Multi-area all-purpose card data management configuration method and system

By configuring a multi-regional unified card data management system, the problems of data synchronization difficulties and resource waste in multi-regional unified card systems have been solved. It has achieved integrated and unified data management without relying on the Internet, and achieved uniformity of card management and data sharing within the entire region.

CN121901340APending Publication Date: 2026-04-21AISINO CORPORATION +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
AISINO CORPORATION
Filing Date
2025-12-31
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The inability of multi-regional smart card systems to connect to the internet has led to the coexistence of multiple systems, redundant construction, lack of unified management, difficulties in data synchronization, and waste of resources, thus affecting business and management development.

Method used

The database connection information between local nodes in multiple regions and the all-in-one card data aggregation and distribution server is configured through the data management configuration tool. Card service process and personnel data are received and aggregated to generate unified personnel-card correspondence data. This data is then synchronized to the all-in-one card service management zone server through the network gateway to achieve integrated and unified data management.

Benefits of technology

Without relying on the internet, it has achieved integrated and unified management of card data across multiple regions, solved the difficulties of data synchronization, achieved uniformity and standardization of card management within the entire region, and realized data sharing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a multi-region all-purpose card data management configuration method and system. The method comprises the steps that database connection information for data interaction between a multi-region local node and an all-purpose card data summarization and distribution server is configured through a data management configuration tool; receiving card affair flow and personnel data from the card affair management special area of the one-card and issuing the card affair flow and personnel data to the corresponding local node; receiving and summarizing card making data and / or card cancelling data returned by each local node; packaging and generating latest personnel-card corresponding relation data of each region according to a preset synchronization period, and distributing the latest personnel-card corresponding relation data to local nodes of the corresponding regions; and collecting the card swiping data of each local node according to a preset collection period, merging the card swiping data to generate a unified log file, and synchronizing the unified log file to a card service management special area server of the all-purpose card through a gatekeeper. According to the method and the system, by means of a special network, the uniformity and the normalization of card service management in the whole area are realized under the condition that the Internet is not used, and real all-purpose card data sharing is achieved.
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Description

Technical Field

[0001] This invention relates to the field of data aggregation and distribution technology, and more specifically, to a multi-regional unified card data management configuration method and system. Background Technology

[0002] After years of development, multi-regional unified card systems have largely achieved coverage of business management systems across all levels of organizations. These systems enable basic personnel verification, personnel information management, card management, authorization management, and attendance management, with positive results. However, due to the inability to connect to the internet, as the application of multi-regional unified cards expands, office areas within the region typically use individual buildings as independent access control and other management systems. This leads to problems such as multiple card systems coexisting, redundant construction, lack of unified management, numerous management blind spots, difficulties in data synchronization, and a lack of interconnection and sharing of personnel information. This results in resource waste and becomes a factor hindering the business and management development of multi-regional companies. Summary of the Invention

[0003] To address the technical problems of existing multi-regional smart card services, such as the coexistence of multiple systems, redundant construction, lack of unified management leading to difficulties in data synchronization and resource waste, this invention provides a multi-regional smart card data management and configuration method and system.

[0004] According to one aspect of the present invention, the present invention provides a multi-regional unified card data management configuration method, the method comprising:

[0005] Configure the database connection information for data interaction between local nodes in multiple regions and the all-in-one card data aggregation and distribution server using the data management configuration tool;

[0006] Receive card service process and personnel data from the All-in-One Card Management Zone, and distribute the card service process and personnel data to the corresponding local nodes according to the region to which the personnel data belongs;

[0007] Receive card production data and / or card cancellation data transmitted back from each local node, and summarize the card production data and / or card cancellation data;

[0008] The latest personnel-card correspondence data for each region is generated by packaging according to a preset synchronization cycle, and the latest personnel-card correspondence data is distributed to the local nodes of the corresponding regions.

[0009] According to the preset collection cycle, the card swiping data of each local node is collected, merged to generate a unified log file, and synchronized to the all-in-one card management zone server through the network gateway.

[0010] According to another aspect of the present invention, the present invention provides a multi-regional unified card data management and configuration system, the system comprising:

[0011] The data management configuration module is used to configure the database connection information for data interaction between local nodes in multiple regions and the smart card data aggregation and distribution server through the data management configuration tool;

[0012] The downlink data distribution module is used to receive card service process and personnel data from the all-in-one card service management zone, and distribute the card service process and personnel data to the corresponding local node according to the region to which the personnel data belongs;

[0013] The uplink data receiving module is used to receive card production data and / or card cancellation data transmitted back from each local node, and to summarize the card production data and / or card cancellation data.

[0014] The data synchronization and distribution module is used to package and generate the latest personnel-card correspondence data for each region according to a preset synchronization period, and distribute the latest personnel-card correspondence data to the local nodes of the corresponding regions;

[0015] The card swipe log aggregation module is used to collect card swipe data from various local nodes according to a preset collection period, merge them into a unified log file, and synchronize it to the all-in-one card management zone server through the network gateway.

[0016] According to another aspect of the present invention, a computer-readable storage medium is provided, the storage medium storing a computer program that, when executed by a processor, implements the methods described in any of the above aspects of the present invention.

[0017] According to another aspect of the present invention, an electronic device is provided, the electronic device comprising: a processor; a memory for storing executable instructions of the processor; the processor being configured to read the executable instructions from the memory and execute the instructions to implement the method described in any of the preceding aspects of the present invention.

[0018] The multi-regional all-in-one card data management configuration method and system of the present invention includes: configuring database connection information for data interaction between local nodes in multiple regions and an all-in-one card data aggregation and distribution server through a data management configuration tool; receiving card service processes and personnel data from the all-in-one card service management zone, and distributing the card service processes and personnel data to the corresponding local nodes according to the region to which the personnel data belongs; receiving card production data and / or card cancellation data returned by each local node, and aggregating the card production data and / or card cancellation data; packaging and generating the latest personnel-card correspondence data for each region according to a preset synchronization cycle, and distributing the latest personnel-card correspondence data to the local nodes in the corresponding regions; collecting card swiping data from each local node according to a preset collection cycle, merging it to generate a unified log file, and synchronizing it to the all-in-one card service management zone server through a network gateway. The method and system utilize a dedicated network to create a separate data channel, achieving the integration, networking, and data unification of all-in-one card data on an internal regional network platform without using the Internet, realizing the uniformity and standardization of card service management throughout the region, and achieving true all-in-one card data sharing. Attached Figure Description

[0019] Exemplary embodiments of the present invention can be more fully understood by referring to the following figures:

[0020] Figure 1 A flowchart of a multi-regional unified card data management configuration method according to a preferred embodiment of the present invention;

[0021] Figure 2 This is a schematic diagram of the structure of a multi-regional unified card data management and configuration system according to a preferred embodiment of the present invention;

[0022] Figure 3 This is a schematic diagram of the structure of an electronic device according to a preferred embodiment of the present invention. Detailed Implementation

[0023] Exemplary embodiments of the invention will now be described with reference to the accompanying drawings. However, the invention may be embodied in many different forms and is not limited to the embodiments described herein. These embodiments are provided to fully and completely disclose the invention and to fully convey its scope to those skilled in the art. The terminology used in the exemplary embodiments illustrated in the drawings is not intended to limit the invention. In the drawings, the same units / elements are referred to by the same reference numerals.

[0024] Unless otherwise stated, the terms used herein (including technical terms) have their common meaning as understood by one of ordinary skill in the art. Furthermore, it is understood that terms defined in commonly used dictionaries should be understood to have a meaning consistent with the context of their relevant field, and not to be interpreted as having an idealized or overly formal meaning.

[0025] Exemplary methods

[0026] Figure 1 This is a flowchart illustrating a multi-regional unified card data management configuration method according to a preferred embodiment of the present invention. Figure 1 As shown, the multi-regional all-in-one card data management configuration method described in this preferred embodiment starts from step 101.

[0027] In step 101, the database connection information for data interaction between the local nodes in multiple regions and the smart card data aggregation and distribution server is configured using the data management configuration tool.

[0028] Preferably, the database connection information for data interaction between local nodes in multiple regions and the smart card data aggregation and distribution server is configured through a data management configuration tool, wherein:

[0029] The aggregation and distribution server is deployed in the unified card data isolation zone of the unified data center.

[0030] The database connection information includes the database server IP, SID, username, and password.

[0031] In this preferred embodiment, the aggregation and distribution service performed by the aggregation and distribution server serves as a bridge for the flow of local all-in-one card management data and all-in-one card service management zone data.

[0032] In step 102, card service process and personnel data are received from the All-in-One Card Management Zone, and the card service process and personnel data are distributed to the corresponding local nodes according to the region to which the personnel data belongs.

[0033] Preferably, the system receives card service processes and personnel data from the all-in-one card management zone, and distributes the card service processes and personnel data to the corresponding local nodes according to the region to which the personnel data belongs, wherein:

[0034] The card service process and personnel data are pushed out after being reviewed and approved by the All-in-One Card Management Zone;

[0035] The personnel data includes at least an organizational structure table, a basic personnel information table, a personnel photo information table, and a synchronization log table.

[0036] In step 103, the card production data and / or card cancellation data returned by each local node are received, and the card production data and / or card cancellation data are summarized.

[0037] In this preferred embodiment, after receiving the card service process and personnel data, the local node completes the card issuance and / or card cancellation operations locally and uploads the corresponding operation data to the aggregation and distribution server.

[0038] In step 104, the latest personnel-card correspondence data for each region is generated by packaging according to a preset synchronization cycle, and the latest personnel-card correspondence data is distributed to the local nodes of the corresponding regions.

[0039] In this preferred embodiment, to ensure that the aggregated distribution server maintains the latest personnel and card information correspondence, when personnel or card information changes at each local node, the data center adds the data change information for the day according to the time frame, packages it according to the synchronization cycle, and subsequently distributes it to each local node. The local nodes update according to the data content, ensuring the consistency of personnel and card data across the entire dataset and supporting universal card usage.

[0040] In step 105, the card swiping data of each local node is collected according to the preset collection cycle, merged to generate a unified log file, and synchronized to the all-in-one card management zone server through the network gateway.

[0041] Preferably, card-swiping data from each local node is collected according to a preset collection cycle, merged to generate a unified log file, and synchronized to the all-in-one card management zone server via a network gateway, wherein:

[0042] The log file is in TXT format and includes the card swipe time, card number, card swipe device number, and card swipe event information.

[0043] The multi-regional all-in-one card data management configuration method described in this preferred embodiment configures the database connection information for data interaction between local nodes in multiple regions and the all-in-one card data aggregation and distribution server through a data management configuration tool. Subsequently, relevant business data is obtained or distributed from each local node according to business logic, thereby creating a separate data channel with the help of a private network, realizing the interconnection and data sharing of local data in various regions without using the Internet.

[0044] Exemplary System

[0045] Figure 2 This is a schematic diagram of the structure of a multi-regional unified card data management and configuration system according to a preferred embodiment of the present invention. Figure 2 As shown, the multi-regional unified card data management and configuration system 200 of this preferred embodiment includes:

[0046] The data management configuration module 201 is used to configure the database connection information for data interaction between local nodes in multiple regions and the smart card data aggregation and distribution server through the data management configuration tool;

[0047] Downlink data distribution module 202 is used to receive card service process and personnel data from the all-in-one card service management zone, and distribute the card service process and personnel data to the corresponding local node according to the region to which the personnel data belongs;

[0048] The uplink data receiving module 203 is used to receive card production data and / or card cancellation data transmitted back from each local node, and to summarize the card production data and / or card cancellation data.

[0049] The data synchronization and distribution module 204 is used to package and generate the latest personnel-card correspondence data for each region according to a preset synchronization period, and distribute the latest personnel-card correspondence data to the local nodes of the corresponding regions;

[0050] The card swipe log aggregation module 205 is used to collect card swipe data from various local nodes according to a preset collection period, merge them into a unified log file, and synchronize it to the all-in-one card management zone server through the network gateway.

[0051] Preferably, the data management configuration module 201 configures the database connection information for data interaction between multi-regional local nodes and the all-in-one card data aggregation and distribution server through a data management configuration tool, wherein:

[0052] The aggregation and distribution server is deployed in the unified card data isolation zone of the unified data center.

[0053] The database connection information includes the database server IP, SID, username, and password.

[0054] Preferably, the downlink data distribution module 202 receives card service process and personnel data from the all-in-one card service management zone, and distributes the card service process and personnel data to the corresponding local node according to the region to which the personnel data belongs, wherein:

[0055] The card service process and personnel data are pushed out after being reviewed and approved by the All-in-One Card Management Zone;

[0056] The personnel data includes at least an organizational structure table, a basic personnel information table, a personnel photo information table, and a synchronization log table.

[0057] Preferably, the card swipe log aggregation module 205 collects card swipe data from each local node according to a preset collection cycle, merges them to generate a unified log file, and synchronizes it to the all-in-one card management zone server through a network gateway, wherein:

[0058] The log file is in TXT format and includes the card swipe time, card number, card swipe device number, and card swipe event information.

[0059] The steps of the multi-regional all-in-one card data management and configuration system and the multi-regional all-in-one card data management and configuration method for providing all-in-one card data aggregation and distribution services are the same, and the technical effects achieved are also the same, so they will not be repeated here.

[0060] Exemplary electronic devices

[0061] Figure 3 This is a schematic diagram of the structure of an electronic device according to a preferred embodiment of the present invention. Figure 3 As shown, the electronic device includes one or more processors 301 and memory 302.

[0062] The processor 301 may be a central processing unit (CPU) or other form of processing unit with data processing capabilities and / or instruction execution capabilities, and may control other components in the electronic device to perform desired functions.

[0063] The memory 302 may include one or more computer program products, which may include various forms of computer-readable storage media, such as volatile memory and / or non-volatile memory. The volatile memory may include, for example, random access memory (RAM) and / or cache memory. The non-volatile memory may include, for example, read-only memory (ROM), hard disk, flash memory, etc. One or more computer program instructions may be stored on the computer-readable storage medium, and the processor 301 may execute the program instructions to implement the multi-area unified card data management configuration method of the various embodiments disclosed above and / or other desired functions. In one example, the electronic device may also include an input device 303 and an output device 304, these components being interconnected via a bus system and / or other forms of connection mechanisms (not shown).

[0064] In addition, the input device 303 may also include, for example, a keyboard, a mouse, etc.

[0065] The output device 304 can output various information to the outside. The output device 304 may include, for example, a display, a speaker, a printer, and a communication network and its connected remote output devices, etc.

[0066] Of course, for the sake of simplicity, Figure 3 Only some of the components of the electronic device relevant to this disclosure are shown, omitting components such as buses, input / output interfaces, etc. In addition, the electronic device may include any other suitable components depending on the specific application.

[0067] Exemplary computer program products and computer-readable storage media

[0068] In addition to the methods and devices described above, embodiments of this disclosure may also be computer program products, including computer program instructions that, when executed by a processor, cause the processor to perform the steps in the multi-area all-in-one card data management configuration method according to various embodiments of this disclosure as described in the "Exemplary Methods" section above.

[0069] The computer program product can be written in any combination of one or more programming languages ​​to perform the operations of the embodiments of this disclosure. The programming languages ​​include object-oriented programming languages ​​such as Java and C++, as well as conventional procedural programming languages ​​such as C or similar languages. The program code can be executed entirely on a user's computing device, partially on a user's computing device, as a standalone software package, partially on a user's computing device and partially on a remote computing device, or entirely on a remote computing device or server.

[0070] Furthermore, embodiments of this disclosure may also be computer-readable storage media storing computer program instructions that, when executed by a processor, cause the processor to perform the steps in the multi-area all-in-one card data management configuration method according to various embodiments of this disclosure as described in the "Exemplary Methods" section above.

[0071] The computer-readable storage medium may be any combination of one or more readable media. A readable medium may be a readable signal medium or a readable storage medium. A readable storage medium may, for example, include, but is not limited to, electrical, magnetic, optical, electromagnetic, infrared, or semiconductor systems, apparatuses, or devices, or any combination thereof. More specific examples of readable storage media (a non-exhaustive list) include: electrical connections having one or more wires, portable disks, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fibers, portable compact disk read-only memory (CD-ROM), optical storage devices, magnetic storage devices, or any suitable combination thereof.

[0072] The basic principles of this disclosure have been described above with reference to specific embodiments. However, it should be noted that the advantages, benefits, and effects mentioned in this disclosure are merely examples and not limitations, and should not be considered as essential features of each embodiment of this disclosure. Furthermore, the specific details disclosed above are for illustrative and facilitative purposes only, and are not limitations. These details do not limit the scope of this disclosure to the necessity of employing the aforementioned specific details for implementation.

[0073] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on its differences from other embodiments. Similar or identical parts between embodiments can be referred to interchangeably. For system embodiments, since they largely correspond to method embodiments, the description is relatively simple; relevant parts can be referred to the descriptions in the method embodiments.

[0074] The block diagrams of devices, apparatuses, devices, and systems disclosed herein are merely illustrative examples and are not intended to require or imply that they must be connected, arranged, or configured in the manner shown in the block diagrams. As those skilled in the art will recognize, these devices, apparatuses, devices, and systems can be connected, arranged, and configured in any manner. Words such as “comprising,” “including,” “having,” etc., are open-ended terms meaning “including but not limited to,” and are used interchangeably with them. The terms “or” and “and” as used herein refer to the terms “and / or,” and are used interchangeably with them unless the context clearly indicates otherwise. The term “such as” as used herein refers to the phrase “such as but not limited to,” and is used interchangeably with it.

[0075] The apparatus and methods of this disclosure may be implemented in many ways. For example, they may be implemented by software, hardware, firmware, or any combination of software, hardware, and firmware. The above-described order of steps for the methods is for illustrative purposes only, and the steps of the methods of this disclosure are not limited to the order specifically described above unless otherwise specifically stated. Furthermore, in some embodiments, this disclosure may also be implemented as a program recorded on a recording medium, the program including machine-readable instructions for implementing the methods according to this disclosure. Thus, this disclosure also covers recording media storing programs for performing the methods according to this disclosure.

[0076] It should also be noted that in the apparatus, devices, and methods of this disclosure, the components or steps are decomposable and / or recombinable. Such decomposition and / or recombination should be considered equivalent to the present disclosure. The above description of the disclosed aspects is provided to enable any person skilled in the art to make or use this disclosure. Various modifications to these aspects will be readily apparent to those skilled in the art, and the general principles defined herein can be applied to other aspects without departing from the scope of this disclosure. Therefore, this disclosure is not intended to be limited to the aspects shown herein, but rather to be carried out within the widest scope consistent with the principles and novel features disclosed herein.

[0077] The above description has been given for purposes of illustration and description. Furthermore, this description is not intended to limit the embodiments of this disclosure to the forms disclosed herein. Although numerous exemplary aspects and embodiments have been discussed above, those skilled in the art will recognize certain variations, modifications, alterations, additions, and sub-combinations therein.

Claims

1. A method for configuring multi-regional unified card data management, characterized in that, The method includes: Configure the database connection information for data interaction between local nodes in multiple regions and the all-in-one card data aggregation and distribution server using the data management configuration tool; Receive card service process and personnel data from the All-in-One Card Management Zone, and distribute the card service process and personnel data to the corresponding local nodes according to the region to which the personnel data belongs; Receive card production data and / or card cancellation data transmitted back from each local node, and summarize the card production data and / or card cancellation data; The latest personnel-card correspondence data for each region is generated by packaging according to a preset synchronization cycle, and the latest personnel-card correspondence data is distributed to the local nodes of the corresponding regions. According to the preset collection cycle, the card swiping data of each local node is collected, merged to generate a unified log file, and synchronized to the all-in-one card management zone server through the network gateway.

2. The method according to claim 1, characterized in that, Configure the database connection information for data interaction between local nodes in multiple regions and the smart card data aggregation and distribution server using the data management configuration tool, including: The aggregation and distribution server is deployed in the unified card data isolation zone of the unified data center. The database connection information includes the database server IP, SID, username, and password.

3. The method according to claim 1, characterized in that, Receive card service processes and personnel data from the All-in-One Card Management Zone, and distribute the card service processes and personnel data to the corresponding local nodes according to the region to which the personnel data belongs, wherein: The card service process and personnel data are pushed out after being reviewed and approved by the All-in-One Card Management Zone; The personnel data includes at least an organizational structure table, a basic personnel information table, a personnel photo information table, and a synchronization log table.

4. The method according to claim 1, characterized in that, Card swipe data from each local node is collected according to a preset collection cycle, merged to generate a unified log file, and synchronized to the all-in-one card management server via a network gateway. Specifically: The log file is in TXT format and includes the card swipe time, card number, card swipe device number, and card swipe event information.

5. A multi-regional unified card data management and configuration system, characterized in that, The system includes: The data management configuration module is used to configure the database connection information for data interaction between local nodes in multiple regions and the smart card data aggregation and distribution server through the data management configuration tool; The downlink data distribution module is used to receive card service process and personnel data from the all-in-one card service management zone, and distribute the card service process and personnel data to the corresponding local node according to the region to which the personnel data belongs; The uplink data receiving module is used to receive card production data and / or card cancellation data transmitted back from each local node, and to summarize the card production data and / or card cancellation data. The data synchronization and distribution module is used to package and generate the latest personnel-card correspondence data for each region according to a preset synchronization period, and distribute the latest personnel-card correspondence data to the local nodes of the corresponding regions; The card swipe log aggregation module is used to collect card swipe data from various local nodes according to a preset collection period, merge them into a unified log file, and synchronize it to the all-in-one card management zone server through a network gateway.

6. The system according to claim 5, characterized in that, The data management configuration module configures the database connection information for data interaction between local nodes in multiple regions and the smart card data aggregation and distribution server through the data management configuration tool, wherein: The aggregation and distribution server is deployed in the unified card data isolation zone of the unified data center. The database connection information includes the database server IP, SID, username, and password.

7. The system according to claim 5, characterized in that, The downlink data distribution module receives card service processes and personnel data from the all-in-one card management zone, and distributes the card service processes and personnel data to the corresponding local nodes according to the region to which the personnel data belongs, wherein: The card service process and personnel data are pushed out after being reviewed and approved by the All-in-One Card Management Zone; The personnel data includes at least an organizational structure table, a basic personnel information table, a personnel photo information table, and a synchronization log table.

8. The system according to claim 5, characterized in that, The card swipe log aggregation module collects card swipe data from various local nodes according to a preset collection period, merges them to generate a unified log file, and synchronizes it to the all-in-one card management zone server through a network gateway. Specifically: The log file is in TXT format and includes the card swipe time, card number, card swipe device number, and card swipe event information.

9. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the program is executed by the processor, it implements the steps of the method as described in any one of claims 1-4.

10. An electronic device, characterized in that, include: processor; Memory used to store the processor's executable instructions; The processor is configured to read the executable instructions from the memory and execute the executable instructions to implement the steps of the method according to any one of claims 1-4.