A full-link data monitoring and processing method and system for mobile terminals

By using a full-link data monitoring method for mobile information systems and using graph analysis and fault influencing factors to screen transmission links, the operational reliability problem of mobile information systems is solved, and reliable monitoring of data transmission links is achieved.

CN118353767BActive Publication Date: 2025-09-19STATE GRID HENAN INFORMATION & TELECOMM CO +1
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Patent Information

Application Number
CN202410657777.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-27
Publication Date
2025-09-19
Estimated Expiration
2044-05-27

AI Technical Summary

Technical Problem

Existing technologies are unable to achieve full-link data monitoring of mobile information systems, resulting in page freezes or information congestion, affecting system operation reliability.

Method used

The complexity of the data transmission link is determined through graph analysis of the monitoring data, the transmission links that require full-link monitoring are screened out, and whether full-link monitoring should be performed is determined based on the fault influencing factors.

Benefits of technology

It improves the reliability of the mobile terminal information system, ensures the reliability of the monitoring data with complex data transmission links, and improves the operational reliability of the mobile terminal.

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Abstract

The present invention provides a full-link data monitoring and processing method and system for a mobile terminal, which belongs to the field of data monitoring technology, and specifically includes: determining a screening transmission link according to the usage of monitoring data of different data transmission links, and using a mobile terminal page that has a data interaction relationship with the screening transmission link as an associated page, determining the fault impact factor of the monitoring data in different business modules through the setting level of different associated pages in their business modules and the association with other pages, using the fault impact factors of the monitoring data of different screening transmission links in different business modules to determine the problem impact factors of different screening transmission links, and determining the screening transmission link that needs to be full-link monitored based on the map analysis results of the screening transmission link and the problem impact factor, thereby further ensuring the monitoring reliability of the monitoring data.
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Description

Technical Field

[0001] The present invention belongs to the technical field of data monitoring and processing, and in particular relates to a full-link data monitoring and processing method and system for a mobile terminal. Background Art

[0002] With the extensive application of mobile information systems, the convenience of use for power workers has been greatly improved. However, at the same time, how to monitor abnormal data in mobile information systems and improve the reliability of mobile information systems has become a technical problem that needs to be solved urgently.

[0003] To solve the above technical problems, existing technical solutions often implement the screening of abnormal information modules through data monitoring and send the abnormal information modules to operation and maintenance personnel in a timely manner. However, it is not difficult to find through analysis that there are the following technical problems:

[0004] Since there is a certain amount of information interaction between different pages, page freezes or information congestion may be caused in some cases by untimely data responses from other pages. If full-link monitoring and analysis of information system data is not considered, the operational reliability of the mobile terminal cannot be guaranteed.

[0005] To solve the above technical problems, the present application provides a full-link data monitoring and processing method and system for mobile terminals. Summary of the Invention

[0006] To achieve the purpose of the present invention, the present invention adopts the following technical solutions:

[0007] According to one aspect of the present invention, a full-link data monitoring and processing method for a mobile terminal is provided.

[0008] A full-link data monitoring and processing method for a mobile terminal, characterized by:

[0009] S1 determines the data transmission link of the monitoring data based on the call data of the monitoring data, and determines whether the data transmission link of the monitoring data is complex through the graph analysis result of the monitoring data. If not, proceed to the next step. If so, perform full-link data monitoring on the data transmission link of the monitoring data.

[0010] S2 determines the selected transmission links based on the usage of the monitoring data of different data transmission links, and uses the mobile terminal pages that have a data interaction relationship with the selected transmission links as associated pages. The failure impact factors of the monitoring data in different business modules are determined by the setting level of the different associated pages in their business modules and the association with other pages;

[0011] S3 uses the monitoring data of different screening transmission links to determine the problem impact factors of different screening transmission links based on the fault impact factors of different business modules, and when it is determined based on the problem impact factors that the screening transmission links do not need full-link monitoring, proceed to the next step;

[0012] S4 determines the screening transmission links that require full-link monitoring based on the graph analysis results of the screening transmission links and the problem influencing factors.

[0013] The beneficial effects of the present invention are:

[0014] 1. In the present invention, whether the data transmission link of the monitoring data is complex is determined by the results of the graph analysis of the monitoring data, thereby realizing the screening of the monitoring data with relatively complex data transmission links, ensuring the reliability of monitoring of the monitoring data with relatively complex data transmission links, and improving the reliability of the use of the mobile terminal.

[0015] 2. In the present invention, the screening transmission links that require full-link monitoring are determined based on the graph analysis results of the screening transmission links and the problem influencing factors. This not only takes into account the differences in the demand for full-link monitoring due to the complexity of the screening transmission links, but also further combines the problem impact of the screening transmission links on the business modules of the mobile terminal to achieve the screening of screening transmission links with higher operation reliability, thereby ensuring the reliability of monitoring of the screening transmission links.

[0016] A further technical solution is that the calling data of the monitoring data includes the number of times the monitoring data is called by different business modules of the mobile terminal.

[0017] A further technical solution is that the data transmission link of the monitoring data is determined according to the flow of the monitoring data between different business modules of the mobile terminal.

[0018] A further technical solution is that the method for determining the screening transmission link is:

[0019] According to the usage of monitoring data of different data transmission links, the transmission links are screened to determine the interactive image complexity and image complexity analysis results;

[0020] Based on the interactive image complexity and the image complexity analysis result, the graph analysis results of different data transmission links are determined, and the graph analysis results are used to screen and determine the transmission links.

[0021] A further technical solution is to use the graph analysis results to screen and determine the transmission links, specifically including:

[0022] The data transmission links whose graph analysis results are not within the preset graph complexity range are used as screening transmission links.

[0023] A further technical solution is that the fault impact factor of the monitoring data in different business modules ranges from 0 to 1, wherein the larger the fault impact factor is, the greater the fault impact of the monitoring data on the business module is determined to be.

[0024] A further technical solution is that the method for determining the screening transmission link that requires full-link monitoring is:

[0025] Based on the graph analysis results of the screening transmission links and the weights of the problem influencing factors, a comprehensive link evaluation value is determined, and the comprehensive link evaluation value is used to determine the screening transmission links that need full-link monitoring among the screening transmission links.

[0026] On the other hand, the present invention provides a full-link data monitoring and processing system for a mobile terminal, which adopts the above-mentioned full-link data monitoring and processing method for a mobile terminal, and is characterized by specifically including:

[0027] Complexity assessment module, fault impact assessment module, problem impact assessment module, transmission link screening module;

[0028] The complexity evaluation module is responsible for determining the data transmission link of the monitoring data based on the call data of the monitoring data, and determining whether the data transmission link of the monitoring data is complex through the graph analysis result of the monitoring data;

[0029] The fault impact assessment module is responsible for determining the screening transmission links based on the usage of the monitoring data of different data transmission links, and taking the mobile terminal pages that have a data interaction relationship with the screened transmission links as associated pages. The fault impact factors of the monitoring data in different business modules are determined by the setting level of different associated pages in their business modules and the association with other pages;

[0030] The problem impact assessment module is responsible for determining the problem impact factors of different screening transmission links based on the fault impact factors of different business modules using the monitoring data of different screening transmission links, and determining whether the screening transmission links need to be fully monitored based on the problem impact factors;

[0031] The transmission link screening module is responsible for determining the screening transmission links that require full-link monitoring based on the graph analysis results of the screening transmission links and the problem influencing factors.

[0032] Other features and advantages will be described in the following description, and in part will become apparent from the description, or understood by practicing the invention. The purpose and other advantages of the invention are realized and obtained by the structures particularly pointed out in the description and the drawings.

[0033] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, preferred embodiments are given below and described in detail with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] The above and other features and advantages of the present invention will become more apparent by describing in detail exemplary embodiments thereof with reference to the accompanying drawings.

[0035] Figure 1 It is a flow chart of a full-link data monitoring and processing method for a mobile terminal;

[0036] Figure 2 is a flow chart of a method for screening a determination of a transmission link;

[0037] Figure 3 This is a flow chart of a method for determining a failure influencing factor. DETAILED DESCRIPTION

[0038] Example embodiments will now be described more fully with reference to the accompanying drawings. However, example embodiments can be embodied in many forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete and will fully convey the concepts of the example embodiments to those skilled in the art. Like reference numerals in the figures represent like or similar structures, and thus their detailed description will be omitted.

[0039] The terms "a", "an", "the", and "said" are used to indicate the presence of one or more elements / components / etc.; the terms "including" and "having" are used to express an open-ended inclusive meaning and mean that additional elements / components / etc. may be present in addition to the listed elements / components / etc.

[0040] Example 1

[0041] Specifically, according to one aspect of the present invention, Figure 1 As shown, a full-link data monitoring and processing method for a mobile terminal is provided, which is characterized by:

[0042] S1 determines the data transmission link of the monitoring data based on the call data of the monitoring data, and determines whether the data transmission link of the monitoring data is complex through the graph analysis result of the monitoring data. If not, proceed to the next step. If so, perform full-link data monitoring on the data transmission link of the monitoring data.

[0043] Furthermore, the calling data of the monitoring data includes the calling times of different business modules of the monitoring data on the mobile terminal.

[0044] Specifically, the data transmission link of the monitoring data is determined according to the flow of the monitoring data between different business modules of the mobile terminal.

[0045] Specifically, determining whether the data transmission link of the monitoring data is complex includes:

[0046] constructing a transmission link image of the monitoring data based on the data transmission link of the monitoring data;

[0047] Determine the image complexity analysis results of different data transmission links and the interaction image complexity between different data transmission links by monitoring the transmission link images of the data;

[0048] The image complexity analysis results of different data transmission links and the interactive image complexity between different data transmission links are used to determine the graph analysis results of the monitoring data, and combined with the set threshold, it is determined whether the data transmission link of the monitoring data is complex.

[0049] Furthermore, determining whether the data transmission link of the monitoring data is complex in combination with a set threshold specifically includes:

[0050] When the spectrum analysis result is less than the set threshold, it is determined that the data transmission link of the monitoring data is complex.

[0051] In another embodiment, determining whether the data transmission link of the monitoring data is complex specifically includes:

[0052] determining the number of data transmission links for the monitoring data based on the data transmission link for the monitoring data, and determining whether the number of data transmission links for the monitoring data is greater than a preset number of links; if so, determining that the data transmission link for the monitoring data is complex; if not, proceeding to the next step;

[0053] Determine the image complexity analysis results of different data transmission links by monitoring the transmission link image of the data, and judge whether the number of data transmission links whose image complexity analysis results are not within the preset complexity interval meets the requirements; if so, proceed to the next step; if not, determine that the data transmission link of the monitoring data is complex;

[0054] Determine the complexity of interaction images between different data transmission links by monitoring the transmission link image of the data, and screen the interactive transmission links according to the complexity of the interaction images between the different data transmission links, and judge whether the number of the screened interactive transmission links meets the requirements. If so, proceed to the next step; if not, determine that the data transmission link of the monitoring data is complex.

[0055] The image complexity analysis results of different data transmission links and the interactive image complexity between different data transmission links are used to determine the graph analysis results of the monitoring data, and combined with the set threshold, it is determined whether the data transmission link of the monitoring data is complex.

[0056] It should be noted that the data transmission links whose interactive image complexity with other data transmission links does not meet the requirements are used as screening interactive transmission links.

[0057] In another embodiment, determining whether the data transmission link of the monitoring data is complex specifically includes:

[0058] S11 determines the number of data transmission links of the monitoring data based on the data transmission link of the monitoring data, and determines whether the number of data transmission links of the monitoring data is less than a second preset link number. If so, proceeds to step S14; if not, proceeds to the next step;

[0059] S12 determines image complexity analysis results of different data transmission links based on the transmission link image of the monitoring data, and performs comprehensive image complexity of the monitoring data according to the image complexity analysis results of the different data transmission links to determine whether the comprehensive image complexity of the monitoring data meets the requirements. If so, proceed to the next step; if not, determine that the data transmission link of the monitoring data is complex.

[0060] S13 determines the complexity of interaction images between different data transmission links through the transmission link image of the monitoring data, and determines the link interaction complexity of the monitoring data through the interaction image complexity between different data transmission links, and judges whether the link interaction complexity of the monitoring data meets the requirements. If so, proceeds to the next step; if not, determines that the data transmission link of the monitoring data is complex.

[0061] S14 performs a graph analysis of unused data transmission links based on the interaction image complexity between different data transmission links and the image complexity analysis results, and determines whether the number of data transmission links whose graph analysis results do not meet the requirements meets the requirements. If so, proceed to the next step; if not, determine that the data transmission link of the monitoring data is complex.

[0062] S15 determines the graph analysis result of the monitoring data using the graph analysis results of different data transmission links, the link interaction complexity of the monitoring data, and the comprehensive image complexity, and determines whether the data transmission link of the monitoring data is complex in combination with a set threshold.

[0063] S2 determines the selected transmission links based on the usage of the monitoring data of different data transmission links, and uses the mobile terminal pages that have a data interaction relationship with the selected transmission links as associated pages. The failure impact factors of the monitoring data in different business modules are determined by the setting level of the different associated pages in their business modules and the association with other pages;

[0064] Specifically, such as Figure 2 As shown, the method for determining the screening transmission link is:

[0065] According to the usage of monitoring data of different data transmission links, the transmission links are screened to determine the interactive image complexity and image complexity analysis results;

[0066] Based on the interactive image complexity and the image complexity analysis result, the graph analysis results of different data transmission links are determined, and the graph analysis results are used to screen and determine the transmission links.

[0067] Furthermore, the determination of the transmission link is screened using the graph analysis results, specifically including:

[0068] The data transmission links whose graph analysis results are not within the preset graph complexity range are used as screening transmission links.

[0069] Specifically, the method for determining the fault impact factor is:

[0070] Obtaining the number of associated pages of the business module, determining whether the number of associated pages of the business module is greater than a preset number of pages, and if so, determining the fault impact factor of the monitoring data in the business module based on a preset fault impact factor; if not, proceeding to the next step;

[0071] Determine, by the associated page at the setting level of its business module, the number of fault-affected pages of the data associated page of the associated page and the matching business types of different fault-affected pages, and determine the basic fault impact factor of the associated page based on the number of fault-affected pages and the matching business types of different fault-affected pages, and judge whether the number of associated pages whose basic fault impact factor is greater than a preset impact threshold meets the requirement; if so, proceed to the next step; if not, determine the fault impact factor of the monitoring data in the business module based on the preset fault impact factor;

[0072] Determining data-related pages of different related pages based on how the different related pages are related to other pages in their business modules, determining the number of fault-affected pages of different data-related pages and the matching business types of different fault-affected pages through different data-related page setting levels, and determining association impact factors of the related pages using the number of fault-affected pages of different data-related pages and the matching business types of different fault-affected pages;

[0073] The fault impact factor of the monitoring data in the business module is determined through the basic fault impact factors and associated impact factors of different associated pages.

[0074] Furthermore, the fault impact factor of the monitoring data in different business modules has a value range between 0 and 1, wherein the larger the fault impact factor is, the greater the fault impact of the monitoring data on the business module is determined to be.

[0075] In another embodiment, Figure 3 As shown, the method for determining the fault impact factor is:

[0076] Determining, at a setting level of a business module of the associated page, the number of fault-affected pages of the associated page's data and matching business types of different fault-affected pages, and determining a basic fault impact factor of the associated page based on the number of fault-affected pages and the matching business types of different fault-affected pages;

[0077] Determine the data associated pages of different associated pages based on their association with other pages in their business modules, and determine the number of pages affected by the failure of different data associated pages and the matching business types of different failure affected pages through setting levels of different data associated pages;

[0078] Determining the correlation impact factor of the correlation page by using the number of fault-affected pages of different data-related pages and the matching business types of different fault-affected pages;

[0079] The fault impact factors of the monitoring data in different business modules are determined through the basic fault impact factors and associated impact factors of different associated pages.

[0080] In another embodiment, the method for determining the fault impact factor is:

[0081] Determining, at a setting level of a business module of the associated page, the number of fault-affected pages of the associated page's data and matching business types of different fault-affected pages, and determining a basic fault impact factor of the associated page based on the number of fault-affected pages and the matching business types of different fault-affected pages;

[0082] Determine the data association pages of different associated pages based on the association between different associated pages and other pages in their business modules, and determine the number of fault-affected pages of different data-associated pages and the matching business types of different fault-affected pages through the setting levels of different data-associated pages, determine the association impact factors of the associated pages using the number of fault-affected pages of different data-associated pages and the matching business types of different fault-affected pages, and determine whether there are associated pages whose association impact factors do not meet the requirements. If so, proceed to the next step; if not, determine the fault impact factor of the monitoring data in the business module by summing the basic fault impact factors of different associated pages;

[0083] Determine the comprehensive fault impact factors of different associated pages by using the basic fault impact factors and associated impact factors of different associated pages, determine whether there are associated pages whose comprehensive fault impact factors do not meet the requirements, and if so, determine the fault impact factor of the monitoring data in the business module based on the number of associated pages whose comprehensive fault impact factors do not meet the requirements; if not, proceed to the next step;

[0084] The failure impact factors of the monitoring data in different business modules are determined based on the comprehensive failure impact factors of different associated pages.

[0085] S3 uses the monitoring data of different screening transmission links to determine the problem impact factors of different screening transmission links based on the fault impact factors of different business modules, and when it is determined based on the problem impact factors that the screening transmission links do not need full-link monitoring, proceed to the next step;

[0086] Specifically, the method for determining the problem impact factor of the screening transmission link is:

[0087] Determine reliability weight values ​​of different business modules according to usage data and types of different business modules, and divide the business modules into different reliability intervals using the reliability weight values;

[0088] Determine the interval impact factors of different reliability intervals based on the number of business modules in different reliability intervals, the reliability weight values ​​of different business modules, and the failure impact factors of the business modules in the monitoring data of the screening transmission links;

[0089] The problem impact factor of the screening transmission link is determined by using the interval impact factors of different reliability intervals.

[0090] Furthermore, determining that full-link monitoring is not required for the screening transmission link based on the problem impact factor specifically includes:

[0091] When the problem impact factor of the screening transmission link does not meet the requirement, it is determined that the screening transmission link needs to be monitored throughout the entire link.

[0092] In another embodiment, the method for determining the problem impact factor of the screening transmission link is:

[0093] Determining the service modules affected by the fault based on the fault impact factor of the screening transmission link in the service module, and determining whether the number of service modules affected by the fault is greater than a preset number of service modules; if so, determining that the problem impact factor of the screening transmission link does not meet the requirement; if not, proceeding to the next step;

[0094] Determine the reliability weight values ​​of different service modules based on the usage data and types of different service modules, and determine whether the sum of the reliability weight values ​​of the service modules affected by the fault meets the requirements. If not, determine that the problem impact factor of the screening transmission link does not meet the requirements. If so, proceed to the next step;

[0095] Determining a comprehensive fault impact factor of the screening transmission link based on the fault impact factors and reliability weight values ​​of different fault-affecting service modules, and judging whether the comprehensive fault impact factor of the screening transmission link meets the requirements; if not, determining that the problem impact factor of the screening transmission link does not meet the requirements; if so, proceeding to the next step;

[0096] Dividing the service modules into different reliability intervals using the reliability weight values, and determining interval impact factors of the different reliability intervals based on the number of service modules in the different reliability intervals, the reliability weight values ​​of the different service modules, and the failure impact factors of the service modules in the monitoring data of the screening transmission links;

[0097] The problem impact factor of the screening transmission link is determined by using the interval impact factors of different reliability intervals.

[0098] S4 determines the screening transmission links that require full-link monitoring based on the graph analysis results of the screening transmission links and the problem influencing factors.

[0099] Specifically, the method for determining the screening transmission link that requires full-link monitoring is:

[0100] Based on the graph analysis results of the screening transmission links and the weights of the problem influencing factors, a comprehensive link evaluation value is determined, and the comprehensive link evaluation value is used to determine the screening transmission links that need full-link monitoring among the screening transmission links.

[0101] Example 2

[0102] On the other hand, the present invention provides a full-link data monitoring and processing system for a mobile terminal, which adopts the above-mentioned full-link data monitoring and processing method for a mobile terminal, and is characterized by specifically including:

[0103] Complexity assessment module, fault impact assessment module, problem impact assessment module, transmission link screening module;

[0104] The complexity evaluation module is responsible for determining the data transmission link of the monitoring data based on the call data of the monitoring data, and determining whether the data transmission link of the monitoring data is complex through the graph analysis result of the monitoring data;

[0105] The fault impact assessment module is responsible for determining the screening transmission links based on the usage of the monitoring data of different data transmission links, and taking the mobile terminal pages that have a data interaction relationship with the screened transmission links as associated pages. The fault impact factors of the monitoring data in different business modules are determined by the setting level of different associated pages in their business modules and the association with other pages;

[0106] The problem impact assessment module is responsible for determining the problem impact factors of different screening transmission links based on the fault impact factors of different business modules using the monitoring data of different screening transmission links, and determining whether the screening transmission links need to be fully monitored based on the problem impact factors;

[0107] The transmission link screening module is responsible for determining the screening transmission links that require full-link monitoring based on the graph analysis results of the screening transmission links and the problem influencing factors.

[0108] Through the above embodiments, the present application achieves the following technical effects:

[0109] 1. In the present invention, whether the data transmission link of the monitoring data is complex is determined by the results of the graph analysis of the monitoring data, thereby realizing the screening of the monitoring data with relatively complex data transmission links, ensuring the reliability of monitoring of the monitoring data with relatively complex data transmission links, and improving the reliability of the use of the mobile terminal.

[0110] 2. In the present invention, the screening transmission links that require full-link monitoring are determined based on the graph analysis results of the screening transmission links and the problem influencing factors. This not only takes into account the differences in the demand for full-link monitoring due to the complexity of the screening transmission links, but also further combines the problem impact of the screening transmission links on the business modules of the mobile terminal to achieve the screening of screening transmission links with higher operation reliability, thereby ensuring the reliability of monitoring of the screening transmission links.

[0111] The various embodiments in this specification are described in a progressive manner. Similar portions between the various embodiments can be referenced to each other, and each embodiment focuses on the differences from the other embodiments. In particular, the device, apparatus, and non-volatile computer storage medium embodiments are generally similar to the method embodiments, so their descriptions are relatively simplified. For relevant details, refer to the descriptions of the method embodiments.

[0112] The foregoing description of this specification describes specific embodiments. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in an order different from that described in the embodiments and still achieve the desired results. Furthermore, the processes depicted in the accompanying drawings do not necessarily require the specific order shown or the sequential order to achieve the desired results. In certain embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0113] The foregoing description is merely one or more embodiments of this specification and is not intended to limit this specification. It will be apparent to those skilled in the art that various modifications and variations may be made to one or more embodiments of this specification. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of one or more embodiments of this specification are intended to be within the scope of the claims of this specification.

Claims

1. A full-link data monitoring and processing method for a mobile terminal, characterized by: Determine the data transmission link of the monitoring data based on the call data of the monitoring data, and determine whether the data transmission link of the monitoring data is complex through the spectrum analysis result of the data transmission link of the monitoring data. If not, proceed to the next step. If so, perform full-link data monitoring on the data transmission link of the monitoring data. Filter transmission links based on the call data of monitoring data of different data transmission links, and use mobile terminal pages that have data interaction relationships with the filtered transmission links as associated pages. The failure impact factors of the monitoring data in different business modules are determined based on the setting levels of the different associated pages in their business modules and their association with other pages. Using the monitoring data of different screening transmission links to determine the problem impact factors of different screening transmission links based on the fault impact factors of different business modules, and when it is determined based on the problem impact factors that the screening transmission links do not require full-link data monitoring, proceed to the next step; Determining the screening transmission links that require full-link data monitoring based on the graph analysis results of the screening transmission links and the problem influencing factors; The call data of the monitoring data includes the number of calls of the monitoring data in different business modules of the mobile terminal; Determining whether the data transmission link of the monitoring data is complex specifically includes: determining the number of data transmission links for the monitoring data based on the data transmission link for the monitoring data, and determining whether the number of data transmission links for the monitoring data is greater than a preset number of links; if so, determining that the data transmission link for the monitoring data is complex; if not, proceeding to the next step; Determine the image complexity analysis results of different data transmission links by monitoring the transmission link image of the data, and judge whether the number of data transmission links whose image complexity analysis results are not within the preset complexity interval meets the requirements; if so, proceed to the next step; if not, determine that the data transmission link of the monitoring data is complex; Determine the complexity of interaction images between different data transmission links by monitoring the transmission link image of the data, and screen the interactive transmission links according to the complexity of the interaction images between the different data transmission links, and judge whether the number of the screened interactive transmission links meets the requirements. If so, proceed to the next step; if not, determine that the data transmission link of the monitoring data is complex. Determine the graph analysis result of the data transmission link of the monitoring data by using the image complexity analysis results of different data transmission links and the interaction image complexity between different data transmission links, and determine whether the data transmission link of the monitoring data is complex in combination with a set threshold; A transmission link image of the monitoring data is constructed based on the data transmission link of the monitoring data.

2. The full-link data monitoring and processing method for a mobile terminal according to claim 1, characterized in that: The data transmission link of the monitoring data is determined according to the flow of the monitoring data between different business modules of the mobile terminal.

3. The full-link data monitoring and processing method for a mobile terminal according to claim 1, characterized in that: The method for determining the screening transmission link is: Determine the interactive image complexity and image complexity analysis results based on usage of monitoring data of different data transmission links; Based on the interactive image complexity and the image complexity analysis result, the graph analysis results of different data transmission links are determined, and the graph analysis results are used to screen and determine the transmission links.

4. The full-link data monitoring and processing method for a mobile terminal according to claim 3, characterized in that: The determination of the transmission link is screened using the graph analysis results, specifically including: The data transmission links whose graph analysis results are not within the preset graph complexity range are used as screening transmission links.

5. The full-link data monitoring and processing method for a mobile terminal according to claim 1, characterized in that: Determining, based on the problem impact factor, that the screening transmission link does not require full-link data monitoring specifically includes: When the problem impact factor of the screening transmission link does not meet the requirement, it is determined that the screening transmission link needs to be monitored for full-link data.

6. A full-link data monitoring and processing system for a mobile terminal, adopting a full-link data monitoring and processing method for a mobile terminal according to any one of claims 1 to 5, characterized in that: Specifically include: Complexity assessment module, fault impact assessment module, problem impact assessment module, transmission link screening module; The complexity evaluation module is responsible for determining the data transmission link of the monitoring data based on the call data of the monitoring data, and determining whether the data transmission link of the monitoring data is complex through the graph analysis result of the data transmission link of the monitoring data; The fault impact assessment module is responsible for determining the screening transmission links based on the call data of the monitoring data of different data transmission links, and taking the mobile terminal pages that have a data interaction relationship with the screening transmission links as associated pages. The fault impact factors of the monitoring data in different business modules are determined by the setting level of different associated pages in their business modules and the association with other pages; The problem impact assessment module is responsible for determining the problem impact factors of different screening transmission links based on the monitoring data of different screening transmission links and the fault impact factors of different business modules, and determining whether the screening transmission links need to be monitored for full link data based on the problem impact factors; The transmission link screening module is responsible for determining the screening transmission links that require full-link data monitoring based on the graph analysis results of the screening transmission links and the problem influencing factors.

Citation Information

Patent Citations

  • Monitoring method and device for data link, equipment and storage medium

    CN117411816A

  • Internet of Things card monitoring management method and system

    CN117834472A