Intelligent Fusion Method and Service System for Communication Network Network Management

The communication network management system integrates network layers through a fusion graph and standardized paths, enabling efficient unified management and data transmission, addressing the inefficiencies of separate layer management.

CN118573543BActive Publication Date: 2025-07-15JINCHENG POWER SUPPLY COMPANY OF STATE GRID SHANXI ELECTRIC POWER
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Patent Information

Application Number
CN202410639159.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-22
Publication Date
2025-07-15
Estimated Expiration
2044-05-22

AI Technical Summary

Technical Problem

In the prior art, different network levels of communication networks need to be managed separately, resulting in numerous and complex management operations, affecting operation and maintenance efficiency.

Method used

By building a network-level converged network map of the communication network, determining the service execution path and communication standard sequence, and achieving unified management of all network levels.

Benefits of technology

It greatly improves the equipment management and operation and maintenance efficiency of the communication network, provides data format conversion and transmission basis, and realizes integrated and unified management at the network level.

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Abstract

The present invention relates to the technical field of communication network management, and specifically discloses a method and a service system for intelligent integration of communication network management, including: building a network layer integration network map of the communication network based on the logical architecture between all network layers in the communication network; determining the service execution paths of each preset management service type in the network layer integration network map; constructing a communication standard sequence of the service execution paths of each preset management service type based on the communication standards between every two devices of every two network layers; uniformly managing the devices of all network layers in the communication network based on the input fusion network management instructions of the user and the communication standard sequence of the service execution paths of each preset management service type to obtain a unified network management result of the communication network; so as to realize the integrated and unified management of the devices of all network layers of the communication network, and greatly improve the management and operation and maintenance efficiency of the devices of all network layers of the communication network.
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Description

Technical Field

[0001] The present invention relates to the technical field of communication network management, and particularly to a method for intelligent integration of communication network management and a service system. Background Art

[0002] Currently, a communication network includes different network layers, such as a voice core network, a transmission network, a data network, and an access network. When managing all network layers in the communication network, operation and maintenance personnel need to log in to the supporting network management of each network layer one by one or configure the network management by logging in to the device to implement management operations on the devices of different network layers in the communication network, such as alarm collection and display, service configuration, performance query, visualization of the end-to-end service running status, etc.

[0003] This method of separately managing the devices of all network layers in the communication network involves a large amount of data and complex and repetitive management operation processes, resulting in a great impact on the management and operation and maintenance efficiency. There is an urgent need to develop a network management method that can integratively manage all network layers in the communication network.

[0004] Therefore, the present invention proposes a method for intelligent integration of communication network management and a service system. Summary of the Invention

[0005] The present invention provides a method for intelligent integration of communication network management and a service system to achieve integrated and unified management of the devices of all network layers in the communication network, and greatly improve the management and operation and maintenance efficiency of the devices of all network layers in the communication network.

[0006] The present invention provides a method for intelligent integration of communication network management, including:

[0007] S1: Based on the logical architecture between all network layers in the communication network, build a network layer integration network map of the communication network;

[0008] S2: Determine the service execution paths of each preset management service type in the network layer integration network map;

[0009] S3: Based on the communication standards between every two devices of all network layers in the communication network, construct a communication standard sequence for the service execution paths of each preset management service type;

[0010] S4: Based on the integrated network management instruction input by the user and the communication standard sequences of the service execution paths of each preset management service type, uniformly manage the devices of all network layers in the communication network to obtain the integrated network management result of the communication network.

[0011] Preferably, S1: Based on the logical architecture between all network layers in the communication network, build a network layer integration network map of the communication network, including:

[0012] Obtain all the service execution paths at the network layer involved in each preset management service type that can be executed by the communication network;

[0013] Based on all the service execution paths at the network layer involved in all preset management service types that can be executed by the communication network, construct a network layer integrated network map of the communication network.

[0014] Preferably, based on all the service execution paths at the network layer involved in all preset management service types that can be executed by the communication network, construct a network layer integrated network map of the communication network, including:

[0015] Determine all the sub-service execution paths and all the service types to be executed between every two network layers among all the service execution paths at the network layer involved in all preset management service types that can be executed by the communication network;

[0016] Based on all the sub-service execution paths between every two network layers, connect all the network layers to obtain a network layer integrated network of the communication network;

[0017] Mark all the service types to be executed between every two network layers on the network layer integrated network of the communication network to obtain a network layer integrated network map of the communication network.

[0018] Preferably, S3: Based on the communication standards between every two devices at all network layers in the communication network, construct a communication standard sequence for the service execution path of each preset management service type, including:

[0019] Regard the communication protocol between every two devices at all network layers in the communication network as the communication standard between every two devices at all network layers in the communication network;

[0020] Based on the communication standards between every two devices at all network layers in the communication network, construct a communication standard sequence for the service execution path of each preset management service type.

[0021] Preferably, based on the communication standards between every two devices at all network layers in the communication network, construct a communication standard sequence for the service execution path of each preset management service type, including:

[0022] Determine all the devices to be executed in each service execution step in the service execution path of each preset management service type and summarize them to obtain a set of devices to be executed for each service execution step;

[0023] Based on the set of devices to be executed for each service execution step in the service execution path of each preset management service type and the communication standards between every two devices at all network layers in the communication network, construct a communication standard sequence for the service execution path of each preset management service type.

[0024] Preferably, based on the sum of the sets of devices to be executed in each service execution step of the service execution path for each preset management service type and the communication standards between every two devices at all network levels in the communication network, a communication standard sequence for the service execution path of each preset management service type is constructed, including:

[0025] Regarding each device to be executed in the set of devices to be executed in each service execution step of the service execution path for each preset management service type as the originating device, and at the same time, regarding all the remaining devices to be executed in the corresponding set of devices to be executed except the originating device as the synchronization devices, all types of device synchronization path trees for each service execution step of each preset management service type are constructed, where the root node of the device synchronization path tree is the originating device and all the corresponding leaf nodes are the corresponding synchronization devices;

[0026] Connecting in sequence any one type of device synchronization path tree for all service execution steps of each preset management service type, all types of device data transmission path trees for each preset management service type are obtained, where in each type of device data transmission path tree, the adjacent service execution steps are connected by a new branch structure formed between the leaf node of the previous service execution step and the root node of the next service execution step in the adjacent service execution steps;

[0027] Based on the service data originating format of each preset management service type, all types of device data transmission path trees of each preset management service type, and the communication standards between every two devices at all network levels in the communication network, a communication standard sequence for the service execution path of each preset management service type is constructed.

[0028] Preferably, based on the service data originating format of each preset management service type, all types of device data transmission path trees of each preset management service type, and the communication standards between every two devices at all network levels in the communication network, a communication standard sequence for the service execution path of each preset management service type is constructed, including:

[0029] Based on the communication standards between every two devices at all network levels in the communication network, the data transmission rate between every two devices at all network levels in the communication network is determined;

[0030] Based on the service data originating format of each preset management service type, the data conversion rate in each data conversion process in each type of device data transmission path tree of each preset management service type is determined;

[0031] Based on the data transmission rate between every two devices at all network levels in the communication network and the data conversion rate in each data conversion process in each device data transmission path tree of each preset management service type, screen out the optimal device data transmission path tree of each preset management service type from all device data transmission path trees of each preset management service type;

[0032] Sort the communication standards between all adjacent devices from front to back in the optimal device data transmission path tree of each preset management service type to obtain the communication standard sequence of the service execution path of each preset management service type.

[0033] Preferably, based on the data transmission rate between every two devices at all network levels in the communication network and the data conversion rate in each data conversion process in each device data transmission path tree of each preset management service type, screening out the optimal device data transmission path tree of each preset management service type from all device data transmission path trees of each preset management service type includes:

[0034] Determine all data transmission processes in each device data transmission path tree of each preset management service type;

[0035] Based on the data transmission rate between the two devices corresponding to all data transmission processes in each device data transmission path tree of each preset management service type and the data conversion rate in each data conversion process, calculate the transmission efficiency value of each device data transmission path tree of each preset management service type:

[0036]

[0037] In the formula, v is the transmission efficiency value of the device data transmission path tree of the current calculation type of the current preset management service type, v i is the data transmission rate between the two devices corresponding to the i-th data transmission process in the device data transmission path tree of the current calculation type of the current preset management service type, n is the total number of data transmission processes in the device data transmission path tree of the current calculation type of the current preset management service type, v j is the data conversion rate of the j-th data conversion process in the device data transmission path tree of the current calculation type of the current preset management service type, m is the total number of data conversion processes in the device data transmission path tree of the current calculation type of the current preset management service type, and M is the maximum value among the total number of data conversion processes of all device data transmission path trees of the previously calculated preset management service type;

[0038] Among all the device data transmission path trees of each preset management service type, the device data transmission path tree corresponding to the maximum transmission efficiency value is regarded as the optimal device data transmission path tree of each preset management service type.

[0039] Preferably, S4: Based on the integrated network management instruction input by the user and the communication standard sequence of the service execution paths of each preset management service type, uniformly manage all the devices at the network layer in the communication network to obtain the unified network management result of the communication network, including:

[0040] Determine the data to be transmitted based on the integrated network management instruction input by the user, and determine the preset management service type corresponding to the integrated network management instruction;

[0041] Based on the communication standard sequence of the service execution path of the preset management service type corresponding to the integrated network management instruction input by the user, sequentially send the corresponding data to be transmitted to the corresponding devices to be executed. At the same time, receive the execution feedback of the corresponding devices to be executed to obtain the unified network management result of the communication network.

[0042] The present invention provides a communication network network management intelligent integration service system for executing any one of the communication network network management intelligent integration methods in Embodiments 1 to 9, including:

[0043] An integration graph construction module for constructing a network layer integration network graph of the communication network based on the logical architecture between all network layers in the communication network;

[0044] A management path determination module for determining the service execution paths of each preset management service type in the network layer integration network graph;

[0045] A standard sequence construction module for constructing a communication standard sequence of the service execution path of each preset management service type based on the communication standards between every two devices at all network layers in the communication network;

[0046] A device unified management module for uniformly managing all the devices at the network layer in the communication network based on the integrated network management instruction input by the user and the communication standard sequence of the service execution paths of each preset management service type to obtain the unified network management result of the communication network.

[0047] The beneficial effects of the present invention compared with the prior art are as follows: Based on the construction of the network-level fusion network map of the completed communication network, the integration of the service execution logic at the network level of the communication network is realized. Based on the service execution paths of each preset management service type and the communication standards between every two devices determined in the network-level fusion network map, the communication standard sequence of the service execution paths is determined, providing a basis for data format conversion and transmission for the integrated management between devices at different network levels. Furthermore, subsequent integrated unified management of all devices at all network levels in the communication network can be completed based on the integrated network management instructions input by the user and the communication standard sequence of the service execution paths of each preset management service type, greatly improving the management and operation and maintenance efficiency of all devices at all network levels in the communication network.

[0048] Other features and advantages of the present invention will be described in the following specification, and, in part, will be obvious from the specification, or will be understood by implementing the present invention. The objectives and other advantages of the present invention can be achieved and obtained through the structure specifically pointed out in this application document.

[0049] The technical solution of the present invention will be further described in detail below through the drawings and embodiments. Description of the Drawings

[0050] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. They are used to explain the present invention together with the embodiments of the present invention, and do not constitute a limitation to the present invention. In the drawings:

[0051] Figure 1 It is a flowchart of the intelligent fusion method for communication network network management in the embodiment of the present invention;

[0052] Figure 2 It is a schematic diagram of the internal functional modules of the intelligent fusion service system for communication network network management in the embodiment of the present invention. Detailed Embodiments

[0053] The following describes the preferred embodiments of the present invention with reference to the drawings. It should be understood that the preferred embodiments described here are only used to illustrate and explain the present invention, and are not used to limit the present invention.

[0054] Embodiment 1:

[0055] The present invention provides an intelligent fusion method for communication network network management, referring to Figure 1 , including:

[0056] S1: Based on the logical architecture between all network levels in the communication network, construct a network-level fusion network map of the communication network;

[0057] S2: Determine the service execution paths of each preset management service type in the network-level fusion network map;

[0058] S3: Based on the communication standards between every two devices at all network levels in the communication network, construct a communication standard sequence for the service execution paths of each preset management service type.

[0059] S4: Based on the integrated network management instructions input by the user and the communication standard sequences for the service execution paths of each preset management service type, uniformly manage the devices at all network levels in the communication network to obtain the unified network management result of the communication network.

[0060] In this embodiment, the communication network is a system for transmitting information between communication terminals located in different places.

[0061] In this embodiment, all network levels in the communication network include, for example, a voice core network, a transmission network, a data network, and an access network.

[0062] In this embodiment, the logical architecture between all network levels in the communication network is a network architecture representing the service execution logic between all network levels in the communication network.

[0063] In this embodiment, the network level integration network map is the result of graphically representing the logical architecture between all network levels in the communication network.

[0064] In this embodiment, the preset management service types include, for example, integrated alarm collection and display for devices at multiple network levels, unified service configuration, integrated performance query, visualization of the end-to-end service operation status, etc.

[0065] In this embodiment, the service execution path is a path sequentially connected by multiple network levels, representing the execution logic sequence when multiple network levels execute a single preset management service type.

[0066] In this embodiment, the communication standard between two devices is a communication protocol that can achieve communication between the two devices.

[0067] In this embodiment, the communication standard sequence is a sequence composed of the communication standards (communication protocols) involved in the data transmission process between the devices sequentially experienced in the service execution path.

[0068] In this embodiment, the integrated network management instruction is the service type and related data involved in the execution process that the user inputs to clearly want to uniformly manage all network levels of the communication network, such as the period of integrated alarm collection, etc.

[0069] In this embodiment, the unified network management result of the communication network is the result of receiving the execution feedback of all corresponding devices to be executed after uniformly managing the devices at all network levels in the communication network.

[0070] In this embodiment, devices at the network level include, for example, network cables, cables, optical fibers, routers, switches, bridges, 5G communication devices, gateways, firewalls, etc.

[0071] The beneficial effects of the above technologies are as follows: Based on the construction of the network-level fusion network map of the completed communication network, the integration of the service execution logic at the network level of the communication network is realized. Based on the service execution paths of each preset management service type and the communication standards between every two devices determined in the network-level fusion network map, the communication standard sequence of the service execution path is determined, providing a basis for data format conversion and transmission for the integrated management between devices at different network levels. Furthermore, subsequent integrated unified management of all devices at the network level in the communication network can be completed based on the integrated network management instructions input by the user and the communication standard sequence of the service execution path of each preset management service type, greatly improving the management and operation and maintenance efficiency of all devices at the network level of the communication network.

[0072] Embodiment 2:

[0073] On the basis of Embodiment 1, S1: Based on the logical architecture between all network levels in the communication network, construct the network-level fusion network map of the communication network, including:

[0074] Obtain all service execution paths at all network levels involved in each preset management service type that the communication network can execute;

[0075] Based on all service execution paths at all network levels involved in all preset management service types that the communication network can execute, construct the network-level fusion network map of the communication network.

[0076] In this embodiment, all network levels involved in each preset management service type are the network levels that need to execute this single preset management service type (or the network levels where the devices are located).

[0077] The beneficial effects of the above technologies are as follows: Ensure that the constructed network-level fusion network map of the communication network can cover the service execution logic of all preset management service types that the communication network can execute.

[0078] Embodiment 3:

[0079] On the basis of Embodiment 2, based on all service execution paths at all network levels involved in all preset management service types that the communication network can execute, construct the network-level fusion network map of the communication network, including:

[0080] Determine all sub-service execution paths and all service execution types between every two network levels among all service execution paths at all network levels involved in all preset management service types that the communication network can execute;

[0081] Based on all the sub - service execution paths between pairwise network levels, all network levels are connected to obtain the network - level fusion network of the communication network;

[0082] Mark all the service types executed between pairwise network levels on the network - level fusion network of the communication network to obtain the network - level fusion network map of the communication network.

[0083] In this embodiment, all the sub - service execution paths between pairwise network levels are the partial service execution paths covered between two network levels of all the service execution paths involved in a single preset management service type.

[0084] In this embodiment, the service types executed between pairwise network levels include service data that requires the previous network level to trigger the next network level to execute, or can be understood as the service data categories transmitted between two network levels. For example, when the device at network level A receives access trigger data from end - point A1, it triggers the status query mechanism or program of the device at network level B.

[0085] In this embodiment, the network - level fusion network of the communication network obtained by connecting all network levels based on all the sub - service execution paths between pairwise network levels contains all the sub - service execution paths between pairwise network levels.

[0086] In this embodiment, the network - level fusion network is a network structure that contains all the sub - service execution paths between pairwise network levels.

[0087] The beneficial effect of the above - mentioned technology is: Based on all the sub - service execution paths and all the service types executed between pairwise network levels, a comprehensive construction of the network - level fusion network map of the communication network is realized.

[0088] Embodiment 4:

[0089] On the basis of Embodiment 1, S3: Based on the communication standards between every two devices in all network levels of the communication network, construct the communication standard sequence of the service execution paths for each preset management service type, including:

[0090] Regard the communication protocols between every two devices in all network levels of the communication network as the communication standards between every two devices in all network levels of the communication network;

[0091] Based on the communication standards between every two devices in all network levels of the communication network, construct the communication standard sequence of the service execution paths for each preset management service type.

[0092] In this embodiment, the communication protocols between devices are, for example, TCP / IP (Transmission Control Protocol / Internet Protocol), HTTP (Hypertext Transfer Protocol), UDP (User Datagram Protocol), FTP (File Transfer Protocol), etc.

[0093] The beneficial effects of the above technologies are as follows: The communication standards between every two devices at all network levels in the communication network are clarified, and further, the construction of the communication standard sequence of the service execution path for each preset management service type is realized.

[0094] Embodiment 5:

[0095] Based on the communication standards between every two devices at all network levels in the communication network on the basis of Embodiment 4, the communication standard sequence of the service execution path for each preset management service type is constructed, including:

[0096] Determine all the devices to be executed in each service execution step in the service execution path of each preset management service type and summarize them to obtain the set of devices to be executed in each service execution step.

[0097] Based on the set of devices to be executed in each service execution step in the service execution path of each preset management service type and the communication standards between every two devices at all network levels in the communication network, the communication standard sequence of the service execution path for each preset management service type is constructed.

[0098] In this embodiment, the service execution steps in the service execution path are the service steps that need to be executed by the devices at the network level in the service execution path. For example, query the running status of the devices at the current network level.

[0099] In this embodiment, all the devices to be executed in the service execution step are the devices that need to execute this service execution step.

[0100] The beneficial effects of the above technologies are as follows: By clarifying all the devices to be executed in each service execution step in the service execution path of each preset management service type, the communication standard sequence of the service execution path for each preset management service type is further refined.

[0101] Embodiment 6:

[0102] Based on the set of devices to be executed in each service execution step in the service execution path of each preset management service type and the communication standards between every two devices at all network levels in the communication network on the basis of Embodiment 5, the communication standard sequence of the service execution path for each preset management service type is constructed, including:

[0103] Regarding each device to be executed in the set of devices to be executed for each business execution step in the business execution path of each preset management service type as the originating device, and at the same time, regarding all the devices to be executed remaining in the corresponding set of devices to be executed except the originating device as the synchronization devices, all types of device synchronization path trees for each business execution step of each preset management service type are constructed, where the root node of the device synchronization path tree is the originating device and all the corresponding leaf nodes are the corresponding synchronization devices;

[0104] By sequentially connecting any one type of device synchronization path tree for all the business execution steps of each preset management service type, all types of device data transmission path trees for each preset management service type are obtained, where in each type of device data transmission path tree, the adjacent business execution steps are connected by the branch structure newly formed between the leaf node of the previous business execution step and the root node of the next business execution step in the adjacent business execution steps;

[0105] Based on the business data originating format of each preset management service type, all types of device data transmission path trees of each preset management service type, and the communication standards between every two devices at all network levels in the communication network, the communication standard sequence of the business execution path of each preset management service type is constructed.

[0106] In this embodiment, all types of device synchronization path trees of the business execution step are the tree structure representation results of all possible cases of the one-to-many data transmission paths indicating that in all the devices to be executed for a single business execution step, any one device synchronously transmits business data to the remaining all devices to be executed.

[0107] In this embodiment, the device data transmission path tree contains any one type of device synchronization path tree structure of each business execution step.

[0108] In this embodiment, the branch structure is the connection structure connecting nodes at different levels in the tree structure.

[0109] In this embodiment, the business data originating format of the preset management service type is the data format received accordingly when the communication network receives the fusion network management instruction indicating the execution of this preset management service type input by the user. The data format includes the header, tail, data part, etc. of the message.

[0110] The beneficial effects of the above technology are as follows: An equipment synchronization path tree representing all possible cases of a one-to-many data transmission path for any one device among all devices to be executed in a single business execution step to synchronously transmit service data to the remaining devices to be executed is constructed. By sequentially connecting any one equipment synchronization path tree of all business execution steps of each preset management service type, the construction of all types of equipment data transmission path trees for each preset management service type is realized. Then, in combination with the communication standards between every two devices at all network levels in the communication network, the details of the communication standard sequence of the business execution path for each preset management service type are further clarified.

[0111] Embodiment 7:

[0112] Based on the service data origin format of each preset management service type, all types of equipment data transmission path trees of each preset management service type, and the communication standards between every two devices at all network levels in the communication network, a communication standard sequence of the business execution path for each preset management service type is constructed, including:

[0113] Based on the communication standards between every two devices at all network levels in the communication network, determine the data transmission rate between every two devices at all network levels in the communication network;

[0114] Based on the service data origin format of each preset management service type, determine the data conversion rate during each data conversion process in each type of equipment data transmission path tree of each preset management service type;

[0115] Based on the data transmission rate between every two devices at all network levels in the communication network and the data conversion rate during each data conversion process in each type of equipment data transmission path tree of each preset management service type, screen out the best equipment data transmission path tree for each preset management service type from all types of equipment data transmission path trees of each preset management service type;

[0116] Sort the communication standards between all adjacent devices from front to back in the best equipment data transmission path tree of each preset management service type to obtain the communication standard sequence of the business execution path for each preset management service type.

[0117] In this embodiment, based on the communication standards and communication distances between every two devices at all network levels in the communication network, retrieve the preset communication standard and communication distance - data transmission rate list (indicating the data transmission rate when data is transmitted between devices at each communication distance using each communication standard), and determine the data transmission rate between every two devices at all network levels in the communication network.

[0118] In this embodiment, the data transmission rate represents the numerical value of the amount of data transmitted per unit time when data is transmitted between two corresponding devices using the corresponding communication standard.

[0119] In this embodiment, based on the service data originating format of each preset management service type, the data conversion rate for each data conversion process in each device data transmission path tree of each preset management service type is determined, including:

[0120] Determine all the data conversion processes in each device data transmission path tree of each preset management service type, and determine the data format before conversion and the data format after conversion for each data conversion process;

[0121] Based on the data format before conversion and the data format after conversion of each data conversion process, retrieve the preset list of data format before conversion and data format after conversion - data conversion rate, and determine the data conversion rate for each data conversion process.

[0122] In this embodiment, the data conversion process is a process of converting the data format of the service data to be transmitted.

[0123] In this embodiment, the data conversion rate represents the numerical value of the amount of data whose format is converted per unit time.

[0124] In this embodiment, the optimal device data transmission path tree represents the tree structure of the data transmission order among all devices that need to execute the corresponding integrated network management instruction of the corresponding preset management service type when the integrated network management instruction of the corresponding preset management service type is executed, with the highest service data transmission efficiency (highest execution efficiency).

[0125] The beneficial effects of the above technology are as follows: By quantifying the data transmission rate between every two devices at all network levels in the communication network and the data conversion rate for each data conversion process in each device data transmission path tree of each preset management service type, among all the device data transmission path trees of each preset management service type, the optimal device data transmission path tree representing the data transmission order among all devices that need to execute the corresponding integrated network management instruction of the corresponding preset management service type with the highest service data transmission efficiency (highest execution efficiency) is selected, and based on this optimal device data transmission path tree, the communication standard sequence of the service execution path for each preset management service type is obtained, so that the data transmission order among all devices involved in each preset management service type can be ensured to have the highest execution efficiency in the service execution process of the corresponding preset management service type.

[0126] Embodiment 8:

[0127] Based on Example 7, based on the data transfer rate between every two devices at all network levels in the communication network and the data conversion rate during each data conversion process in each device data transfer path tree of each preset management service type, the best device data transfer path tree of each preset management service type is selected from all types of device data transfer path trees of each preset management service type, including:

[0128] Determine all data transfer processes in each device data transfer path tree of each preset management service type;

[0129] Based on the data transfer rate between the two devices corresponding to all data transfer processes in each device data transfer path tree of each preset management service type and the data conversion rate during each data conversion process, calculate the transmission efficiency value of each device data transfer path tree of each preset management service type:

[0130]

[0131] In the formula, v is the transmission efficiency value of the device data transfer path tree of the current calculation type of the current preset management service type, v i is the data transfer rate between the two devices corresponding to the i-th data transfer process in the device data transfer path tree of the current calculation type of the current preset management service type, n is the total number of data transfer processes in the device data transfer path tree of the current calculation type of the current preset management service type, v j is the data conversion rate of the j-th data conversion process in the device data transfer path tree of the current calculation type of the current preset management service type, m is the total number of data conversion processes in the device data transfer path tree of the current calculation type of the current preset management service type, and M is the maximum value among the total number of data conversion processes of all types of device data transfer path trees of the previous calculated preset management service type;

[0132] Among all types of device data transfer path trees of each preset management service type, the device data transfer path tree corresponding to the maximum transmission efficiency value is regarded as the best device data transfer path tree of each preset management service type.

[0133] In this embodiment, the data transfer process is the process of data transfer between devices when executing the integrated network management instruction of a single preset management service type.

[0134] In this embodiment, the transmission efficiency value of the device data transfer path tree represents the numerical value of the efficiency of the entire data transfer process when all involved devices execute the integrated network management instruction of a single preset management service type and transfer data in sequence using the corresponding device data transfer path tree.

[0135] The beneficial effects of the above technology are as follows: Based on the data transmission rate between two devices corresponding to all data transmission processes in each device data transmission path tree of each preset management service type and the data conversion rate of each data conversion process, accurately calculate the transmission efficiency value of each device data transmission path tree of each preset management service type, and regard the device data transmission path tree of the type with the maximum transmission efficiency value as the best device data transmission path tree for each preset management service type, so that the data transmission order between all devices involved in each determined preset management service type can ensure the highest execution efficiency of the service execution process corresponding to the preset management service type.

[0136] Embodiment 9:

[0137] On the basis of Embodiment 7, S4: Based on the integrated network management instruction input by the user and the communication standard sequence of the service execution path of each preset management service type, uniformly manage all network-level devices in the communication network to obtain the unified network management result of the communication network, including:

[0138] Determine the data to be transmitted based on the integrated network management instruction input by the user, and determine the preset management service type corresponding to the integrated network management instruction;

[0139] Based on the communication standard sequence of the service execution path of the preset management service type corresponding to the integrated network management instruction input by the user, sequentially send the corresponding data to be transmitted to the corresponding devices to be executed. At the same time, receive the execution feedback of the corresponding devices to be executed to obtain the unified network management result of the communication network.

[0140] In this embodiment, the data to be transmitted is the relevant data involved in the execution process specified in the integrated network management instruction, such as data representing the period of integrated alarm collection, the range of devices for which the operating status needs to be queried, etc.

[0141] In this embodiment, the preset management service type corresponding to the integrated network management instruction is the preset management service type that the integrated network management instruction indicates requires the devices in the communication network to execute.

[0142] In this embodiment, based on the communication standard sequence of the service execution path of the preset management service type corresponding to the integrated network management instruction input by the user, sequentially sending the corresponding data to be transmitted to the corresponding devices to be executed includes:

[0143] Perform format conversion on the data to be transmitted involved in the integrated network management instruction input by the user based on the communication standards included in the communication standard sequence. At the same time, transmit the data after the corresponding format conversion to the corresponding devices to be executed according to all device data transmission paths in the best device data transmission path tree.

[0144] In this embodiment, the execution feedback of the device to be executed includes the feedback information received for the corresponding integrated network management instruction and the feedback information after the execution of the corresponding integrated network management (such as the query result of the operating status of the required device).

[0145] The beneficial effects of the above technology are as follows: Based on the communication standard sequence of the service execution path for the preset management service types and the corresponding optimal device data transmission path tree, the transmission process of the data to be transmitted among different devices in the communication network during the execution of the integrated network management instruction is completed, and the execution feedback of the corresponding device to be executed is received to obtain the unified network management result of the communication network, realizing the efficient and unified management of all devices in the communication network as required.

[0146] Embodiment 10:

[0147] The present invention provides a communication network management intelligent integration service system for executing any one of the communication network management intelligent integration methods in Embodiments 1 to 9, referring to Figure 2 , including:

[0148] An integrated graph construction module for constructing an integrated network graph of the network layers of the communication network based on the logical architecture among all network layers in the communication network;

[0149] A management path determination module for determining the service execution path for each preset management service type in the integrated network graph of the network layers;

[0150] A standard sequence construction module for constructing a communication standard sequence for the service execution path of each preset management service type based on the communication standards between every two devices among all network layers in the communication network;

[0151] A device unified management module for uniformly managing the devices on all network layers in the communication network based on the integrated network management instruction input by the user and the communication standard sequence of the service execution path for each preset management service type, and obtaining the unified network management result of the communication network.

[0152] The beneficial effects of the above technology are as follows: Based on the construction of the integrated network graph of the network layers of the communication network, the integration of the service execution logic of the network layers of the communication network is realized. Based on determining the service execution path for each preset management service type and the communication standards between every two devices in the integrated network graph of the network layers, the communication standard sequence of the service execution path is determined, providing a basis for data format conversion and transmission for the integrated management between devices on different network layers. Furthermore, subsequent integrated unified management of all devices on all network layers in the communication network can be completed based on the integrated network management instruction input by the user and the communication standard sequence of the service execution path for each preset management service type, greatly improving the management and operation and maintenance efficiency of all devices on all network layers of the communication network.

[0153] Obviously, those skilled in the art can make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention is also intended to include these changes and modifications.

Claims

1. A method for intelligent integration of communication network network management, characterized in that Including: S1: Based on the logical architecture among all network levels in the communication network, construct a network-level fusion network graph of the communication network; S2: Determine the service execution paths of each preset management service type in the network-level fusion network graph; S3: Determine all devices to be executed in each service execution step of the service execution paths of each preset management service type and summarize them to obtain the set of devices to be executed for each service execution step; Regard each device to be executed in the set of devices to be executed for each service execution step of the service execution paths of each preset management service type as the originating device. At the same time, regard all the remaining devices to be executed in the corresponding set of devices to be executed except the originating device as the synchronization devices, and construct all types of device synchronization path trees for each service execution step of each preset management service type, where the root node of the device synchronization path tree is the originating device and all the corresponding leaf nodes are the corresponding synchronization devices; Connect the device synchronization path trees of any one type of each service execution step of each preset management service type in sequence to obtain all types of device data transmission path trees for each preset management service type, where in each type of device data transmission path tree, the adjacent service execution steps are connected by the branch structure newly formed between the leaf node of the previous service execution step and the root node of the next service execution step in the adjacent service execution steps; Based on the service data originating format of each preset management service type, all types of device data transmission path trees of each preset management service type, and the communication standard between every two devices in all network levels of the communication network, construct the communication standard sequence of the service execution path of each preset management service type; S4: Based on the fusion network management instruction input by the user and the communication standard sequence of the service execution path of each preset management service type, uniformly manage the devices in all network levels of the communication network to obtain the unified network management result of the communication network.

2. The intelligent fusion method of the communication network network management according to claim 1, characterized in that, S1: Based on the logical architecture among all network levels in the communication network, construct a network-level fusion network graph of the communication network, including: Obtain the service execution paths of all network levels involved in each preset management service type that the communication network can execute; Based on the service execution paths of all network levels involved in all types of preset management service types that the communication network can execute, construct a network-level fusion network graph of the communication network.

3. The intelligent fusion method for the communication network network management according to claim 2, characterized in that, Based on the service execution paths of all network levels involved in all types of preset management service types that the communication network can execute, construct a network-level fusion network graph of the communication network, including: Determine all sub-service execution paths and all executed service types between every two network levels in the service execution paths of all network levels involved in all types of preset management service types that the communication network can execute; Based on all sub-service execution paths between every two network levels, connect all network levels to obtain the network-level fusion network of the communication network; Mark all executed service types between every two network levels on the network-level fusion network of the communication network to obtain the network-level fusion network graph of the communication network.

4. The intelligent integration method of the communication network network management according to claim 1, characterized in that, Based on the originating format of service data for each preset management service type, all types of device data transmission path trees for each preset management service type, and the communication standards between every two devices at all network levels in the communication network, construct a communication standard sequence for the service execution path of each preset management service type, including: Based on the communication standards between every two devices at all network levels in the communication network, determine the data transmission rate between every two devices at all network levels in the communication network; Based on the originating format of service data for each preset management service type, determine the data conversion rate for each data conversion process in each device data transmission path tree of each preset management service type; Based on the data transmission rate between every two devices at all network levels in the communication network and the data conversion rate for each data conversion process in each device data transmission path tree of each preset management service type, screen out the optimal device data transmission path tree for each preset management service type from all types of device data transmission path trees of each preset management service type; Sort the communication standards between all adjacent devices in the forward order in the optimal device data transmission path tree of each preset management service type to obtain the communication standard sequence for the service execution path of each preset management service type.

5. The intelligent integration method for the communication network network management according to claim 4, characterized in that Based on the data transmission rate between every two devices at all network levels in the communication network and the data conversion rate for each data conversion process in each device data transmission path tree of each preset management service type, screen out the optimal device data transmission path tree for each preset management service type from all types of device data transmission path trees of each preset management service type, including: Determine all data transmission processes in each device data transmission path tree of each preset management service type; Based on the data transmission rate between the two devices corresponding to all data transmission processes in each device data transmission path tree of each preset management service type and the data conversion rate for each data conversion process, calculate the transmission efficiency value of each device data transmission path tree of each preset management service type: Wherein, v is the transmission efficiency value of the device data transmission path tree of the current calculation type of the preset management service type being currently calculated, v i is the data transmission rate between two devices corresponding to the i-th data transmission process in the device data transmission path tree of the current calculation type of the preset management service type being currently calculated, n is the total number of data transmission processes in the device data transmission path tree of the current calculation type of the preset management service type being currently calculated, v j is the data conversion rate of the j-th data conversion process in the device data transmission path tree of the current calculation type of the preset management service type being currently calculated, m is the total number of data conversion processes in the device data transmission path tree of the current calculation type of the preset management service type being currently calculated, and M is the maximum value among the total number of data conversion processes of all device data transmission path trees of the preset management service type calculated previously; Regarding the device data transmission path tree corresponding to the maximum transmission efficiency value among all types of device data transmission path trees of each preset management service type as the optimal device data transmission path tree for each preset management service type.

6. The intelligent fusion method for the communication network network management according to claim 4, characterized in that, S4: Based on the integrated network management instruction input by the user and the communication standard sequence for the service execution path of each preset management service type, uniformly manage the devices at all network levels in the communication network to obtain the integrated network management result of the communication network, including: Based on the integrated network management instruction input by the user, determine the data to be transmitted, and determine the preset management service type corresponding to the integrated network management instruction; Based on the communication standard sequence for the service execution path of the preset management service type corresponding to the integrated network management instruction input by the user, sequentially send the corresponding data to be transmitted to the corresponding devices to be executed. At the same time, receive the execution feedback from the corresponding devices to be executed to obtain the integrated network management result of the communication network.

7. The intelligent integration service system for the network management of a communication network, characterized in that, For executing the communication network network management intelligent integration method described in any one of claims 1 to 6, including: The fusion graph construction module is used to construct a network-layer fusion network graph of the communication network based on the logical architecture between all network layers in the communication network; The management path determination module is used to determine the service execution path of each preset management service type in the network-layer fusion network graph; The standard sequence construction module is used to construct a communication standard sequence for the service execution path of each preset management service type based on the communication standards between every two devices in all network layers of the communication network; The device unified management module is used to uniformly manage the devices in all network layers of the communication network based on the fusion network management instructions input by the user and the communication standard sequence of the service execution path of each preset management service type, and obtain the unified network management result of the communication network.

Citation Information

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