Group type enterprise logistics informatization construction mode based on multi-branch center data transmission and processing

By constructing a logically centralized and physically distributed intelligent operation and management architecture in group enterprises, the problems of high cost, security risks and insufficient stability in the cross-regional logistics informatization construction of group enterprises have been solved, and efficient and secure data transmission and local business closed-loop management have been achieved.

CN121842236APending Publication Date: 2026-04-10NEWCAPEC ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-31
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Group enterprises face problems such as high costs, security risks, insufficient stability and complex implementation in cross-regional logistics information construction. Traditional cloud platform solutions and cross-regional private network connection methods have problems of poor data security and high construction costs.

Method used

We construct a smart operation and management architecture that is logically centralized, physically distributed, and policy-driven. By deploying servers and databases at headquarters and branch campuses, defining multiple data transmission mechanisms, and adopting sharding and data routing strategies, we achieve closed-loop management of local data, reduce dependence on the network, and optimize data transmission paths.

Benefits of technology

It effectively reduced network construction costs, improved the security and stability of data exchange, enabled interconnection and interoperability among group enterprises and the implementation of a centralized and decentralized management model, reduced server and network load, and optimized resource utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a group type enterprise logistics informatization construction mode based on multi-branch center data transmission and processing, which comprises the following steps of: constructing a branch center operation management system in a headquarter, and performing unified access authorization and service-based data transmission strategy configuration on each independently operated branch park by the operation management system; the operation management system matches an optimal fragmentation mode and an optimal transmission mechanism for the data according to the uniqueness requirement, the real-time sensitivity, the tolerable loss degree, the recoverable complexity and the daily data volume of the data; creating a branch center routing service in the branch park server; the sub-park application system identifies the identity of a local platform person and completes business handling under the condition that the sub-park application system does not interact with the headquarter routing service; or acquiring data, pushing data or calling data from the headquarters according to the business type through the branch center routing service; and the headquarters database transmits parameters to provide or store service data according to the data routing strategy configured by the headquarters.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of group enterprise logistics informatization construction, in particular, relates to a group enterprise logistics informatization construction method based on multi-subcenter data transmission and processing. BACKGROUND

[0002] Group enterprises generally build sub-parks in various parts of the country. Due to factors such as business characteristics and talent structure of the park, each park usually independently builds an information system required by the park business. With the expansion of business, the increase in the number of employees, and the increase in the frequency of cross-park business trips, the group increasingly needs a set of top-down logistics business management. By grasping the real personnel and logistics business data of each sub-park, the resource allocation strategy for each park is planned, and the employee's cross-park business trip can also enjoy the enterprise welfare more conveniently, reducing the workload of the relevant business administrator to handle cross-park business. However, the traditional cross-regional multi-park platform construction usually adopts the method of building a cloud platform for multi-park use or connecting a private network across regions to achieve it. The cloud platform scheme exposes the database to the external network, and the data security and stability are not as good as the local. The scheme of connecting a private network requires a very high construction cost to ensure efficient and stable business operation.

[0003] In order to solve the above problems, people have been seeking an ideal technical solution. SUMMARY

[0004] Therefore, it is necessary to provide a new group logistics business operation and management system to build a logical centralized, physically distributed, and strategy-driven intelligent operation and management architecture.

[0005] In order to achieve the above purpose, the present application provides a group enterprise logistics informatization construction method based on multi-subcenter data transmission and processing, which comprises: The headquarters server stores the deployment program and database of the headquarters platform and application system; the sub-park server stores the deployment program and database of the sub-park platform and application system; A sub-center operation and management system is constructed at the headquarters, and the operation and management system is configured with unified access authorization and business-based data transmission strategy for each independently operated sub-park; Among them, five kinds of transmission mechanisms are defined in advance, including one-way transmission type data, two-way multi-live transmission type data, two-way single-live transmission type data, read-only type data and online call type data; The operation and management system matches the best sharding method and the best transmission mechanism for the data according to the uniqueness requirement, real-time sensitivity, tolerable loss degree, recoverable complexity, and daily data volume, that is, configures the data routing strategy; A sub-center routing service is created in the sub-park server; The sub-park application system identifies the local platform personnel identity and completes the business handling without interacting with the headquarters routing service, and realizes the local business closed loop processing. The sub-park application system identifies the local platform personnel identity and completes the business handling without interacting with the headquarters routing service, and realizes the local business closed loop processing. The headquarters database provides or stores the business data according to the data routing strategy configured by the headquarters.

[0006] The data transmission path between the headquarters and the sub-park can be effectively optimized through the data transmission strategy configuration, in which the most suitable sharding mode and data transmission mechanism can be selected according to the uniqueness requirement, real-time requirement, loss tolerance requirement, recoverability requirement and data volume of the business, the sub-centers are connected to the headquarters, the database does not need to be exposed to the external network environment, the local closed loop management of the logistics business can be realized in each sub-center, the interactive stability of the local high-frequency business and the data accuracy of the important business are effectively improved, the management mode of interconnection and interworking and general management and sub-control is helped to land stably for the group enterprise, meanwhile, the independent operation ability of the sub-center is maintained, and the dependence of the sub-center on the network and the headquarters platform data is reduced.

[0007] The second aspect of the present application provides a group enterprise logistics informatization system based on multi-sub-center data transmission and processing, comprising a headquarters platform and a plurality of sub-centers. The headquarters platform comprises: The sub-center operation management module is used for access authorization management, permission management, running monitoring, cross-center account opening and application, data operation analysis of each sub-center, and data transmission strategy configuration based on business for each sub-center. The operation management system pre-defines five types of transmission mechanisms, including one-way transmission type data, bidirectional multi-live transmission type data, bidirectional single-live transmission type data, read-only type data and online call type data; the operation management system matches the best sharding mode and the best transmission mechanism for the data according to the uniqueness requirement, real-time sensitivity, tolerable loss degree, recoverable complexity and daily data volume of the data, that is, the data routing strategy is configured. The information management module is used for configuring and managing the organization structure, personnel information, identity medium and global role permission system of all personnel. The business management module is used for uniformly defining and issuing the standardized rules and process strategies of the logistics business to each sub-center. The sub-center is deployed in each sub-center locally, and comprises: The sub-center routing service module is used for loading and executing the data transmission strategy issued by the headquarters platform, deciding the forwarding, synchronization or calling path of the data flow according to the strategy, and preferentially routing the local business request to the local service for processing. a local information management module configured to store and maintain organization, personnel and permission information related to the local node to support identity verification and permission control of local services; a local service management module configured to independently execute the logistics service process of the local node according to the service rules and process strategies issued from the headquarters platform.

[0008] The present application has the following advantages: The present application proposes a group enterprise logistics informatization construction method based on multi-center data transmission and processing, which effectively solves the core problems of high cost, security risk, insufficient stability and complex implementation that group enterprises have long faced in cross-regional logistics informatization construction. Specifically, the present scheme has the following outstanding advantages: In terms of cost control, the present scheme does not need to expose the core database to the public network, nor does it need to invest a large amount of funds to lay a high-safeguard private network. Instead, it realizes safe data exchange in a controlled network environment by deploying intelligent routing services at each node, greatly reducing the network construction cost from the infrastructure level. At the same time, the scheme performs fine-grained fragmentation and differentiated strategy processing on business data, and only synchronizes or calls the data that needs to be coordinated, avoiding extensive transmission of full-amount data. This on-demand flow mode not only reduces the peak load of servers and networks, but also optimizes resource utilization efficiency through peak-shifting and reduction processing, further reducing long-term bandwidth and computing power costs.

[0009] In terms of safety and stability, the present scheme builds a resilient system that takes into account both centralized control and local autonomy. Each sub-center has complete local business processing capability and data closed loop, and the core business can run stably without relying on the real-time connectivity of the headquarters data center or cross-domain network, fundamentally avoiding the management risk of sub-center business downtime caused by network fluctuations or interruptions. In terms of data security, all cross-center communications are conducted through controlled routing services, and core data is stored in the internal network, significantly reducing the external attack surface and improving the overall system security. BRIEF DESCRIPTION OF DRAWINGS

[0010] Figure 1 is a process schematic diagram of the informatization construction method of the present application; Figure 2 is a structural diagram of the device of the present application. DETAILED DESCRIPTION

[0011] The technical solutions of the present application will be further described in detail through specific embodiments.

[0012] Example 1 The embodiment provides a group enterprise logistics informatization construction method based on multi-subcenter data transmission and processing, each subpark can independently manage respective business rules, local services are independently deployed and process own businesses, cross-park consumption and data interconnection and intercommunication are realized, and the method meets independent management demands of each park and group unified management requirements.

[0013] Specifically, the group enterprise logistics informatization construction method based on multi-subcenter data transmission and processing comprises the following steps. The deployment program and database of the headquarters platform and application system are stored in the headquarters server, and the deployment program and database of the subpark platform and application system are stored in the subpark server.

[0014] The subcenter operation management system is constructed at the headquarters, and the operation management system is used for performing unified access authorization and business-based data transmission strategy configuration on each independently operated subpark.

[0015] It can be understood that the above setting can meet the group unified management control and the independent management demands of each subpark. The subpark can access the headquarters platform and independently manage within the permission range, and the data is stored in the local and the headquarters platform.

[0016] It can be understood that the subpark self-owned business data transmission is performed in a controlled intranet environment, the data transmission that needs to be interconnected with the headquarters is subjected to signature encryption processing on the basis of open limited non-important ports, and the data security is ensured.

[0017] In one embodiment, a subcenter code is set for each subpark; the headquarters performs centralized configuration and binding of fine-grained permissions based on the subcenter code; and the headquarters business system distinguishes and counts the stored data of the headquarters server through the subcenter code, to form data operation analysis reports of each subpark.

[0018] It can be understood that in one embodiment, the business data between the headquarters and the subpark can be in a cold backup relationship, when the subpark environment is abnormal, the headquarters server can be called to maintain business operation, so that the group operation continuity is ensured; the administrator can also remotely supervise the business transmission of the headquarters and each subpark through the subpark operation monitoring function, and manually intervene in the abnormal data, to assist the data to complete synchronization in time and accurately.

[0019] Specifically, the operation management system predefines five transmission mechanisms of one-way transmission type data, bidirectional multi-live transmission type data, bidirectional single-live transmission type data, read-only type data and online calling type data; and the best sharding mode and the best transmission mechanism are matched for the data according to the uniqueness requirement of the data, the real-time sensitivity, the tolerable loss degree, the recoverable complexity and the daily data volume, that is, the data routing strategy is configured.

[0020] Specifically, the transmission type and the corresponding characteristics are shown in the following table: Transmission Type Characteristic Description One-way transmission class Data only flows from the source to the target, and cannot be modified in reverse (such as master data) Bidirectional multi-live transmission class All nodes can read and write, quasi-real-time synchronization, suitable for high consistency scenarios such as transaction flow Bidirectional single-live transmission class One end is the authoritative source, and the remaining nodes can only subscribe to updates (such as organizational structure) Read-only data Local services can be queried but not modified, used for non-operational interfaces such as balance display Online call class Real-time request response mechanism, suitable for high concurrency, low latency business access It can be understood that the group-standardized logistics business object model such as personnel, account, transaction, and equipment can be pre-configured as basic metadata of the strategy.

[0021] Further, according to the differentiated requirements of different data, the data stream is finely sliced. For example, an employee master data slice, a cross-park transaction flow slice, and a consumption rule slice are defined. For each data slice, the five attributes of uniqueness, real-time, loss tolerance, recoverability, and data volume are analyzed.

[0022] Data type Uniqueness Real-time Loseability Restorability Data volume Organizational structure and personnel master data Extremely high Medium Low High Medium Account transaction flow High Extremely high Extremely low Medium Large Consumption rules / merchant information High Medium Low Medium Small Device status and access control record Medium High Tolerable Low Large

[0023] Subsequently, in the configuration center interface, the most suitable transmission mechanism is matched for each slice, that is, the configuration of the data routing strategy is implemented.

[0024] In an embodiment, a reservation type extension mechanism is also provided, so that the business data to be interchanged by the subsequent application systems built by the enterprise is divided into business types and transmission types.

[0025] The sub-center routing service is created in the sub-park server. When the business involves cross-park collaboration or needs to synchronize data with the headquarters, the sub-center routing service is used to obtain, push, or call data from the headquarters according to the business type. It should be noted that specifically, the sub-center routing service is only created for the sub-park that needs to be independently operated, and other sub-parks are directly connected to the headquarters platform and system through a private network or the Internet. In particular, only when the same application system as the headquarters is selected in each sub-park, personnel can handle application system business across parks.

[0026] The sub-park application system can also identify the local platform personnel identity and complete the business handling without interacting with the headquarters routing service, realizing the local business closed-loop processing.

[0027] In an embodiment, each sub-park can independently set up a super operator, and the role information of the super operator is uniformly configured by the headquarters and bound to the sub-center code. The administrator has the right to set module / menu permissions and button-level control, and can assign functions to ordinary business personnel through the permission center; at the same time, the headquarters platform can real-time view the operation logs and permission change records of each sub-park. In some embodiments, the super operator can also define related attributes for building sub-park operators.

[0028] In an embodiment, the data permission includes: The data monitoring is issued, the synchronization situation is monitored according to the data situation of the issued interface, and the warning monitoring of the issued data situation due to network or other situations is avoided. Upload data monitoring, according to the data interface of the upload, monitor the synchronization situation, avoid the failure of the network or other situations, and monitor the upload data situation; Each branch park version management, view the system deployment version management of each branch park, and consider remote upgrade and version abnormality of each branch park in the future. The version of the branch park system is viewed; Device state monitoring, view the related state of all platform access devices, monitor and manage the device state, and warn the operation and maintenance device state.

[0029] In an embodiment, the super administrator can remotely monitor the headquarters and each branch center business transmission situation through the branch center operation monitoring function, and manually intervene the abnormal data to assist the data to complete the synchronization in time and accurately.

[0030] Among them, the branch center routing service preferentially reads local data for personnel identification and business handling, and when local data acquisition fails due to synchronization delay of off-site data, it calls the center where the data is generated again according to the preset rules.

[0031] In an embodiment, the best transmission mechanism is matched for data, including: For organizational structure, a one-way transmission type data transmission mechanism is adopted, the headquarters is the only authoritative data source, and is responsible for the creation, maintenance and life cycle management of the whole group organization tree; each branch park receives synchronization updates through the one-way data channel issued by the headquarters; For personnel master data, a one-way transmission type data transmission mechanism is adopted; the only authoritative data source is the headquarters or the branch park according to the management planning configuration in advance; if the data source is configured as the headquarters, the headquarters is responsible for the creation, maintenance and life cycle management of the whole group personnel information, and each branch park receives synchronization updates through the single data channel issued by the headquarters; if the data source is configured as the branch park, each branch park completes the creation, maintenance and life cycle management of personnel information in the branch park, and synchronizes the personnel information to the headquarters regularly; For account and transaction type business data, a two-way multi-live transmission type data transmission mechanism is adopted to realize a distributed independent accounting mode based on transaction flow synchronization; account balance information is independently stored in the headquarters and the branch center, and is not directly synchronized; all recharge, consumption and subsidy transaction flow records are synchronized in a two-way and quasi-real-time manner, and the headquarters and each branch center independently calculates the balance according to the complete flow.

[0032] Specifically, account information includes balance and each wallet subsidy data in the headquarters and branch, which needs to ensure that each local system can independently run settlement consumption. It should be noted that the account balance information is not directly synchronized between the headquarters and the branch.

[0033] To ensure the consistency of the account balance, the headquarters and the branch adopt the way of synchronizing transaction flow data to interact with each other, and then the platform independently calculates the balance according to the complete flow, which contains the recharge, subsidy and consumption.

[0034] In particular, the two-way synchronization of the headquarters and the branch synchronizes the full amount of transaction data in the case of network interruption.

[0035] Further, the balance query of the mobile terminal needs to call the consumption service of the branch locally by using read-only data, so as to solve the inconsistency of the headquarters balance query of the mobile terminal and the branch balance query in the case of network interruption.

[0036] For business management data, a one-way transmission mechanism is adopted, and the headquarters uniformly defines, version manages and issues to each branch. The merchant, the window and the consumption rule are defined by the headquarters, and the branch only needs to use them; the basic information data of the consumption management is synchronously transmitted from top to bottom, and the branch does not have the management function of newly creating / editing / deleting the consumption management information.

[0037] For the identity medium, the identity medium of the employee includes IC card, two-dimensional code and face, which are locally issued and recognized by the branch; among them, the two-dimensional code supports cross-branch recognition in the online mode.

[0038] Specifically, for the employee card, the local card service operator performs card operation on the local card; For the face, the employee inputs the face photo through the local platform and the mobile terminal; For the two-dimensional code, the local platform uniformly generates the two-dimensional code, and each branch recognizes the two-dimensional code, which supports offline. In particular, the two-dimensional code supports cross-branch recognition in the online mode.

[0039] This embodiment takes two production plants A and B of a large manufacturing group as an example to illustrate the implementation process of the application: Step one: basic framework deployment The headquarters server deploys a unified management platform (including a human resource system, a financial settlement module, a material procurement system, etc.); The A plant and the B plant are respectively configured with independent local service nodes, deploy POS consumption terminals, access control software and employee check-in systems, and access their local databases.

[0040] Step two: branch authorization and domain division The system allocates AC01 code to the A plant and BC02 code to the B plant; The headquarters administrator sets through a strategy configuration center: The A plant can set the employee subsidy rule by itself, but needs to report the consumption data to the headquarters; B park supports cross-factory card consumption, allowing headquarters to view its transaction flow in real time.

[0041] Step three: configure data transmission strategy: Consumption flow → bidirectional multi-active synchronization mode (ensure real-time visibility in both places); Employee profile update → one-way upload to headquarters to prevent accidental changes to local data; Financial reconciliation report → push to headquarters every day at 3am (read-only transmission); POS machine status monitoring → real-time online interface query.

[0042] Step four: intelligent routing execution When a POS machine in B park has a consumption behavior, its local service reports the event to the sub-center routing service of the sub-center; The module determines according to the preset strategy that the data belongs to the bidirectional multi-active transmission type, and synchronizes to A park and the headquarters platform immediately; Headquarters can view the transaction trends and device running status of B park in real time and discover abnormalities in a timely manner.

[0043] Step five: permission and audit management A park administrator once temporarily modified the employee meal allowance, and the system automatically recorded the operation time, IP address, and values before and after the change, and generated a log file and stored it in the audit database; Headquarters can review this log at any time to verify compliance.

[0044] Embodiment 2 Based on the same inventive concept, the present application also provides a group enterprise logistics informatization system based on multi-sub-center data transmission and processing.

[0045] As shown in Figure 2 The group enterprise logistics informatization system based on multi-sub-center data transmission and processing includes a headquarters platform and multiple sub-centers; The headquarters platform includes: A sub-center operation management module for access authorization management, permission management, operation monitoring, cross-center account opening application, data operation analysis, and business-based data transmission strategy configuration for each sub-center; Among them, the operation management system pre-defines five types of transmission mechanisms: one-way transmission data, bidirectional multi-active transmission data, bidirectional single-active transmission data, read-only data, and online call data; The operation management system matches the best sharding method and the best transmission mechanism for the data according to the uniqueness requirement, real-time sensitivity, tolerable loss degree, recoverable complexity, and daily data volume, that is, configures the data routing strategy; An information management module is configured to manage the organization structure, personnel information, identity media, and global role permission system of all staff members. A business management module is configured to uniformly define and issue standardized rules and process strategies for logistics business to each sub-center. The sub-center is deployed locally in each sub-center and includes: A sub-center routing service module is configured to load and execute data transmission strategies issued by the headquarters platform, determine the forwarding, synchronization, or calling path of data flow according to the strategies, and preferentially route local business requests to local services for processing. A local information management module is configured to store and maintain organization, personnel, and permission information related to the node to support identity verification and permission control for local business. A local business management module is configured to independently execute the logistics business process of the node according to the business rules and process strategies issued from the headquarters platform.

[0046] This embodiment takes the core collaborative scenario of employee cross-park consumption as an example to specifically illustrate the operation mechanism of the system. This process fully demonstrates the entire process from basic data preparation, localized business processing, cross-center intelligent collaboration, to global centralized monitoring.

[0047] New employee Zhang San is hired, and his personnel information is created in the headquarters HR system. This personnel information (employee number, name, department) as the organization and personnel master data is marked as one-way transmission data by the headquarters strategy configuration center, and is automatically and unidirectionally synchronized to the A sub-center to which he belongs. Subsequently, Zhang San completes face information registration through the A sub-center, and the generated feature code is synchronized to the headquarters platform.

[0048] The A sub-center card administrator produces and issues a physical employee card for Zhang San according to the coding rules approved by the headquarters, and the card number information is synchronized back to the headquarters. At the same time, the consumption subsidy rules (such as 20 yuan daily meal subsidy) uniformly defined by the headquarters as business management data are also issued to each sub-center in a one-way synchronization manner. Zhang San's account is created on the sub-center platform, and his initial account balance (including subsidies) is independently stored at the headquarters and the A sub-center to which he belongs, and there is no direct balance synchronization between them.

[0049] When Zhang San travels to the B sub-center and consumes in the canteen, his business process is as follows: Cross-center account opening application: Zhang San completes the cross-center business trip application through the online process, and clearly states the business trip time and destination as the B sub-center.

[0050] Local identity verification and transaction triggering: Zhang San performs a face recognition operation on a POS machine at B branch center. The POS machine at B branch center initiates a payment request and calls a local intelligent routing service for face recognition. The routing service preferentially queries a local database, and completes identity verification. It can be understood that the local database already stores the face information of Zhang San synchronously issued.

[0051] Transaction execution and local closed loop: after verification, B branch center local business system performs a deduction, records a consumption flow in the local database, and independently calculates the latest account balance of Zhang San based on the local complete flow, which includes employee, amount, time, location, etc.

[0052] Strategy-driven cross-domain data synchronization: almost at the same time, the intelligent routing service at B branch center pushes the flow data to two preset destinations according to a preset data transmission strategy, that is, the cross-campus consumption flow data slice is configured as bidirectional multi-active transmission data, through a secure channel, quasi-real-time and reliable to: one is the headquarters data aggregation center for global data aggregation and analysis; the other is the account ownership center, that is, A branch center.

[0053] Distributed independent accounting and eventual consistency: after receiving the flow, the routing service at A branch center stores it in the local flow database and also independently recalculates the account balance of Zhang San. Since all parties are based on the same, sequentially consistent complete transaction flow for calculation, therefore, in the ideal case of no network failure, the balance results (X yuan) calculated by the headquarters, A branch center and B branch center will remain consistent, realizing the eventual consistency model of flow synchronization and independent accounting. Data recovery in abnormal situations such as network interruption can also be solved by subsequent complete flow.

[0054] In the entire business process: when Zhang San queries the balance through the mobile end App at B branch center, the request is routed to the local service at B branch center where he is currently located. B branch center directly returns the real-time balance X yuan calculated by itself, realizing fast response and completely avoiding the delay or inconsistency problem caused by querying the headquarters across the network.

[0055] The administrator can also perform real-time visual supervision of the entire process through the monitoring function of the branch center: Track whether the face data of Zhang San is successfully synchronized to B branch center, whether the consumption flow is timely uploaded to the headquarters and A branch center, and give early warning for synchronization delay or failure; real-time grasp the online state, transaction success rate and other operation indexes of the POS machine at B branch center; can trace all permission allocation and key operation logs of A and B branch center administrators throughout the process, to ensure operation compliance.

[0056] The embodiment shows that the system realizes seamless cooperation of cross-regional business, data final consistency and local service fast response by converting the business rules into preset data transmission strategies and automatically executing by the intelligent routing service deployed in each branch center, while guaranteeing the centralized insight and control ability of the headquarters on the global process and data state.

[0057] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application but not to limit it; although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that: the specific embodiments of the present application can still be modified or some technical features can be replaced by equivalents; without departing from the spirit of the technical solutions of the present application, they should be covered in the technical solution range of the present application claimed.

Claims

1. A group enterprise logistics informatization construction method based on multi-center data transmission and processing, characterized in that, Comprise: The headquarters server stores the deployment procedures and databases of the headquarters platform and application system; The sub-park server stores the deployment procedures and databases of the sub-park platform and application system; The headquarters constructs a sub-center operation management system, which accesses each independently operated sub-park to unified access authorization and business-based data transmission strategy configuration by the operation management system; Among them, five types of transmission mechanisms are defined in advance, including one-way transmission, two-way multi-active transmission, two-way single-active transmission, read-only data and online calling data; The operation management system matches the best sharding method and the best transmission mechanism for the data according to the uniqueness requirement, real-time sensitivity, tolerable loss degree, recoverable complexity and daily data volume of the data, that is, it configures the data routing strategy; Create a sub-center routing service in the sub-park server; The sub-park application system identifies the local platform personnel identity and completes the business handling without interacting with the headquarters routing service, realizing local business closed-loop processing; Or get data, push data or call data from the headquarters according to the business type through the sub-center routing service; The headquarters database provides or stores business data according to the data routing strategy configured by the headquarters.

2. The group enterprise logistics informatization construction method based on multi-center data transmission and processing according to claim 1, characterized in that, Only create a sub-center routing service for sub-parks that need independent operation, and other sub-parks directly connect to the headquarters platform and system through a private network or the Internet; Among them, the sub-center routing service preferentially reads local data for personnel identification and business handling, and initiates a second call to the data source when local data acquisition fails due to synchronization delay of off-site data.

3. The group enterprise logistics informatization construction method based on multi-center data transmission and processing according to claim 1 or 2, characterized in that, The business data between the headquarters and the sub-park are cold backup to each other, and the headquarters server is called to maintain business operation when the sub-park server environment is abnormal; Administrators can also remotely monitor the business transmission of the headquarters and each sub-park through the sub-center operation monitoring function, and manually intervene in abnormal data to assist data in timely and accurate synchronization.

4. The group enterprise logistics informatization construction method based on multi-center data transmission and processing according to claim 2, characterized in that, A reserved type extension mechanism is also provided to divide the business data of the application system to be interconnected into business types and transmission types for subsequent expansion of the enterprise.

5. The group enterprise logistics informatization construction method based on multi-center data transmission and processing according to claim 1, characterized in that, To match the best transmission mechanism for data, including: For organizational structure, adopt one-way transmission data transmission mechanism, the headquarters as the only authoritative data source, is responsible for the creation, maintenance and life cycle management of the whole group organization tree; Each sub-park receives synchronous updates through the one-way data channel issued by the headquarters; For personnel master data, adopt one-way transmission data transmission mechanism; Predefine whether the total headquarters or the sub-park is the only authoritative data source according to the management planning configuration at the headquarters, if the data source is configured as the headquarters, the headquarters is responsible for the creation, maintenance and life cycle management of the whole group personnel information, and each sub-park receives synchronous updates through the one-way data channel issued by the headquarters; If the data source is configured as a sub-park, each sub-park completes the creation, maintenance and life cycle management of personnel information in its own park, and synchronizes personnel information to the headquarters regularly; For account and transaction type business data, a bidirectional multi-live transmission type data transmission mechanism is adopted to realize a distributed independent accounting mode based on transaction flow synchronization; account balance information is independently stored at the headquarters and the sub-centers and is not directly synchronized; all recharge, consumption, and subsidy transaction flow records are synchronized in a bidirectional and quasi-real-time manner, and the headquarters and each sub-center independently calculates the balance according to the complete flow; when the mobile terminal is queried, a read-only type data is directly called to call the local service; For business management data, a unidirectional transmission mechanism is adopted, and the headquarters uniformly defines, version manages, and issues to each sub-center; For identity media, an employee's identity media includes IC cards, two-dimensional codes, and faces, and the sub-center is responsible for local issuance and identification; among them, the two-dimensional code supports cross-sub-center identification in an online mode.

6. The group enterprise logistics informatization construction method based on multi-center data transmission and processing according to claim 1, characterized in that, Each sub-garden establishes its super operator, sets related information of the administrator, and defines related attributes for building sub-garden operators. The super operator set for each sub-garden has corresponding data permissions, corresponding functions, and related button permissions.

7. The group enterprise logistics informatization construction method based on multi-center data transmission and processing according to claim 6, characterized in that, Data permissions include: Issued data monitoring, monitoring synchronization according to the data situation of the issued interface, avoiding failure warning monitoring of issued data due to network or other reasons; Upload data monitoring, monitoring synchronization according to the data situation of the uploaded interface, avoiding failure warning monitoring of uploaded data due to network or other reasons; Sub-garden version management, viewing system deployment version management of each sub-garden; Device state monitoring, viewing the related state of the access device, monitoring and managing the device state, and warning and operating the device state.

8. The group enterprise logistics informatization construction method based on multi-center data transmission and processing according to claim 1, characterized in that, Each sub-garden is set with a sub-center code; the headquarters centrally configures and bundles fine-grained permissions based on the sub-center code; the headquarters business system distinguishes and counts the storage data of the headquarters server through the sub-center code, and forms data operation analysis reports of each sub-garden.

9. A group enterprise logistics informatization system based on multi-center data transmission and processing, characterized in that, The system includes a headquarters platform and multiple sub-centers. The headquarters platform includes: A sub-center operation management module for access authorization management, permission management, running monitoring, cross-center account application, data operation analysis, and business-based data transmission strategy configuration for each sub-center; Among them, the operation management system pre-defines five types of transmission mechanisms, including unidirectional transmission data, bidirectional multi-live transmission data, bidirectional single-live transmission data, read-only data, and online call data; the operation management system matches the best sharding mode and the best transmission mechanism for the data according to the uniqueness requirement of the data, the real-time sensitivity, the tolerable loss degree, the recoverable complexity, and the daily data volume, that is, configures the data routing strategy; An information management module for configuring and managing the organization structure, personnel information, identity media, and global role permission system of all personnel; A business management module for uniformly defining and issuing standardized rules and process strategies of logistics business to each sub-center; The sub-centers are deployed locally in each sub-center and include: A sub-center routing service module is configured to load and execute a data transmission strategy issued by the headquarters platform, make a decision on forwarding, synchronization or calling path of data flow according to the strategy, and route a local business request to a local service for processing in priority; A local information management module is configured to store and maintain organization, personnel and permission information related to the node to support identity verification and permission control of the local business; A local business management module is configured to independently execute a logistics business process of the node according to a business rule and a process strategy issued from the headquarters platform.