An architecture information governance method, apparatus, device, and readable storage medium
By introducing input information processing mechanisms from task initiators and task recipients in architectural information governance, the governance complexity caused by multi-system and personnel participation is solved, and more accurate and traceable governance results are achieved.
Patent Information
- Application Number
- CN202111507443.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-10
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2041-12-10
AI Technical Summary
When managing architectural information, there are a lot of systems and personnel involved, resulting in huge workloads, high communication costs, easy to miss, difficult to promote, and difficult to track.
Provides a method of governance of architecture information, by obtaining input information from task initiators and task recipients, sending control commands and prompt information, ensuring the standard format and consistency of information feedback until the governance of architecture information is completed.
It solves the complexity of architectural information governance, improves the accuracy and traceability of governance results, reduces communication costs, and avoids omissions and promotion difficulties.
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Figure CN114240350B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of architecture information technology, and in particular, to an architecture information governance method, device, equipment and readable storage medium. Background Art
[0002] The architecture information governance process is generally carried out by sending emails manually. For the situation where the number of systems is large and scattered, it is necessary to have multiple email exchanges with the person in charge of each system, with a huge workload and it is not easy to track. Summary of the Invention
[0003] The purpose of the present invention is to provide an architecture information governance method, device, equipment and readable storage medium to improve the above problems.
[0004] To achieve the above purpose, the embodiments of the present application provide the following technical solutions:
[0005] On the one hand, the embodiments of the present application provide an architecture information governance method, and the method includes:
[0006] Obtain first input information, where the first input information includes information for an information feedback task for each subsystem included in the architecture input by a task initiator;
[0007] In response to the first input information, send a first control command to the task recipient corresponding to each subsystem, where the first control command includes a command to remind the task recipient to start processing the information feedback task;
[0008] Obtain second input information, where the second input information includes the information feedback result input by the task recipient;
[0009] Process according to the second input information until third input information is obtained, where the third input information includes information input by the task initiator indicating that the architecture information has been governed.
[0010] Optionally, after sending the first control command to the task recipient corresponding to each subsystem in response to the first input information, it further includes:
[0011] Obtain the current moment, the first moment and the moment difference threshold, where the first moment is the moment when the first control command is sent to the task recipient corresponding to each subsystem;
[0012] Analyze the current moment and the first moment. If the second input information has not been obtained before the current moment and the difference between the first moment and the current moment is greater than the moment difference threshold, send a first prompt message to the task recipient, where the first prompt message is used to remind the task recipient to process the feedback task in time.
[0013] Optionally, the processing according to the second input information until the third input information is obtained includes:
[0014] Obtain first information, where the first information includes data information corresponding to each subsystem, compare the data information with the information feedback results input by the task recipients corresponding to each subsystem. If the data information is consistent with the information feedback results input by the task recipients, send a second prompt message to the task originator, where the second prompt message is used to prompt the task originator that the input architecture information has been processed; if the data information is inconsistent with the information feedback results input by the task recipients, change the data information corresponding to the subsystem until the third input information is obtained.
[0015] Optionally, the changing the data information corresponding to the subsystem until the third input information is obtained includes:
[0016] Send an information change task to the task recipient corresponding to the subsystem;
[0017] Obtain fourth input information, where the fourth input information includes the changed data information input by the task recipient;
[0018] Obtain second information, where the second information includes the data information corresponding to the subsystem after the change, analyze the second information and the fourth input information. If the second information is consistent with the fourth input information, send the second prompt message to the task originator, where the second prompt message is used to prompt the task originator that the input architecture information has been processed; if the second information is inconsistent with the fourth input information, send an information change task to the task recipient corresponding to the subsystem again until the third input information is obtained.
[0019] Optionally, after sending the first control command to the task recipient corresponding to each subsystem, it further includes:
[0020] Obtain the standard format of information feedback;
[0021] Send the standard format of information feedback to the task recipient corresponding to each subsystem, for prompting the task recipient to perform information feedback according to the standard format of information feedback.
[0022] Optionally, after processing according to the second input information until the third input information is obtained, it further includes:
[0023] Obtain the third information and the fourth information, where the third information includes process data information for information governance of each of the subsystems, and the fourth information includes the time when information governance of each of the subsystems is completed;
[0024] Analyze the third information and the fourth information corresponding to each of the subsystems to obtain the analysis result of the architecture information governance;
[0025] Send the analysis result of the architecture information governance to the task originator to help the task originator adjust the process of architecture information governance.
[0026] In a second aspect, an embodiment of the present application provides an architecture information governance device, and the device includes a first acquisition module, a response module, a second acquisition module, and a processing module.
[0027] The first acquisition module is used to acquire first input information, where the first input information includes information about the information feedback task for each subsystem included in the architecture input by the task originator;
[0028] The response module is used to, in response to the first input information, send a first control command to the task recipient corresponding to each of the subsystems, and the first control command includes a command to remind the task recipient to start processing the information feedback task;
[0029] The second acquisition module is used to acquire second input information, where the second input information includes the information feedback result input by the task recipient;
[0030] The processing module is used to process according to the second input information until third input information is acquired, and the third input information includes information input by the task originator indicating that the architecture information has been governed.
[0031] Optionally, the device further includes:
[0032] The third acquisition module is used to acquire the current time, the first time, and a time difference threshold, where the first time is the time when the first control command is sent to the task recipient corresponding to each of the subsystems;
[0033] The first analysis module is used to analyze the current time and the first time. If the second input information is not acquired before the current time and the difference between the first time and the current time is greater than the time difference threshold, then send a first prompt information to the task recipient, and the first prompt information is used to remind the task recipient to process the feedback task in a timely manner.
[0034] Optionally, the processing module includes:
[0035] An acquisition unit is configured to acquire first information, where the first information includes data information corresponding to each subsystem, and compare the data information with the information feedback results input by the task recipients corresponding to each subsystem. If the data information is consistent with the information feedback results input by the task recipients, a second prompt message is sent to the task initiator, and the second prompt message is used to prompt the task initiator that the architecture information has been governed; if the data information is inconsistent with the information feedback results input by the task recipients, the data information corresponding to the subsystem is changed until the third input information is obtained.
[0036] Optionally, the acquisition unit includes:
[0037] A sending subunit is configured to send an information change task to the task recipient corresponding to the subsystem;
[0038] A first acquisition subunit is configured to acquire fourth input information, where the fourth input information includes the changed data information input by the task recipient;
[0039] A second acquisition subunit is configured to acquire second information, where the second information includes the data information corresponding to the subsystem after the change, and analyze the second information and the fourth input information. If the second information is consistent with the fourth input information, the second prompt message is sent to the task initiator, and the second prompt message is used to prompt the task initiator that the architecture information has been governed; if the second information is inconsistent with the fourth input information, an information change task is sent to the task recipient corresponding to the subsystem again until the third input information is obtained.
[0040] Optionally, the device further includes:
[0041] A fourth acquisition module is configured to acquire the standard format of information feedback;
[0042] A first sending module is configured to send the standard format of information feedback to the task recipients corresponding to each subsystem, for prompting the task recipients to perform information feedback according to the standard format of information feedback.
[0043] Optionally, the device further includes:
[0044] A fifth acquisition module is configured to acquire third information and fourth information, where the third information includes process data information for information governance of each subsystem, and the fourth information includes the time when each subsystem completes information governance;
[0045] A second analysis module, configured to analyze the third information and the fourth information corresponding to each of the subsystems to obtain the analysis result of the architecture information governance;
[0046] A second sending module, configured to send the analysis result of the architecture information governance to the task initiator to help the task initiator adjust the process of architecture information governance.
[0047] In a third aspect, an embodiment of the present application provides an architecture information governance device, which includes a memory and a processor. The memory is used to store a computer program; the processor is configured to implement the steps of the above architecture information governance method when executing the computer program.
[0048] In a fourth aspect, an embodiment of the present application provides a readable storage medium, on which a computer program is stored, and the computer program implements the steps of the above architecture information governance method when executed by a processor.
[0049] The beneficial effects of the present invention are as follows:
[0050] 1. The present invention solves the problem of the complexity of architecture information governance when there are a large number of systems and personnel involved in architecture information governance.
[0051] 2. The present invention enables users to perform architecture information governance more quickly and accurately, effectively solves the problems of high communication cost, easy omission, and difficult promotion, and ensures the accuracy of architecture information.
[0052] Other features and advantages of the present invention will be described in the subsequent description, and part of them will become obvious from the description, or be understood by implementing the embodiments of the present invention. The objectives and other advantages of the present invention can be realized and obtained by the structures specifically pointed out in the written description, claims, and drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0053] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required in the embodiments. It should be understood that the following drawings only show some embodiments of the present invention, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.
[0054] Figure 1 It is a schematic flowchart of the architecture information governance method described in the embodiments of the present invention;
[0055] Figure 2 It is a schematic structural diagram of the architecture information governance device described in the embodiments of the present invention;
[0056] Figure 3It is a schematic structural diagram of the architecture information governance device described in the embodiments of the present invention. Detailed implementation manners
[0057] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Apparently, the described embodiments are some but not all of the embodiments of the present invention. The components of the embodiments of the present invention usually described and illustrated in the accompanying drawings here can be arranged and designed in various different configurations. Therefore, the detailed description of the embodiments of the present invention provided in the accompanying drawings here is not intended to limit the scope of the claimed present invention, but merely represents the selected embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0058] It should be noted that: similar reference numerals or letters denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings. At the same time, in the description of the present invention, the terms "first", "second", etc. are only used for differential description and cannot be understood as indicating or implying relative importance.
[0059] Embodiment 1
[0060] As Figure 1 shown, this embodiment provides an architecture information governance method, which includes steps S1, S2, S3 and S4.
[0061] Step S1: Obtain first input information, where the first input information includes information for an information feedback task for each subsystem included in the architecture input by a task initiator;
[0062] Step S2: In response to the first input information, send a first control command to the task acceptor corresponding to each subsystem, where the first control command includes a command to remind the task acceptor to start processing the information feedback task;
[0063] Step S3: Obtain second input information, where the second input information includes the information feedback result input by the task acceptor;
[0064] Step S4: Process according to the second input information until third input information is obtained, where the third input information includes information input by the task initiator indicating that the architecture information has been governed.
[0065] In this embodiment, tasks for information feedback can be initiated for each subsystem simultaneously, or tasks for information feedback can be initiated only for certain subsystems; among them, the information feedback tasks include feedback on relevant information such as the functions, positioning, object orientation, and status of the system.
[0066] Currently, when manually conducting architecture information governance, when the number of systems is small, the feasibility of architecture information governance can still be ensured; however, if the number of systems is extremely large, the systems and personnel involved will increase exponentially, resulting in a huge workload. As a result, not only can the accuracy of architecture information governance not be guaranteed, but also the progress and results of architecture information governance cannot be effectively tracked. Through the method in this embodiment, the entire governance can be completed online, thus eliminating the need for offline processing, solving the complexity problem of architecture information governance when there are a large number of systems and personnel involved in architecture information governance, and at the same time improving the accuracy and traceability of the governance results.
[0067] In a specific implementation manner of the present disclosure, the method may further include step S5 and step S6.
[0068] Step S5: Obtain the current moment, the first moment, and the time difference threshold, where the first moment is the moment when the first control command is sent to the task recipient corresponding to each subsystem;
[0069] Step S6: Analyze the current moment and the first moment. If the second input information has not been obtained before the current moment and the difference between the first moment and the current moment is greater than the time difference threshold, then send a first prompt message to the task recipient, and the first prompt message is used to remind the task recipient to process the feedback task in a timely manner.
[0070] In this embodiment, the time difference threshold can be customized according to the user's needs; through the method in this embodiment, it is possible to prevent the task recipient from forgetting to process the feedback task due to other work reasons, and at the same time improve the governance efficiency of the entire governance task.
[0071] In a specific implementation manner of the present disclosure, step S4 may further include step S41.
[0072] Step S41: Obtain the first information, where the first information includes the data information corresponding to each subsystem. Compare the data information with the information feedback results input by the task recipients corresponding to each subsystem. If the data information is consistent with the information feedback results input by the task recipients, send a second prompt message to the task initiator, where the second prompt message is used to prompt the task initiator that the architecture information has been governed. If the data information is inconsistent with the information feedback results input by the task recipients, change the data information corresponding to the subsystem until the third input information is obtained.
[0073] In the entire architecture, the relevant information of each subsystem can be directly obtained. If the information feedback by the task recipient of the subsystem is inconsistent with the directly obtained relevant information, then the relevant information of the subsystem needs to be changed. If they are consistent, no other governance steps are required, and the governance of this subsystem is directly ended.
[0074] In a specific implementation manner of the present disclosure, the step S41 may further include steps S411, S412, and S413.
[0075] Step S411: Send an information change task to the task recipient corresponding to the subsystem.
[0076] Step S412: Obtain the fourth input information, where the fourth input information includes the changed data information input by the task recipient.
[0077] Step S413: Obtain the second information, where the second information includes the data information corresponding to the subsystem after the change. Analyze the second information and the fourth input information. If the second information is consistent with the fourth input information, send the second prompt message to the task initiator, where the second prompt message is used to prompt the task initiator that the architecture information has been governed. If the second information is inconsistent with the fourth input information, send an information change task to the task recipient corresponding to the subsystem again until the third input information is obtained.
[0078] In this embodiment, when relevant information needs to be changed, an information change task is sent to the task recipient. After the task recipient receives the task, the relevant information is changed through the corresponding process. After the change is completed, the task recipient will feedback the changed relevant information. After the feedback, the changed relevant information will be compared with the currently obtained relevant information (it can also be compared by the task initiator). If the two are consistent, the governance of this subsystem is completed. If they are inconsistent, an information change task will be sent to the task recipient again until the changed relevant information is consistent with the currently obtained relevant information;
[0079] In another implementation manner, in addition to determining whether the changed relevant information is consistent with the currently obtained relevant information, it can also be determined whether the currently obtained relevant information is consistent with the content included in the information change task. If the judgment results are both consistent, the governance of this subsystem is completed. In this way, the accuracy of the governance result can be improved.
[0080] In a specific implementation manner of the present disclosure, the method may further include step S7 and step S8.
[0081] Step S7: Obtain the standard format of the information feedback;
[0082] Step S8: Send the standard format of the information feedback to the task recipient corresponding to each subsystem, for prompting the task recipient to perform information feedback according to the standard format of the information feedback.
[0083] In this embodiment, because there are a large number of subsystems involved, by designing a standard format, the format of the feedback information can be ensured to be consistent, thereby improving the efficiency and accuracy of information governance.
[0084] In a specific implementation manner of the present disclosure, the method may further include step S9, step S10 and step 11.
[0085] Step S9: Obtain the third information and the fourth information, where the third information includes the process data information for information governance of each subsystem, and the fourth information includes the time when each subsystem completes information governance;
[0086] Step S10: Analyze the third information and the fourth information corresponding to each subsystem to obtain the analysis result of the architecture information governance;
[0087] Step S11: Send the analysis result of the architecture information governance to the task initiator, for helping the task initiator adjust the process of architecture information governance.
[0088] Embodiment 2
[0089] As shown Figure 2 in the figure, this embodiment provides an architecture information governance device, which includes a first acquisition module 701, a response module 702, a second acquisition module 703, and a processing module 704.
[0090] The first acquisition module 701 is configured to acquire first input information, where the first input information includes information for an information feedback task for each subsystem included in the architecture input by a task initiator;
[0091] The response module 702 is configured to send a first control command to a task acceptor corresponding to each of the subsystems in response to the first input information, where the first control command includes a command to remind the task acceptor to start processing the information feedback task;
[0092] The second acquisition module 703 is configured to acquire second input information, where the second input information includes an information feedback result input by the task acceptor;
[0093] The processing module 704 is configured to process according to the second input information until third input information is acquired, where the third input information includes information that the task initiator inputs indicating that the architecture information has been governed.
[0094] Through the method in this embodiment, the entire governance can be completed online, so there is no need for offline processing, solving the complexity problem of architecture information governance when there are a large number of systems and personnel involved in architecture information governance, and at the same time improving the accuracy and traceability of the governance results.
[0095] In a specific implementation manner of the present disclosure, the device further includes a third acquisition module 705 and a first analysis module 706.
[0096] The third acquisition module 705 is configured to acquire the current moment, a first moment, and a time difference threshold, where the first moment is the moment when the first control command is sent to the task acceptor corresponding to each of the subsystems;
[0097] The first analysis module 706 is configured to analyze the current moment and the first moment. If the second input information is not acquired before the current moment and the difference between the first moment and the current moment is greater than the time difference threshold, a first prompt information is sent to the task acceptor, where the first prompt information is used to remind the task acceptor to process the feedback task in a timely manner.
[0098] In a specific implementation manner of the present disclosure, the processing module 704 further includes an acquisition unit 7041.
[0099] An acquisition unit 7041 is configured to acquire first information, where the first information includes data information corresponding to each subsystem, and compare the data information with the information feedback results input by the task recipients corresponding to each subsystem. If the data information is consistent with the information feedback results input by the task recipients, a second prompt message is sent to the task initiator, and the second prompt message is used to prompt the task initiator that the architecture information has been managed; if the data information is inconsistent with the information feedback results input by the task recipients, the data information corresponding to the subsystem is changed until the third input information is obtained.
[0100] In a specific implementation manner of the present disclosure, the acquisition unit 7041 further includes a sending subunit 70411, a first acquisition subunit 70412, and a second acquisition subunit 70413.
[0101] The sending subunit 70411 is configured to send an information change task to the task recipient corresponding to the subsystem.
[0102] The first acquisition subunit 70412 is configured to acquire fourth input information, where the fourth input information includes the changed data information input by the task recipient.
[0103] The second acquisition subunit 70413 is configured to acquire second information, where the second information includes the data information corresponding to the subsystem after the change, and analyze the second information and the fourth input information. If the second information is consistent with the fourth input information, the second prompt message is sent to the task initiator, and the second prompt message is used to prompt the task initiator that the architecture information has been managed; if the second information is inconsistent with the fourth input information, an information change task is sent to the task recipient corresponding to the subsystem again until the third input information is obtained.
[0104] In a specific implementation manner of the present disclosure, the device further includes a fourth acquisition module 707 and a first sending module 708.
[0105] The fourth acquisition module 707 is configured to acquire a standard format of information feedback.
[0106] The first sending module 708 is configured to send the standard format of information feedback to the task recipients corresponding to each subsystem, for prompting the task recipients to perform information feedback according to the standard format of information feedback.
[0107] In a specific implementation manner of the present disclosure, the device further includes a fifth acquisition module 709, a second analysis module 710, and a second sending module 711.
[0108] A fifth acquisition module 709, configured to acquire third information and fourth information, where the third information includes process data information for information governance of each of the subsystems, and the fourth information includes the time when each of the subsystems completes information governance;
[0109] A second analysis module 710, configured to analyze the third information and the fourth information corresponding to each of the subsystems to obtain the architecture information governance analysis result;
[0110] A second sending module 711, configured to send the architecture information governance analysis result to the task originator to help the task originator adjust the process of architecture information governance.
[0111] It should be noted that for the device in the above embodiments, the specific manners in which each module performs operations have been described in detail in the embodiments related to the method, and will not be elaborated here.
[0112] Embodiment 3
[0113] Corresponding to the above method embodiment, the present disclosure embodiment also provides an architecture information governance device, and the architecture information governance device described below can be correspondingly referred to the architecture information governance method described above.
[0114] Figure 3 It is a block diagram of an architecture information governance device 800 shown according to an exemplary embodiment. As Figure 3 shown, the architecture information governance device 800 may include: a processor 801, a memory 802. The architecture information governance device 800 may further include one or more of a multimedia component 803, an input / output (I / O) interface 804, and a communication component 805.
[0115] Among them, the processor 801 is used to control the overall operation of the architecture information governance device 800 to complete all or part of the steps in the above-mentioned architecture information governance method. The memory 802 is used to store various types of data to support the operation of the architecture information governance device 800. These data may include, for example, instructions for any application or method operating on the architecture information governance device 800, as well as application-related data, such as contact data, received and sent messages, pictures, audio, video, and so on. The memory 802 can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, magnetic disk or optical disk. The multimedia component 803 may include a screen and an audio component. The screen can be, for example, a touch screen, and the audio component is used to output and / or input audio signals. For example, the audio component may include a microphone for receiving external audio signals. The received audio signal can be further stored in the memory 802 or sent through the communication component 805. The audio component also includes at least one speaker for outputting audio signals. The I / O interface 804 provides an interface between the processor 801 and other interface modules, and the above-mentioned other interface modules can be a keyboard, a mouse, buttons, etc. These buttons can be virtual buttons or physical buttons. The communication component 805 is used for wired or wireless communication between the architecture information governance device 800 and other devices. Wireless communication, such as Wi-Fi, Bluetooth, near field communication (NFC), 2G, 3G or 4G, or a combination of one or more of them. Accordingly, the communication component 805 may include: a Wi-Fi module, a Bluetooth module, an NFC module.
[0116] In an exemplary embodiment, the architecture information governance device 800 may be implemented by one or more application specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field programmable gate arrays (FPGAs), controllers, microcontrollers, microprocessors, or other electronic components, and is used to execute the above-mentioned architecture information governance method.
[0117] In another exemplary embodiment, a computer-readable storage medium including program instructions is further provided. When the program instructions are executed by a processor, the steps of the above-mentioned architecture information governance method are implemented. For example, the computer-readable storage medium may be the above-mentioned memory 802 including program instructions, and the above-mentioned program instructions may be executed by the processor 801 of the architecture information governance device 800 to complete the above-mentioned architecture information governance method.
[0118] Embodiment 4
[0119] Corresponding to the above method embodiments, the embodiments of the present disclosure further provide a readable storage medium. A readable storage medium described below can be correspondingly referred to the architecture information governance method described above.
[0120] A readable storage medium stores a computer program. When the computer program is executed by a processor, the steps of the architecture information governance method in the above method embodiments are implemented.
[0121] The readable storage medium may specifically be various readable storage media such as a USB flash drive, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disc that can store program codes.
[0122] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. For those skilled in the art, the present invention may have various changes and modifications. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. An architecture information governance method, characterized in that, it includes: Obtain first input information, where the first input information includes information for an information feedback task for each subsystem included in the architecture input by a task initiator; In response to the first input information, send a first control command to the task recipient corresponding to each subsystem, where the first control command includes a command to remind the task recipient to start processing the information feedback task; Obtain second input information, where the second input information includes the information feedback result input by the task recipient; Process according to the second input information until third input information is obtained, where the third input information includes information input by the task initiator indicating that the architecture information has been governed; The process according to the second input information until third input information is obtained includes: Obtain first information, where the first information includes the data information corresponding to each subsystem, compare the data information with the information feedback result input by the task recipient corresponding to each subsystem, if the data information is consistent with the information feedback result input by the task recipient, send a second prompt information to the task initiator, where the second prompt information is used to prompt the task initiator to input that the architecture information has been governed; if the data information is inconsistent with the information feedback result input by the task recipient, change the data information corresponding to the subsystem until the third input information is obtained; The changing the data information corresponding to the subsystem until the third input information is obtained includes: Send an information change task to the task recipient corresponding to the subsystem; Obtain fourth input information, where the fourth input information includes the changed data information input by the task recipient; Obtain second information, where the second information includes the data information corresponding to the subsystem after the change, analyze the second information and the fourth input information, if the second information is consistent with the fourth input information, send the second prompt information to the task initiator, where the second prompt information is used to prompt the task initiator to input that the architecture information has been governed; if the second information is inconsistent with the fourth input information, send an information change task to the task recipient corresponding to the subsystem again until the third input information is obtained.
2. The architecture information governance method according to claim 1, characterized in that, after sending the first control command to the task recipient corresponding to each subsystem in response to the first input information, it further includes: Obtain the current time, the first time, and a time difference threshold, where the first time is the time when the first control command is sent to the task recipient corresponding to each subsystem; Analyze the current moment and the first moment. If the second input information has not been obtained before the current moment and the difference between the first moment and the current moment is greater than the moment difference threshold, send a first prompt message to the task recipient, where the first prompt message is used to remind the task recipient to process the feedback task in a timely manner.
3. The architecture information governance method according to claim 1, characterized in that, after sending the first control command to the task recipient corresponding to each subsystem, it further includes: Obtain the standard format of information feedback; Send the standard format of the information feedback to the task recipient corresponding to each subsystem, for prompting the task recipient to perform information feedback according to the standard format of the information feedback.
4. The architecture information governance method according to claim 1, characterized in that, after processing according to the second input information until the third input information is obtained, it further includes: Obtain the third information and the fourth information, where the third information includes the process data information for information governance of each subsystem, and the fourth information includes the time when each subsystem completes information governance; Analyze the third information and the fourth information corresponding to each subsystem to obtain the architecture information governance analysis result; Send the architecture information governance analysis result to the task initiator, for helping the task initiator adjust the process of architecture information governance.
5. An architecture information governance device, characterized in that, it includes: A first acquisition module, configured to acquire first input information, where the first input information includes information about the information feedback task for each subsystem included in the architecture input by the task initiator; A response module, configured to send a first control command to the task recipient corresponding to each subsystem in response to the first input information, where the first control command includes a command to remind the task recipient to start processing the information feedback task; A second acquisition module, configured to acquire second input information, where the second input information includes the information feedback result input by the task recipient; A processing module, configured to process according to the second input information until the third input information is obtained, where the third input information includes the information that the architecture information has been governed input by the task initiator; The processing module includes: An acquisition unit, configured to acquire first information, where the first information includes the data information corresponding to each subsystem, compare the data information with the information feedback result input by the task recipient corresponding to each subsystem, if the data information is consistent with the information feedback result input by the task recipient, send a second prompt message to the task initiator, where the second prompt message is used to prompt the task initiator to input that the architecture information has been governed; if the data information is inconsistent with the information feedback result input by the task recipient, change the data information corresponding to the subsystem until the third input information is obtained; The acquisition unit includes: A sending subunit, configured to send an information change task to the task recipient corresponding to the subsystem; A first obtaining subunit, configured to obtain fourth input information, where the fourth input information includes the changed data information input by the task recipient; A second obtaining subunit, configured to obtain second information, where the second information includes the data information corresponding to the subsystem after change, and analyze the second information and the fourth input information. If the second information is consistent with the fourth input information, send the second prompt information to the task originator, where the second prompt information is used to prompt the task originator that the input architecture information has been governed; if the second information is inconsistent with the fourth input information, send the information change task to the task recipient corresponding to the subsystem again until the third input information is obtained.
6. The architecture information governance device according to claim 5, wherein, the device further includes: A third obtaining module, configured to obtain the current time, the first time, and a time difference threshold, where the first time is the time when the first control command is sent to the task recipient corresponding to each subsystem; A first analysis module, configured to analyze the current time and the first time. If the second input information has not been obtained before the current time and the difference between the first time and the current time is greater than the time difference threshold, send the first prompt information to the task recipient, where the first prompt information is used to remind the task recipient to process the feedback task in a timely manner.
7. The architecture information governance device according to claim 5, wherein, the device further includes: A fourth obtaining module, configured to obtain the standard format of information feedback; A first sending module, configured to send the standard format of information feedback to the task recipient corresponding to each subsystem, for prompting the task recipient to perform information feedback according to the standard format of information feedback.
8. The architecture information governance device according to claim 5, wherein, the device further includes: A fifth obtaining module, configured to obtain third information and fourth information, where the third information includes the process data information for information governance of each subsystem, and the fourth information includes the time when each subsystem completes information governance; A second analysis module, configured to analyze the third information and the fourth information corresponding to each subsystem to obtain the architecture information governance analysis result; A second sending module, configured to send the architecture information governance analysis result to the task originator, for helping the task originator adjust the process of architecture information governance.
9. An architecture information governance device, wherein, it includes: A memory, configured to store a computer program; A processor, configured to implement the steps of the architecture information governance method according to any one of claims 1 to 4 when executing the computer program.
10. A readable storage medium, wherein: A computer program is stored on the readable storage medium, and when the computer program is executed by a processor, the steps of the architecture information governance method according to any one of claims 1 to 4 are implemented.
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