Method and system for constructing digital twin system based on enterprise management information

By constructing a digital twin system for enterprise management information, the structured expression and dynamic operation of the management system are realized, solving the problem of the difficulty in integrating and iterating management elements in existing technologies, and improving the responsiveness and adaptability of the management system.

CN120875280BActive Publication Date: 2026-03-27GUANGDONG POWER GRID CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-29
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing enterprise management system lacks deep integration with digital systems, making it difficult to standardize the modeling and system integration of management elements. The interfaces between systems are loose, and there is a lack of effective problem feedback mechanisms and data analysis capabilities, making it difficult to continuously iterate and adapt to environmental changes.

Method used

Build a digital twin system based on enterprise management information, including a data aggregation layer, a management twin layer, and a management application layer. Through data integration and service encapsulation, realize the structured expression of the management system and the one-time encapsulation of capability services, and support the rapid construction of various digital management application scenarios with low code.

Benefits of technology

It enables the structured expression and dynamic operation of the management system, supports the rapid construction of various digital management application scenarios, improves the responsiveness and flexible adaptability of the management system, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a digital twin system construction method and system based on enterprise management information. A data aggregation layer of the system is used for collecting multi-source heterogeneous data related to a management system, integrating and modeling the collected data, and obtaining a management data center. A management twin layer includes data forwarding service, data analysis service, tool service and management digital map service. The data forwarding service is used for forwarding designated management data of the management data center. The data analysis service is used for querying and / or analyzing designated indexes. The tool service is used for providing various tool modules. The management digital map service is used for linkage presentation of a logical map and a dynamic state map of the management system. A management application layer is used for running various digital management application scenarios constructed according to the services provided by the management twin layer. The method can realize structured expression of the management system, one-time encapsulation and multi-reuse of capability services, and low-code rapid construction of business scenarios.
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Description

TECHNICAL FIELD

[0001] Embodiments of the present application relate to the technical field of computer technology, and in particular to a digital twin system construction method and system based on enterprise management information. BACKGROUND

[0002] Under the trend of continuous deepening of digital transformation, enterprises have higher requirements for the response capability, flexible adaptation capability and lean operation capability of the management system. However, the construction of the current enterprise management system still mainly relies on static system documents, process design and organization responsibility description forms, and lacks deep integration with digital systems. These management elements are mostly in unstructured forms such as documents and charts, and are scattered in system texts, standard specifications, process manuals and job descriptions, etc. It is difficult to realize standardized modeling and system integration, resulting in a management system that is "built but not moved". SUMMARY

[0003] The present application aims at the above-mentioned deficiencies or shortcomings, and at least provides a digital twin system construction method and system based on enterprise management information.

[0004] According to the first aspect, the present application provides a digital twin system based on enterprise management information, which comprises a data aggregation layer, a management twin layer and a management application layer. The data aggregation layer is used to interface with multiple business systems to collect multi-source heterogeneous data related to the management system, integrate and model the collected data, and obtain a unified management data center. The management twin layer comprises data forwarding services, data analysis services, tool services and management digital map services obtained by service encapsulation and publishing of the data of the management data center. The data forwarding services are used to forward specified management data of the management data center. The specified management data comprises management element information, process instance information and business form information. The data analysis services are used to query and / or analyze specified indicators. The specified indicators comprise operation indicators, performance indicators and governance indicators. The tool services are used to provide multiple tool modules, including process modeling tools, rule configuration tools and data analysis tools. The management digital map services are used to present the logical map and dynamic state diagram of the management system. The management application layer is used to run multiple digital management application scenarios, which are constructed according to the services provided by the management twin layer.

[0005] In some embodiments, the data of the data center managed by the system includes model data, management operation data, index data, and unstructured data; the model data includes strategic planning data, management system data, and enterprise architecture data; the management operation data includes process definition data, process instance data, and process task data; the index data includes index system structure data, index design content, and index result data; the unstructured data includes management system files, system files, and standard process diagrams.

[0006] In some embodiments, the data aggregation layer integrates and models the collected data, including: sorting out the concept entities and their sources contained in the model data, management operation data, index data, and unstructured data; constructing the association relationships between the concept entities in the model data, management operation data, index data, and unstructured data.

[0007] In some embodiments, the data forwarding service provides the forwarding capability of specified management data to the internal or external systems of the digital twin system through the application programming interface or data set.

[0008] In some embodiments, the management digital map layer service includes a static map module and a dynamic map module; the static map module is used to display the structured information of enterprise strategy, management system, enterprise architecture, and business process based on the model data and unstructured data; the dynamic map module is used to display the dynamic running state of plan progress, approval flow, event closed loop, and risk situation based on the management operation data and index data.

[0009] In some embodiments, the various digital management application scenarios include one or more of the following: management system display scenario, value flow analysis scenario, special process mining scenario, and operation analysis scenario.

[0010] In some embodiments, the management system displays a scenario for calling the data forwarding service and the management digital layer service to display element information related to the management system, enterprise architecture and business process and the relationship between elements, and to associate the actual running situation of the system process; a value flow analysis scenario for calling the data analysis service to dynamically monitor the process indicators of each operation level process in each end-to-end process obtained by value flow decomposition, and to dynamically analyze according to the monitoring results to identify the bottleneck and breakpoint in the value flow; a special process mining scenario for calling the data analysis service and the tool service to identify process deviation information including execution deviation, abnormal process path and key node according to process running logs and process instance data; and an operation analysis scenario for calling the data analysis service to obtain key indicator data of each business unit and the management system, to perform enterprise management operation diagnosis analysis according to the current value, historical change and evolution trend analysis of the key indicator data, and to dynamically adjust the target management activity and the target control strategy according to the diagnosis analysis result.

[0011] The present application provides a digital twin system construction method based on enterprise management information according to a second aspect, which comprises: creating a management data center, making the management data center interface with a plurality of business systems to collect a plurality of source heterogeneous data related to the management system, and integrating and modeling the collected data; the data of the management data center comprises model data, management operation data, indicator data and unstructured data; the data of the management data center is service encapsulated and published to obtain a data forwarding service, a data analysis service, a tool service and a management digital layer service; the data forwarding service is used to forward specified management data of the management data center; the specified management data comprises management element information, process instance information and business form information; the data analysis service is used to query and / or analyze specified indicators; the specified indicators comprise operation indicators, performance indicators and governance indicators; the tool service is used to provide a plurality of tool modules, the plurality of tool modules comprise process modeling tools, rule configuration tools and data analysis tools; the management digital layer service is used to present the logical map and the dynamic state map of the management system in linkage; and a plurality of digital management application scenarios are constructed according to the data forwarding service, the data analysis service, the tool service and the management digital layer service.

[0012] The present application provides a computer readable storage medium according to a third aspect, which stores a computer program, and the computer program is executed by a processor to implement the steps of the digital twin system construction method based on enterprise management information in the above embodiments.

[0013] According to the fourth aspect, the present application provides a computer device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor implements the steps of the method for constructing a digital twin system based on enterprise management information in the above-mentioned embodiments when executed.

[0014] In the above-mentioned embodiments of the present application, the data related to the management system from multiple sources and in different forms are unified and modeled by the data aggregation layer to form a management data center, thereby converting the management system into a standardized and computable structured object; the data in the data aggregation layer are service-encapsulated by the management twin layer to form callable units such as data forwarding services, data analysis services, tool services, and management digital map services, thereby realizing one encapsulation of capability services; the encapsulated services in the management twin layer are directly arranged by the management application layer, without the need for redeveloping data access or algorithm logic, so as to complete the construction of various digital management application scenarios, and finally realize the structured expression of the management system, one encapsulation and multiple reuse of capability services, and the low-code rapid construction of business scenarios, so that the management system can be "moved" after being built. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 FIG. 1 is a structural schematic diagram of a digital twin system based on enterprise management information in one or more embodiments of the present application;

[0016] Figure 2 FIG. 2 is a data division schematic diagram in one or more embodiments of the present application;

[0017] Figure 3 FIG. 3 is a flow schematic diagram of a method for constructing a digital twin system based on enterprise management information in one or more embodiments of the present application;

[0018] Figure 4 FIG. 4 is an internal structure schematic diagram of a computer device in one or more embodiments of the present application. DETAILED DESCRIPTION

[0019] In order to make the purposes, technical solutions, and advantages of the present application clearer, the embodiments of the present application will be further described in detail below with reference to the drawings. It should be noted that the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0020] The following description refers to the accompanying drawings. Unless otherwise noted, like elements in different drawings have the same or similar notation, and the same or similar elements in different drawings are represented with the same or similar reference numerals. The detailed description of the examples set forth below describes various embodiments of the application and is not intended to represent the only embodiments in accordance with this application. On the contrary, the detailed description includes full, but not exhaustive, descriptions of the application's devices and methods, along with associated steps and / or functions. Many embodiments of the application are provided with reference to the following description and accompanying drawings.

[0021] In the description of the present application, it should be understood that the terms "first", "second", "third" and the like are used only to distinguish similar objects, and do not necessarily indicate a specific order or sequence, nor can they be understood as indicating or implying relative importance. For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances. In addition, in the description of the present application, "multiple" means two or more, unless otherwise specified. The association between the associated objects is described, which means that there can be three relationships, for example, A and / or B, which means that there are three cases: A exists alone, A and B exist together, and B exists alone. The character " / " generally represents an "or" relationship between the associated objects before and after it.

[0022] Currently, the key elements such as objects, rules, processes, indicators in the management system are generally in unstructured form such as documents and tables, and lack unified modeling language and modeling standards, which cannot be logically mapped and dynamically managed in the system, resulting in the inability of institutional requirements to be embedded in the business execution process. And, the current enterprise management information system is mostly point-by-point construction according to business lines, which will lead to loose system interface, non-uniform standards, lack of overall planning and integration platform centered on management system, resulting in prominent problems such as multi-head construction, repeated development, scattered resource investment, high maintenance cost, and difficulty in meeting the comprehensive bearing needs of the management system throughout the cycle, multiple scenarios and cross-department. In addition, the existing management system construction still takes the system release as the end point, lacks effective problem feedback mechanism, data analysis capability and optimization suggestion generation logic. The problems such as indicator deviation, process bottleneck and rule failure generated in the running process lack system identification and dynamic correction capability, making it difficult for the management system to continuously iterate and actively adapt to environmental changes, which restricts the management evolution capability of the organization.

[0023] In view of the deficiencies of the related art, the present application provides, in a first aspect, a digital twin system based on enterprise management information, which can realize the structured expression of the management system, the one-time encapsulation and multi-use of the capability service, and the low-code rapid construction of the business scenario. The system is described in detail below.

[0024] In some embodiments, as shown in Figure 1 The digital twin system includes a data aggregation layer 10, a management twin layer 20 and a management application layer 30, which are described below.

[0025] The data aggregation layer 10 is configured to connect multiple business systems to collect multi-source and heterogeneous data related to the management system, integrate and model the collected data, and obtain a unified management data center.

[0026] The data aggregation layer 10 includes a management data center, which can be an IV area data center of a power grid enterprise. I / II / III / IV / V is a concept of information security partitioning of the power grid enterprise, wherein the IV area refers to a management information area, which is a region of the management informatization system within the enterprise and belongs to a kind of intranet area, and focuses on production information management. In this embodiment, the data aggregation layer 10 can be constructed based on the existing IV area data center of the power grid enterprise, and the data aggregation layer 10 can uniformly aggregate core element data such as organizational structure, business process, rules and regulations, and key indicators involved in the management system, thereby obtaining a unified database of multi-source and heterogeneous management data (i.e., a management information database of the IV area), and providing high-quality data support for upper-layer modeling, analysis and application. The data aggregation layer 10 is configured to connect multiple business systems, and different business systems can provide different management-related data to the data aggregation layer 10.

[0027] In some embodiments, the data of the management data center includes model data, management operation data, indicator data and unstructured data. In this embodiment, the digital twin system uniformly divides the management-related data into four categories: model data, management operation data, indicator data and unstructured data, thereby realizing the element expression and structured sedimentation of the whole process of the management system. Among them, the model data includes three categories of data: strategic planning data, management system data and enterprise architecture data, specifically including strategic goals, management modules, management capabilities, business capabilities, process steps, business rules, indicator lists and other data, which can provide metadata support for system modeling. The management operation data is data that records the operation trajectory and behavior data of the system, which can be divided into process operation data and business object data. The process operation data includes process definition data (such as process templates), process instance data (such as operation records of the process) and process task data (such as state information of each node in the process). The business object data includes work order reporting information, manual input data and archive information, etc. The indicator data includes indicator system structure data, indicator design content and indicator result data, based on which multi-level indicator quantitative management from strategy to process, from post to system can be realized. The indicator system structure data can include company-level indicators, business-level indicators, post-level indicators and technical-level indicators. The unstructured data includes management system files, system files and standard process diagrams, etc. The unstructured data is used as the basis for structured modeling and semantic supplement, ensuring that the model system has legal system and complete business logic.

[0028] On this basis, the data aggregation layer integrates and models the collected data, which can include: sorting out the concept entities and their sources contained in the model data, management operation data, index data and unstructured data; and constructing the association relationship between the concept entities in the model data, management operation data, index data and unstructured data.

[0029] The sorting out results of the model data, management operation data, index data and unstructured data can be seen from Figure 2 Figure 2 The first layer from bottom to top is each business system, and the second layer is the data provided by each business system to the data aggregation layer 10, for example, the process engine can provide process definition information, process instance information and process task information, and the power grid management platform can provide management system data.

[0030] The management twin layer 20 includes data forwarding service 201, data analysis service 202, tool service 203 and management digital map layer service 204 obtained by service encapsulation and publishing of the data of the management data center.

[0031] The management twin layer 20 is used to fuse the data aggregated by the data aggregation layer 10, and share four types of capabilities of data forwarding, data analysis, tools and management digital map layer to support the development of various scene applications.

[0032] The data forwarding service 201 is used to forward the specified management data of the management data center.

[0033] The data forwarding service 201 can provide services to internal or external systems of the digital twin system. The data forwarding service can provide the forwarding capability of the specified management data to the internal or external systems of the digital twin system through the application programming interface or the data set. The specified management data includes management element information, process instance information and business form information.

[0034] The data analysis service 202 is used to query and / or analyze the specified index, and the specified index includes operation index, performance index and governance index.

[0035] The data analysis service 202 is connected with the index platform, and the index platform includes the index information of various indexes related to management. The data of the index platform can be obtained from the data aggregation layer 10. The data analysis service 202 can provide services to internal or external systems of the digital twin system. It provides unified query and analysis services of operation, performance and governance indexes to support the internal and external systems to carry out business management effectiveness analysis and insight.

[0036] The tool service 203 is used to provide various tool modules.

[0037] ​The tool service 203 integrates various tool modules, such as process modeling tools, rule configuration tools, and data analysis tools. The tool service 203 can provide services to the internal of the digital twin system, for example, users can use the tool modules provided by the tool service 203 to build applications to meet their business needs.

[0038] The management digital layer service 204 is used to present the logical map and dynamic state map of the management system in linkage.

[0039] The management digital layer service 204 can visualize and structure the elements such as management objects, capabilities, processes, and indicators, so as to realize the linkage presentation of the logical map and dynamic state map of the management system.

[0040] In some embodiments, the management digital layer service 204 includes a static layer module and a dynamic layer module. The static layer module is used to display the structured information of enterprise strategy, management system, enterprise architecture, and business process based on model data and unstructured data. The dynamic layer module is used to display the dynamic running state of plan progress, approval flow, event closure, and risk situation based on management running data and indicator data.

[0041] The management application layer 30 is used to run various digital management application scenarios, which are constructed according to the services provided by the management twin layer.

[0042] The various digital management application scenarios can include one or more of a management system display scenario, a value stream analysis scenario, a special process mining scenario, and an operation analysis scenario.

[0043] In some embodiments, four core scenarios can be constructed for management practice applications, namely, a management system display scenario, a value stream analysis scenario, a special process mining scenario, and an operation analysis scenario, so as to realize the panoramic perception, problem identification, and continuous optimization of the management running state. The introductions of the scenarios are as follows:

[0044] The management system display scenario is used to call the data forwarding service and the management digital layer service to display the element information related to the management system, enterprise architecture, and business process, and the relationship between the elements, and to associate the actual running situation of the system process.

[0045] The value stream analysis scenario is used to call the data analysis service to dynamically monitor the process indicators of each operation-level process in each end-to-end process obtained by value stream decomposition, and to dynamically analyze according to the monitoring results to identify the bottleneck link and breakpoint link in the value stream.

[0046] The topic process mining scene is used to call data analysis services and tool services to identify process deviation information according to process running logs and process instance data, and the process deviation information includes execution deviation, process abnormal path and key node. For example, based on the process running logs and the process instance data, it is checked whether there is a record of deviation from the process execution baseline, such as not carrying out management work according to the process, abnormal rollback of process documents, abnormal time consumption of individual process nodes, and the like, and analysis and problem identification are performed.

[0047] The operation analysis scene is used to call data analysis services to obtain key indicator data of each business unit and management system, to perform enterprise management operation diagnosis analysis according to the current value, historical change and evolution trend of the key indicator data, and to dynamically adjust target management activities and target control strategies according to the diagnosis analysis results. For example, taking “fault repair” as an example, the management data center automatically collects process data related to “fault repair” from the BPMS process engine of the power grid management platform, and performs data modeling and processing on the collected raw process data. The modeling and processing results can be stored in a pre-constructed process analysis wide table. Then, the “fault repair” process running situation restoration operation is performed, which can specifically be calling the process visualization tool service provided by the management twin layer, and performing process restoration and visualization presentation according to the data in the process analysis wide table related to the “fault repair” process. At the same time, the “fault repair” process running analysis operation is also performed, which can specifically include: 1) calling the process mining tool provided by the management twin layer, and analyzing the process bottlenecks by calculating and comparing the average time of each link, for example, if the fault judgment time of a link accounts for more than 16% of the total time, the link is marked as a key bottleneck of the “fault repair” process; 2) performing root cause analysis of key events such as process bottlenecks by associating detailed information such as business forms of each link, for example, comparing and analyzing the fault report form, system judgment result and manual judgment result of “fault judgment”, and assuming that the analysis result shows that the root cause of the bottleneck is that “part of the metering meters are not reported to the metering system, resulting in fault omission, which is easy to cause system misjudgment, and the efficiency of manual judgment is low”, then the root cause analysis can identify the improvement point of metering equipment management capability, and such operation can help to locate problems such as invalid business rules and low employee execution efficiency, and provide a clear improvement direction for management capability.

[0048] The embodiment is to promote the management system of the power grid enterprise from static design to dynamic operation, and to construct a digital twin system based on enterprise management information by referring to the construction concept of the new type of power system digital twin platform. The digital twin system constructs a three-layer architecture from bottom to top according to the overall path of “data aggregation-fusion service-business application”, namely the data aggregation layer 10, the management twin layer 20 and the management application layer 30, so as to realize the digitalization bearing and dynamic operation support of the management system.

[0049] Specifically, the application unifies and models the multi-source heterogeneous data related to the management system through the data aggregation layer 10, forms a management data center, and thus converts the management system into a standardized, computable structured object; encapsulates the data in the data aggregation layer through the management twin layer 20 to form callable units such as data forwarding service 201, data analysis service 202, tool service 203, and management digital layer service 204, and realizes one encapsulation of capability service; directly arranges the encapsulated services in the management twin layer through the management application layer 30, without redeveloping data access or algorithm logic, to complete the construction of various digital management application scenarios, and finally realizes the structured expression of the management system, one encapsulation and multiple reuse of capability service, and low-code rapid construction of business scenarios, so that the management system can be "moved" after being built.

[0050] The second aspect of the application also provides a digital twin system construction method based on enterprise management information, in some embodiments, as shown in Figure 3 The method comprises:

[0051] S110: Create a management data center, and make the management data center interface with multiple business systems to collect multi-source heterogeneous data related to the management system, integrate and model the collected data.

[0052] The embodiment unifies the modeling language and the digital layer construction method to structure and model the key elements such as management objects, rules, processes, and indicators that exist in the form of unstructured documents and tables, so as to solidify the key elements as standard data units in the digital twin system, making the management system transparent, visual, semantically unified, and logically clear.

[0053] The data of the management data center includes model data, management operation data, indicator data, and unstructured data.

[0054] S120: Service encapsulation and publishing of the data of the management data center to obtain data forwarding service, data analysis service, tool service, and management digital layer service. The data forwarding service is used to forward specified management data of the management data center; the specified management data includes management element information, process instance information, and business form information. The data analysis service is used to query and / or analyze specified indicators; the specified indicators include operation indicators, performance indicators, and governance indicators. The tool service is used to provide multiple tool modules, and the multiple tool modules include process modeling tools, rule configuration tools, and data analysis tools. The management digital layer service is used to present the logical graph and dynamic state graph of the management system in linkage.

[0055] The embodiment can construct a unified service platform based on enterprise middle platform technical capability. The service platform can provide general data service capabilities such as data forwarding service and data analysis service to internal or external systems of the digital twin system. On this basis, tool services and management digital layer services are also carried. Through the tool services and management digital layer services, the visualization, analysis and reusability of management elements can be realized. The service platform can meet the diversified business scenario needs of management personnel in a unified, efficient and reliable data service supply mode.

[0056] Specifically, the construction of the service platform can include data access, data processing, service integration, service unified registration and release, and service supply. Data access refers to the unified tracing and access operation of the data of the source business system through the interface management data center for data forwarding service and data processing service. Data processing refers to unified processing of the data of the management data center according to the data analysis requirements to form a management data mart. Service integration refers to the abstraction, standardization and unified management of various capabilities of data forwarding service, data analysis service, tool service and management digital layer service in the application middle platform of the power grid enterprise. Service unified registration and release refers to the registration and release of various services through the application middle platform, and the generation of a service directory. Service supply refers to the fact that business departments or management scenarios can call these services through the service platform to realize cross-system and cross-process capability reuse and integration, thereby supporting the digital operation and twin display of the power grid enterprise.

[0057] When constructing tool services, multiple tool modules need to be integrated, such as process modeling tools, rule configuration tools and data analysis tools, so that users can use the tool modules provided by the tool services to construct applications according to their own business needs.

[0058] The management digital layer service is used to display enterprise management static models and dynamic running conditions to improve the visualization expression capabilities of the static structure and dynamic running of enterprise management, and support the unity and real restoration of various business management scenarios. The management digital layer includes a static layer and a dynamic layer. The static layer is used to display structured information such as enterprise strategy, management system, enterprise architecture and business process, i.e., to display the “blueprint state” of enterprise management. The dynamic layer is used to display the running state of various management activities of the enterprise, such as plan progress, approval flow, event closure, index completion and risk situation, i.e., to display the “running state” of enterprise management.

[0059] S130: Construct multiple digital management application scenarios according to the data forwarding service, the data analysis service, the tool service and the management digital layer service.

[0060] The digital management application scenario takes an end-to-end process as input, and its construction process can include:

[0061] (1) According to the end-to-end process information, match the corresponding value flow, management system, enterprise architecture, operation level process information, so as to complete the carding of core management element information.

[0062] (2) Card the operation information related to the operation level process. Taking the scene of "from fault occurrence to power supply recovery" as an example, the work processes and specific work links such as "fault discovery, fault dispatch, fault signing and positioning, fault positioning and isolation, fault repair" can be carded, the roles such as "power supply repair personnel" can be identified, and the business systems such as "production command system, equipment center" can be determined.

[0063] (3) Develop data traceability and access. The specific operation can include tracing the relevant data and system operation data in the enterprise architecture management system, power grid management platform and the like according to the core management element information and business system operation information, and accessing these data to the management data center.

[0064] (4) Call the tool services and management digital layer services of the service platform to visualize the actual operation process.

[0065] (5) Use the management data center to collect management data in real time, use the process mining and analysis tools provided by the service platform to perform process operation index calculation, abnormal index early warning and the like.

[0066] (6) Analyze the actual operation process, and realize the analysis of the management system landing operation and the continuous optimization of the management ability in combination with the mapping results of the actual operation process and the enterprise architecture and the management system.

[0067] This embodiment constructs a digital twin system based on enterprise management information by referring to the construction concept of the new power system digital twin platform. According to the overall path of "data aggregation-fusion service-business application", the digital twin system constructs a three-layer architecture from bottom to top, that is, the data aggregation layer 10, the management twin layer 20 and the management application layer 30 involved in the above embodiment, thereby realizing the digitalization bearing and dynamic operation support of the management system.

[0068] Specifically, in the creation of the management data center, the multi-source heterogeneous data related to the management system is integrated and modeled into a plurality of predefined data, such as model data, management operation data, index data and unstructured data, so that the originally discrete management system elements are converted into unified and computable data objects, thereby realizing the structured expression of the management system. On the basis of the management data center, the data of the management data center is service-encapsulated and published to obtain four types of services, i.e., data forwarding service, data analysis service, tool service and management digital layer service; these services can exist in the form of interfaces and can be called multiple times without repeated development, thereby realizing the one-time encapsulation and multi-time reuse of the capability service. Finally, the present embodiment also constructs a plurality of digital management application scenarios based on the plurality of services such as the data forwarding service, the data analysis service, the tool service and the management digital layer service. In the construction of the above scenarios, only the encapsulated service interfaces need to be arranged, and the operation logic such as data access, analysis algorithm and visualization does not need to be rewritten, thereby realizing the low-code rapid construction of the business scenarios.

[0069] The specific limitations of the method for constructing a digital twin system based on enterprise management information can be referred to the limitations of the digital twin system based on enterprise management information in the foregoing, which will not be repeated here.

[0070] It should be noted that, as for each step included in the method for constructing a digital twin system based on enterprise management information provided in any one of the above embodiments, unless otherwise specified herein, the execution of these steps does not have strict order limitations, and these steps can be executed in other orders. Moreover, at least part of these steps can include a plurality of sub-steps or a plurality of stages, which do not necessarily be executed at the same time, but can be executed at different times, and the execution order of these sub-steps or stages is not necessarily sequential, but can be executed in rotation or alternation with at least part of other steps or sub-steps or stages of other steps.

[0071] The present application also provides a computer device, which in some embodiments includes a memory, a processor and a computer program stored on the memory and executable on the processor, and the processor can implement the steps of the method for constructing a digital twin system based on enterprise management information provided in any one of the above embodiments when executing the computer program.

[0072] In some embodiments, the internal structure diagram of the computer device can be as shown in Figure 4As shown in the figure. The computer device includes a processor, a memory and a network interface connected through a system bus. Among them, the processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program and a database. The internal memory provides an environment for the operating system and the computer program in the non-volatile storage medium to run. The database of the computer device is used to store data related to the management system and the like. The specific data stored can also refer to the definition in the above method embodiments. The network interface of the computer device is used to communicate with the external terminal through the network connection. The computer program is executed by the processor to implement an enterprise management information-based digital twin system construction method.

[0073] Those skilled in the art can understand that, Figure 4 The structure shown in the figure is only a block diagram of part of the structure related to the scheme of the present application, and does not constitute a limitation on the computer device to which the scheme of the present application is applied. The specific computer device can include more or fewer components than those shown in the figure, or combine certain components, or have a different component arrangement.

[0074] The present application also provides a computer readable storage medium, in some embodiments, the computer readable storage medium has a computer program stored thereon, and the computer program is executed by the processor to implement the steps of the enterprise management information-based digital twin system construction method provided in any of the above embodiments.

[0075] In the above embodiments of the present application, the description of each embodiment has its own focus. The parts not described in detail in a certain embodiment can be referred to the relevant description of other embodiments.

[0076] Those skilled in the art can understand that all or part of the processes in the above-mentioned method embodiments can be completed by instructing the relevant hardware through a computer program. The computer program can be stored in a non-volatile computer readable storage medium, and when the computer program is executed, the processes of the above-mentioned embodiments of the method can be included. Any reference to memory, storage, database or other medium used in the embodiments provided in the present application 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. As an illustration but not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink), DRAM (SLDRAM), memory bus (Rambus), direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.

[0077] The technical features of the above embodiments can be combined in any way. In order to make the description simple, not all possible combinations of the technical features in the above embodiments are described, but as long as the combinations of the technical features do not exist, they should be considered as the scope of the present application.

[0078] The above embodiments only express several implementation manners of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the scope of the patent. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, some modifications and improvements can be made, which are all within the scope of the present application. Therefore, the scope of the patent of the present application should be subject to the appended claims.

Claims

1. A digital twin system based on enterprise management information, characterized by, The digital twin system comprises a data aggregation layer, a management twin layer and a management application layer; The data aggregation layer is configured to interface with multiple business systems to collect multi-source and heterogeneous data related to a management system, integrate and model the collected data, and obtain a unified management data center; The management twin layer comprises data forwarding services, data analysis services, tool services and management digital map services obtained by service encapsulation and publishing of data in the management data center; The data forwarding services are configured to forward designated management data of the management data center; the designated management data comprises management element information, process instance information and business form information; The data analysis services are configured to query and / or analyze designated indicators; the designated indicators comprise operation indicators, performance indicators and governance indicators; The tool services are configured to provide multiple tool modules, including process modeling tools, rule configuration tools and data analysis tools; The management digital map services are configured to present a logical map and a dynamic state map of the management system in linkage; The management application layer is configured to run multiple digital management application scenarios constructed according to services provided by the management twin layer; The data in the management data center comprises model data, management operation data, indicator data and unstructured data; the model data comprises strategic planning data, management system data and enterprise architecture data; the management operation data comprises process definition data, process instance data and process task data; the indicator data comprises indicator system structure data, indicator design content and indicator result data; the unstructured data comprises management system files, system files and standard process maps; The management digital map services comprise static map modules and dynamic map modules; The static map modules are configured to display structured information of enterprise strategy, management system, enterprise architecture and business process based on the model data and the unstructured data; The dynamic map modules are configured to display dynamic operation states of plan progress, approval flow, event closure and risk situation based on the management operation data and the indicator data; The multiple digital management application scenarios comprise one or more of a management system display scenario, a value stream analysis scenario, a special process mining scenario and an operation analysis scenario; The management system display scenario is configured to call the data forwarding services and the management digital map services to display element information related to the management system, enterprise architecture and business process, relationships between elements, and actual operation states of system processes; The value stream analysis scenario is configured to call the data analysis services to dynamically monitor process indicators of each operation-level process in each end-to-end process obtained by value stream decomposition, and to dynamically analyze the monitoring results to identify bottleneck links and breakpoint links in the value stream. The special topic process mining scene is configured to call the data analysis service and the tool service to identify process deviation information according to process running logs and process instance data, the process deviation information including execution deviation, process abnormal path and key node; The operation analysis scene is configured to call the data analysis service to obtain key indicator data of each business unit and management system, to perform enterprise management operation diagnosis analysis according to current values, historical changes and evolution trends of the key indicator data, and to dynamically adjust target management activities and target control strategies according to diagnosis analysis results.

2. The system of claim 1, wherein, The data aggregation layer integrates and models the collected data, including: Organizing concept entities and their sources included in the model data, the management operation data, the indicator data and the unstructured data; Building association relationships between the concept entities in the model data, the management operation data, the indicator data and the unstructured data.

3. The system of claim 1, wherein, The data forwarding service provides forwarding capability of the specified management data to internal or external systems of the digital twin system through application programming interfaces or data sets. 4.A method for constructing a digital twin system based on enterprise management information, characterized in that, The method includes: Creating a management data center, making the management data center interface with multiple business systems to collect multi-source and heterogeneous data related to the management system, and integrating and modeling the collected data; the data of the management data center includes model data, management operation data, indicator data and unstructured data; the model data includes strategic planning data, management system data and enterprise architecture data; the management operation data includes process definition data, process instance data and process task data; the indicator data includes indicator system structure data, indicator design content and indicator result data; the unstructured data includes management system files, system files and standard process diagrams; Service encapsulation and publishing of the data of the management data center to obtain data forwarding service, data analysis service, tool service and management digital layer service; the data forwarding service is configured to forward specified management data of the management data center; the specified management data includes management element information, process instance information and business form information; the data analysis service is configured to query and / or analyze specified indicators; the specified indicators include operation indicators, performance indicators and governance indicators; the tool service is configured to provide multiple tool modules, including process modeling tools, rule configuration tools and data analysis tools; the management digital layer service is configured to link and present a logical map and a dynamic state diagram of the management system. The special topic process mining scene is configured to call the data analysis service and the tool service to identify process deviation information according to process running logs and process instance data, the process deviation information including execution deviation, process abnormal path and key node; The operation analysis scene is configured to call the data analysis service to obtain key indicator data of each business unit and management system, to perform enterprise management operation diagnosis analysis according to current values, historical changes and evolution trends of the key indicator data, and to dynamically adjust target management activities and target control strategies according to diagnosis analysis results. The data aggregation layer integrates and models the collected data, including: Organizing concept entities and their sources included in the model data, the management operation data, the indicator data and the unstructured data; Building association relationships between the concept entities in the model data, the management operation data, the indicator data and the unstructured data. The data forwarding service provides forwarding capability of the specified management data to internal or external systems of the digital twin system through application programming interfaces or data sets. The method includes: Creating a management data center, making the management data center interface with multiple business systems to collect multi-source and heterogeneous data related to the management system, and integrating and modeling the collected data; the data of the management data center includes model data, management operation data, indicator data and unstructured data; the model data includes strategic planning data, management system data and enterprise architecture data; the management operation data includes process definition data, process instance data and process task data; the indicator data includes indicator system structure data, indicator design content and indicator result data; the unstructured data includes management system files, system files and standard process diagrams; Service encapsulation and publishing of the data of the management data center to obtain data forwarding service, data analysis service, tool service and management digital layer service; the data forwarding service is configured to forward specified management data of the management data center; the specified management data includes management element information, process instance information and business form information; the data analysis service is configured to query and / or analyze specified indicators; the specified indicators include operation indicators, performance indicators and governance indicators; the tool service is configured to provide multiple tool modules, including process modeling tools, rule configuration tools and data analysis tools; the management digital layer service is configured to link and present a logical map and a dynamic state diagram of the management system. According to the data forwarding service, the data analysis service, the tool service and the management digital layer service, a plurality of digital management application scenarios are constructed; the management digital layer service includes a static layer module and a dynamic layer module; the static layer module is configured to display structured information of enterprise strategy, management system, enterprise architecture and business process based on the model data and the unstructured data; the dynamic layer module is configured to display dynamic operation state of plan progress, approval flow, event closed loop and risk situation based on the management operation data and the index data; The plurality of digital management application scenarios include one or more of a management system display scenario, a value flow analysis scenario, a special process mining scenario and an operation analysis scenario; The management system display scenario is configured to call the data forwarding service and the management digital layer service to display element information related to the management system, the enterprise architecture and the business process and the relationship between the elements, and to associate the actual operation situation of the system process; The value flow analysis scenario is configured to call the data analysis service to dynamically monitor process indexes of each operation level process in each end-to-end process obtained by value flow decomposition, and to dynamically analyze according to the monitoring result to identify bottleneck links and breakpoint links in the value flow; The special process mining scenario is configured to call the data analysis service and the tool service to identify process deviation information according to process operation logs and process instance data, the process deviation information including execution deviation, abnormal process path and key node; The operation analysis scenario is configured to call the data analysis service to obtain key index data of each business unit and the management system, to perform enterprise management operation diagnosis analysis according to current value, historical change and evolution trend analysis of the key index data, and to dynamically adjust target management activities and target control strategies according to the diagnosis analysis result.

5. A computer-readable storage medium having stored thereon a computer program, characterized in that, The computer program is executed by the processor to realize the steps of the method of claim 4.

6. A computer device comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, characterized in that, The processor executes the computer program to realize the steps of the method of claim 4.

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