A lithium battery identification report generation method, device, equipment and medium

By receiving and verifying the identified Bill of Materials (BOM) list of lithium batteries, the system automatically generates identification reports, solving the problem of untimely information caused by manual identification, ensuring the timeliness and completeness of lithium battery identification reports, and meeting the safety requirements of air transport.

CN115239286BActive Publication Date: 2025-11-18INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202210836052.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-15
Publication Date
2025-11-18
Estimated Expiration
2042-07-15

AI Technical Summary

Technical Problem

In the current lithium battery identification process, manual identification and data collection lead to untimely or incomplete information transmission, affecting the progress of air transport and making it difficult to meet the identification requirements stipulated in UN38.3.

Method used

By receiving the product's BOM (Bill of Materials) list, verifying the lithium battery's identification data, checking its completeness, and generating a lithium battery identification report, the identification process is automated, ensuring timely and complete data transmission.

Benefits of technology

It enables the timely generation and transmission of lithium battery identification reports, meets the safety requirements of air transport, and avoids the impact of expired identification reports on transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a lithium battery identification report generation method, device and equipment and a medium, and belongs to the technical field of detection. The method is applied to a product, the product includes a plurality of lithium batteries, and the method includes the following steps: receiving an identification BOM list of the product; confirming identification data of the lithium batteries according to the identification BOM list of the product; checking the integrity of the identification data of the lithium batteries; identifying the lithium batteries according to the identification data of the lithium batteries after the checking, and generating a lithium battery identification report. The identification data of the lithium batteries can be identified and collected through the identification BOM list of the product, the identification data of the lithium batteries is generated, and the process of triggering the identification report is triggered. After the identification data is received by an identification institution, identification is performed, and a lithium battery identification report is generated. After the report is generated, the identification report is uploaded to a lithium battery identification report management system, the system feeds back to personnel triggering the lithium battery identification, and the requirements of lithium battery identification in aviation transportation can be met in a timely manner.
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Description

Technical Field

[0001] This invention relates to the field of testing technology, and in particular to a method, apparatus, equipment and medium for generating lithium battery identification reports. Background Technology

[0002] With the widespread use of lithium batteries, national monitoring of their transportation has become increasingly stringent. Products containing lithium batteries pose certain risks during transport. To ensure the safety of aviation lithium battery transportation and to prevent unsafe incidents, airports require a certification report proving that batteries awaiting transport comply with Section 38.3 (UN38.3) of Part 3 of the United Nations Manual of Tests and Criteria for the Transport of Dangerous Goods. Batteries without a UN38.3 certification report cannot be accepted.

[0003] Applications of aviation lithium battery certification: 1. Various power rechargeable batteries (such as batteries for electric vehicles, electric road vehicles, power tools, and hybrid vehicles); 2. Various mobile phone batteries (such as lithium-ion batteries, lithium polymer batteries, and nickel-metal hydride batteries); 3. Various small rechargeable batteries (such as laptop batteries, digital camera batteries, camcorder batteries, and various cylindrical batteries).

[0004] Currently, the identification of aviation lithium batteries is mostly done manually, requiring manual identification of product models, names, appearance configurations, lithium battery models, motherboard information, and other identification data. Given the large number of product models and diverse appearance configurations, as well as the differences in the use of different lithium battery models, if manual identification, data collection, and transmission are required for each identification, it may lead to untimely or incomplete information transmission, potentially causing delays in obtaining lithium battery identification reports and impacting air transport schedules.

[0005] The UN38.3 specification includes: 1.2-meter drop test: The packaging box containing lithium batteries is dropped freely from a height of 1.2 meters onto a concrete ground along three different axial directions and diagonal directions to see if each package can withstand the 1.2-meter drop test in any direction. At the same time, the battery packaging at this time must be consistent with the packaging when the batteries are cleared for export.

[0006] The secondary battery refers to a rechargeable battery or storage battery, which is a battery that can be used again after being discharged by recharging to activate the active materials. Summary of the Invention

[0007] To overcome the aforementioned technical deficiencies, the present invention aims to provide a method, apparatus, device, and medium for generating lithium battery identification reports. The method is applied to a product comprising several lithium batteries. The method includes: receiving the product's Identification Bill of Materials (BOM); verifying the identification data of the lithium batteries based on the product's BOM; verifying the completeness of the lithium battery identification data; identifying the lithium batteries based on the verified identification data; and generating a lithium battery identification report. This invention can identify and collect information from the product's BOM, generate the identification data of the lithium batteries, and trigger the identification report process. After receiving the identification data, the identification agency performs the identification and generates a lithium battery identification report. The generated report is then uploaded to a lithium battery identification report management system, which provides feedback to the personnel who triggered the lithium battery identification, thus promptly meeting the requirements for lithium battery identification in air transport.

[0008] The specific technical solutions provided by the embodiments of the present invention are as follows:

[0009] Firstly, a method for generating a lithium battery identification report is provided. The method is applied to a product comprising a plurality of lithium batteries. The method includes:

[0010] Receive the product's identified BOM list;

[0011] The identification information of the lithium battery was confirmed according to the product's BOM list;

[0012] The completeness of the identification data for the lithium battery was verified.

[0013] The lithium battery is evaluated based on the verified evaluation data, and a lithium battery evaluation report is generated.

[0014] Furthermore, before receiving the identified BOM list of the product, the process includes:

[0015] Establish a naming rule table for the main components of the product.

[0016] Furthermore, the step of confirming the identification information of the lithium battery based on the product's BOM list includes:

[0017] The identification data of the lithium battery is identified and collected based on the product's BOM list. The identification data of the lithium battery includes the identification product name information, identification product nameplate information, identification product details list, identification motherboard information, and identification lithium battery information.

[0018] Determine whether the lithium battery identification report management system includes the identification report of the lithium battery based on the collected product name information;

[0019] If yes, retrieve the lithium battery's identification report and end the process; otherwise, generate the lithium battery's identification data.

[0020] Furthermore, the step of confirming the identification data of the lithium battery based on the product's BOM list also includes:

[0021] Determine whether the product includes a mobile office card;

[0022] If yes, update the number of lithium batteries in the lithium battery identification information; otherwise, keep the number of lithium batteries in the lithium battery identification information unchanged.

[0023] Furthermore, the verification of the completeness of the lithium battery identification data includes:

[0024] Determine whether the identification data of the lithium battery is complete;

[0025] If yes, the identification data of the lithium battery will be transferred to the report identification system and archived in the lithium battery identification report management system; if not, the identification data of the lithium battery will be supplemented.

[0026] Further, the step of identifying the lithium battery based on the verified identification data and generating a lithium battery identification report includes:

[0027] Determine whether the verified identification data of the lithium battery meets the identification requirements;

[0028] If yes, the lithium battery is identified and a lithium battery identification report is generated; if no, the identification data of the verified lithium battery is improved.

[0029] Determine whether the lithium battery identification report has any missing images and / or whether the quantity of the lithium batteries is incorrect;

[0030] If yes, the lithium battery identification report will be rejected and returned to the report identification system for re-identification of the lithium battery; if no, the lithium battery identification report will be archived in the lithium battery identification report management system.

[0031] Further, after identifying the lithium battery based on the verified identification data and generating a lithium battery identification report, the process includes:

[0032] The lithium battery identification reports are categorized and stored according to the category management rules and / or validity period management rules of the lithium battery identification reports;

[0033] Determine whether the lithium battery identification report has expired;

[0034] If yes, then determine whether the lithium battery needs to be re-evaluated; if no, then classify and store the lithium battery evaluation report.

[0035] The determination of whether the lithium battery needs to be re-evaluated includes:

[0036] Determine whether the lithium battery needs to be re-evaluated;

[0037] If yes, the identification data of the lithium battery is retrieved, transmitted to the report identification system, the lithium battery is identified, and an identification report is generated; if no, the identification process ends.

[0038] Secondly, a lithium battery identification report generation device is provided, the device comprising:

[0039] The receiving module is used to receive the product's identification BOM list;

[0040] The processing module is used to confirm the identification information of the lithium battery based on the product's identification BOM list;

[0041] The verification module is used to verify the completeness of the identification data of the lithium battery.

[0042] The identification module is used to identify the lithium battery based on the verified identification data of the lithium battery and generate a lithium battery identification report.

[0043] Thirdly, a computer device is provided, the device comprising:

[0044] A memory, a processor, and a computer program stored in the memory, wherein the processor executes the computer program to implement the steps of the lithium battery identification report generation method as described in any of the first aspects.

[0045] Fourthly, a computer storage medium is provided, the medium comprising:

[0046] It stores a computer program that, when executed by the memory, implements the steps of the lithium battery identification report generation method described in any of the first aspects.

[0047] Compared with existing technologies, the technical solution provided by this invention is applied to a product, which includes several lithium batteries. The method includes: receiving the product's Identification Bill of Materials (BOM); confirming the identification data of the lithium batteries based on the product's BOM; verifying the completeness of the lithium battery identification data; identifying the lithium batteries based on the verified identification data, and generating a lithium battery identification report. This invention can identify and collect the lithium batteries through the product's Identification Bill of Materials (BOM), generate the lithium battery identification data, and trigger the identification report process. After receiving the identification data, the identification agency conducts the identification and generates a lithium battery identification report. After generating the report, the identification report is uploaded to the lithium battery identification report management system, and the system provides feedback to the personnel who triggered the lithium battery identification, which can promptly meet the requirements for lithium battery identification in air transport.

[0048] The technical solution provided by this invention automatically generates a lithium battery identification report based on the naming rules table of key identification components and the identification product name information required in the product's identification BOM list, and uses it for production and shipment. This satisfies the purpose of requiring different identification reports for different product configurations of aviation lithium batteries and achieves the timeliness of lithium battery identification report transmission.

[0049] In the technical solution provided by this invention, the battery testing agency generates a testing report based on the lithium battery testing data. After the report is completed, it is sent back to the lithium battery testing report management system. The lithium battery testing report is then classified and stored according to the category management rules and / or validity period management rules of the lithium battery testing report. Before the lithium battery testing report is close to its expiration date, the system will be triggered to retrieve the corresponding lithium battery testing data and issue a testing reminder to avoid the lithium battery testing report expiring and affecting air transport. Attached Figure Description

[0050] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0051] Figure 1 This is a first flowchart of the lithium battery identification report generation method provided in Embodiment 1 of the present invention;

[0052] Figure 2 This is a flowchart illustrating the method for generating a lithium battery identification report according to Embodiment 1 of the present invention.

[0053] Figure 3 This is a second flowchart of the lithium battery identification report generation method provided in Embodiment 2 of the present invention;

[0054] Figure 4 This is a flowchart of generating lithium battery identification data provided in Embodiment 2 of the present invention;

[0055] Figure 5 This is a flowchart of the verification process for lithium battery identification data provided in Embodiment 2 of the present invention;

[0056] Figure 6 This is a flowchart of the lithium battery identification process provided in Embodiment 2 of the present invention;

[0057] Figure 7 This is a flowchart of the lithium battery identification report management process provided in Embodiment 2 of the present invention;

[0058] Figure 8 This is a structural diagram of the lithium battery identification report generation device provided in Embodiment 3 of the present invention;

[0059] Figure 9 This is an exemplary system provided in Embodiment 5 of the present invention, which can be used to implement the various embodiments described in this application. Detailed Implementation

[0060] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this invention, and not all embodiments. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this invention.

[0061] It should be noted that, unless the context explicitly requires it, the words "comprising," "including," and similar terms in the entire specification and claims should be interpreted as encompassing rather than being exclusive or exhaustive; that is, meaning "including but not limited to."

[0062] Furthermore, in the description of this invention, unless otherwise stated, "a plurality of" means two or more.

[0063] Example 1

[0064] This invention provides a method for generating a lithium battery identification report, such as... Figure 1 As shown, the method is applied to a product, the product comprising a plurality of lithium batteries, and the method includes:

[0065] Receive the product's identified BOM list;

[0066] The identification information of the lithium battery was confirmed according to the product's BOM list;

[0067] The completeness of the identification data for the lithium battery was verified.

[0068] The lithium battery is evaluated based on the verified evaluation data, and a lithium battery evaluation report is generated.

[0069] Specifically, such as Figure 2 As shown, this invention introduces a method for generating lithium battery identification reports, implemented through various systems including product identification BOM list information identification, lithium battery identification data generation, lithium battery report identification, and lithium battery report management. The method involves an order delivery center triggering a system to identify and collect the lithium battery identification data based on the product's identification BOM list; the system then triggers relevant verification personnel to review the identification data; upon approval, the data is automatically archived and categorized, and transmitted to an identification agency; the agency completes the lithium battery identification and issues an identification report; after the report is issued, the system returns it to the triggering personnel and automatically archives the report; the archived reports are automatically categorized according to the identification year and product model name for easy system retrieval; when a lithium battery identification report expires, it is archived, triggering a new lithium battery identification application.

[0070] The beneficial effects of the technical solution provided by the embodiments of the present invention are as follows:

[0071] The technical solution provided by this invention automatically generates a lithium battery identification report based on the naming rules table of key identification components and the identification product name information required in the product's identification BOM list, and uses it for production and shipment. This satisfies the purpose of requiring different identification reports for different product configurations of aviation lithium batteries and achieves the timeliness of lithium battery identification report transmission.

[0072] In the technical solution provided by this invention, the battery testing agency generates a testing report based on the lithium battery testing data. After the report is completed, it is sent back to the lithium battery testing report management system. The lithium battery testing report is then classified and stored according to the category management rules and / or validity period management rules of the lithium battery testing report. Before the lithium battery testing report is close to its expiration date, the system will be triggered to retrieve the corresponding lithium battery testing data and issue a testing reminder to avoid the lithium battery testing report expiring and affecting air transport.

[0073] Example 2

[0074] This invention provides a method for generating a lithium battery identification report, such as... Figure 3 As shown, the method includes:

[0075] Step S01: Formulate a naming rule table for the main components of the product.

[0076] Specifically, when the product's identification BOM list is entered, an association with the information identification system is established;

[0077] The information identification system refers to the naming rules for the main components of a product when confirming the product's BOM (Bill of Materials) list, as shown in Table 1 below:

[0078]

[0079] Table 1

[0080] Here, the product is a server, the number of lithium batteries is the same as the number of lithium batteries on the server board, S is the original number of lithium batteries on the server board, and the MOC card and the smart network card include several lithium batteries.

[0081] Step S02: Receive the identification BOM list of the product.

[0082] Step S03: Confirm the identification information of the lithium battery according to the product's identification BOM list.

[0083] Step S03 also includes:

[0084] Step S031: Identify and collect the identification data of the lithium battery according to the identification BOM list of the product. The identification data of the lithium battery includes identification product name information, identification product nameplate information, identification product details list, identification motherboard information and identification lithium battery information.

[0085] Determine whether the lithium battery identification report management system includes the identification report of the lithium battery based on the collected product name information;

[0086] If yes, retrieve the lithium battery's identification report and end the process; otherwise, generate the lithium battery's identification data.

[0087] Specifically, for example, the system prioritizes identifying column B. If the identification code for column B is "f", the subsequent operation identification rules are as follows:

[0088] 1. Output identification product name operation rule: 2A+2C+2D+10D

[0089] This outputs the product name information for identification: Server INSPURSERVER XXXXXX4*2.5HDD

[0090] 2. Rules for outputting product nameplate information for authentication:

[0091] The system identifies the product name in column A as belonging to row Z by using the identification code in column B. It then retrieves the data source for row Z and fills in (1) and (2) according to the rules shown in Table 2 below:

[0092]

[0093] Table 2

[0094] Example: The system identification code "1" corresponds to the data source in row 3, and the corresponding form filling method is shown in Table 3 below:

[0095]

[0096] Table 3

[0097] 3. Output the detailed specifications of the products to be inspected:

[0098] The system uses the identification code in column B to identify the product name in column A that belongs to row X. It then retrieves the data source for row X and fills in (3)(4)(5)(6)(7) according to the following rules:

[0099] The system specifies the form filling requirements for the product details form as shown in Table 4 below:

[0100]

[0101] Table 4

[0102] Example: The system identification code "1" corresponds to the data source in row 3, which corresponds to the form filling method shown in Table 5 below:

[0103]

[0104]

[0105] Table 5

[0106] 4. Output motherboard identification information:

[0107] The system identifies the identification code b in column B and reads the corresponding model number YZMB-XXXX from column D.

[0108] 5. Output lithium battery identification information, including product name, model, and quantity:

[0109] The system prioritizes recognizing G, P, or R in column B, following this rule: Read the product model from column D and the quantity of lithium batteries (s+m) from column E.

[0110] The calculation rule is: (9C+9D)*(s+m)

[0111] Example output: s=1, m=1

[0112] GP CRXXX*2

[0113] According to the output, the lithium battery model is GP CRXXX, and the quantity is 2.

[0114] like Figure 4 As shown, the system simultaneously determines whether the lithium battery identification report management system includes the identification report of the lithium battery based on the collected identification product name information; if yes, it retrieves the identification report of the lithium battery and ends the process; if no, it passes the identification product name information to the next order system for processing and generates the identification data of the lithium battery.

[0115] Step S032: Determine whether the product includes a Mobile Office Card (MOC);

[0116] If yes, update the number of lithium batteries in the lithium battery identification information; otherwise, keep the number of lithium batteries in the lithium battery identification information unchanged.

[0117] Specifically, such as Figure 4 As shown, determine whether the product includes a mobile office card;

[0118] If yes, increment the number of lithium batteries in the lithium battery identification information by 1; otherwise, keep the number of lithium batteries in the lithium battery identification information unchanged.

[0119] Step S04: Verify the completeness of the identification data of the lithium battery.

[0120] Step S04 also includes:

[0121] Step S041: Determine whether the identification data of the lithium battery is complete;

[0122] If yes, the identification data of the lithium battery will be transferred to the report identification system and archived in the lithium battery identification report management system; if not, the identification data of the lithium battery will be supplemented.

[0123] Specifically, such as Figure 5 As shown, when lithium battery identification data is transmitted to the identification data generation system, the system verifies the completeness of the transmitted lithium battery identification data information according to the following rules:

[0124]

[0125] Table 6

[0126] Here, the judgment formula is: ②*③*④*⑤*⑥=1 is passed, and ②*③*④*⑤*⑥=0 is rejected.

[0127] If any information is incomplete, the application will be rejected, and the identification data for the lithium battery will be supplemented.

[0128] If the lithium battery identification data is complete, proceed to the next step. If the lithium battery identification data is incomplete, the system will automatically provide feedback to the relevant personnel to supplement the identification data before transmitting it, in order to ensure the completeness of the identification data.

[0129] Once the completeness of the lithium battery identification data is confirmed, the system will automatically archive it into the lithium battery identification report management system for categorized storage, so that it can be directly retrieved and used later when the certificate expires. At the same time, the system will transmit the lithium battery identification data to the identification agency and notify relevant personnel to conduct the identification.

[0130] Step S05: Analyze the lithium battery based on the verified identification data and generate a lithium battery identification report.

[0131] Step S05 also includes:

[0132] Step S051: Determine whether the verified identification data of the lithium battery meets the identification requirements;

[0133] If yes, the lithium battery is identified and a lithium battery identification report is generated; if no, the identification data of the verified lithium battery is improved.

[0134] Determine whether the lithium battery identification report has any missing images and / or whether the quantity of the lithium batteries is incorrect;

[0135] If yes, the lithium battery identification report will be rejected and returned to the report identification system for re-identification of the lithium battery; if no, the lithium battery identification report will be archived in the lithium battery identification report management system.

[0136] Specifically, such as Figure 6 As shown, after the lithium battery identification data enters the report identification system, it will prompt the relevant identification personnel to conduct identification processing. After receiving the identification application, the identification personnel will review the lithium battery identification data. If the identification data is found to be inconsistent with the identification requirements, such as errors in the identification data, it will be rejected and sent to the lithium battery identification data verification system. The system will remind the relevant personnel to correct the identification data. After the correction is completed, it will be sent back to the report identification system. If the identification data is complete, the lithium battery will be identified.

[0137] After the lithium battery identification report is completed, the identification agency uploads it to the lithium battery identification report management system. Upon receiving the report, the system names it according to the product name information in the transmitted identification materials, following the naming rule: Generated Product Name + Year of Identification, e.g., Server INSPURSERVER XXXXXX 4*2.5HDD2022. The uploaded report triggers a review by relevant personnel. If there are no issues, such as missing lithium battery or circuit board images and / or incorrect battery quantity, the report is archived in the management system. If there are no issues, such as missing lithium battery or circuit board images and / or incorrect battery quantity, the report is rejected and returned to the report identification system for re-identification of the lithium battery.

[0138] Step S06: Classify and store the lithium battery identification report according to the category management rules and / or validity period management rules of the lithium battery identification report;

[0139] Determine whether the lithium battery identification report has expired;

[0140] If yes, then determine whether the lithium battery needs to be re-evaluated; if no, then classify and store the lithium battery evaluation report.

[0141] The determination of whether the lithium battery needs to be re-evaluated includes:

[0142] Determine whether the lithium battery needs to be re-evaluated;

[0143] If yes, the identification data of the lithium battery is retrieved, transmitted to the report identification system, the lithium battery is identified, and an identification report is generated; if no, the identification process ends.

[0144] Specifically, such as Figure 7 As shown, after the lithium battery identification report is uploaded to the lithium battery identification report management system, the system will classify and store it according to the type and validity period of the lithium battery identification report.

[0145] Product Name Identifier Corresponding category folder identification code Folder Name f 0 server l 1 Original server h 10 switch j 101 server rack

[0146] Table 7

[0147] Rules for managing the validity period of appraisal reports: ED = the last four digits of the year of the appraisal report + 1010, where 1010 represents December 31st.

[0148] The rule for indicating the expiration date of an appraisal report is: NP = the last four digits of the year of the appraisal report + 10101, where 10101 represents November 30th.

[0149] It is understandable that, for example, if a lithium battery identification report expires on December 31, a reminder about the expiration of the lithium battery identification report will be sent on November 30.

[0150] When a lithium battery identification report is nearing its expiration date, the system will automatically retrieve the corresponding lithium battery identification data text from the lithium battery identification database based on the product name and category in the report and issue an expiration reminder. If identification of the lithium battery is required, the identification process will continue; otherwise, the lithium battery identification report will be marked as unusable.

[0151] Specifically, this invention introduces a method for generating lithium battery identification reports. When the product's Bill of Materials (BOM) is introduced, a naming rule table for the product's main components is established. Based on the BOM, the system identifies and collects the lithium battery's identification data. The system checks whether the lithium battery's identification report management system includes the collected product name information. If it does, the system retrieves the report; otherwise, the information identification system generates the lithium battery's identification data. This ensures the timeliness of identification data transmission from the source. The identification data system verifies the completeness of the lithium battery's identification data transmitted from the information identification system. If any parts are missing, relevant personnel are notified for review. After confirming the data is correct, the system transmits the identification data to the report identification system and stores it in the lithium battery identification report management system for future use. Upon receiving a lithium battery identification request, the report identification system notifies relevant personnel to review the identification data. After review, the report identification is performed. After the identification is completed, the lithium battery identification report is categorized and stored according to the category management rules and / or validity period management rules. When the lithium battery identification report is nearing its expiration date, the system will automatically retrieve the lithium battery identification data to provide an identification reminder, so as to avoid the expired identification report affecting air transport; that is, to realize the informatization of lithium battery identification reports and the timeliness of transmission, to meet the needs of air freight.

[0152] Here, you can also maintain the "product identifier" based on the product model, name, and front window hard drive configuration, which can effectively increase the accuracy of information identification.

[0153] The method for generating lithium battery identification reports provided in this embodiment of the invention can be improved and optimized in several ways without departing from the technical solution of this invention, and these improvements and optimizations should also be considered within the scope of protection of this invention.

[0154] This invention provides a method for generating a lithium battery identification report. The method is applied to a product comprising several lithium batteries. The method includes: receiving the product's Identification Bill of Materials (BOM); confirming the identification data of the lithium batteries based on the product's BOM; verifying the completeness of the lithium battery identification data; identifying the lithium batteries based on the verified identification data; and generating a lithium battery identification report. This invention can identify and collect the lithium battery identification data through the product's BOM, generate the lithium battery identification data, and trigger the identification report process. After receiving the identification data, the identification agency performs the identification and generates a lithium battery identification report. The generated report is then uploaded to a lithium battery identification report management system, which provides feedback to the personnel who triggered the lithium battery identification, thus promptly meeting the requirements for lithium battery identification in air transport.

[0155] Example 3

[0156] This invention provides a lithium battery identification report generation device, such as... Figure 8 As shown, the device includes a preprocessing module, a receiving module, a processing module, a verification module, an authentication module, and a report management module.

[0157] In this embodiment, the preprocessing module is used to formulate a naming rule table for the main components of the product; the receiving module is used to receive the product's identification BOM list; the processing module is used to confirm the lithium battery's identification data according to the product's identification BOM list; the verification module is used to verify the completeness of the lithium battery's identification data; and the identification module is used to identify the lithium battery according to the verified lithium battery identification data and generate a lithium battery identification report.

[0158] Furthermore, the processing module is used to identify and collect the identification data of the lithium battery according to the identification BOM list of the product. The identification data of the lithium battery includes identification product name information, identification product nameplate information, identification product details list, identification motherboard information, and identification lithium battery information.

[0159] Determine whether the lithium battery identification report management system includes the identification report of the lithium battery based on the collected product name information;

[0160] If yes, retrieve the lithium battery's identification report and end the process; otherwise, generate the lithium battery's identification data.

[0161] Furthermore, the processing module is also used to determine whether the product includes a mobile office card;

[0162] If yes, update the number of lithium batteries in the lithium battery identification information; otherwise, keep the number of lithium batteries in the lithium battery identification information unchanged.

[0163] Furthermore, the verification module is used to determine whether the identification data of the lithium battery is complete;

[0164] If yes, the identification data of the lithium battery will be transferred to the report identification system and archived in the lithium battery identification report management system; if not, the identification data of the lithium battery will be supplemented.

[0165] Furthermore, the identification module is also used to determine whether the identification data of the verified lithium battery meets the identification requirements;

[0166] If yes, the lithium battery is identified and a lithium battery identification report is generated; if no, the identification data of the verified lithium battery is improved.

[0167] Determine whether the lithium battery identification report has any missing images and / or whether the quantity of the lithium batteries is incorrect;

[0168] If yes, the lithium battery identification report will be rejected and returned to the report identification system for re-identification of the lithium battery; if no, the lithium battery identification report will be archived in the lithium battery identification report management system.

[0169] Furthermore, the report management module is used to classify and store the lithium battery identification reports according to the category management rules and / or validity period management rules of the lithium battery identification reports;

[0170] Determine whether the lithium battery identification report has expired;

[0171] If yes, then determine whether the lithium battery needs to be re-evaluated; if no, then classify and store the lithium battery evaluation report.

[0172] The determination of whether the lithium battery needs to be re-evaluated includes:

[0173] Determine whether the lithium battery needs to be re-evaluated;

[0174] If yes, the identification data of the lithium battery is retrieved, transmitted to the report identification system, the lithium battery is identified, and an identification report is generated; if no, the identification process ends.

[0175] The beneficial effects of the technical solution provided by the embodiments of the present invention are as follows:

[0176] The technical solution provided by this invention automatically generates a lithium battery identification report based on the naming rules table of key identification components and the identification product name information required in the product's identification BOM list, and uses it for production and shipment. This satisfies the purpose of requiring different identification reports for different product configurations of aviation lithium batteries and achieves the timeliness of lithium battery identification report transmission.

[0177] Example 4

[0178] This invention provides a computer device, including a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, it can perform the following method for generating a lithium battery identification report:

[0179] Receive the product's identified BOM list;

[0180] The identification information of the lithium battery was confirmed according to the product's BOM list;

[0181] The completeness of the identification data for the lithium battery was verified.

[0182] The lithium battery is evaluated based on the verified evaluation data, and a lithium battery evaluation report is generated.

[0183] The beneficial effects of the technical solution provided by the embodiments of the present invention are as follows:

[0184] In the technical solution provided by this invention, the battery testing agency generates a testing report based on the lithium battery testing data. After the report is completed, it is sent back to the lithium battery testing report management system. The lithium battery testing report is then classified and stored according to the category management rules and / or validity period management rules of the lithium battery testing report. Before the lithium battery testing report is close to its expiration date, the system will be triggered to retrieve the corresponding lithium battery testing data and issue a testing reminder to avoid the lithium battery testing report expiring and affecting air transport.

[0185] Example 5

[0186] This invention provides a computer storage medium, including a memory, a processor, and a computer program stored on the memory and executable on the processor. When the processor executes the computer program, it performs the following steps:

[0187] Receive the product's identified BOM list;

[0188] The identification information of the lithium battery was confirmed according to the product's BOM list;

[0189] The completeness of the identification data for the lithium battery was verified.

[0190] The lithium battery is evaluated based on the verified evaluation data, and a lithium battery evaluation report is generated.

[0191] Furthermore, before receiving the identified BOM list of the product, the process includes:

[0192] Establish a naming rule table for the main components of the product.

[0193] Furthermore, the step of confirming the identification information of the lithium battery based on the product's BOM list includes:

[0194] The identification data of the lithium battery is identified and collected based on the product's BOM list. The identification data of the lithium battery includes the identification product name information, identification product nameplate information, identification product details list, identification motherboard information, and identification lithium battery information.

[0195] Determine whether the lithium battery identification report management system includes the identification report of the lithium battery based on the collected product name information;

[0196] If yes, retrieve the lithium battery's identification report and end the process; otherwise, generate the lithium battery's identification data.

[0197] Furthermore, the step of confirming the identification data of the lithium battery based on the product's BOM list also includes:

[0198] Determine whether the product includes a mobile office card;

[0199] If yes, update the number of lithium batteries in the lithium battery identification information; otherwise, keep the number of lithium batteries in the lithium battery identification information unchanged.

[0200] Furthermore, the verification of the completeness of the lithium battery identification data includes:

[0201] Determine whether the identification data of the lithium battery is complete;

[0202] If yes, the identification data of the lithium battery will be transferred to the report identification system and archived in the lithium battery identification report management system; if not, the identification data of the lithium battery will be supplemented.

[0203] Further, the step of identifying the lithium battery based on the verified identification data and generating a lithium battery identification report includes:

[0204] Determine whether the verified identification data of the lithium battery meets the identification requirements;

[0205] If yes, the lithium battery is identified and a lithium battery identification report is generated; if no, the identification data of the verified lithium battery is improved.

[0206] Determine whether the lithium battery identification report has any missing images and / or whether the quantity of the lithium batteries is incorrect;

[0207] If yes, the lithium battery identification report will be rejected and returned to the report identification system for re-identification of the lithium battery; if no, the lithium battery identification report will be archived in the lithium battery identification report management system.

[0208] Further, after identifying the lithium battery based on the verified identification data and generating a lithium battery identification report, the process includes:

[0209] The lithium battery identification reports are categorized and stored according to the category management rules and / or validity period management rules of the lithium battery identification reports;

[0210] Determine whether the lithium battery identification report has expired;

[0211] If yes, then determine whether the lithium battery needs to be re-evaluated; if no, then classify and store the lithium battery evaluation report.

[0212] The determination of whether the lithium battery needs to be re-evaluated includes:

[0213] Determine whether the lithium battery needs to be re-evaluated;

[0214] If yes, the identification data of the lithium battery is retrieved, transmitted to the report identification system, the lithium battery is identified, and an identification report is generated; if no, the identification process ends.

[0215] Figure 9 This is an exemplary system provided in Embodiment 5 of the present invention that can be used to implement the various embodiments described in this application;

[0216] like Figure 9 As shown, in some embodiments, the system can function as any of the aforementioned devices for generating lithium battery qualification reports in each of the described embodiments. In some embodiments, the system may include one or more computer-readable media (e.g., system memory or NVM / storage device) having a result and one or more processors (e.g., one or more processors) coupled to the one or more computer-readable media and configured to execute the result to implement the module thereby performing the actions described in this application.

[0217] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program using related hardware. The computer program can be stored in a non-volatile computer-readable storage medium, and when executed, it can include the processes of the embodiments of the above methods. Any references to memory, storage, databases, or other media used in the embodiments provided by this invention can include non-volatile and / or volatile memory. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), dual data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), RAMbus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and RAMbus dynamic RAM (RDRAM), etc.

[0218] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0219] The embodiments described above are merely illustrative of several implementations of the present invention, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the invention patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these all fall within the protection scope of the present invention. Therefore, the protection scope of this invention patent should be determined by the appended claims.

Claims

1. A method for generating a lithium battery identification report, characterized in that, The method is applied to a product comprising a plurality of lithium batteries, and the method includes: Receive the product's identified BOM list; The identification information of the lithium battery was confirmed according to the product's BOM list; The completeness of the identification data for the lithium battery was verified. The lithium battery is evaluated based on the verified evaluation data, and a lithium battery evaluation report is generated. Determine whether the lithium battery identification report has expired; If so, when the lithium battery needs to be re-identified, the identification data of the lithium battery is retrieved, the identification data of the lithium battery is transmitted to the report identification system, the lithium battery is identified, and the lithium battery identification report is generated; if not, the lithium battery identification report is categorized and stored. When a lithium battery identification report is nearing its expiration date, the system will automatically retrieve the corresponding lithium battery identification data from the lithium battery identification database based on the product name and category in the report and issue an expiration reminder. If identification of the lithium battery is required, the identification process will continue; otherwise, the lithium battery identification report will be marked as unusable.

2. The method for generating a lithium battery identification report according to claim 1, characterized in that, Before receiving the identified BOM list of the product, the process includes: Establish a naming rule table for the main components of the product.

3. The method for generating a lithium battery identification report according to claim 1, characterized in that, The identification data for the lithium battery confirmed based on the product's BOM (Bill of Materials) includes: The identification data of the lithium battery is identified and collected based on the product's BOM list. The identification data of the lithium battery includes the identification product name information, identification product nameplate information, identification product details list, identification motherboard information, and identification lithium battery information. Determine whether the lithium battery identification report management system includes the identification report of the lithium battery based on the collected product name information; If yes, retrieve the lithium battery's identification report and end the process; otherwise, generate the lithium battery's identification data.

4. The method for generating a lithium battery identification report according to claim 1, characterized in that, The method of confirming the identification information of the lithium battery based on the product's BOM list also includes: Determine whether the product includes a mobile office card; If yes, update the number of lithium batteries in the lithium battery identification information; otherwise, keep the number of lithium batteries in the lithium battery identification information unchanged.

5. The method for generating a lithium battery identification report according to claim 1, characterized in that, The verification of the completeness of the lithium battery identification data includes: Determine whether the identification data of the lithium battery is complete; If yes, the identification data of the lithium battery will be transferred to the report identification system and archived in the lithium battery identification report management system; if not, the identification data of the lithium battery will be supplemented.

6. The method for generating a lithium battery identification report according to claim 1, characterized in that, The process of identifying the lithium battery based on the verified identification data and generating a lithium battery identification report includes: Determine whether the verified identification data of the lithium battery meets the identification requirements; If yes, the lithium battery is identified and a lithium battery identification report is generated; if no, the identification data of the verified lithium battery is improved. Determine whether the lithium battery identification report has any missing images and / or whether the quantity of the lithium batteries is incorrect; If yes, the lithium battery identification report will be rejected and returned to the report identification system for re-identification of the lithium battery; if no, the lithium battery identification report will be archived in the lithium battery identification report management system.

7. The method for generating a lithium battery identification report according to claim 1, characterized in that, After identifying the lithium battery based on the verified identification data and generating a lithium battery identification report, the process includes: The lithium battery identification reports are categorized and stored according to the category management rules and / or validity period management rules.

8. A lithium battery qualification report generation apparatus for implementing the method described in claim 1, characterized in that, The device includes: The receiving module is used to receive the product's identification BOM list; The processing module is used to confirm the identification information of the lithium battery based on the product's identification BOM list; The verification module is used to verify the completeness of the identification data of the lithium battery. The identification module is used to identify the lithium battery based on the verified identification data of the lithium battery and generate a lithium battery identification report.

9. A computer device, comprising a memory, a processor, and a computer program stored in the memory, characterized in that, The processor executes the computer program to implement the steps of the method as described in any one of claims 1 to 7.

10. A computer storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the memory, it implements the steps of the method as described in any one of claims 1 to 7.

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