Computer device for data collaboration method and device applied to nuclear power system design

By introducing a full-process data collaboration method in the design of nuclear power system, the problems of inconvenience in the design process and low collaboration efficiency in the existing technology are solved, and the full-process collaboration from design to signing is achieved, which improves efficiency and data quality.

CN113902422BActive Publication Date: 2025-06-27CHINA NUCLEAR POWER ENGINEERING COMPANY LTD +3
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Patent Information

Application Number
CN202111307140.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-05
Publication Date
2025-06-27
Estimated Expiration
2041-11-05

AI Technical Summary

Technical Problem

The existing technology lacks a full-process data collaboration method, which leads to inconvenient nuclear power system design process and low collaboration efficiency for multiple majors.

Method used

Provide a data collaboration method, by obtaining the basic design data in the design drawings of the nuclear power system, generating target design data that needs to be assigned to the state, triggering status verification approval, and assigning relevant data status to the capital withdrawal after passing, to realize the correlation between the data state and the capital withdrawal status.

Benefits of technology

It realizes data collaboration throughout the process from design to downstream signing of nuclear power system design, improves the collaboration efficiency between various professions, and ensures data quality and safety.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application relates to a data collaboration method, device, and computer equipment applied to nuclear power system design. The method includes: writing the basic nuclear power design data of nuclear power design objects in the nuclear power system design drawings into a database; in response to the extended attribute design of the nuclear power design objects based on the basic nuclear power design data, generating target nuclear power design data that needs to be given a status in the database; triggering a status review and approval request for the target nuclear power design data; after the status review and approval is passed, correspondingly giving the target nuclear power design data a data status related to information submission; in response to the information submission operation for the nuclear power design data that needs to be submitted among the target nuclear power design data with the given data status, generating nuclear power information submission data based on the nuclear power design data that needs to be submitted; and publishing the nuclear power information submission data to the downstream recipient. Using this method can achieve the full process of data collaboration in nuclear power system design.
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Description

Technical Field

[0001] This application relates to the field of nuclear power technology, and particularly to a data collaboration method, apparatus, and computer device applied to the design of nuclear power systems. Background Art

[0002] Nuclear power systems play a very important role in human life and the development of technology. The design of nuclear power systems directly affects the operation of the entire nuclear power system. Therefore, the design of nuclear power systems is also particularly important.

[0003] Since the design of nuclear power systems involves relatively strong professionalism, in order to ensure the design quality of nuclear power systems, professionals in multiple fields need to participate together. Therefore, the design process of the entire nuclear power system involves multi-disciplinary processing. However, there is currently no data collaboration method that can achieve full-process data collaboration in the design of nuclear power systems, resulting in great inconvenience. Summary of the Invention

[0004] Based on this, it is necessary to provide a data collaboration method, apparatus, and computer device applied to the design of nuclear power systems that can achieve full-process data collaboration for the above technical problems.

[0005] A data collaboration method applied to the design of nuclear power systems, the method comprising:

[0006] Obtain nuclear power system design drawings obtained by designing a nuclear power system, and write the basic nuclear power design data of nuclear power design objects in the nuclear power system design drawings into a database;

[0007] In response to the extended attribute design of the nuclear power design object based on the basic nuclear power design data, generate target nuclear power design data that needs to be given a status in the database;

[0008] Trigger a status review and approval request for the target nuclear power design data; the status review and approval request is used to indicate a status review and approval of the status of the target nuclear power design data;

[0009] After the status review and approval is passed, assign a data status related to information submission to the target nuclear power design data;

[0010] In response to an information submission operation on the design data that needs to be submitted in the target nuclear power design data with the assigned data status, generate nuclear power information submission data based on the design data that needs to be submitted;

[0011] Publish the nuclear power information submission data to a downstream recipient.

[0012] In one embodiment, the method further comprises:

[0013] After the system flow chart platform receives the notice that the drawing review and approval of the nuclear power system design drawing has passed, obtain the design import request sent by the system flow chart platform;

[0014] In response to the design import request, write the basic nuclear power design data of the nuclear power design object in the nuclear power system design drawing into the database.

[0015] In one embodiment, the generating, in the database, of target nuclear power design data that needs to be given a status in response to the extended attribute design of the nuclear power design object based on the basic nuclear power design data includes:

[0016] In response to the extended attribute design of the nuclear power design object based on the basic nuclear power design data, obtain the extended design data of the nuclear power design object; the extended design data includes basic nuclear power design data and extended attribute data;

[0017] Use the data that needs to be promoted in status selected from the extended design data as the target nuclear power design data that needs to be given a status.

[0018] In one embodiment, the downstream recipient includes the requirement proposer;

[0019] The publishing of the nuclear power information submission data to the downstream recipient includes:

[0020] Associate the nuclear power information submission data with the corresponding information submission requirements, and send the nuclear power information submission data to the requirement proposer corresponding to the associated information submission requirements.

[0021] In one embodiment, the obtaining of the nuclear power system design drawing obtained by designing for the nuclear power system and writing the basic nuclear power design data of the nuclear power design object in the nuclear power system design drawing into the database includes:

[0022] When receiving the design import request sent by the system flow chart platform, call the original application of the system flow chart platform through the intermediate plug-in layer, and obtain the relevant data of the nuclear power system design drawing from the database of the system flow chart platform;

[0023] Write the basic nuclear power design data of the nuclear power design object in the nuclear power system design drawing into the database based on the relevant data through the data service layer.

[0024] In one embodiment, the database stores the published nuclear power information submission data;

[0025] The method further includes:

[0026] In response to the received funding query request, the corresponding published historical nuclear power funding data is queried from the database.

[0027] In one embodiment, each of the nuclear power design objects has a corresponding data template; in response to the extended attribute design of the nuclear power design object based on the basic nuclear power design data, generating the target nuclear power design data to be assigned a status in the database includes:

[0028] In response to a download request for the data template, sending the data template to an attribute extension end, so that the attribute extension end acquires added extended attribute data based on the data template;

[0029] receiving the extended attribute data added in the data template and sent by the attribute extension terminal;

[0030] Based on the basic nuclear power design data, the extended attribute data and the data template, target nuclear power design data to be assigned a status is generated in the database.

[0031] A data collaboration device for nuclear power system design, the device comprising:

[0032] A drawing control unit is used to obtain a nuclear power system design drawing obtained by designing a nuclear power system, and write basic nuclear power design data of a nuclear power design object in the nuclear power system design drawing into a database;

[0033] The data working unit generates, in response to the extended attribute design of the nuclear power design object based on the basic nuclear power design data, target nuclear power design data to be assigned a status in the database; triggers a status check and approval request initiated for the target nuclear power design data; the status check and approval request is used to instruct to check and approve the status of the target nuclear power design data; after the status check and approval is passed, assigning a corresponding data status to the target nuclear power design data;

[0034] The data solidification unit generates nuclear power capital enhancement data based on the design data that needs to be enhanced in the target nuclear power design data that has been assigned a data state, in response to an enhancement operation on the design data that needs to be enhanced; and publishes the nuclear power capital enhancement data to a downstream receiver.

[0035] A computer device includes a memory and a processor, wherein the memory stores a computer program, and when the computer program is executed by the processor, the processor executes the steps in the identity authentication method described in each embodiment of the present application.

[0036] A computer-readable storage medium stores a computer program thereon. When the computer program is executed by a processor, the processor is caused to execute the steps in the authentication method described in the embodiments of the present application.

[0037] The above data collaboration method, device, and computer equipment applied to nuclear power system design obtain nuclear power system design drawings obtained by designing a nuclear power system, and write the basic nuclear power design data of nuclear power design objects in the nuclear power system design drawings into a database; in response to the extended attribute design of nuclear power design objects based on the basic nuclear power design data, generate target nuclear power design data that needs to be given a status in the database; trigger a status review and approval request for the target nuclear power design data; after the status review and approval passes, assign a data status related to information submission to the target nuclear power design data, and associate the data status with the information submission status to achieve comprehensive control of the status, which can make the information submission operation more convenient. In response to the information submission operation for the design data that needs to be submitted among the target nuclear power design data that has been given a data status, generate nuclear power information submission data based on the design data that needs to be submitted; publish the nuclear power information submission data to the downstream recipient, which can realize the full-process data collaboration from the design of the nuclear power system to the downstream receipt, and improve the collaboration efficiency among various specialties involved in the design of the nuclear power system. Brief Description of the Drawings

[0038] Figure 1 It is an application environment diagram of the data collaboration method in an embodiment;

[0039] Figure 2 It is a flow schematic diagram of the data collaboration method in an embodiment;

[0040] Figure 3 It is a schematic diagram of the drawing review and approval process in an embodiment;

[0041] Figure 4 It is a schematic diagram of the status review and approval process in an embodiment;

[0042] Figure 5 It is a schematic diagram of the data release review and approval process in an embodiment;

[0043] Figure 6 It is a development architecture diagram of the data collaboration method in an embodiment;

[0044] Figure 7 It is a timing diagram of the data collaboration in an embodiment;

[0045] Figure 8 It is a schematic diagram of the data collaboration interface in an embodiment;

[0046] Figure 9 It is a structural block diagram of the data collaboration device in an embodiment;

[0047] Figure 10 It is the internal structure diagram of a computer device in an embodiment. Specific implementation manners

[0048] In order to make the objectives, technical solutions and advantages of the present application clearer and more understandable, the present application will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0049] The data collaboration method provided by the present application can be applied to, for example Figure 1 the application environment shown. Among them, the terminal 102 communicates with the server 104 through the network. The server 104 can obtain the nuclear power system design drawings through the terminal 102. The server 104 obtains the nuclear power system design drawings obtained by designing the nuclear power system, and writes the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into the database; the server 104 generates target nuclear power design data that needs to be given a status in the database in response to the extended attribute design for the nuclear power design objects based on the basic nuclear power design data; the server 104 triggers a status review and approval request initiated for the target nuclear power design data; after the status review and approval is passed, the server 104 assigns a data status related to information submission to the target nuclear power design data; the server 104 generates nuclear power information submission data based on the design data that needs to be submitted in the target nuclear power design data with the assigned data status in response to the information submission operation for the design data that needs to be submitted in the target nuclear power design data with the assigned data status, and publishes the nuclear power information submission data generated by the server 104 to the downstream recipient. Among them, the terminal 102 can be, but is not limited to, various personal computers, laptop computers, smart phones, tablet computers and portable wearable devices, and the server 104 can be implemented by an independent server or a server cluster composed of multiple servers.

[0050] In one embodiment, as Figure 2 shown, a data collaboration method applied to the design of a nuclear power system is provided. This method is applied to Figure 1 the server in, and includes the following steps:

[0051] S202. Obtain the nuclear power system design drawings obtained by designing the nuclear power system, and write the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into the database.

[0052] Among them, the drawings refer to the design drawings drawn for the nuclear power system on the system flow chart platform. The nuclear power design object refers to the components in the nuclear power system design drawings, that is, the objects involved in the nuclear power system design. It can be understood that the system flow chart platform is used to design and draw system flow charts. For example, Diagrams. The drawings are actually the system flow charts drawn for the nuclear power design objects on the system flow chart platform. The design data refers to the data related to the nuclear power design objects. The basic nuclear power design data refers to the data related to the nuclear power design objects in the nuclear power system design drawings.

[0053] In one embodiment, Figure 1 the server in [] is a server cluster composed of multiple servers, providing hardware support for the system flow chart platform, the design and production management platform, and Figure 2 the data collaboration method in []. The server can realize Figure 2 the data collaboration method in [] through interaction with the system flow chart platform and the design and production management platform.

[0054] Specifically, the server can obtain the nuclear power system design drawings imported by the system flow chart platform and write the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into the database.

[0055] In one embodiment, the server can obtain the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings by parsing the received nuclear power system design drawings.

[0056] In one embodiment, the server can directly obtain the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings imported by the system flow chart platform.

[0057] In one embodiment, the nuclear power design objects may include at least one of pipelines, valves, pumps, steam turbines, pipelines, containers, heat exchangers, filters, orifice plates, instruments (sensors and flow orifice plates), heaters, valve electric actuators, equipment motors, HVAC ventilation ducts and equipment in the nuclear power system.

[0058] In one embodiment, the basic nuclear power design data may include the basic attribute data of the nuclear power design objects. It can be understood that the basic attribute data refers to the attribute information carried by the nuclear power design objects in the drawings.

[0059] S204, in response to the extended attribute design for the nuclear power design objects based on the basic nuclear power design data, generate target nuclear power design data that needs to be given a status in the database.

[0060] Among them, the extended attribute design refers to the extension and supplementation of the attributes of nuclear power design objects based on the basic nuclear power design data. It can be understood that the basic nuclear power design data cannot fully express the characteristics of nuclear power design objects, and it is necessary to extend and supplement the attributes of nuclear power design objects based on the basic nuclear power design data. The target nuclear power design data refers to the design data that needs to be given a status. It can be understood that the design data without a given status cannot ensure the quality and safety of the data, and thus cannot be transferred to the next node and cannot be used.

[0061] Specifically, the server can send the basic nuclear power design data to the attribute extension end. Based on the basic nuclear power design data received at the attribute extension end, relevant professionals conduct extended attribute design on the nuclear power design objects. The relevant professionals send the results of the extended attribute design to the server through the attribute extension end. The server stores the received results of the extended attribute design and generates the target nuclear power design data that needs to be given a status in the database based on the results of the extended attribute design.

[0062] Among them, the relevant professionals refer to the professionals in each specialty involved in the nuclear power system design. It can be understood that the nuclear power system design is an extremely complex task, with high requirements for the professionalism of relevant professionals and the cooperation efficiency among different specialties.

[0063] In one embodiment, the server can send the extended design data to the attribute extension end and generate the target nuclear power design data that needs to be given a status according to the design data selected by the relevant professionals at the attribute extension end.

[0064] S206, trigger a status verification and approval request for the target nuclear power design data; after the status verification and approval passes, assign a data status related to information submission to the target nuclear power design data.

[0065] Among them, the status verification and approval request is used to indicate the status verification and approval of the status of the target nuclear power design data.

[0066] In one embodiment, the server can obtain the information of personnel with corresponding qualifications in the design management platform, such as verification personnel, approval personnel, and receipt personnel with corresponding qualifications. It can be understood that the status verification and approval request triggered by the server for the target nuclear power design data corresponds to the relevant personnel with corresponding qualifications for status verification and approval. The relevant personnel for status verification and approval can promote the corresponding verification and approval process based on the status verification and approval request received through the design production management platform. For example, the relevant verification personnel verify the target nuclear power design data, and after the verification passes, the relevant approval personnel approve the target nuclear power design data.

[0067] Among them, the design and production management platform can manage the school approval process, personnel information, and information submission requirements, and relevant personnel can promote the corresponding school approval process on the design and production management platform. The server can interact with the database of the design and production management platform to obtain information in the design and production management platform.

[0068] Specifically, the server triggers a status school approval request for the target nuclear power design data and sends the status school approval request to the design and production management platform. The design and production management platform can associate the status school approval task corresponding to the status school approval request with relevant personnel with corresponding qualifications. The relevant personnel can access the design and production management platform to conduct a status school approval for the status school approval request, and the design and production management platform can send the status school approval result to the server. After the status school approval is passed, the server assigns a data status related to information submission to the target nuclear power design data.

[0069] S208, in response to an information submission operation for the design data that needs information submission in the target nuclear power design data with the assigned data status, generate nuclear power information submission data based on the design data that needs information submission; publish the nuclear power information submission data to the downstream recipient.

[0070] Among them, information submission refers to providing the materials required for the subsequent nuclear power system design. The downstream recipient refers to the party that puts forward the information submission requirement for the design data that needs information submission. It can be understood that the design data may involve multiple different specialties, and information submission is required for the collaboration between different specialties. A specialty refers to a specialty related to the design of nuclear power system design drawings, and may include at least one of specialties such as layout, equipment, radiation shielding, electrical, and instrumentation control.

[0071] Specifically, the server can send the target nuclear power design data with the assigned data status to the attribute extension end. The attribute extension end can display the target nuclear power design data with the assigned data status. Relevant professional personnel can conduct an information submission operation on the design data that needs information submission in the target nuclear power design data with the assigned data status at the attribute extension end, and the attribute extension end can send the result of the information submission operation to the server. The server can obtain the design data that needs information submission in the result of the information submission operation to generate nuclear power information submission data and publish the nuclear power information submission data to the downstream recipient.

[0072] In one embodiment, the downstream recipient can access the design and production management platform and put forward an information submission requirement for the design data on the design and production management platform. The server can obtain information related to the information submission requirement from the design and production management platform and prompt the professional personnel corresponding to the information submission requirement to conduct information submission through the attribute extension end.

[0073] In the above data collaboration method applied to nuclear power system design, nuclear power system design drawings obtained from the design of the nuclear power system are acquired, and the basic nuclear power design data of nuclear power design objects in the nuclear power system design drawings are written into a database; in response to the extended attribute design of nuclear power design objects based on the basic nuclear power design data, target nuclear power design data that needs to be assigned a status is generated in the database; a status verification and approval request initiated for the target nuclear power design data is triggered; after the status verification and approval is passed, a data status related to information submission is assigned to the target nuclear power design data, enabling the association of the data status with the information submission status and realizing the comprehensive control of the status. In response to the information submission operation for the design data that needs to be submitted among the target nuclear power design data with the assigned data status, nuclear power information submission data is generated based on the design data that needs to be submitted; the nuclear power information submission data is released to the downstream recipient, enabling the realization of full-process data collaboration from the design of the nuclear power system to the downstream receipt.

[0074] In addition, the introduction of verification and approval can improve the collaboration efficiency among different specialties in the nuclear power system design while ensuring the quality and safety of the data involved in each specialty.

[0075] In one embodiment, the method further includes: after receiving the notice of the successful drawing verification and approval of the nuclear power system design drawings on the system flow chart platform, acquiring the design import request sent by the system flow chart platform; in response to the design import request, writing the basic nuclear power design data of nuclear power design objects in the nuclear power system design drawings into the database.

[0076] Among them, the design import request is used to request the import of nuclear power system design drawings.

[0077] Specifically, the design production management platform receives the drawing verification and approval request initiated by the system flow chart platform for the nuclear power system design drawings, initiates a drawing verification and approval process for the nuclear power system design drawings, and after the completion of the drawing verification and approval process, sends the drawing verification and approval result to the system flow chart platform. The system flow chart platform receives the drawing verification and approval result of the nuclear power system design drawings sent by the design production management platform. If the drawing verification and approval result indicates that the drawing verification and approval is passed, the server acquires the design import request sent by the system flow chart platform, and in response to the design import request, receives the nuclear power system design drawings imported by the system flow chart platform and writes the basic nuclear power design data of nuclear power design objects in the nuclear power system design drawings into the database.

[0078] In one embodiment, after receiving the notice that the drawing review and approval of the nuclear power system design drawing has passed, the system flowchart platform stores the nuclear power system design drawing in the drawing library. It can be understood that the user can draw the drawing from scratch on the system flowchart platform, or modify it based on the original version of the drawing to obtain the existing version of the nuclear power system design drawing. Only after the drawing review and approval has passed can the existing version of the nuclear power system design drawing be stored in the drawing library of the system flowchart platform.

[0079] In one embodiment, after the nuclear power system design drawing is stored in the drawing library of the system flowchart platform, it can trigger the system flowchart platform to automatically publish the nuclear power system design drawing to the server. It can be understood that the system flowchart platform can automatically initiate a design import request, and the server can respond to the design import request, obtain the nuclear power system design drawing, and write the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawing into the database.

[0080] In one embodiment, Figure 3 FIG. is a schematic diagram of the drawing review and approval process. The drafter can log in to the system flowchart platform to draw the nuclear power system design drawing. It can be understood that the drafter can draw a brand-new drawing on the system flowchart platform, or modify it based on the original version of the drawing. After the drafter has completed the drawing of the nuclear power system design drawing, the drafter submits the nuclear power system design drawing carrying the existing version to the design and production management platform on the system flowchart platform to trigger a drawing review and approval request. When the design and production management platform receives the drawing review and approval request sent by the system flowchart platform, it advances the drawing review and approval process for the nuclear power system design drawing carried by the drafter and submitted to the design and production management platform on the system flowchart platform.

[0081] The design production management platform sends an email to the verification personnel corresponding to the drawing review and approval request. After receiving the email, the verification personnel can click on the link in the email to log in to the design production management platform, view the to-do tasks related to the drawing review and approval, and verify the nuclear power system design drawings. The verification personnel verify the nuclear power system design drawings on the design production management platform and feedback the verification results on the design production management platform. After the verification of the nuclear power system design drawings passes, the design production management platform sends an email to the approval personnel corresponding to the drawing review and approval request. After receiving the email, the approval personnel can click on the link in the email to log in to the design production management platform, view the to-do tasks related to the drawing review and approval, and approve the nuclear power system design drawings. The approval personnel approve the nuclear power system design drawings on the design production management platform and feedback the approval results on the design production management platform. After the approval of the nuclear power system design drawings passes, the existing version of the nuclear power system design drawings will enter the drawing library in the system flow chart platform. After the drawing library of the system flow chart platform obtains the existing version of the nuclear power system design drawings, it triggers the automatic release of the nuclear power system design drawings, and the server fills in the relevant data of the nuclear power system design drawings into the corresponding data template and publishes it to the process design center. It can be understood that relevant professionals can carry out extended attribute design based on the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings published to the process design center.

[0082] If the verification or approval of the nuclear power system design drawings fails, the verification personnel or approval personnel can enter the verification opinions or approval opinions on the design production management platform, and the design production management platform notifies the corresponding drawing personnel by email. The drawing personnel can click on the link in the email to log in to the design production management platform to view the to-do tasks related to the verification or approval, and modify the nuclear power system design drawings on the system flow chart platform. It can be understood that the drawing personnel can modify the nuclear power system design drawings according to the opinions of the verification personnel or approval personnel. The drawing personnel can initiate the drawing review and approval process again based on the modified nuclear power system design drawings.

[0083] In this embodiment, after receiving the notice that the drawing review and approval of the nuclear power system design drawings passes on the system flow chart platform, the system flow chart platform sends a design import request. In response to the design import request, the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings is written into the database. Only after the drawing review and approval process of the nuclear power system design drawings passes, the corresponding nuclear power system design drawings and the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings can be imported into the data collaboration platform, ensuring the quality and security of the data related to the nuclear power system design drawings.

[0084] In one embodiment, in response to the extended attribute design of a nuclear power design object based on basic nuclear power design data, the target nuclear power design data that needs to be given a status is generated in the database, including: in response to the extended attribute design of a nuclear power design object based on basic nuclear power design data, obtaining the extended design data of the nuclear power design object; the extended design data includes basic nuclear power design data and extended attribute data; the data that needs to be promoted in status selected from the extended design data is used as the target nuclear power design data that needs to be given a status.

[0085] Among them, the extended attribute data refers to the attribute data generated by the extended attribute design of the nuclear power design object.

[0086] Specifically, the server can send the basic nuclear power design data to the attribute extension end. Relevant professionals can perform extended attribute design on the nuclear power design object based on the basic nuclear power design data at the attribute extension end. The server obtains the extended design data of the nuclear power design object in response to the extended attribute design of the nuclear power design object based on the basic nuclear power design data. The server can send the extended design data to the attribute extension end, and relevant professionals can select the data that needs to be promoted in status from the extended design data at the attribute extension end. The server uses the selected design data as the target nuclear power design data that needs to be given a status in response to the user's selection operation for the data that needs to be promoted in status.

[0087] In one embodiment, relevant professionals can select the data that needs to be promoted in status from the extended design data at the attribute extension end, give it a status, and submit the selected data and the corresponding status information. The attribute extension end can send the data that needs to be promoted in status and the corresponding status information submitted by relevant professionals to the server, and the server uses the selected design data as the target nuclear power design data that needs to be given a status and triggers a status review and approval request to review and approve the target nuclear power design data and the corresponding status information.

[0088] In one embodiment, Table 1 is a correspondence table of data status values, information submission status, and document status. The server can assign corresponding statuses to the target nuclear power design data that needs to be given a status based on the data status values in the table. It can be understood that in multi-disciplinary collaborative design, associating data status with information submission status and document status can meet the needs of information submission and document publication among disciplines.

[0089] Among them, the data status value is defined based on the information submission status. For example, for the DP in the data status value, it is a combination of the first letter of the English word "DATA" and the first letter of the corresponding information submission status "PRE nuclear power information submission data". It can be understood that the data status value, information submission status, and document status in each row of Table 1 are in a one-to-one correspondence. The data status value, information submission status, and document status in the first row are represented as the draft for comments, the second row represents the implementation version available for construction, the third row represents the design freeze, and the fourth row represents the design change.

[0090]

[0091]

[0092] Table 1

[0093] In one embodiment, relevant professionals can filter the designed data with assigned status at the attribute extension end according to the data status value, and then select the designed data to be submitted with the corresponding data status value.

[0094] In one embodiment, Figure 4 It is a schematic diagram of the status verification and approval process. Relevant professionals can complete the extended attribute design at the attribute extension end. It can be understood that the editors in the figure are actually relevant professionals. The editors can select the extended designed data of the nuclear power design object at the attribute extension end, and the server will select the data whose status needs to be promoted from the extended designed data as the target nuclear power design data to which the status needs to be assigned. In response to the submission operation of the data whose status needs to be promoted selected by the editors, the server triggers a status verification and approval request to the design production management platform. The design production management platform receives the status verification and approval request and advances the status verification and approval process. The design production management platform triggers an email to be sent to the checker corresponding to the status verification and approval request. After receiving the email, the checker can click on the link in the email to log in to the design production management platform, view the to-do tasks related to the status verification and approval, and check the target nuclear power design data and the status to be assigned to the target nuclear power design data.

[0095] The checker checks the target nuclear power design data on the design and production management platform and feedbacks the check result on the design and production management platform. After the check of the target nuclear power design data is passed, the design and production management platform sends an email to the approver corresponding to the status check approval request. After receiving the email, the approver can click the link in the email to log in to the design and production management platform, view the pending tasks related to the status check approval, and approve the target nuclear power design data and the status that the target nuclear power design data needs to be assigned. The approver approves the target nuclear power design data on the design and production management platform and feedbacks the approval result on the design and production management platform. After the approval of the target nuclear power design data is passed, the target nuclear power design data with the assigned status is filled into the corresponding solidified data table and published to the process design center. It can be understood that the solidified data table is actually a data template. Relevant professionals can perform capital raising operations based on the target nuclear power design data published to the process design center.

[0096] If the verification or approval of the target nuclear power design data fails, the verifier or approver can enter the verification or approval opinions on the design and production management platform, and the design and production management platform will notify the corresponding editors by email. The editors can click the link in the email, log in to the design and production management platform to view the pending tasks related to the verification or approval, and modify the target nuclear power design data on the system flow chart platform. It is understandable that the editors can modify the target nuclear power design data according to the opinions of the verifier or approver.

[0097] In this embodiment, in response to the extended attribute design of the nuclear power design object based on the basic nuclear power design data, the extended design data of the nuclear power design object is obtained; the extended design data includes the basic nuclear power design data and the extended attribute data; the data that needs to be upgraded from the extended design data is selected as the target nuclear power design data that needs to be assigned a status, and the target nuclear power design data can only be assigned a status after passing the status verification and approval, so as to ensure the quality and safety of the data status. The data status assigned to the target nuclear power design data corresponds to the funding status and the file status, and can meet the requirements of inter-professional funding and design document publishing.

[0098] In one embodiment, the downstream recipient includes a demander; publishing the nuclear power capital increase data to the downstream recipient includes: associating the nuclear power capital increase data with the corresponding capital increase demand, so as to send the nuclear power capital increase data to the demander corresponding to the associated capital increase demand.

[0099] Among them, the demand for capital increase refers to the demand raised by downstream majors, where upstream majors need to increase capital for downstream majors.

[0100] In one embodiment, the downstream recipient can log in to the design production management platform and submit a request for information. The process design center can read the request for information in the design production management platform.

[0101] Specifically, the server can obtain the request for information in the design production management platform, associate the nuclear power information submission data with the corresponding request for information, trigger a data release review and approval request, and after the data release review and approval is passed, send the nuclear power information submission data to the requester corresponding to the associated request for information.

[0102] In one embodiment, relevant professionals can perform an operation to release nuclear power information submission data at the attribute extension end, select the data to be submitted, supplement the corresponding materials for the request for information, and directly reference the request for information in the design production management platform. It can be understood that the server can obtain the request for information in the design production management platform and send it to the attribute extension end. Relevant professionals can submit the data and relevant materials to be submitted in the form of referencing the request for information at the attribute extension end. The server can associate the nuclear power information submission data submitted by the user with the referenced request for information.

[0103] In one embodiment, Figure 5 FIG. is a schematic diagram of the data release review and approval process. The publisher can select the design data to be submitted from the target nuclear power design data with the data status assigned at the attribute extension end, and select and reference the corresponding request for information in the design production management platform. In response to the submission operation of the publisher on the selected design data to be submitted, the server generates nuclear power information submission data and associates the corresponding request for information. It can be understood that when the publisher selects the design data to be submitted, the publisher can submit the design data to be submitted at the process design center. In response to the submission operation of the publisher on the nuclear power information submission data, the server initiates a data release review and approval process to the design production management platform. When the design production management platform receives the data release review and approval request, it advances the data release review and approval process for the nuclear power information submission data associated with the request for information submitted by the editor to the design production management platform at the process design center.

[0104] The design and production management platform sends an email to the verification personnel corresponding to the data release school approval request. After receiving the email, the verification personnel can click on the link in the email to log in to the design and production management platform, view the to-do tasks related to the data release school approval, and verify the nuclear power information submission data. The verification personnel verify the nuclear power information submission data on the design and production management platform and feedback the verification results on the design and production management platform. After the verification of the nuclear power information submission data passes, the design and production management platform sends an email to the approval personnel corresponding to the data release school approval request. After receiving the email, the approval personnel can click on the link in the email to log in to the design and production management platform, view the to-do tasks related to the data release school approval, and approve the nuclear power information submission data. The approval personnel approve the nuclear power information submission data on the design and production management platform and feedback the approval results on the design and production management platform.

[0105] If the verification or approval of the nuclear power information submission data fails, the design and production management platform notifies the corresponding release personnel via email. The release personnel can click on the link in the email to log in to the design and production management platform to view the to-do tasks related to the verification or approval, and modify the nuclear power information submission data at the attribute extension end. It can be understood that the release personnel can modify the nuclear power information submission data according to the opinions of the verification personnel or approval personnel. The initiator can initiate the data release school approval process again.

[0106] After the approval of the nuclear power information submission data passes, the design and production management platform sends an email to the receipt personnel corresponding to the data release school approval request. After receiving the email, the receipt personnel can click on the link in the email to log in to the design and production management platform, view the to-do tasks related to the data release school approval, and receive the nuclear power information submission data. After the receipt is completed, the nuclear power information submission data, the receipt results, and the information submission operation records enter the data release. It can be understood that the information submission operation records include the records in the data release school approval process. Relevant professionals can perform information submission query operations based on the data released to the data release center.

[0107] In this embodiment, the nuclear power information submission data is associated with the corresponding information submission requirements, and the nuclear power information submission data is sent to the requirement submitter corresponding to the associated information submission requirements. Only after the data release school approval process passes can the nuclear power information submission data be released to the receipt personnel, ensuring the quality and safety of the nuclear power information submission data.

[0108] In one embodiment, obtaining the nuclear power system design drawings obtained by designing the nuclear power system, and writing the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into the database includes: when receiving a design import request sent by the system flow chart platform, calling the original application of the system flow chart design platform through the middle plug-in layer, and obtaining the relevant data of the nuclear power system design drawings from the database of the system flow chart platform; writing the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into the database based on the relevant data through the data service layer.

[0109] Among them, the middle plug-in layer may include middleware in the open-source development platform, providing an operating and development environment for the upper-layer application software. For example, the.NET middleware,.NET is a free and open-source development platform for building various applications.

[0110] Specifically, when the server receives a design import request sent by the system flow chart platform, the server calls the original application of the system flow chart design platform through the middle plug-in layer. The original application of the system flow chart design platform interacts with the database of the system flow chart platform, obtains the relevant data of the nuclear power system design drawings from the database of the system flow chart platform, and interacts with the middle plug-in layer through the data service layer, and writes the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into the database based on the relevant data.

[0111] In one embodiment, the server calls the data service layer through the data configuration maintenance layer, obtains the relevant data of the nuclear power system design drawings, and writes the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into the secondary development database based on the relevant data.

[0112] In one embodiment, the data configuration maintenance layer includes a secondary development database and a unified maintenance management database. The secondary development database is used to store the nuclear power system design drawings and the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings. The unified maintenance management database is used to implement the development of process data configuration and management and maintenance functions. It can be understood that the server can maintain data collaboration-related data through the secondary development database, and maintain process, personnel, and permission-related data through the unified maintenance management database.

[0113] In one embodiment, Figure 6It is an architectural diagram for the development of a data collaboration method applied to nuclear power system design. The basic nuclear power design data of nuclear power design objects in nuclear power system design drawings comes from the system flow chart platform. The development architecture includes three layers: the middle plug-in layer, the data provision layer, and the data configuration and maintenance layer. The middle plug-in layer calls the original applications of the system flow chart platform and interacts with the database of the system flow chart platform through the data service layer. The data configuration and maintenance layer includes a secondary development database and a unified maintenance and management database. The secondary development database is mainly used to store the nuclear power system design drawings from the system flow chart platform and the basic nuclear power design data of nuclear power design objects on the drawings for the development of the collaborative data module. The unified maintenance and management database mainly stores the data developed for implementing the process data configuration and management and maintenance functions. It can be understood that the secondary development database is used to store data collaboration data, including design data, submission records, and nuclear power submission data, etc. The server can store the data collaboration data in the whole process of design, submission, and release into the secondary development database. The unified maintenance and management database can store data such as various plug-in data, personnel data, process data, and permission data for executing the data collaboration method in the server. The server can obtain the data in the unified maintenance and management database to execute the data collaboration method.

[0114] The secondary development database is used for developing the data release module, and the data development module can implement the processing of data collaboration data and the query and export of data collaboration data. The unified maintenance and management database is used for developing the integrated module for the configuration and management and maintenance of each plug-in and process data. This module can manage permission configuration, process maintenance, process personnel configuration, and process business data field configuration.

[0115] In this embodiment, when receiving a design import request sent by the system flow chart platform, the original applications of the system flow chart design platform are called through the middle plug-in layer, and the relevant data of the nuclear power system design drawings are obtained from the database of the system flow chart platform; based on the relevant data, the basic nuclear power design data of nuclear power design objects in the nuclear power system design drawings are written into the database through the data service layer, and secondary development is carried out on the basis of the system flow chart platform to achieve data collaboration. The process control such as data design process, editing and approval, etc. is realized through the unified maintenance and management database, and the responsibility division among different specialties is standardized. The management and coordinated design functions of various nuclear power design objects are realized through the secondary development database, the data collaboration of the whole process is achieved, and the standardization of the whole process of data collaboration is ensured.

[0116] In one embodiment, the database stores the released nuclear power submission data; the method further includes: in response to the received submission query request, querying the corresponding released historical nuclear power submission data from the database.

[0117] In one embodiment, the database stores information submission records. The historical nuclear power information submission data may include the published nuclear power information submission data and the corresponding information submission records. The server may query the nuclear power information submission data and the information submission records from the database.

[0118] Specifically, the server may send the nuclear power information submission data to the attribute extension end for display. Relevant professionals may input information submission query information at the attribute extension end to initiate an information submission query request to the server. In response to the received information submission query request, the server queries the corresponding published historical nuclear power information submission data from the database according to the information submission query information in the information submission query request.

[0119] In one embodiment, the information submission records may include records related to assigning status to the target nuclear power design data, records related to importing nuclear power system design drawings, and records related to designing extended attributes for nuclear power design objects.

[0120] In this embodiment, the server may query the corresponding published historical nuclear power information submission data from the database in response to the received information submission query request. After the data process is completed, it can ensure the traceability of the information submission history and improve the standardization of data collaboration.

[0121] In one embodiment, each nuclear power design object has a corresponding data template; in response to the extended attribute design for the nuclear power design object based on the basic nuclear power design data, the target nuclear power design data that needs to be assigned a status generated in the database includes: in response to a download request for the data template, sending the data template to the attribute extension end so that the attribute extension end obtains the added extended attribute data based on the data template; receiving the extended attribute data added in the data template sent by the attribute extension end; and generating the target nuclear power design data that needs to be assigned a status in the database based on the basic nuclear power design data, the extended attribute data, and the data template.

[0122] In one embodiment, in response to the operation of a professional in system flow chart design downloading the data template corresponding to the nuclear power design object based on the basic nuclear power design data at the attribute extension end, the server generates the corresponding data template based on the basic nuclear power design data and sends the data template to the attribute extension end.

[0123] Specifically, a professional in system flow chart design downloads the data template corresponding to the nuclear power design object at the attribute extension end, designs the extended attributes for the nuclear power design object in the data template based on the basic nuclear power design data. After completing the extended attribute design, the data template corresponding to the nuclear power design object with the extended attribute data written in it is uploaded to the server through the attribute extension end. The server obtains the data template corresponding to the nuclear power design object with the extended attribute data written in it, reads the extended attribute data in the data template, and generates the target nuclear power design data that needs to be assigned a status in the database.

[0124] In one embodiment, the server may generate a data template based on the design data of each nuclear power design object, and fill the design data into the data template for relevant personnel to download the design data at the terminal.

[0125] In one embodiment, each piece of data related to a nuclear power design object has a corresponding template. It can be understood that when relevant personnel perform operations such as uploading, downloading, and designing data related to each nuclear power design object, they all need to go through the data template. The server may read the data related to each nuclear power design object based on the corresponding data template of each nuclear power design object. For example, the data template may include a submission template for related operations on nuclear power submission data.

[0126] In one embodiment, when the data status of the design data of each nuclear power design object in the nuclear power system design drawing indicates that no submission is required, the nuclear power system design drawing file is published based on the corresponding data template.

[0127] In one embodiment, the server may read or generate a data template in the form of a table file. For example, an EXCEL sheet. It can be understood that relevant professionals can download the data template including basic nuclear power design data in the form of an electronic spreadsheet file at the attribute extension end. In the data template in the form of an electronic spreadsheet file, extended attribute design is performed for the nuclear power design object, extended attribute data is filled, and the table file filled with the extended attribute data is uploaded to the attribute extension end. The attribute extension end may send the table file to the server.

[0128] In one embodiment, Table 2 shows the general header for attribute customization and the entry instructions. The general header fields in the attribute template for each equipment object include Chinese name, English name, attribute category, assignment range, unit, English definition, and Chinese definition. It can be understood that the Chinese name refers to the Chinese name of the attribute of the nuclear power design object. The English name refers to the English name of the attribute of the nuclear power design object corresponding to the Chinese name. The attribute category refers to the category to which the attribute of the nuclear power design object belongs. The assignment range refers to the content of the assignment of the attribute of the nuclear power design object. The unit refers to the unit corresponding to the attribute of the nuclear power design object. The Chinese definition refers to the Chinese interpretation of the attribute of the nuclear power design object. The English definition refers to the English interpretation of the attribute of the nuclear power design object.

[0129]

[0130] Table 2

[0131] It can be understood that data standardization is the basis for data transmission and sharing among multiple disciplines. Therefore, corresponding standards need to be formulated to constrain data between different disciplines and sectors to ensure effective and smooth data interaction between different disciplines. Standardize the attribute templates of nuclear power design objects involved in the system flow chart design so that the attribute templates of each type of nuclear power design object can clarify the subject and related parties of the production and utilization of each attribute, the relationship between the production and utilization of each attribute, and the division of labor and coordination mechanism.

[0132] In one embodiment, Table 3 shows the attribute category codes and descriptions. It can be understood that the attribute category codes specify the categories of nuclear power design object attributes to identify the corresponding attributes as process, equipment or layout related attributes, thereby providing guidance to the responsible professionals of the project specified attributes. For example, the nuclear power design object attributes identified as electrical attribute categories require guidance from corresponding electrical professionals.

[0133]

[0134]

[0135] Table 2

[0136] In this embodiment, based on the data template corresponding to each nuclear power design object, extended attribute design is performed for each nuclear power design object, which can solve the problem of manually uploading extended attribute data for each nuclear power design object. By solidifying the data template of each nuclear power design object, data standardization is achieved, which can solve the problems of data heterogeneity, dispersion, non-standardization and non-uniformity in the data collaboration process.

[0137] In one embodiment, Figure 7 It is a timing diagram for data collaboration. The system flowchart platform sends the nuclear power system design drawings with version records to the data control area in the data collaboration platform. The drawing control area initiates a drawing review and approval request to the design and production management platform for the received nuclear power system design drawings. The design and production management platform reviews and approves the nuclear power system design drawings, and sends the review and approval results to the drawing control area. It can be understood that if the review and approval fails, the nuclear power system design drawings can be modified on the system flowchart platform, and the review and approval can be initiated again until the review and approval passes.

[0138] After the drawing verification and approval is passed, the drawing control area will send the relevant data of the nuclear power system design drawing to the data workspace. It can be understood that the nuclear power system design drawings entering the data workspace can be designed with extended attributes by relevant professionals for the nuclear power design objects in the drawings. After completing the extended attribute design, the data workspace can initiate a status verification and approval request to the design and production management platform for the selected target nuclear power design data that needs to be assigned a status. The design and production management platform will conduct status verification and approval for the target nuclear power design data and send the status verification and approval results to the data workspace. It can be understood that if the status verification and approval fails, the target nuclear power design data can be modified in the data workspace, and the status verification and approval can be initiated again until the status verification and approval passes.

[0139] The data work area will send the target nuclear power design data that has passed the status verification and approval to the data solidification area. It can be understood that only the design data that enters the data solidification area can be raised. The data solidification area generates nuclear power capital raising data based on the selected design data that needs to be raised, and associates the capital raising demand, and initiates a data release verification and approval request to the design and production management platform. The design and production management platform conducts data release verification and approval on the nuclear power capital raising data, and after the data release verification and approval is passed, it notifies the signatory to sign for the nuclear power capital raising data. The signatory can mark the nuclear power capital raising data as not accepted (DA), accepted (AC) and all accepted (AG). After signing, the capital raising related data enters the capital raising query area for capital raising query. It can be understood that if the data release verification and approval fails, the nuclear power capital raising data can be modified in the data solidification area, and the data release verification and approval request can be initiated again until the data release verification and approval is passed.

[0140] In the case where the design data of nuclear power design objects in the nuclear power system design drawings do not need to be further raised, the data solidification area can apply the macro model and publish the nuclear power system design drawing files to promote the commissioning of the nuclear power system design drawing files.

[0141] In this embodiment, the data collaboration platform includes a drawing control area, a data work area, a data solidification area, and a funding query area. The problem solved by the drawing control area is to obtain the nuclear power design objects on the drawings, and the problem solved by the data work area is to design the extended attributes of the nuclear power design objects and to assign status to the data that needs to be assigned status. The data solidification area realizes the file publishing and funding functions, and the funding query area realizes the historical information query of funding information, and the full process of data collaboration is realized through the data collaboration platform.

[0142] In one embodiment, Figure 8As shown, it is a data collaboration interface. Users can perform data collaboration operations on the data collaboration interface. The data collaboration interface includes a drawing control area and a data control area. The drawing control area can realize drawing release. It can be understood that users can submit nuclear power system design drawings in the drawing control area and initiate drawing review and approval. The data control area includes a data working area, a data solidification area, and a data submission query area. The data working area can realize data status promotion operations and extended attribute design operations. It can be understood that users can perform extended attribute design on each nuclear power design object based on the basic nuclear power design data in the data working area, and after completing the extended attribute design, perform data status promotion operations on the design data that needs to be given a status. The data solidification area can realize nuclear power data submission operations and file generation operations. It can be understood that users can submit the design data that needs to be submitted in the data solidification area, and after the submission is completed, perform file generation operations on the completed nuclear power system design drawings to generate finished files. The data submission query area includes data submission form queries. It can be understood that users can query data related to data submission in the data submission query area. The data of each template item includes: pipeline working area, valve working area, pump, container, filter, instrument, valve drive, equipment drive, electric heater, heat exchanger, orifice plate, air valve, air duct, miscellaneous equipment, penetration, HVAC equipment, etc. It can be understood that users can click on the data of each template item to view the design data of each nuclear power design object.

[0143] It should be understood that although Figure 2-5 the steps in the flowchart of Figure 2-5 are shown sequentially in the order indicated by the arrows, these steps are not necessarily executed sequentially in the order indicated by the arrows. Unless otherwise clearly stated in this document, there is no strict order restriction for the execution of these steps, and these steps can be executed in other orders. Moreover,

[0144] In one embodiment, as Figure 9 shown, a data collaboration device 900 applied to nuclear power system design is provided, including: a drawing control unit 902, a data working unit 904, and a data solidification unit 906, where:

[0145] The drawing control unit 902 is used to obtain nuclear power system design drawings obtained by designing a nuclear power system, and write the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into the database

[0146] The data working unit 904 is used to generate target nuclear power design data that needs to be assigned a status in the database in response to the extended attribute design of the nuclear power design object based on the basic nuclear power design data; trigger a status check and approval request initiated for the target nuclear power design data; the status check and approval request is used to instruct to check and approve the status of the target nuclear power design data; after the status check and approval is passed, the target nuclear power design data is assigned a data status related to the capital increase;

[0147] The data solidification unit 906 is used to respond to the funding operation for the design data that needs funding in the target nuclear power design data that has been assigned a data state, generate nuclear power funding data based on the design data that needs funding; and publish the nuclear power funding data to the downstream recipient.

[0148] In one embodiment, the drawing control unit 902 is also used to obtain a design import request sent by the system flowchart platform after the system flowchart platform receives a notification that the drawing review of the nuclear power system design drawing has been approved; in response to the design import request, write the basic nuclear power design data of the nuclear power design object in the nuclear power system design drawing into the database.

[0149] In one embodiment, the data working unit 904 is also used to obtain the extended design data of the nuclear power design object in response to the extended attribute design of the nuclear power design object based on the basic nuclear power design data; the extended design data includes the basic nuclear power design data and the extended attribute data; and the data that needs to be upgraded is selected from the extended design data as the target nuclear power design data that needs to be assigned a status.

[0150] In one embodiment, the downstream receiver includes a demander. The data solidification unit 906 is further configured to associate the nuclear power capital increase data with corresponding capital increase requirements, so as to send the nuclear power capital increase data to the demander corresponding to the associated capital increase requirements.

[0151] In one embodiment, the drawing management and control unit 902 is also used to call the original application of the system flowchart platform through the intermediate plug-in layer when receiving a design import request sent by the system flowchart platform, and obtain relevant data of the nuclear power system design drawings from the database of the system flowchart platform; and write the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into the database based on the relevant data through the data service layer.

[0152] In one embodiment, the database stores published nuclear power capital raising data. The device further comprises a capital raising query unit. The capital raising query unit is used to query the corresponding published historical nuclear power capital raising data from the database in response to a received capital raising query request.

[0153] In one embodiment, each nuclear power design object has a corresponding data template; the data working unit 904 is further configured to, in response to a download request for the data template, send the data template to the attribute extension end, so that the attribute extension end obtains the added extended attribute data based on the data template; receive the extended attribute data added in the data template sent by the attribute extension end; and generate target nuclear power design data to be given a status in the database based on the basic nuclear power design data, the extended attribute data, and the data template.

[0154] For the specific limitations of the data collaboration device, reference can be made to the limitations on the data collaboration method in the foregoing text, which will not be elaborated here. Each device in the above data collaboration device can be implemented in whole or in part by software, hardware, and their combination. Each of the above units can be embedded in the processor of the computer device in hardware form or be independent of it, or can be stored in the memory of the computer device in software form, so that the processor can call and execute the operations corresponding to each of the above units.

[0155] In one embodiment, a computer device is provided. The computer device can be each device in the authentication system. It can be understood that each device can be a server or a terminal, and its internal structure diagram can be as Figure 10 shown. 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 and a computer program. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The network interface of the computer device is used to communicate with an external terminal through a network connection. When the computer program is executed by the processor, an authentication method is implemented.

[0156] Those skilled in the art can understand that Figure 10 the structure shown in

[0157] In one embodiment, a computer device is further provided, including a memory and a processor. A computer program is stored in the memory, and when the processor executes the computer program, the steps in the above method embodiments are implemented.

[0158] In one embodiment, a computer-readable storage medium is provided, on which a computer program is stored. When the computer program is executed by the processor, the steps in the above method embodiments are implemented.

[0159] Those of ordinary skill in the art can understand that all or part of the processes in the methods of the above embodiments can be completed by instructing relevant hardware through a computer program. The computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the embodiments of the above methods. Among them, any reference to a memory, storage, database, or other medium used in the embodiments provided in the present application can include at least one of non-volatile and volatile memories. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, or optical memory, etc. Volatile memory can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM), etc.

[0160] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope recorded in this specification.

[0161] The above-described embodiments merely represent several implementation manners of the present application. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the invention patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, several modifications and improvements can still be made, and these all belong to the protection scope of the present application. Therefore, the protection scope of the patent of the present application should be subject to the appended claims.

Claims

1. A data collaboration method applied to nuclear power system design, characterized in that The method includes: Obtaining the nuclear power system design drawings obtained by designing the nuclear power system, and writing the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into a database, where each of the nuclear power design objects has a corresponding data template, and the data template includes a general header for attribute customization; In response to the extended attribute design for the nuclear power design object based on the basic nuclear power design data, generating target nuclear power design data that needs to be assigned a status in the database; Triggering a status review and approval request for the target nuclear power design data; the status review and approval request is used to indicate the status review and approval of the status of the target nuclear power design data; the status review and approval request is triggered through the design production management platform and associated with relevant personnel with corresponding qualifications, and the relevant personnel include checking personnel, approval personnel, and signing personnel; After the status review and approval is passed, assigning a data status related to information submission to the target nuclear power design data; In response to the information submission operation for the nuclear power design data that needs to be submitted among the target nuclear power design data with the assigned data status, generating nuclear power information submission data based on the nuclear power design data that needs to be submitted; after the information submission operation generates the nuclear power information submission data, associating the corresponding information submission requirements, and triggering a data release review and approval request, and after the data release review and approval is passed, notifying the signing personnel to sign for the nuclear power information submission data; Publishing the nuclear power information submission data to the downstream recipient; Among them, the generating, in the database, of the target nuclear power design data that needs to be assigned a status in response to the extended attribute design for the nuclear power design object based on the basic nuclear power design data includes: In response to a download request for the data template, sending the data template to the attribute extension end so that the attribute extension end obtains the added extended attribute data based on the data template; Receiving the extended attribute data added in the data template sent by the attribute extension end; Based on the basic nuclear power design data, the extended attribute data, and the data template, generating, in the database, the target nuclear power design data that needs to be assigned a status.

2. The method according to claim 1, characterized in that, The method further includes: After receiving the notice that the drawing review and approval of the nuclear power system design drawings has passed on the system flow chart platform, obtaining the design import request sent by the system flow chart platform; In response to the design import request, writing the basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings into the database.

3. The method according to claim 1, wherein The generating, in the database, of the target nuclear power design data that needs to be assigned a status in response to the extended attribute design for the nuclear power design object based on the basic nuclear power design data further includes: In response to the extended attribute design for the nuclear power design object based on the basic nuclear power design data, obtaining the extended design data of the nuclear power design object; the extended design data includes the basic nuclear power design data and the extended attribute data; Taking the data that needs to be promoted in status selected from the extended design data as the target nuclear power design data that needs to be assigned a status.

4. The method according to claim 1, wherein The downstream recipient includes the requirement submitter; The releasing of the nuclear power capital raising data to the downstream recipient includes: The nuclear power capital raising data is associated with the corresponding capital raising demand, so as to send the nuclear power capital raising data to the demander corresponding to the associated capital raising demand.

5. The method according to claim 1, wherein The obtaining of a nuclear power system design drawing obtained by designing a nuclear power system, and writing basic nuclear power design data of a nuclear power design object in the nuclear power system design drawing into a database comprises: Upon receiving a design import request sent by the system flowchart platform, the original application of the system flowchart platform is called through the intermediate plug-in layer to obtain relevant data of the nuclear power system design drawings from the database of the system flowchart platform; The basic nuclear power design data of the nuclear power design objects in the nuclear power system design drawings are written into the database based on the relevant data through the data service layer.

6. The method according to claim 1, wherein The database stores published nuclear power funding data; The method further comprises: In response to the received funding query request, the corresponding published historical nuclear power funding data is queried from the database.

7. A data collaboration device applied to the design of a nuclear power system, characterized in that, The device comprises: A drawing control unit is used to obtain a nuclear power system design drawing obtained by designing a nuclear power system, and write basic nuclear power design data of a nuclear power design object in the nuclear power system design drawing into a database, wherein each of the nuclear power design objects has a corresponding data template, and the data template includes a general header for attribute customization; A data working unit, for generating target nuclear power design data to be assigned a status in the database in response to an extended attribute design of the nuclear power design object based on the basic nuclear power design data; and for sending the data template to an attribute extension end in response to a download request for the data template, so that the attribute extension end obtains the added extended attribute data based on the data template; receiving the extended attribute data added in the data template sent by the attribute extension end; generating target nuclear power design data to be assigned a status in the database based on the basic nuclear power design data, the extended attribute data and the data template; triggering a status check and approval request initiated for the target nuclear power design data; the status check and approval request is used to instruct the status check and approval of the status of the target nuclear power design data; the status check and approval request is triggered through a design and production management platform and is associated with relevant personnel with corresponding qualifications, including checkers, approvers and sign-off personnel; after the status check and approval is passed, the target nuclear power design data is assigned a corresponding data status; The data solidification unit generates nuclear power capital increase data based on the design data that needs to be increased in response to the capital increase operation for the target nuclear power design data that has been assigned a data status; after the capital increase operation generates the nuclear power capital increase data, it associates the corresponding capital increase demand and triggers a data release and approval request, and after the data release and approval are passed, notifies the signing personnel to sign for the nuclear power capital increase data; and releases the nuclear power capital increase data to a downstream recipient.

8. The device according to claim 7, characterized in that, The data working unit is further configured to: in response to the extended attribute design of the nuclear power design object based on the basic nuclear power design data, obtain the extended design data of the nuclear power design object; The extended design data includes basic nuclear power design data and extended attribute data; The data whose status needs to be promoted selected from the extended design data is used as the target nuclear power design data for which the status needs to be given.

9. A computer device, comprising a memory and a processor, the memory storing a computer program, characterized in that, When the processor executes the computer program, it implements the steps of the method according to any one of claims 1 to 6.

10. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the steps of the method according to any one of claims 1 to 6.