information can also be used to calibrate the hardware generating the cell weight information, so that the subsequently generated cell weight information is more accurate.
[0033] The implementation principle of a multi-size cell compatibility and weight identification method in an embodiment of the present application is as follows: the access information of objects in the cell is recorded from the perspective of the software APP, the access information of objects in the cell is recorded from the change of the weight of the object in the cell, and the access information of objects in the region is recorded from the change of the overall weight of the region where multiple cells are located. The access information recorded by the software is relatively fast and concise. The access information formed by the weight change of the object in the cell is more accurate for the record of a single cell, and the access information formed by the weight change of the object in the region is more accurate for the record of multiple cells. The weight of a single cell before and after a storage process should be equal or the difference in value is small. If the object recorded in the cell access information has been taken out, and the weight value of the cell before and after the storage process is too different, it means that the record in the cell access information is wrong. The first accuracy can be output according to the first change data to assist in correcting the erroneous cell access information. The first accuracy can be used to correct the space judgment error caused by improper operation of the software APP. The weights of multiple cells in the area before and after a storage process should be equal or have a small difference in value. If the objects recorded in the cell access information have been taken out, and the weight values of multiple cells before and after the storage process differ too much, it means that the cell access information is incorrectly recorded. The second accuracy can be output according to the second change data to assist in correcting the erroneous cell access information. The second accuracy can be used to correct the space judgment error caused by the temporary weight detection drift in a single cell. The calibration data and calibration instructions can correct the cell access information to achieve the calibration of the material storage process, so that the intelligent terminal cabinet can more accurately judge the usage of its space.
[0034] The present application also discloses a material storage system. Figure 2 , a material storage system includes the following modules: The access management module is used to record the access data of objects in multiple cells and generate cell access information; it is also used to respond to the received calibration instructions to calibrate the cell access information.
[0035] The cell weighing module is set in a single cell and is used to weigh the weight of the object in the single cell and generate the cell weight information.
[0036] The regional weighing module is arranged on a bracket for carrying a plurality of cells, and is used to weigh the weight of all cells on the bracket and the objects inside thereof, and generate regional weight information.
[0037] The data processing module is data-connected with the access management module, the cell weighing module and the regional weighing module, and is used to obtain the cell access information, the cell weight information and the regional weight information in real time. The data processing module uses a preset first matching algorithm to match the first accuracy of the cell access information according to the change of the cell weight information. The data processing module uses a preset second matching algorithm to match the second accuracy of the cell weight information according to the change of the regional weight information.
[0038] And, the data calibration module is data-connected to the data processing module and the access management module, and is used to obtain the first accuracy and the second accuracy, then use a preset calibration algorithm to calculate the calibration data, and generate a preset calibration instruction that matches the calibration data, and send the calibration data and the calibration instruction to the access management module.
[0039] The first matching algorithm includes: The first acquisition unit is used to acquire multiple timestamps of a cell access process from the cell access information, and acquire corresponding multiple cell weight information according to the multiple timestamps.
[0040] The first calculation unit is used to calculate the first change data of the weight information of multiple cells. If the first change data is matched from the preset first accurate template, the generated content includes the accuracy of the cell input and output information and the first accuracy of the first change data; if the first change data is matched from the preset first deviation module, the generated content includes the deviation of the cell input and output information and the first accuracy of the first change data.
[0041] The second matching algorithm includes: The second acquisition unit is used to acquire multiple timestamps of a single access process of multiple cells in a preset area from the cell access information, and acquire corresponding multiple cell weight information according to the multiple timestamps.
[0042] The second calculation unit is used to calculate the weight information of multiple cells to obtain second change data. If the second change data is matched from a preset second accurate template, the generated content includes the accuracy of the cell input and output information and the second accuracy of the second data; if the second change data is matched from a preset second deviation module, the generated content includes the deviation of the cell input and output information and the second accuracy of the second change data.
[0043] The calibration algorithm includes: The trend calculation unit is used to calculate the changing trends of multiple consecutive first accuracies to obtain a first trend value, the content of the first trend value is the deviation of the cell weight information; calculate the changing trends of multiple consecutive second accuracies to obtain a second trend value, the content of the second trend value is the deviation of the regional weight information.
[0044] A calibration unit is used to determine if the first trend value minus the second trend value is greater than a preset trend error value, then obtain multiple timestamps of a cell access process corresponding to the first accuracy from the cell access information, obtain the corresponding multiple area weight information according to the multiple timestamps, take the change values of the multiple area weight information before and after the access process to calculate the calibration data and generate a calibration instruction; otherwise, obtain multiple timestamps of a cell access process corresponding to the first accuracy from the cell access information, obtain the corresponding multiple cell weight information according to the multiple timestamps, take the change values of the multiple cell weight information before and after the access process to calculate the calibration data and generate a calibration instruction.
[0045] A change value obtaining unit is used to determine if the first trend value minus the second trend value is greater than a preset trend error value, then obtain multiple timestamps of a cell access process corresponding to a first accuracy from the cell input and output information, obtain the corresponding multiple area weight information according to the multiple timestamps, obtain the change values of the multiple area weight information before and after the access process, and continuously calculate multiple times to generate multiple change values.
[0046] A fusion unit is used to use the mean of multiple change values and fuse the mean as a bias value into the newly generated cell weight information.
[0047] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. A method for multi-size cell compatibility and weight recognition, characterized in that: The steps include: Record the entry and exit data of objects in multiple cells and generate cell entry and exit information; Weighing the weight of an object in a single cell to generate cell weight information; A plurality of cells are arranged on a bracket, and the weight of all cells on the bracket and the objects therein are weighed to generate regional weight information; Acquire the cell access information, the cell weight information and the regional weight information in real time, match the first accuracy of the cell access information using a preset first matching algorithm according to the change of the cell weight information, and match the second accuracy of the cell weight information using a preset second matching algorithm according to the change of the regional weight information; After obtaining the first accuracy and the second accuracy, a preset calibration algorithm is used to calculate calibration data, and a preset calibration instruction matching the calibration data is generated; The newly generated cell access information is calibrated in response to the calibration data and the calibration instruction.
2. The method according to claim 1, characterized in that: The first matching algorithm includes: Acquire multiple timestamps of a cell access process from the cell access information, and acquire corresponding multiple cell weight information according to the multiple timestamps; Calculate the first change data of the multiple cell weight information. If the first change data is matched from a preset first accurate template, the generated content includes the accuracy of the cell input and output information and the first accuracy of the first change data; if the first change data is matched from a preset first deviation module, the generated content includes the deviation of the cell input and output information and the first accuracy of the first change data.
3. The method according to claim 1, characterized in that: The second matching algorithm includes: Acquire multiple timestamps of a single access process of multiple cells in a preset area from the cell access information, and acquire corresponding multiple cell weight information according to the multiple timestamps; Calculate the second change data of the multiple cell weight information. If the second change data is matched from the preset second accurate template, the generated content includes the accuracy of the cell input and output information and the second accuracy of the second data; if the second change data is matched from the preset second deviation module, the generated content includes the deviation of the cell input and output information and the second accuracy of the second change data.
4. The method according to claim 1, characterized in that: The calibration algorithm includes: Calculating a plurality of continuous changing trends of the first accuracy to obtain a first trend value, wherein the content of the first trend value is the deviation of the cell weight information; Calculating a plurality of continuous changing trends of the second accuracy to obtain a second trend value, wherein the content of the second trend value is the deviation of the regional weight information; If the first trend value minus the second trend value is greater than the preset trend error value, multiple timestamps of a cell access process corresponding to the first accuracy are obtained from the cell access information, and the corresponding multiple area weight information is obtained based on the multiple timestamps, and the change values of the multiple area weight information before and after the access process are taken to calculate the calibration data and generate the calibration instruction; otherwise, multiple timestamps of a cell access process corresponding to the first accuracy are obtained from the cell access information, and the corresponding multiple cell weight information is obtained based on the multiple timestamps, and the change values of the multiple cell weight information before and after the access process are taken to calculate the calibration data and generate the calibration instruction.
5. The method according to claim 4, characterized in that: The calibration algorithm further includes: if the first trend value minus the second trend value is greater than a preset trend error value, then obtaining multiple timestamps of a cell access process corresponding to the first accuracy from the cell access information, obtaining corresponding multiple regional weight information according to the multiple timestamps, obtaining multiple change values of the regional weight information before and after the access process, and continuously calculating multiple times to generate multiple change values; The average of the multiple change values is used and the average is merged into the newly generated cell weight information as a bias value.
6. A material storage system, characterized in that: Includes the following modules: An access management module, used to record access data of objects in a plurality of cells and generate cell access information; and also used to respond to a received calibration instruction to calibrate the cell access information; A cell weighing module, arranged in a single cell, for weighing the weight of an object in a single cell and generating cell weight information; A regional weighing module, arranged on a bracket for carrying a plurality of the cells, for weighing the weight of all the cells on the bracket and the objects inside the cells, and generating regional weight information; A data processing module, which is data-connected to the access management module, the cell weighing module and the regional weighing module, and is used to obtain the cell access information, the cell weight information and the regional weight information in real time, wherein the data processing module uses a preset first matching algorithm to match the first accuracy of the cell access information according to the change of the cell weight information, and the data processing module uses a preset second matching algorithm to match the second accuracy of the cell weight information according to the change of the regional weight information; And, a data calibration module is data-connected to the data processing module and the access management module, and is used to obtain the first accuracy and the second accuracy, then calculate the calibration data using a preset calibration algorithm, and generate a preset calibration instruction that matches the calibration data, and send the calibration data and the calibration instruction to the access management module.
7. The system according to claim 6, characterized in that: The first matching algorithm includes: A first acquisition unit is used to acquire multiple timestamps of a cell access process from the cell access information, and acquire corresponding multiple cell weight information according to the multiple timestamps; A first calculation unit is used to calculate the first change data of the weight information of multiple cells. If the first change data is matched from a preset first accurate template, the generated content includes the accuracy of the cell input and output information and the first accuracy of the first change data; if the first change data is matched from a preset first deviation module, the generated content includes the deviation of the cell input and output information and the first accuracy of the first change data.
8. The system according to claim 6, characterized in that: The second matching algorithm includes: A second acquisition unit is used to acquire multiple timestamps of a single access process of multiple cells in a preset area from the cell access information, and acquire corresponding multiple cell weight information according to the multiple timestamps; A second calculation unit is used to calculate the second change data of the weight information of multiple cells. If the second change data is matched from a preset second accurate template, the generated content includes the accuracy of the cell input and output information and the second accuracy of the second data; if the second change data is matched from a preset second deviation module, the generated content includes the deviation of the cell input and output information and the second accuracy of the second change data.
9. The system according to claim 6, characterized in that: The calibration algorithm includes: a trend calculation unit, configured to calculate a plurality of continuous changing trends of the first accuracy to obtain a first trend value, wherein the content of the first trend value is the deviation of the cell weight information; and calculate a plurality of continuous changing trends of the second accuracy to obtain a second trend value, wherein the content of the second trend value is the deviation of the area weight information; A calibration unit is used to determine if the first trend value minus the second trend value is greater than a preset trend error value, then obtain multiple timestamps of a cell access process corresponding to the first accuracy from the cell access information, obtain the corresponding multiple area weight information based on the multiple timestamps, take the change values of the multiple area weight information before and after the access process to calculate the calibration data and generate the calibration instruction; otherwise, obtain multiple timestamps of a cell access process corresponding to the first accuracy from the cell access information, obtain the corresponding multiple cell weight information based on the multiple timestamps, take the change values of the multiple cell weight information before and after the access process to calculate the calibration data and generate the calibration instruction.
10. The system according to claim 9, characterized in that: The calibration algorithm also includes: a change value obtaining unit, used for determining if the first trend value minus the second trend value is greater than a preset trend error value, then obtaining multiple timestamps of a cell access process corresponding to a first accuracy from the cell access information, obtaining corresponding multiple regional weight information according to the multiple timestamps, obtaining multiple change values of the regional weight information before and after the access process, and continuously calculating multiple times to generate multiple change values; A fusion unit is used to use the average of multiple change values and fuse the average as a bias value into the newly generated cell weight information.