Enterprise resource planning device and intelligent debugging method thereof

By employing intelligent debugging methods and a visually guided interface, the problem of integrating data management into enterprise resource planning systems has been solved, thereby improving user autonomy and efficiency while reducing manpower input.

CN115391163BActive Publication Date: 2026-02-10DIGIWIN SOFTWARE CO LTD
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Patent Information

Application Number
CN202110553310.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-05-20
Publication Date
2026-02-10
Estimated Expiration
2041-05-20

AI Technical Summary

Technical Problem

In existing enterprise resource planning systems, integrating data management is difficult, and information administrators need to invest a lot of manpower in anomaly investigation, which increases management costs.

Method used

It provides an intelligent debugging method that displays multiple debugging options through a visually guided interface, including pre-deployment simulation testing, deployment verification, and stable deployment options. It supports data log viewing, integrated service call debugging, and performance analysis, and utilizes a processor for system debugging. The data storage method is changed from the background to the foreground.

Benefits of technology

It enhances user autonomy and efficiency, reduces manpower investment in integrated data management, and simplifies the anomaly investigation process.

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Abstract

An enterprise resource planning device and an intelligent debugging method thereof are disclosed. The intelligent debugging method is applied to an enterprise resource planning system and includes the following steps: displaying a plurality of debugging guide options on a display screen; displaying a plurality of usage purpose options on the display screen according to one of the plurality of debugging guide options; and performing a system debugging operation according to one of the plurality of usage purpose options. The present embodiment improves the autonomy of general users on integrated data management.
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Description

Technical Field

[0001] The embodiments described in this disclosure relate to an enterprise resource planning device and its intelligent debugging method, and particularly to an enterprise resource planning device and its intelligent debugging method with a visual guidance interface. Background Technology

[0002] Cross-platform integration operates through background and backend processing. Therefore, the data transmission process and content are mostly recorded in plain text files and other formats that are not directly accessible to enterprise resource planning (ERP) users on the server's storage space. If system users discover any anomalies or discrepancies in the integrated data, they can only rely on the Management Information System (MIS) to access these records for investigation.

[0003] With the increasing prevalence of IoT thinking, IoT development, and applications, products integrated with enterprise resource planning (ERP) devices are becoming more diverse. Without proper management of these transmitted messages—such as retention days, storage locations, and filename conventions—in the long run, IT administrators will face significant challenges in maintaining and managing these integrated messages. Furthermore, the increasing number of integrated messages will require enterprises to invest more technical manpower, thereby increasing message management costs. Summary of the Invention

[0004] Some embodiments disclosed herein relate to an intelligent debugging method applicable to an enterprise resource planning system, comprising the following steps: displaying multiple debugging guidance options on a screen; displaying multiple usage purpose options on the screen based on one of the multiple debugging guidance options; and performing system debugging operations based on one of the multiple usage purpose options.

[0005] In some embodiments, these debugging guidance options include a pre-deployment simulation test option, a deployment verification option, and a stable deployment option.

[0006] These usage options include a dump data log viewing option, an integration service call debugging option, an integration service call performance analysis option, and an integration service call testing option.

[0007] In some embodiments, the method further includes: when a user selects the integrated service call test option, the display screen shows multiple integrated service interface options to be tested; a processor receives a service request message; and the processor responds with a processing result based on the service request message.

[0008] In some embodiments, the display screen further includes: when a user selects the dump data log viewing option, the screen displays a service log.

[0009] In some embodiments, the system further includes: when a user selects the integrated service call debugging option, the display screen shows that a system has entered a program debugging mode.

[0010] In some embodiments, the display screen further includes a performance analysis result presented in a list format when a user selects the integrated service call performance analysis option.

[0011] In some embodiments, the method further includes: when a user selects one of the dump data log viewing option, the integrated service call debugging option, and the integrated service call performance analysis option, the processor performs a query based on a date condition; and the display screen presents the query results in a list and an error marker color scheme.

[0012] Some embodiments disclosed herein relate to an enterprise resource planning (ERP) apparatus, wherein the ERP apparatus includes a display and a processor. The display is used to show a plurality of debugging boot options. The processor is coupled to the display and is used to display a plurality of usage purpose options via the screen of the display according to one of the plurality of debugging boot options, and to perform system debugging operations according to one of the plurality of usage purpose options.

[0013] In some embodiments, these debugging guidance options include a pre-deployment simulation test option, a deployment verification option, and a stable deployment option. These usage purpose options include a dump data log viewing option, an integration service call debugging option, an integration service call performance analysis option, and an integration service call testing option. Attached Figure Description

[0014] To make the above and other objects, features, advantages and embodiments disclosed herein more apparent and understandable, the accompanying drawings are described below:

[0015] Figure 1 These are schematic diagrams of an enterprise resource planning system illustrated in accordance with some embodiments of this disclosure; and

[0016] Figure 2 This is a schematic diagram illustrating an intelligent debugging method according to some embodiments of the present invention.

[0017] [Symbol Explanation]

[0018] 100: Enterprise Resource Planning System

[0019] 110: Background storage device

[0020] 130A, 130B: Enterprise Resource Planning Device

[0021] 132: Processor

[0022] 134: Monitor

[0023] 136: Memory

[0024] 200: Intelligent Debugging Methods

[0025] S210, S230, S250: Steps Detailed Implementation

[0026] The term "coupled" as used in this article can also refer to "electrical coupling," and the term "connection" can also refer to "electrical connection." "Coupled" and "connection" can also refer to two or more components cooperating or interacting with each other.

[0027] refer to Figure 1 . Figure 1 This is a schematic diagram of an enterprise resource planning system 100 illustrated in accordance with some embodiments of this disclosure.

[0028] by Figure 1 For example, the enterprise resource planning system 100 includes a back-end storage device 110, and enterprise resource planning devices 130A and 130B. In terms of connectivity, enterprise resource planning devices 130A and 130B are respectively connected to the back-end storage device 110.

[0029] like Figure 1 As illustrated, the Enterprise Resource Planning (ERP) device 130A includes a processor 132, a display 134, and a memory 136. In terms of connectivity, the processor 132 is connected between the display 134 and the memory 136. Figure 1 The enterprise resource planning system 100 shown is for illustrative purposes only, and the implementation method in this case is not limited to it.

[0030] The operating instructions for Enterprise Resource Planning System 100 will be provided below. Figure 2 This will be explained together.

[0031] Please see Figure 2 . Figure 2 This is a schematic diagram illustrating an intelligent debugging method 200 according to some embodiments of the present invention. The embodiments of the present invention are not limited thereto.

[0032] It should be noted that this intelligent debugging method 200 can be applied to... Figure 1 The structure of the enterprise resource planning system 100 is the same as or similar to that of other systems. For simplicity, the following will use... Figure 1 The method of operation is described using examples, but this invention does not use examples. Figure 1 Its application is limited.

[0033] It should be noted that, in some embodiments, the intelligent debugging method 200 can also be implemented as a computer program and stored in a non-transitory computer-readable medium, thereby enabling the computer, electronic device, or the aforementioned... Figure 1 The enterprise resource planning system 100 reads this recording medium and executes this operation method. The processor may consist of one or more chips. The non-transitory computer-readable recording medium may be read-only memory, flash memory, floppy disk, hard disk, optical disk, USB flash drive, magnetic tape, network-accessible database, or other non-transitory computer-readable recording media with the same function that can be easily conceived by those skilled in the art.

[0034] In addition, it should be understood that the operation of the intelligent debugging method 200 mentioned in this embodiment can be adjusted according to actual needs, unless the order is specifically described, and can even be executed simultaneously or partially simultaneously.

[0035] Furthermore, in different embodiments, these operations may be adaptively added, replaced, and / or omitted.

[0036] Please see Figure 2 The intelligent debugging method 200 includes the following steps.

[0037] In step S210, several debugging boot options are displayed on the screen. Please refer to them together. Figure 1 In some embodiments, in step S210, it is done by... Figure 1 The processor 132 displays multiple debugging boot options via the screen of the display 134.

[0038] In some embodiments, the debugging guidance options include pre-deployment simulation testing options, deployment verification options, and stable deployment options.

[0039] In step S230, based on one of a plurality of debugging guidance options, multiple usage purpose options are displayed on the screen. In some embodiments, this is done by... Figure 1 The processor 132 displays multiple usage options via the screen of the display 134.

[0040] For example, in some embodiments, when a user selects the pre-launch simulation test option in step S210, the multiple usage purpose options displayed on the display 134 include the dump data log viewing option, the integration service call debugging option, the integration service call performance analysis option, and the integration service call test option.

[0041] In step S250, system debugging is performed based on one of the multiple usage purpose options.

[0042] In some embodiments, when the user selects the integrated service call test option in step S230, the display 134 shows multiple integrated service interface options to be tested. Then, after the user enters the service request message, the processor 132 receives the service request message through an input / output element (not shown), and the processor 132 generates a processing result based on the service request message and displays the processing result on the display 134.

[0043] In some embodiments, when the user selects the data log viewing option in step S230, the screen of display 134 displays the service log.

[0044] In some embodiments, when the user selects the integrated service call debugging option in step S230, the display screen 134 shows that the system has entered the program debugging mode.

[0045] In some embodiments, when a user selects the integrated service call performance analysis option, the display 134 presents the performance analysis results in a list format.

[0046] In some embodiments, when a user selects one of the following options: throwing data log viewing, integrated service call debugging, or integrated service call performance analysis, the processor 132 performs a query based on date conditions. The display 134 then presents the query results in a list format with error marker colors, allowing the user to select the record to view based on the throwing time or service name. Next, the processor 132 displays the service log, enters program debugging mode, or presents the performance analysis results on the display 134.

[0047] In some embodiments, the processor 132 marks abnormal records in red. The user can then view the log content by clicking on the erroneous record.

[0048] In the implementation of this invention, various integrated communication messages that were originally stored in the background storage device 110 in text file format are instead stored in the memory 136.

[0049] The implementation method of this case provides an intelligent visual guidance interface. The first step divides the system according to its import stage (simulation testing, in progress, already launched), allowing users to select based on their actual scenario. The second step further divides the system according to actual needs, providing options for viewing data logs, debugging integrated service calls, analyzing integrated service call performance, and testing integrated service calls. The third step presents various integrated data—originally stored on a backend storage device or server, but now stored in a database within memory—in a foreground operation format for user interaction.

[0050] In some embodiments, the enterprise resource planning system 100, the background storage device 110, and the enterprise resource planning devices 130A and 130B may be servers or other devices. In some embodiments, the processor 132 may be a server, circuit, central processing unit (CPU), microprocessor (MCU), or other device with equivalent functions, having functions such as storage, computation, data reading, receiving signals or messages, and transmitting signals or messages. In some embodiments, the display 134 may be a device with display or other equivalent functions. In some embodiments, the memory 136 may be a device with functions such as data storage, data transmission, data reception, or other equivalent functions.

[0051] As can be seen from the above implementation of this case, the embodiments of this case provide an enterprise resource planning system and its intelligent debugging method. With an intelligent visual guidance interface, the system guides users step by step according to their needs and purposes to see why the transmitted data results are not as expected or to troubleshoot the reasons for abnormal integrated service calls. This improves the autonomy of general users in managing integrated data and reduces the manpower required to troubleshoot any problems in the integrated transmission process that can only be handled by the message administrator.

[0052] Furthermore, the above examples include exemplary steps in sequence, but these steps need not be performed in the order shown. Performing these steps in different orders is within the scope of this disclosure. Within the spirit and scope of the embodiments of this disclosure, these steps may be added, substituted, changed in order, and / or omitted as appropriate.

[0053] Although this disclosure has been presented above with reference to embodiments, it is not intended to limit this disclosure. Any person skilled in the art may make various modifications and alterations without departing from the spirit and scope of this disclosure. Therefore, the scope of protection of this disclosure shall be determined by the scope defined in the appended claims.

Claims

1. An intelligent error correction method, characterized in that, Applicable to an enterprise resource planning system, including: A smart visual guidance interface is displayed on a monitor, in which multiple debugging guidance options corresponding to an anomaly integration data are displayed. Based on one of the plurality of debugging guidance options, the display screen shows a plurality of usage purpose options; System debugging is performed based on one of the multiple usage purpose options, wherein the multiple usage purpose options include a dump data log viewing option, an integrated service call debugging option, an integrated service call performance analysis option, and an integrated service call testing option. When a user selects one of the following options: the dump data log viewing option, the integrated service call debugging option, and the integrated service call performance analysis option, a processor queries based on a date condition; and The screen displays the query results in a list format with error marker colors.

2. The intelligent error correction method according to claim 1, characterized in that, The aforementioned debugging guidance options include a pre-deployment simulation test option, a deployment implementation verification option, and a stable deployment option.

3. The intelligent error correction method according to claim 1, characterized in that, Also includes: When a user selects the test option for the integrated service call, the display screen shows multiple interface options for the integrated service to be tested; The processor receives a service request message; The processor responds with a processing result based on the service request message.

4. The intelligent error correction method according to claim 1, characterized in that, Also includes: When a user selects the option to view the dump data log, the display shows a service log.

5. The intelligent error correction method according to claim 1, characterized in that, Also includes: When a user selects the debugging option for the integrated service, the display shows that the system has entered program debugging mode.

6. The intelligent error correction method according to claim 1, characterized in that, Also includes: When a user selects the performance analysis option for the integrated service, the display shows a list of performance analysis results.

7. An enterprise resource planning device, characterized in that, The enterprise resource planning device includes: A display for showing an intelligent visual guidance interface, in which multiple debugging guidance options corresponding to an anomaly integration data are displayed; as well as A processor, coupled to the display, is used to: Based on one of the plurality of debugging guidance options, a plurality of usage purpose options are displayed on the screen of the display, and system debugging is performed based on one of the plurality of usage purpose options, wherein the plurality of usage purpose options include a dump data log viewing option, an integrated service call debugging option, an integrated service call performance analysis option, and an integrated service call testing option. as well as When a user selects one of the following options: the dump data log viewing option, the integrated service call debugging option, or the integrated service call performance analysis option, a query is performed based on a date condition, and the results are displayed on the screen in a list and an error marker color based on the query results.

8. The enterprise resource planning device according to claim 7, characterized in that, The aforementioned debugging guidance options include a pre-deployment simulation test option, a deployment implementation verification option, and a stable deployment option.

Citation Information

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