Method, system and device for service-oriented integration data communication transmission operation management

By acquiring transmission task priority data and monitoring bandwidth operation status in real time, transmission tasks are classified and adjusted, solving the communication latency and bandwidth bottleneck problems in high-concurrency, high-data-volume environments, and achieving efficient and stable data communication transmission.

CN119766753BActive Publication Date: 2025-11-21JIANGSU HUIMING INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202411989698.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-21
Estimated Expiration
2044-12-31

AI Technical Summary

Technical Problem

In high-concurrency, high-data-volume environments, communication latency and bandwidth bottlenecks caused by network interactions between multiple services affect overall transmission performance and communication stability.

Method used

By acquiring priority data of each transmission task during data transmission, monitoring bandwidth operation data, classifying and adjusting transmission tasks, collecting execution status data in real time, comprehensively analyzing data communication transmission quality, and providing feedback and early warning.

Benefits of technology

It achieves efficient management and stability improvement of data communication transmission, ensures the transmission quality of high-priority tasks and resource guarantee for low-priority tasks, promptly detects and resolves network problems, and prevents the spread of faults.

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Abstract

The application discloses a service integration-oriented data communication transmission operation management method, system and device, and belongs to the technical field of communication control. The method comprises the following steps: firstly, obtaining data transmission task priority data and monitoring bandwidth operation data to obtain bandwidth operation evaluation values; then, classifying the transmission tasks according to the data transmission task priority data, and adjusting and feeding back the transmission tasks of each bandwidth according to the transmission task classification results and the bandwidth operation evaluation values; finally, collecting the execution condition data of each transmission task of each bandwidth in real time, comprehensively analyzing data communication transmission quality evaluation values according to the execution condition data of each transmission task of each bandwidth and the bandwidth operation evaluation values, and feeding back and warning according to the data communication transmission quality evaluation values, so that the communication efficiency and stability of data communication transmission operation are improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of communication control, and in particular to a data communication transmission operation management method, system and device for service integration. BACKGROUND

[0002] Service integration is based on the traditional information system integration focusing on technology fusion, and further emphasizes the "sensitive state" integration capability construction under the condition of data fusion and sharing. It faces the digital transformation and service development of various industries, takes "service products" including information system software as the integration object, and realizes efficient delivery and management of services through cross-organizational and cross-team service dynamic fusion.

[0003] The existing data communication transmission operation management method is mainly realized through a centralized service management platform. The method adopts a service-oriented architecture, integrates different data communication modules and system functions into reusable and loosely coupled services. The operation management process includes service monitoring, optimization and fault handling, and real-time transmission task monitoring, performance evaluation and early warning are performed through automatic tools.

[0004] For example, the patent application with publication number CN112751943A discloses a data communication method, intermediate device and data communication system, which includes: obtaining data based on user datagram protocol (UDP) sent by a publishing end; if a subscription instruction of a subscribing end is received, searching for target data in the data based on UDP according to the subscription instruction, and pushing the target data to the subscribing end. The above technical solution realizes the publishing and subscribing functions through an intermediate device, and performs unified standardized communication based on UDP at the network layer.

[0005] For example, the invention patent with publication number CN102546802B discloses a data acquisition and instant communication transmission system based on wireless radio frequency tag technology and a transmission method thereof, which includes: since the PDA uses an ultra-high frequency radio frequency module to read the tag, the distance for reading the tag is farther than that of an ordinary high frequency radio frequency module. The PDA can transmit data to the background asset management system through the webservice interface, and directly display and process the transmission data through the system interface, realizing instant transmission of the acquired data; in an offline state, the PDA can read and save the data in the PDA memory and the built-in database according to the agreed format, and after saving, the data file of the database is imported into the asset management platform system through the webservice via the transmission line. The asset management platform supports reading and saving these database files. It is more beneficial to improve the work efficiency of reading the radio frequency tag through different ways, and the diversified data communication method can be conveniently applied to different asset environments.

[0006] However, in the process of implementing the technical scheme of the embodiments of the present application, it is found that the above-mentioned technology at least has the following technical problems:

[0007] In the prior art, in a high concurrency and high data volume environment, due to the interaction between multiple services through the network, communication delay and bandwidth bottleneck are caused, the overall transmission performance is affected, and the problem of unstable communication between services exists. SUMMARY

[0008] The present application provides a service-oriented integrated data communication transmission operation management method, system and device, which solves the problem of unstable communication between services in the prior art in a high concurrency and high data volume environment due to the interaction between multiple services through the network, causing communication delay and bandwidth bottleneck, affecting the overall transmission performance, and realizing the improvement of the communication efficiency and stability of data communication transmission operation.

[0009] The present application provides a service-oriented integrated data communication transmission operation management method, which comprises the following steps: obtaining data transmission task priority data and monitoring bandwidth operation data to obtain bandwidth operation evaluation values; classifying each transmission task according to the transmission task priority data, and adjusting and feeding back the transmission tasks of each bandwidth according to the transmission task classification result and the bandwidth operation evaluation values; collecting each transmission task execution condition data of each bandwidth in real time, comprehensively analyzing the data communication transmission quality evaluation values according to the bandwidth operation evaluation values and the transmission task execution condition data of each bandwidth, and feeding back the warning according to the data communication transmission quality evaluation values.

[0010] Further, the step of monitoring the bandwidth operation data to obtain the bandwidth operation evaluation values comprises: the bandwidth operation data comprises bandwidth utilization rate, bandwidth response time and bandwidth traffic consumption; each reference bandwidth utilization rate, each allowed deviation bandwidth utilization rate, critical bandwidth response time, each reference bandwidth traffic consumption and each allowed deviation bandwidth traffic consumption are obtained from the data communication database; and the bandwidth operation evaluation values are obtained by comprehensive analysis.

[0011] Further, the step of classifying each transmission task according to the transmission task priority data comprises: the task priority data comprises transmission task demand traffic, transmission task tolerance delay and transmission task tolerance jitter; critical transmission task demand traffic, critical transmission task tolerance delay and critical transmission task tolerance jitter are obtained from the data communication database; transmission task priority indexes are obtained by comprehensive analysis; each low-priority task, each medium-priority task and each high-priority task are obtained by classifying each transmission task according to the transmission task priority indexes.

[0012] Further, the step of classifying the transmission tasks according to the transmission task priority indexes comprises: obtaining a low priority index threshold and a medium priority index threshold from the data communication database; comparing the transmission task priority indexes with the low priority index threshold and the medium priority index threshold, respectively; if the transmission task priority index of a certain bandwidth is less than or equal to the low priority index threshold, marking the transmission task as a low priority task; if the transmission task priority index of a certain bandwidth is greater than the low priority index threshold and less than or equal to the medium priority index threshold, marking the transmission task as a medium priority task; if the transmission task priority index of a certain bandwidth is greater than the medium priority index threshold, marking the transmission task as a high priority task; and obtaining the low priority tasks, the medium priority tasks and the high priority tasks by statistics.

[0013] Further, the step of adjusting and feeding back the transmission tasks of each bandwidth according to the transmission task classification results and the bandwidth running evaluation values comprises: obtaining a bandwidth running evaluation threshold from the data communication database; comparing the bandwidth running evaluation values with the bandwidth running evaluation threshold; if the bandwidth running evaluation value of a certain bandwidth is less than the bandwidth running evaluation threshold, adjusting and feeding back the transmission tasks of the bandwidth according to the transmission task classification results; and if the bandwidth running evaluation value of a certain bandwidth is greater than or equal to the bandwidth running evaluation threshold, not performing additional operations.

[0014] Further, the step of comprehensively analyzing the data communication transmission quality evaluation value according to the transmission task execution condition data of each bandwidth and the bandwidth running evaluation values comprises: the transmission task execution condition data of each bandwidth comprises the data transmission rate of each transmission task of each bandwidth, the queuing time of each transmission task of each bandwidth and the error rate of each transmission task of each bandwidth; obtaining a critical transmission task data transmission rate, a critical transmission task queuing time, a critical transmission task error rate and a critical bandwidth running evaluation value from the data communication database; and comprehensively analyzing the data communication transmission quality evaluation value.

[0015] Further, the data communication transmission quality evaluation value is obtained in the following manner:

[0016]

[0017] In the formula, ξQ represents the data communication transmission quality evaluation value, β1 represents a data communication transmission quality evaluation influence factor corresponding to the data transmission rate of a transmission task, β2 represents a data communication transmission quality evaluation influence factor corresponding to the queuing time of a transmission task, β3 represents a data communication transmission quality evaluation influence factor corresponding to the error rate of a transmission task, β4 represents a data communication transmission quality evaluation influence factor corresponding to the bandwidth running evaluation value, P 1ij represents the data transmission rate of the jth transmission task of the ith bandwidth, P0 represents the critical transmission task data transmission rate, T1ij denotes the i-th bandwidth j-th transmission task queuing time, T0denotes the critical transmission task queuing time, E 1ij denotes the i-th bandwidth j-th transmission task error rate, E0denotes the critical transmission task error rate, ξO 1i denotes the i-th bandwidth running evaluation value, ξO 0i denotes the critical i-th bandwidth running evaluation value.

[0018] Further, the step of feeding back the early warning according to the data communication transmission quality evaluation value comprises: obtaining a data communication transmission quality evaluation threshold value from the data communication database; comparing the data communication transmission quality evaluation value with the data communication transmission quality evaluation threshold value, if the data communication transmission quality evaluation value is greater than or equal to the data communication transmission quality evaluation threshold value, no additional processing is performed, if the data communication transmission quality evaluation value is less than the data communication transmission quality evaluation threshold value, a difference between the data communication transmission quality evaluation threshold value and the data communication transmission quality evaluation value is marked as a deviation data communication transmission quality evaluation value, and the early warning is fed back according to the deviation data communication transmission quality evaluation value.

[0019] The embodiment of the present application provides a service integration-oriented data communication transmission operation management system, which comprises an operation evaluation module, a task adjustment module, a quality evaluation module and a data communication database; wherein the operation evaluation module is used for obtaining data transmission task priority data and monitoring bandwidth operation data, and processing to obtain bandwidth running evaluation values; the task adjustment module is used for classifying transmission tasks according to the data transmission task priority data, and adjusting and feeding back transmission tasks of each bandwidth according to the transmission task classification result and the bandwidth running evaluation values; the quality evaluation module is used for collecting execution condition data of each transmission task of each bandwidth in real time, comprehensively analyzing to obtain a data communication transmission quality evaluation value according to the execution condition data of each transmission task of each bandwidth and the bandwidth running evaluation values, and feeding back the early warning according to the data communication transmission quality evaluation value.

[0020] The embodiment of the present application provides a service integration-oriented data communication transmission operation management device, which comprises: a processor, a memory for storing executable instructions of the processor; the processor is configured to execute the instructions, so that the electronic device implements a service integration-oriented data communication transmission operation management method.

[0021] The one or more technical solutions provided in the embodiment of the present application have at least the following technical effects or advantages:

[0022] 1、The application provides a service integration-oriented data communication transmission operation management method, system and device, thereby completing priority management of each transmission task and intelligent adjustment of bandwidth resources, and further realizing real-time monitoring and evaluation of bandwidth operation states, and optimizing network resource allocation.

[0023] 2、The application adjusts and feeds back transmission tasks of each bandwidth according to transmission task classification results and each bandwidth operation evaluation value, thereby dynamically optimizing bandwidth resource configuration, and further realizing effective matching of different task priorities and bandwidth demands, and ensuring transmission quality of high-priority tasks and resource guarantee of low-priority tasks.

[0024] 3、The application feeds back and gives a warning according to a data communication transmission quality evaluation value, thereby discovering potential problems in network transmission in time, and further realizing real-time monitoring and dynamic adjustment of data transmission quality, and avoiding network fault spread or performance decline. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 A service integration-oriented data communication transmission operation management method flowchart is provided for the embodiment of the application.

[0026] Figure 2 A bandwidth operation evaluation value change chart of the data communication transmission operation management method is provided for the embodiment of the application.

[0027] Figure 3 A structural schematic diagram of the service integration-oriented data communication transmission operation management system is provided for the embodiment of the application. DETAILED DESCRIPTION

[0028] The embodiment of the application provides a service integration-oriented data communication transmission operation management method, system and device, solves the problem of unstable communication between services in the prior art in a high-concurrency and high-data-volume environment, wherein multiple services interact through a network, thereby causing communication delay and bandwidth bottleneck, affecting overall transmission performance, and obtaining each transmission task priority data in data transmission, and monitoring bandwidth operation data to obtain each bandwidth operation evaluation value; classifying each transmission task according to each transmission task priority data, and adjusting and feeding back transmission tasks of each bandwidth according to transmission task classification results and each bandwidth operation evaluation value; collecting each transmission task execution condition data of each bandwidth in real time, comprehensively analyzing a data communication transmission quality evaluation value according to each transmission task execution condition data of each bandwidth and each bandwidth operation evaluation value, and feeding back and giving a warning according to the data communication transmission quality evaluation value, thereby realizing improvement of data communication transmission operation communication efficiency and stability.

[0029] The technical solution in the embodiment of the application is to solve the problem of unstable communication between services due to communication delay and bandwidth bottleneck caused by interaction between multiple services through a network in a high-concurrency and high-data-volume environment, which affects overall transmission performance. The general idea is as follows:

[0030] By obtaining the priority data of each transmission task in data transmission and monitoring bandwidth operation data, each bandwidth operation evaluation value is processed. According to the priority data of each transmission task, each transmission task is classified, and according to the classification result of the transmission task and each bandwidth operation evaluation value, the transmission task of each bandwidth is adjusted and fed back. The execution condition data of each transmission task of each bandwidth is collected in real time, and the data communication transmission quality evaluation value is obtained by comprehensive analysis according to the execution condition data of each transmission task of each bandwidth and each bandwidth operation evaluation value, and feedback warning is performed according to the data communication transmission quality evaluation value. The efficient management of data transmission task and the allocation and utilization of bandwidth resource are achieved.

[0031] In order to better understand the above technical solution, the above technical solution will be described in detail in combination with the drawings of the specification and the specific embodiments.

[0032] As shown in Figure 1 The service-oriented data communication transmission operation management method provided by the embodiment of the application is shown in the flow chart, which is applied to a service-oriented data communication transmission operation management device. The method comprises the following steps: obtaining the priority data of each transmission task in data transmission and monitoring bandwidth operation data, and processing each bandwidth operation evaluation value; according to the priority data of each transmission task, each transmission task is classified, and according to the classification result of the transmission task and each bandwidth operation evaluation value, the transmission task of each bandwidth is adjusted and fed back; the execution condition data of each transmission task of each bandwidth is collected in real time, and the data communication transmission quality evaluation value is obtained by comprehensive analysis according to the execution condition data of each transmission task of each bandwidth and each bandwidth operation evaluation value, and feedback warning is performed according to the data communication transmission quality evaluation value.

[0033] In this embodiment, by obtaining the priority data of each transmission task, the application can ensure that high-priority tasks are processed and transmitted first, thereby improving the efficiency of overall data transmission. Real-time monitoring and processing of bandwidth operation data can timely discover and solve bandwidth bottleneck, and ensure that bandwidth resources are reasonably allocated and efficiently utilized. Real-time collection and analysis of the execution condition data of each transmission task of each bandwidth, combined with the bandwidth operation evaluation value, can accurately evaluate the transmission quality of data communication and timely discover and solve problems.

[0034] In addition, the data communication database is used to store the data related to the data communication transmission operation management method for service-oriented integration, including: each reference bandwidth utilization rate, each allowable deviation bandwidth utilization rate, critical each bandwidth response time, each reference bandwidth traffic consumption, each allowable deviation bandwidth traffic consumption, bandwidth response time corresponding bandwidth operation evaluation influence factor and low priority index threshold, etc. The data in the data communication database can be directly obtained from public databases such as the National Bureau of Statistics database, Wanda, etc., and can be obtained through a third-party database provider or cooperation with related enterprises.

[0035] Further, the bandwidth operation data is monitored, and the step of processing to obtain each bandwidth operation evaluation value includes: the bandwidth operation data includes each bandwidth utilization rate, each bandwidth response time and each bandwidth traffic consumption; each reference bandwidth utilization rate, each allowable deviation bandwidth utilization rate, critical each bandwidth response time, each reference bandwidth traffic consumption and each allowable deviation bandwidth traffic consumption are obtained from the data communication database; and each bandwidth operation evaluation value is obtained through comprehensive analysis.

[0036] Wherein, the acquisition method of each bandwidth operation evaluation value is as follows:

[0037]

[0038] In the formula, ξO 1i represents the i-th bandwidth operation evaluation value, α1 represents the bandwidth operation evaluation influence factor corresponding to the bandwidth utilization rate, α2 represents the bandwidth operation evaluation influence factor corresponding to the bandwidth response time, α3 represents the bandwidth operation evaluation influence factor corresponding to the bandwidth traffic consumption, U 1i represents the i-th bandwidth utilization rate, U 0i represents the i-th reference bandwidth utilization rate, U 2i represents the i-th allowable deviation bandwidth utilization rate, R 1i represents the i-th bandwidth response time, R 0i represents the critical i-th bandwidth response time, C 1i represents the i-th bandwidth traffic consumption, C 0i represents the i-th reference bandwidth traffic consumption, C 2i represents the i-th allowable deviation bandwidth traffic consumption, e is a natural constant, wherein i is the bandwidth number, i = 1, 2, 3,..., N, and N is the total number of bandwidths.

[0039] α1, α2, and α3 are preset bandwidth operation evaluation influencing factors corresponding to bandwidth utilization, bandwidth response time, and bandwidth traffic consumption in the data communication database. These influencing factors are numerical indicators that measure the magnitude of the impact of the above parameters on the bandwidth operation evaluation value. Specifically, bandwidth utilization, bandwidth response time, and bandwidth traffic consumption each have a mapping relationship table. The table records each possible parameter value and its corresponding bandwidth operation evaluation value influencing factor. These mapping relationships can be one-to-one or many-to-one. In practical applications, when it is necessary to evaluate a certain bandwidth operation evaluation value, the measured bandwidth utilization, bandwidth response time, and bandwidth traffic consumption can be entered into their respective mapping relationship tables to quickly find the bandwidth operation evaluation value influencing factors corresponding to these values. The value range of the influencing factors is between 0 and 1.

[0040] In this embodiment, bandwidth utilization can be directly measured using a Netflix / sFlow analyzer; bandwidth response time can be obtained by measuring the time interval from sending a request to receiving bandwidth resources; and bandwidth traffic consumption can be obtained by accumulating traffic consumption using a traffic counter over the detection period. These three parameters are interrelated. For example, high bandwidth utilization may lead to increased bandwidth response time; and high traffic consumption, especially when network traffic exceeds bandwidth capacity, often results in increased bandwidth response time. The comprehensive analysis of these bandwidth performance evaluation values ​​provides a complete picture of the network link's transmission performance, load, and resource utilization.

[0041] The bandwidth operation evaluation impact factor corresponding to bandwidth utilization is set to 0.6, the bandwidth operation evaluation impact factor corresponding to bandwidth response time is set to 0.2, the bandwidth operation evaluation impact factor corresponding to bandwidth traffic consumption is set to 0.2, the bandwidth utilization rate is set to 40%, the reference bandwidth utilization rate is set to 50%, the allowable deviation bandwidth utilization rate is set to 5%, the bandwidth response time is set to 0.5s, the critical bandwidth response time is set to 0.4s, the reference bandwidth traffic consumption is set to 1000 bytes, and the allowable deviation bandwidth traffic consumption is set to 200 bytes. Under the condition of continuously increasing bandwidth traffic consumption, the bandwidth operation evaluation value is calculated. Table 1 shows the bandwidth operation evaluation value data for the data communication transmission operation management method.

[0042] Table 1. Bandwidth Operation Evaluation Values ​​for Data Communication Transmission Operation Management Methods

[0043] Number C 1i ]]> 1i ]]> ​ 1 800 0.565 2 900 0.573 3 1000 0.604 4 1100 0.573 5 1200 0.565

[0044] like Figure 2 The figure shown is a graph illustrating the change in bandwidth operation evaluation values ​​for the data communication transmission operation management method provided in this application embodiment. (See Table 1 and...) Figure 2It can be seen that, when the bandwidth utilization corresponding to the bandwidth operation evaluation impact factor, the bandwidth response time corresponding to the bandwidth operation evaluation impact factor, the bandwidth traffic consumption corresponding to the bandwidth operation evaluation impact factor, the bandwidth utilization, the reference bandwidth utilization, the allowable deviation bandwidth utilization, the bandwidth response time, the critical bandwidth response time, the reference bandwidth traffic consumption and the allowable deviation bandwidth traffic consumption are unchanged, under the condition that the bandwidth traffic consumption is continuously increasing, the closer the bandwidth traffic consumption is to the reference bandwidth traffic consumption, the greater the bandwidth operation evaluation value is.

[0045] Further, the step of classifying each transmission task according to the transmission task priority data comprises: the task priority data comprises each transmission task demand traffic, each transmission task tolerance delay and each transmission task tolerance jitter; obtaining critical each transmission task demand traffic, critical each transmission task tolerance delay and critical each transmission task tolerance jitter from the data communication database; obtaining each transmission task priority index by comprehensive analysis; classifying each transmission task according to each transmission task priority index to obtain each low priority task, each medium priority task and each high priority task.

[0046] Among them, the acquisition method of each transmission task priority index is as follows:

[0047]

[0048] In the formula, ξP 1j represents the jth transmission task priority index, α4 represents the transmission task priority index impact factor corresponding to the demand traffic, α5 represents the transmission task priority index impact factor corresponding to the tolerance delay, α6 represents the transmission task priority index impact factor corresponding to the tolerance jitter, F 1j represents the jth transmission task demand traffic, F 0j represents the jth transmission task critical demand traffic, D 1j represents the jth transmission task tolerance delay, D 0j represents the jth transmission task critical tolerance delay, S 1j represents the jth transmission task tolerance jitter, S 0j represents the jth transmission task critical tolerance jitter, wherein j is the number of each transmission task, j=1, 2, 3, …, M, and M is the total number of transmission tasks.

[0049] a4, a5 and a6 are preset influence factors of the transmission task priority index corresponding to the demand flow, the tolerated delay and the tolerated jitter in the data communication database respectively, which are numerical indicators for measuring the influence of the above parameters on the transmission task priority index. Specifically, there is a mapping relationship table for each of the demand flow, the tolerated delay and the tolerated jitter, which records each possible parameter value and its corresponding transmission task priority index influence factor. These mapping relationships can be one-to-one or many-to-one. In actual application, when the transmission task priority index needs to be evaluated, the measured demand flow, tolerated delay and tolerated jitter can be input into the corresponding mapping relationship table respectively, and the transmission task priority index influence factor corresponding to these values can be quickly found, wherein the value range of the influence factor is between 0 and 1.

[0050] In the present embodiment, the demand flow of each transmission task can be automatically recorded by network flow analyzers and other devices; the tolerated delay of each transmission task can be monitored by professional network monitoring tools such as Wireshark and NetSpot; and the tolerated jitter of each transmission task can be measured by BER testers, vibration analyzers and other devices. The three influence each other, for example, a larger demand flow may require higher bandwidth and faster network speed to support, which may affect the delay and jitter performance, and lower tolerated delay and jitter requirements may require more stable network environment and more advanced transmission technology to meet. The transmission task priority index obtained by comprehensive analysis can determine the priority order of different transmission tasks according to the requirements and performance requirements of the tasks, accurately evaluate the priority and performance requirements of different transmission tasks, and provide strong support for the allocation of network resources and the formulation of transmission strategies.

[0051] Furthermore, the steps of classifying transmission tasks according to their priority indices to obtain low-priority, medium-priority, and high-priority tasks include: obtaining low-priority and medium-priority index thresholds from the data communication database; comparing each transmission task's priority index with the low-priority and medium-priority index thresholds respectively; if the priority index of a transmission task for a certain bandwidth is less than or equal to the low-priority index threshold, then the transmission task is marked as a low-priority task, meaning its urgency and importance are relatively low, and it can be scheduled for processing when network resources are relatively abundant (usually referring to situations where the data processing speed of high-priority and medium-priority tasks exceeds the preset speed threshold in the data communication database); ... If the priority index of a transmission task is greater than the low priority index threshold and less than or equal to the medium priority index threshold, then the transmission task is marked as a medium priority task. Although these tasks are not as urgent as high priority tasks, they still need to be given some attention and can be processed as soon as possible if network resources are sufficient to meet the transmission needs of high priority tasks and there are still resources remaining. If the priority index of a transmission task for a certain bandwidth is greater than the medium priority index threshold, then the transmission task is marked as a high priority task. This task is considered a high priority task. These tasks are usually closely related to the response time of critical services and user experience, so they must be processed first to ensure that network resources can meet their transmission needs quickly and effectively. The statistics of each low priority task, each medium priority task, and each high priority task are obtained.

[0052] In this embodiment, the transmission task priority index is an indicator that measures the urgency and importance of transmission tasks. Allocating resources according to the priority level of transmission tasks is a crucial step in ensuring the efficient and orderly use of network resources. By classifying transmission tasks based on their priority index, urgent tasks that need immediate processing and tasks that require delayed processing can be clearly identified, allowing for the rational allocation of network resources according to task priority. Prioritizing high-priority tasks can shorten the response time of critical services, improve user experience and satisfaction, while rationally scheduling low-priority tasks prevents them from affecting the transmission of high-priority tasks, thereby improving overall transmission efficiency.

[0053] Furthermore, the steps for adjusting and feeding back the transmission tasks of each bandwidth based on the transmission task classification results and the operation evaluation values ​​of each bandwidth include: obtaining the operation evaluation thresholds of each bandwidth from the data communication database; comparing the operation evaluation values ​​of each bandwidth with the operation evaluation thresholds of each bandwidth; if the operation evaluation value of a certain bandwidth is less than the operation evaluation thresholds of each bandwidth, then adjusting and feeding back the transmission tasks of that bandwidth based on the transmission task classification results; if the operation evaluation value of a certain bandwidth is greater than or equal to the operation evaluation thresholds of each bandwidth, then no additional operation is performed.

[0054] In the embodiment, each bandwidth operation evaluation threshold is a predefined condition or limit, which represents the critical value of each bandwidth operation state. For the bandwidth whose bandwidth operation evaluation value is less than its threshold, the transmission task thereof can be dynamically adjusted according to the classification result of the transmission task. For example, for the transmission task of high priority (such as UCS service or rtPS service with high real-time requirement), the bandwidth resource can be preferentially allocated; for the transmission task of low priority (such as BE service), the scheduling can be performed in the case of sufficient resource. Through the adjustment feedback of the transmission task of each bandwidth, the bandwidth resource can be fully utilized, the waste and idleness of the resource can be avoided, the transmission quality and real-time performance of the critical task can be ensured by limiting the low-priority task on the high-load bandwidth, and thus the overall network performance can be improved.

[0055] Further, the step of comprehensively analyzing the data communication transmission quality evaluation value according to the execution condition data of each transmission task of each bandwidth and the bandwidth operation evaluation value of each bandwidth comprises: the execution condition data of each transmission task of each bandwidth comprises the data transmission rate of each transmission task of each bandwidth, the queuing time of each transmission task of each bandwidth and the error rate of each transmission task of each bandwidth; the critical transmission task data transmission rate, the critical transmission task queuing time, the critical transmission task error rate and the critical bandwidth operation evaluation value are obtained from the data communication database; and the data communication transmission quality evaluation value is obtained through comprehensive analysis.

[0056] In the embodiment, the data transmission rate of each transmission task of each bandwidth generally refers to the amount of data successfully transmitted by each transmission task in a unit of time (such as 1 minute), which can be obtained by monitoring the throughput of the transmission task by using GlassWire, Cacti and other bandwidth detection tools; the queuing time of each transmission task of each bandwidth refers to the delay experienced by the transmission task in the process of waiting for bandwidth allocation, which can be obtained by timing the time difference between the task request starting time and the actual transmission starting time by using a stopwatch; and the error rate represents the number of errors occurring in the data transmission process, which can be monitored by using the error statistical function in the transmission control protocol or the network layer protocol (such as IP protocol). There is an influence among the four, for example, when the bandwidth operation evaluation value is low, the network congestion can be caused, the queuing time is increased, the stability of the data transmission rate is affected, and the transmission task error rate is increased. The data communication transmission quality evaluation value obtained through comprehensive analysis can predict the possible failure or performance decline of the network. Through real-time monitoring and analysis of the quality evaluation value, the system can issue an alarm in advance, avoid the expansion of the problem, and schedule the network resource or perform maintenance in advance.

[0057] Further, the data communication transmission quality evaluation value is obtained in the following manner:

[0058]

[0059] In the formula, ξQ represents the data communication transmission quality evaluation value, β1 represents the data communication transmission quality evaluation influence factor corresponding to the transmission task data transmission rate, β2 represents the data communication transmission quality evaluation influence factor corresponding to the transmission task queuing time, β3 represents the data communication transmission quality evaluation influence factor corresponding to the transmission task error rate, β4 represents the data communication transmission quality evaluation influence factor corresponding to the bandwidth running evaluation value, P 1ij represents the data transmission rate of the jth transmission task of the ith bandwidth, P0 represents the critical transmission task data transmission rate, T 1ij represents the queuing time of the jth transmission task of the ith bandwidth, T0 represents the critical transmission task queuing time, E 1ij represents the error rate of the jth transmission task of the ith bandwidth, E0 represents the critical transmission task error rate, ξO 1i represents the bandwidth running evaluation value of the ith bandwidth, ξO 0i represents the critical bandwidth running evaluation value of the ith bandwidth.

[0060] In this embodiment, β1, β2, β3 and β4 are respectively the data communication transmission quality evaluation influence factors corresponding to the transmission task data transmission rate, the transmission task queuing time, the transmission task error rate and the bandwidth running evaluation value preset in the data communication database, and these influence factors are numerical indicators for measuring the influence of the above-mentioned parameters on the data communication transmission quality evaluation value. Specifically, there is a mapping relationship table for each of the transmission task data transmission rate, the transmission task queuing time, the transmission task error rate and the bandwidth running evaluation value, and each table records each possible parameter value and its corresponding data communication transmission quality evaluation influence factor. These mapping relationships can be one-to-one or many-to-one. In actual application, when it is necessary to evaluate the data communication transmission quality evaluation value, the measured transmission task data transmission rate, the transmission task queuing time, the transmission task error rate and the bandwidth running evaluation value can be respectively input into the corresponding mapping relationship table, and the data communication transmission quality evaluation influence factors corresponding to these values can be quickly found, wherein the value range of the influence factor is between 0 and 1.

[0061] Further, the step of feeding back and warning according to the data communication transmission quality evaluation value comprises: obtaining a data communication transmission quality evaluation threshold value from the data communication database; comparing the data communication transmission quality evaluation value with the data communication transmission quality evaluation threshold value, if the data communication transmission quality evaluation value is greater than or equal to the data communication transmission quality evaluation threshold value, no additional processing is performed, and if the data communication transmission quality evaluation value is less than the data communication transmission quality evaluation threshold value, the difference between the data communication transmission quality evaluation threshold value and the data communication transmission quality evaluation value is marked as a deviation data communication transmission quality evaluation value, and feedback and warning are performed according to the deviation data communication transmission quality evaluation value.

[0062] In the embodiment, the data communication transmission quality evaluation threshold is a preset value for evaluating the degree of data communication transmission quality. By feeding back and warning according to the data communication transmission quality evaluation value, the transmission quality can be monitored in real time, timely warning is given when the quality decreases, and potential problems are avoided; at the same time, by adjusting the feedback, the transmission parameters can be optimized, and the transmission efficiency and stability can be improved. When feeding back and warning according to the deviation data communication transmission quality evaluation value, the deviation data communication transmission quality evaluation value can be matched with the deviation level corresponding to each deviation data communication transmission quality evaluation value preset in the data communication database to obtain the deviation level corresponding to the deviation data communication transmission quality evaluation value, and the deviation level is adjusted according to the deviation level. The deviation level includes a slight deviation level, a moderate deviation level and a serious deviation level, wherein the slight deviation level indicates that the deviation value is small, the influence on the transmission quality is small, but it still needs to be paid attention to, the change trend of the transmission parameter can be monitored, and whether it continues to deteriorate can be observed. If the trend is stable or improved, the current state is maintained, and the monitoring is continued. If the trend deteriorates, the processing measure of moderate deviation is upgraded. The moderate deviation level indicates that the deviation value is moderate, which has a certain influence on the transmission quality, and measures need to be taken to adjust it. The transmission parameter can be adjusted, such as increasing the transmission power, optimizing the channel selection, etc. At the same time, the monitoring frequency is strengthened to ensure the stability of the transmission quality. If the transmission quality does not improve after adjustment, the processing measure of serious deviation is upgraded. The serious deviation level indicates that the deviation value is large, which has a significant influence on the transmission quality, and measures need to be taken to repair immediately. Faults need to be checked and repaired immediately, relevant management personnel and users are notified, the situation is explained and the expected recovery time is given. The transmission quality is continuously monitored during the repair process to ensure that the problem is completely solved. For example, the current deviation data communication transmission quality evaluation value is 0.15, the deviation data communication transmission quality evaluation value corresponding to the slight deviation level is preset in the data communication database, the range of the deviation data communication transmission quality evaluation value corresponding to the moderate deviation level is [0.05, 0.1], and the range of the deviation data communication transmission quality evaluation value corresponding to the serious deviation level is greater than 0.1. Therefore, the level of the current data communication transmission quality is the serious deviation level.

[0063] As Figure 3As shown in the structural schematic diagram of the service-oriented integrated data communication transmission operation management system provided by the embodiment of the present application, the service-oriented integrated data communication transmission operation management system provided by the embodiment of the present application comprises a running evaluation module, a task adjustment module, a quality evaluation module and a data communication database; wherein the running evaluation module is configured to acquire data transmission task priority data and monitor bandwidth running data to obtain bandwidth running evaluation values; the task adjustment module is configured to classify the data transmission tasks according to the data transmission task priority data and adjust and feed back the data transmission tasks of the bandwidths according to the data transmission task classification results and the bandwidth running evaluation values; and the quality evaluation module is configured to collect data transmission task execution condition data of the bandwidths in real time, obtain data communication transmission quality evaluation values through comprehensive analysis according to the data transmission task execution condition data of the bandwidths and the bandwidth running evaluation values, and feed back and warn according to the data communication transmission quality evaluation values.

[0064] The embodiment of the present application also provides a service-oriented integrated data communication transmission operation management device, which comprises a processor and a memory for storing processor-executable instructions; the processor is configured to execute the instructions so that the electronic device implements the service-oriented integrated data communication transmission operation management method.

[0065] In summary, the embodiment of the present application acquires data transmission task priority data, monitors bandwidth running data to obtain bandwidth running evaluation values, classifies the data transmission tasks according to the data transmission task priority data, adjusts and feeds back the data transmission tasks of the bandwidths according to the data transmission task classification results and the bandwidth running evaluation values, collects data transmission task execution condition data of the bandwidths in real time, obtains data communication transmission quality evaluation values through comprehensive analysis according to the data transmission task execution condition data of the bandwidths and the bandwidth running evaluation values, and feeds back and warns according to the data communication transmission quality evaluation values, thereby improving the data communication transmission operation communication efficiency and stability.

[0066] Those skilled in the art should understand that the embodiments of the present application can be provided as a method, a system or a computer program product. Therefore, the present application can adopt a completely hardware embodiment, a completely software embodiment or an embodiment combining software and hardware aspects. Moreover, the present application can adopt a computer program product in the form of being implemented on one or more computer usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer usable program codes.

[0067] The embodiments of methods, devices (systems), and computer program products of the application can be described in reference to flowchart illustrations and / or block diagrams of the flowchart and / or block diagrams of the methods, devices (systems), and computer program products according to embodiments of the application. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general purpose computer, special purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, create means for implementing the functions specified in the flowchart illustrations and / or block diagrams of the flowchart and / or block diagrams of the methods, devices (systems), and computer program products. Figure 1 one or more functions specified in the flowchart and / or block diagrams of the flowchart and / or block diagrams of the methods, devices (systems), and computer program products. Figure 1 one or more functions specified in the flowchart and / or block diagrams of the flowchart and / or block diagrams of the methods, devices (systems), and computer program products.

[0068] These computer program instructions can also be stored in a computer- readable memory that can direct a computer or other programmable data processing apparatus to function in a particular manner, such that the instructions stored in the computer-readable memory produce an article of manufacture including instructions which implement the flowchart and / or block diagrams of the flowchart and / or block diagrams of the methods, devices (systems), and computer program products. Figure 1 one or more functions specified in the flowchart and / or block diagrams of the flowchart and / or block diagrams of the methods, devices (systems), and computer program products. Figure 1 one or more functions specified in the flowchart and / or block diagrams of the flowchart and / or block diagrams of the methods, devices (systems), and computer program products.

[0069] These computer program instructions can also be loaded into a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the flowchart and / or block diagrams of the flowchart and / or block diagrams of the methods, devices (systems), and computer program products. Figure 1 one or more functions specified in the flowchart and / or block diagrams of the flowchart and / or block diagrams of the methods, devices (systems), and computer program products. Figure 1 one or more functions specified in the flowchart and / or block diagrams of the flowchart and / or block diagrams of the methods, devices (systems), and computer program products.

[0070] While the preferred embodiments of the application have been described, additional variations and modifications can be made to the embodiments by those of skill in the art once they have the benefit of the present disclosure. Therefore, the appended claims are intended to cover all such modifications and variations as fall within the true spirit and scope of the application. What is claimed is:

[0071] Obviously, numerous modifications and variations of the present application are possible in light of the above teachings. It is therefore to be understood that within the scope of the appended claims and their equivalents, the application can be practiced otherwise than as specifically described.

Claims

1. A method for service-oriented integration of data communication transmission operation management, characterized in that, The method comprises the following steps: obtaining transmission task priority data in data transmission and monitoring bandwidth operation data to obtain bandwidth operation evaluation values; the step of monitoring the bandwidth operation data and obtaining the bandwidth operation evaluation values comprises: the bandwidth operation data comprises bandwidth utilization, bandwidth response time and bandwidth traffic consumption; obtaining reference bandwidth utilization, allowable deviation bandwidth utilization, critical bandwidth response time, reference bandwidth traffic consumption and allowable deviation bandwidth traffic consumption from a data communication database; comprehensively analyzing to obtain the bandwidth operation evaluation values; classifying the transmission tasks according to the transmission task priority data and adjusting and feeding back the transmission tasks of the bandwidth according to the transmission task classification results and the bandwidth operation evaluation values; the step of classifying the transmission tasks according to the transmission task priority data comprises: the task priority data comprises transmission task demand traffic, transmission task tolerant delay and transmission task tolerant jitter; obtaining critical transmission task demand traffic, critical transmission task tolerant delay and critical transmission task tolerant jitter from a data communication database; comprehensively analyzing to obtain transmission task priority indexes; classifying the transmission tasks according to the transmission task priority indexes to obtain low-priority tasks, medium-priority tasks and high-priority tasks; real-time collecting transmission task execution condition data of the bandwidth, comprehensively analyzing to obtain data communication transmission quality evaluation values according to the transmission task execution condition data of the bandwidth and the bandwidth operation evaluation values, and feeding back and warning according to the data communication transmission quality evaluation values; the step of comprehensively analyzing to obtain the data communication transmission quality evaluation values according to the transmission task execution condition data of the bandwidth and the bandwidth operation evaluation values comprises: the transmission task execution condition data of the bandwidth comprises transmission task data transmission rate, transmission task queuing time and transmission task error rate; obtaining critical transmission task data transmission rate, critical transmission task queuing time, critical transmission task error rate and critical bandwidth operation evaluation values from a data communication database; comprehensively analyzing to obtain the data communication transmission quality evaluation values.

2. The method of claim 1, wherein the service-oriented integration data communication transmission operation management method is characterized by: the step of classifying the transmission tasks according to the transmission task priority indexes to obtain low-priority tasks, medium-priority tasks and high-priority tasks comprises: obtaining low-priority index threshold values and medium-priority index threshold values from a data communication database; comparing the transmission task priority indexes with the low-priority index threshold values and the medium-priority index threshold values, marking a transmission task as a low-priority task if the transmission task priority index of the transmission task is less than or equal to the low-priority index threshold value, marking the transmission task as a medium-priority task if the transmission task priority index of the transmission task is greater than the low-priority index threshold value and less than or equal to the medium-priority index threshold value, and marking the transmission task as a high-priority task if the transmission task priority index of the transmission task is greater than the medium-priority index threshold value; counting to obtain the low-priority tasks, the medium-priority tasks and the high-priority tasks.

3. The method of claim 1, wherein the service-oriented integration of data communication transmission operation management is characterized by: The step of adjusting and feeding back the transmission tasks of each bandwidth according to the transmission task classification result and the bandwidth operation evaluation value comprises: Obtaining the bandwidth operation evaluation threshold value from the data communication database; Comparing the bandwidth operation evaluation value with the bandwidth operation evaluation threshold value, if the bandwidth operation evaluation value is less than the bandwidth operation evaluation threshold value, adjusting and feeding back the transmission tasks of the bandwidth according to the transmission task classification result, if the bandwidth operation evaluation value is greater than or equal to the bandwidth operation evaluation threshold value, no additional operation is performed.

4. The method of claim 1, wherein the service-oriented integration of data communication transmission operation management is characterized by: The data communication transmission quality evaluation value is obtained in the following way: ; In the formula, represents the data communication transmission quality evaluation value, represents the data communication transmission quality evaluation influence factor corresponding to the transmission task data transmission rate, represents the data communication transmission quality evaluation influence factor corresponding to the transmission task queuing time, represents the data communication transmission quality evaluation influence factor corresponding to the transmission task error rate, represents the data communication transmission quality evaluation influence factor corresponding to the bandwidth running evaluation value, represents the data transmission rate of the jth transmission task of the ith bandwidth, represents the critical transmission task data transmission rate, represents the queuing time of the jth transmission task of the ith bandwidth, represents the critical transmission task queuing time, represents the error rate of the jth transmission task of the ith bandwidth, represents the critical transmission task error rate, represents the bandwidth running evaluation value of the ith bandwidth, represents the critical bandwidth running evaluation value of the ith bandwidth.

5. The method of claim 1, wherein the service-oriented integration of data communication transmission operation management is characterized by: The step of feeding back and warning according to the data communication transmission quality evaluation value comprises: Obtaining the data communication transmission quality evaluation threshold value from the data communication database; Comparing the data communication transmission quality evaluation value with the data communication transmission quality evaluation threshold value, if the data communication transmission quality evaluation value is greater than or equal to the data communication transmission quality evaluation threshold value, no additional processing is performed, if the data communication transmission quality evaluation value is less than the data communication transmission quality evaluation threshold value, the difference between the data communication transmission quality evaluation threshold value and the data communication transmission quality evaluation value is marked as a deviation data communication transmission quality evaluation value, and feeding back and warning according to the deviation data communication transmission quality evaluation value.

6. A data communication transmission operation management system for service-oriented integration, applying the data communication transmission operation management method for service-oriented integration according to any one of claims 1-5. It comprises an operation evaluation module, a task adjustment module, a quality evaluation module and a data communication database; The operation evaluation module is used for obtaining the data transmission task priority data and monitoring the bandwidth operation data, and processing to obtain the bandwidth operation evaluation value; The task adjustment module is used for classifying the transmission tasks according to the transmission task priority data, and adjusting and feeding back the transmission tasks of each bandwidth according to the transmission task classification result and the bandwidth operation evaluation value; The quality evaluation module is used for collecting the execution condition data of each transmission task of each bandwidth in real time, comprehensively analyzing the data communication transmission quality evaluation value according to the execution condition data of each transmission task of each bandwidth and the bandwidth operation evaluation value, and feeding back and warning according to the data communication transmission quality evaluation value.

7. A data communication transmission operation management apparatus for service-oriented integration, characterized by, It comprises: A processor for storing the memory of the processor executable instruction; The processor is configured to execute the instruction, so that the device implements the service-oriented integrated data communication transmission operation management method according to any one of claims 1-5.

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