A Deployment Method and System for a Data Center Network

By planning the network topology structure and configuring device parameters, combining node information and key quality indicators, the efficient deployment of the data center network is achieved, the complex and inefficient deployment in the existing technology is solved, and the stability and adaptability of the network are improved.

CN118713997BActive Publication Date: 2025-05-27SHANDONG AITE YUNXIANG INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202410659392.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-27
Publication Date
2025-05-27
Estimated Expiration
2044-05-27

AI Technical Summary

Technical Problem

The existing data center network deployment methods are complex, the large-scale deployment is slow, the steps are cumbersome, inefficient and error-prone, and the various indicators after deployment are not fully qualified, which reduces the network practicality and adaptability.

Method used

By determining the network service attributes of the data center network, planning the network topology, configuring the network basic measures and equipment parameters, obtaining node information and importing the preset deployment environment, determining key quality indicators and network deployment in the preset environment.

Benefits of technology

It improves the stability and reliability of data center network deployment, enhances the adaptability and efficiency of the network, simplifies the deployment process, improves work efficiency and ensures the qualification and stability of the deployment network.

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Patent Text Reader

Abstract

The present invention discloses a method and system for deploying a data center network. The method includes: determining the network service attributes of the data center network, and planning a network topology structure for the data center network based on the network service attributes; configuring network infrastructure and network device parameters according to the network topology structure; obtaining node information of servers and connection devices and importing the node information into a pre-configured deployment environment; determining key quality indicators of the data center network, and performing network deployment in the pre-configured deployment environment based on the key quality indicators. By planning the network topology structure and then configuring network device parameters, the stability and reliability of the deployment and the adaptability and efficiency of subsequent network usage can be ensured. By using the deployment environment in combination with the node information of servers and various connection devices and the deployment quality evaluation indicators for unified deployment, the work efficiency is improved, and at the same time, the qualification, stability and adaptability of the deployed network are ensured.
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Description

Technical Field

[0001] The present invention relates to the technical field of network deployment, and particularly to a method and system for deploying a data center network. Background Art

[0002] At present, the global communication network is tending towards network construction centered around data centers. The network traffic model in the cloud computing era has changed greatly. The deployment of the internal data center network of each enterprise will directly affect the internal development, future revenue, business designation and execution of the enterprise. Therefore, the deployment of the internal data center network of the enterprise has become an important part of the enterprise's development. The existing methods for deploying a data center network are all to download various dependent software packages and container images through the Internet, and then perform network deployment through the dependent software packages and container images. It not only has complex deployment operations and slow large-scale deployment, but also requires each connected device to perform installation operations one by one, with cumbersome steps, low efficiency and easy errors. Moreover, the various indicators after deployment are not completely qualified, reducing the network practicability and adaptability. Summary of the Invention

[0003] In view of the problems shown above, the present invention provides a method and system for deploying a data center network to solve the problems mentioned in the background art, that is, downloading various dependent software packages and container images through the Internet, and then performing network deployment through the dependent software packages and container images, which not only has complex deployment operations and slow large-scale deployment, but also requires each connected device to perform installation operations one by one, with cumbersome steps, low efficiency and easy errors, and the various indicators after deployment are not completely qualified, reducing the network practicability and adaptability.

[0004] A method for deploying a data center network includes the following steps:

[0005] Determine the network service attributes of the data center network, and plan the network topology structure for the data center network based on the network service attributes;

[0006] Configure the network infrastructure and network device parameters according to the network topology structure;

[0007] Obtain the node information of the servers and connected devices and import the node information into a preset deployment environment;

[0008] Determine the key quality indicators of the data center network, and perform network deployment in the preset deployment environment based on the key quality indicators.

[0009] Preferably, the step of determining the network service attributes of the data center network and planning the network topology structure for the data center network based on the network service attributes includes:

[0010] Determine the server source information and customer source information of the data center network, and determine the network service attributes of the data center network according to the server source information and customer source information;

[0011] Determine the function grouping according to the network service attributes, and configure the function modules according to the function grouping;

[0012] Determine the number of function modules, configure the number of communication links according to the number of function modules, and set a link number for each communication link respectively;

[0013] Plan the network topology for the data center network according to the server and the communication links with set numbers.

[0014] Preferably, configuring the network infrastructure and network device parameters according to the network topology includes:

[0015] Determine the device bandwidth requirements according to the network topology, determine the network hardware requirement parameters based on the device bandwidth requirements, and configure the network infrastructure according to the network hardware requirement parameters;

[0016] Obtain the data transmission law of the business process of the data center network, and select the network devices and device protocols that meet the requirements according to the data transmission law of the business process;

[0017] Obtain the service traffic demand of the data center network, and configure the network device port parameters and network routing policies according to the service traffic demand.

[0018] Preferably, obtaining the node information of the server and the connection device and importing the node information into the preset deployment environment includes:

[0019] Obtain the firmware version information of the server and the connection device, and obtain the node information of the server and the connection device according to the firmware version information;

[0020] Generate a data script according to the node information of the server and the connection device;

[0021] Determine the network parameters of the data center network, and select the adapted preset deployment environment according to the network parameters;

[0022] Convert the data script into a parameter configuration file and import it into the preset deployment environment.

[0023] Preferably, determining the key quality indicators of the data center network and performing network deployment in the preset deployment environment based on the key quality indicators includes:

[0024] Determine the network requirement indicators according to the service information, and determine the corresponding mapping key quality indicators of the data center network according to the network requirement indicators;

[0025] Perform network device testing on the data center network based on mapped key quality indicators, and optimize the network devices according to the test results;

[0026] After optimization, specify the master node and slave nodes through the preset configured deployment environment;

[0027] Read the parameter configuration file in the preset configured deployment environment, and according to the parameter definitions therein, call the automated push executor to perform standardized settings on the basic information of the master node server and slave node connection devices in the deployment environment;

[0028] Start the deployment and installation work of the master node and slave nodes to achieve network deployment for the data center network.

[0029] A deployment system for a data center network, the system includes:

[0030] A determination module, used to determine the network service attributes of the data center network, and plan the network topology structure for the data center network based on the network service attributes;

[0031] A configuration module, used to configure network infrastructure and network device parameters according to the network topology structure;

[0032] An import module, used to obtain the node information of the server and connection devices and import the node information into the preset configured deployment environment;

[0033] A deployment module, used to determine the key quality indicators of the data center network, and perform network deployment in the preset configured deployment environment based on the key quality indicators.

[0034] Preferably, the determination module includes:

[0035] A first determination sub-module, used to determine the server source information and customer source information of the data center network, and determine the network service attributes of the data center network according to the server source information and customer source information;

[0036] A first configuration sub-module, used to determine the function grouping according to the network service attributes, and configure the function modules according to the function grouping;

[0037] A second determination sub-module, used to determine the number of function modules and configure the number of communication links according to the number of function modules and set a link number for each communication link;

[0038] A planning sub-module, used to plan the network topology structure for the data center network according to the server and the communication links with set numbers.

[0039] Preferably, the configuration module includes:

[0040] A third determination sub-module, configured to determine the device bandwidth requirements according to the network topology structure, determine the network hardware requirement parameters based on the device bandwidth requirements, and configure the network infrastructure according to the network hardware requirement parameters;

[0041] A first selection sub-module, configured to obtain the data transmission law of the service process of the data center network, and select the network devices and device protocols that meet the requirements according to the data transmission law of the service process;

[0042] A second configuration sub-module, configured to obtain the service traffic requirements of the data center network, and configure the network device port parameters and network routing policies according to the service traffic requirements.

[0043] Preferably, the import module includes:

[0044] An acquisition sub-module, configured to obtain the firmware version information of the server and the connection device, and obtain the node information of the server and the connection device according to the firmware version information;

[0045] A generation sub-module, configured to generate a data script according to the node information of the server and the connection device;

[0046] A second selection sub-module, configured to determine the network parameters of the data center network, and select an adapted preset deployment environment according to the network parameters;

[0047] An import sub-module, configured to convert the data script into a parameter configuration file and import it into the preset deployment environment.

[0048] Preferably, the deployment module includes:

[0049] A fourth determination sub-module, configured to determine the network requirement indicators according to the service information, and determine the corresponding mapping key quality indicators of the data center network according to the network requirement indicators;

[0050] An optimization sub-module, configured to perform network device testing on the data center network based on the mapping key quality indicators, and optimize the network devices according to the test results;

[0051] A designation sub-module, configured to designate the master node and the slave node through the preset configured deployment environment after optimization;

[0052] A setting sub-module, configured to read the parameter configuration file in the preset configured deployment environment, and according to the parameter definitions therein, call an automated push executor to perform normalization settings on the basic information of the master node server and the slave node connection device in the deployment environment;

[0053] A deployment sub-module, configured to start the deployment and installation work of the master node and the slave node to implement the network deployment of the data center network.

[0054] Other features and advantages of the present invention will be set forth in the following description, and in part will be obvious from the description, or may be learned by practice of the present invention. The objectives and other advantages of the present invention may be realized and attained by the structure particularly pointed out in the written description and the drawings.

[0055] The technical solution of the present invention will be further described in detail below with reference to the drawings and embodiments. Description of the Drawings

[0056] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention, but do not constitute a limitation to the present invention.

[0057] Figure 1 It is a flowchart of the working process of a method for deploying a data center network provided by the present invention;

[0058] Figure 2 It is another flowchart of the working process of a method for deploying a data center network provided by the present invention;

[0059] Figure 3 It is a schematic structural diagram of a system for deploying a data center network provided by the present invention;

[0060] Figure 4 It is a schematic structural diagram of a determination module in a system for deploying a data center network provided by the present invention. Detailed Embodiments

[0061] Exemplary embodiments will be described in detail herein, and examples thereof are shown in the drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present disclosure. On the contrary, they are merely examples of devices and methods consistent with some aspects of the present disclosure as detailed in the appended claims.

[0062] Currently, the global communication network is trending towards a data center-centric network construction. The network traffic model in the cloud computing era has changed significantly. The deployment of the internal data center network of each enterprise will directly affect the internal development, future revenue, business designation, and execution of that enterprise. Therefore, the deployment of the internal data center network of an enterprise has become an important part of the enterprise's development. Existing data center network deployment methods all download various dependent software packages and container images through the Internet, and then perform network deployment through the dependent software packages and container images. Not only is the deployment operation complex and large-scale deployment slow, but also each connected device needs to execute the installation operation one by one, with cumbersome steps, low efficiency, and easy to make mistakes. Moreover, the various indicators after deployment are not completely qualified, reducing the network usability and adaptability. To solve the above problems, this embodiment discloses a method for deploying a data center network.

[0063] A method for deploying a data center network, as Figure 1 shown, includes the following steps:

[0064] Step S101, determine the network service attributes of the data center network, and plan the network topology structure for the data center network based on the network service attributes;

[0065] Step S102, configure the network infrastructure and network device parameters according to the network topology structure;

[0066] Step S103, obtain the node information of the server and the connected devices and import the node information into the pre-configured deployment environment;

[0067] Step S104, determine the key quality indicators of the data center network, and perform network deployment in the pre-configured deployment environment based on the key quality indicators.

[0068] In this embodiment, the network service attribute is represented as the service mode attribute of sharing resources between the server where the data center network is located and the user;

[0069] The working principle of the above technical solution is: determine the network service attributes of the data center network, plan the network topology structure for the data center network based on the network service attributes; configure the network infrastructure and network device parameters according to the network topology structure; obtain the node information of the server and the connected devices and import the node information into the pre-configured deployment environment; determine the key quality indicators of the data center network, and perform network deployment in the pre-configured deployment environment based on the key quality indicators.

[0070] The beneficial effects of the above technical solution are as follows: By planning the network topology structure and then configuring the network device parameters, the stability and reliability of the deployment and the adaptability and efficiency of subsequent network usage can be ensured. Further, by using the deployment environment, combining the node information of the server and each connection device, and the deployment quality evaluation index for unified deployment, not only the work efficiency is improved, but also the qualification, stability and adaptability of the deployed network are ensured, solving the problems mentioned in the prior art that network deployment by relying on software packages and container images is not only complex in deployment operation and slow in large-scale deployment, but also requires each connection device to perform installation operations one by one, with cumbersome steps, low efficiency and easy to make mistakes, and the various indicators after deployment are not completely qualified, reducing the network practicability and adaptability.

[0071] In one embodiment, as Figure 2 shown, determining the network service attributes of the data center network and planning the network topology structure for the data center network based on the network service attributes includes:

[0072] Step S201, determining the server source information and client source information of the data center network, and determining the network service attributes of the data center network according to the server source information and client source information;

[0073] Step S202, determining function groups according to the network service attributes and configuring function modules according to the function groups;

[0074] Step S203, determining the number of function modules, configuring the number of communication links according to the number of function modules, and setting a link number for each communication link respectively;

[0075] Step S204, planning the network topology structure for the data center network according to the server and the communication links with set numbers.

[0076] The beneficial effects of the above technical solution are as follows: By determining function groups according to the network service attributes and then configuring communication links, the service process adaptability and function adaptability of the data center network can be ensured, and at the same time, the service application scope of the data center network can be maximally satisfied, ensuring the rationality of the topology structure.

[0077] In this embodiment, determining the server source information and client source information of the data center network and determining the network service attributes of the data center network according to the server source information and client source information includes:

[0078] Extracting multiple service attributes according to the service source information and client source information;

[0079] Constructing an attribute set according to the multiple service attributes, constructing an attribute information network according to the attribute set, and determining a mapping function based on the attribute information network;

[0080] Determine the standard mapping vector relationship between the service source information and the customer source information according to the mapping function;

[0081] Detect the current mapping vector relationship between the service source information and the customer source information, and confirm whether the current mapping vector relationship is the same as the standard mapping vector relationship. If so, determine the service attributes of the data center network according to the attribute set;

[0082] If not, determine the existing service attributes between the service source information and the customer source information according to the standard mapping vector relationship;

[0083] Perform data tensor detection on the existing service attributes based on the service source information and the customer source information to obtain the detection result;

[0084] Determine the association ratio of each existing service attribute according to the detection result, and determine the trusted service attributes according to the associated data ratio;

[0085] Determine the service attributes of the data center network according to the trusted service attributes.

[0086] The beneficial effects of the above technical solution are as follows: By determining the associated service attributes between the customer source information and the server source information according to the data mapping relationship, the service attributes of the network to be configured can be intuitively and accurately determined, ensuring the service reliability and accuracy of the configured data center network, and improving the practicability and stability.

[0087] In one embodiment, the configuring the network infrastructure and network device parameters according to the network topology structure includes:

[0088] Determine the device bandwidth requirements according to the network topology structure, determine the network hardware requirement parameters based on the device bandwidth requirements, and configure the network infrastructure according to the network hardware requirement parameters;

[0089] Obtain the data transmission law of the business process of the data center network, and select the network devices and device protocols that meet the requirements according to the data transmission law of the business process;

[0090] Obtain the service traffic demand of the data center network, and configure the network device port parameters and network routing policies according to the service traffic demand.

[0091] The beneficial effects of the above technical solution are as follows: It can ensure the compatibility and consistency between the configuration parameters and the data center network, lay the foundation for subsequent network deployment, and further improve the practicability and stability.

[0092] In one embodiment, the obtaining the node information of the server and the connection device and importing the node information into the preset deployment environment includes:

[0093] Obtain the firmware version information of the server and the connected device, and obtain the node information of the server and the connected device according to the firmware version information;

[0094] Generate a data script according to the node information of the server and the connected device;

[0095] Determine the network parameters of the data center network, and select an adapted preset deployment environment according to the network parameters;

[0096] Convert the data script into a parameter configuration file and import it into the preset deployment environment.

[0097] The beneficial effects of the above technical solution are: By generating a data script, file configuration can be quickly performed through the data format of the script and then imported into the deployment environment, which improves the import efficiency while ensuring the import stability and the validity and integrity of the file.

[0098] In one embodiment, determine the key quality indicators of the data center network, and perform network deployment in the preset configured deployment environment, including:

[0099] Determine the network requirement indicators according to the service information, and determine the corresponding mapping key quality indicators of the data center network according to the network requirement indicators;

[0100] Perform network device testing on the data center network based on the mapping key quality indicators, and optimize the network devices according to the test results;

[0101] After optimization, specify the master node and the slave node through the preset configured deployment environment;

[0102] Read the parameter configuration file in the preset configured deployment environment, and according to the parameter definitions therein, call the automated push executor to perform standardized settings on the basic information of the master node server and the slave node connected device in the deployment environment;

[0103] Start the deployment and installation work of the master node and the slave node to achieve network deployment for the data center network.

[0104] The beneficial effects of the above technical solution are: By optimizing the network devices, it can be ensured that the communication quality of the data center network after deployment meets the requirements, further improving the practicality. Further, by performing standardized settings on the basic information of the master node server and the slave node connected device in the deployment environment, the feasibility and reliability of the installation and deployment can be ensured, and the stability and practicality are further improved.

[0105] In one embodiment, this embodiment also discloses a deployment system for a data center network, as Figure 3 shown, the system includes:

[0106] A determination module 301, configured to determine network service attributes of a data center network, and plan a network topology for the data center network based on the network service attributes;

[0107] A configuration module 302, configured to configure network infrastructure and network device parameters according to the network topology;

[0108] An import module 303, configured to obtain node information of servers and connection devices and import the node information into a pre-configured deployment environment;

[0109] A deployment module 304, configured to determine key quality indicators of the data center network, and perform network deployment in the pre-configured deployment environment based on the key quality indicators.

[0110] The working principle of the above technical solution is as follows: First, the determination module determines the network service attributes of the data center network, and plans a network topology for the data center network based on the network service attributes; Second, the configuration module is used to configure network infrastructure and network device parameters according to the network topology; Then, based on the import module, obtain node information of servers and connection devices and import the node information into a pre-configured deployment environment; Finally, use the configuration module to determine the key quality indicators of the data center network, and perform network deployment in the pre-configured deployment environment based on the key quality indicators.

[0111] The beneficial effects of the above technical solution are as follows: By planning the network topology and then configuring network device parameters, the stability and reliability of the deployment and the adaptability and efficiency of subsequent network usage can be ensured. Further, by using the deployment environment in combination with the node information of servers and each connection device and the deployment quality evaluation indicators for unified deployment, both the work efficiency is improved and the qualification, stability and adaptability of the deployed network are ensured.

[0112] In one embodiment, as Figure 4 shown, the determination module 301 includes:

[0113] A first determination sub-module 3011, configured to determine server source information and client source information of the data center network, and determine network service attributes of the data center network according to the server source information and the client source information;

[0114] A first configuration sub-module 3012, configured to determine functional groups according to the network service attributes, and configure functional modules according to the functional groups;

[0115] A second determination sub-module 3013, configured to determine the number of functional modules, configure the number of communication links according to the number of functional modules, and set a link number for each communication link respectively;

[0116] A planning sub-module 3014, configured to plan a network topology structure for a data center network according to a communication link between a server and a setting number.

[0117] The beneficial effects of the above technical solution are as follows: By determining functional groups according to network service attributes and then configuring communication links, the business process adaptability and functional adaptability of the data center network can be ensured. At the same time, the business application scope of the data center network can be maximally satisfied, ensuring the rationality of the topology structure.

[0118] In one embodiment, the configuration module includes:

[0119] A third determination sub-module, configured to determine device bandwidth requirements according to the network topology structure, determine network hardware requirement parameters based on the device bandwidth requirements, and configure network infrastructure according to the network hardware requirement parameters;

[0120] A first selection sub-module, configured to obtain the data transmission law of the business process of the data center network, and select network devices and device protocols that meet the requirements according to the data transmission law of the business process;

[0121] A second configuration sub-module, configured to obtain the service traffic requirements of the data center network, and configure network device port parameters and network routing policies according to the service traffic requirements.

[0122] The beneficial effects of the above technical solution are as follows: It can ensure the compatibility and consistency between the configuration parameters and the data center network, laying the foundation for subsequent network deployment, and further improving the practicability and stability.

[0123] In one embodiment, the import module includes:

[0124] An acquisition sub-module, configured to obtain the firmware version information of the server and the connected device, and obtain the node information of the server and the connected device according to the firmware version information;

[0125] A generation sub-module, configured to generate a data script according to the node information of the server and the connected device;

[0126] A second selection sub-module, configured to determine the network parameters of the data center network, and select an adapted preset deployment environment according to the network parameters;

[0127] An import sub-module, configured to convert the data script into a parameter configuration file and import it into the preset deployment environment.

[0128] The beneficial effects of the above technical solution are as follows: By generating a data script, file configuration can be quickly performed through the data format of the script and then imported into the deployment environment, improving the import efficiency while ensuring the import stability and the validity and integrity of the file.

[0129] In one embodiment, the deployment module includes:

[0130] A fourth determination sub-module, configured to determine network requirement metrics according to service information, and determine corresponding mapping key quality metrics of the data center network according to the network requirement metrics;

[0131] An optimization sub-module, configured to perform network device testing on the data center network based on the mapping key quality metrics, and optimize the network devices according to the test results;

[0132] A designation sub-module, configured to, after optimization, designate a master node and a slave node through a preset deployment environment;

[0133] A setting sub-module, configured to read a parameter configuration file in the preset deployment environment, and according to the parameter definitions therein, call an automated push executor to perform standardized setting on the basic information of the master node server and the slave node connection device in the deployment environment;

[0134] A deployment sub-module, configured to start the deployment and installation work of the master node and the slave node to implement network deployment for the data center network.

[0135] The beneficial effects of the above technical solution are as follows: By optimizing the network devices, it can ensure that the communication quality of the data center network after deployment meets the requirements, further improving the practicability. Further, by performing standardized setting on the basic information of the master node server and the slave node connection device in the deployment environment, it can ensure the feasibility and reliability of the installation and deployment, and further improve the stability and practicability.

[0136] Those skilled in the art should understand that the first and second in the present invention refer to different application stages.

[0137] After considering the specification and practicing the disclosure herein, those skilled in the art will readily conceive of other embodiments of the present disclosure. This application is intended to cover any variations, uses, or adaptations of the present disclosure, which follow the general principles of the present disclosure and include known common general knowledge or conventional technical means in the technical field not disclosed in the present disclosure. The specification and examples are only regarded as exemplary, and the true scope and spirit of the present disclosure are pointed out by the following claims.

[0138] It should be understood that the present disclosure is not limited to the exact structures described above and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present disclosure is only limited by the appended claims.

Claims

1. A method for deploying a data center network, characterized in that: The following steps are involved: Determine network service attributes of the data center network, and plan a network topology for the data center network based on the network service attributes; Configure network infrastructure measures and network equipment parameters according to network topology; Obtain node information of servers and connected devices and import the node information into the deployment environment with preset configuration; Determine the key quality indicators of the data center network and deploy the network in a preset configuration deployment environment based on the key quality indicators; The determining of network service attributes of the data center network and planning a network topology structure for the data center network based on the network service attributes includes: Determine server source information and customer source information of the data center network, and determine network service attributes of the data center network based on the server source information and the customer source information; Determine functional groups according to network service attributes, and configure functional modules according to functional groups; Determine the number of functional modules and configure the number of communication chains according to the number of functional modules and set a chain number for each communication chain respectively; Plan the network topology for the data center network based on servers and set-numbered communication chains; Determine the server source information and customer source information of the data center network, and determine the network service attributes of the data center network according to the server source information and the customer source information, including: Extract multiple service attributes based on service source information and customer source information; construct an attribute set according to a plurality of service attributes, construct an attribute information network according to the attribute set, and determine a mapping function based on the attribute information network; Determine a standard mapping vector relationship between service source information and customer source information according to a mapping function; Detecting the current mapping vector relationship between the service source information and the customer source information, confirming whether the current mapping vector relationship is the same as the standard mapping vector relationship, and if so, determining the service attribute of the data center network according to the attribute set; If not, determining the existence service attribute between the service source information and the customer source information according to the standard mapping vector relationship; Perform data tensor detection on existing service attributes based on service source information and customer source information to obtain detection results; Determine the correlation ratio of each existing service attribute based on the detection results, and determine the trusted service attribute based on the correlation data ratio; Determine the service attributes of the data center network based on the trusted service attributes.

2. The method for deploying a data center network according to claim 1, characterized in that: The configuring of network basic measures and network equipment parameters according to the network topology structure includes: Determine the device bandwidth requirements based on the network topology, determine the network hardware requirement parameters based on the device bandwidth requirements, and configure network infrastructure measures based on the network hardware requirement parameters; Obtain the business process data transmission rules of the data center network, and select network devices and device protocols that meet the requirements based on the business process data transmission rules; Obtain the service traffic requirements of the data center network and configure network device port parameters and network routing policies based on the service traffic requirements.

3. The method for deploying a data center network according to claim 1, characterized in that: The step of obtaining node information of the server and the connected device and importing the node information into a deployment environment with a preset configuration includes: Obtain the firmware version information of the server and the connected device, and obtain the node information of the server and the connected device according to the firmware version information; Generate data scripts based on the node information of the server and connected devices; Determine the network parameters of the data center network and select an appropriate preset deployment environment based on the network parameters; Convert the data script into a parameter configuration file and import it into the preset deployment environment.

4. The method for deploying a data center network according to claim 3, characterized in that: Determine the key quality indicators of the data center network and deploy the network in a preset deployment environment based on the key quality indicators, including: Determine network demand indicators based on business information, and determine corresponding mapping key quality indicators of the data center network based on network demand indicators; Conduct network equipment testing on the data center network based on the mapping of key quality indicators, and optimize network equipment based on the test results; After the optimization is completed, the master node and slave node are specified through the deployment environment with preset configuration; Read the parameter configuration file in the preset deployment environment, and call the automatic push executor to standardize the basic information of the master node server and slave node connection devices in the deployment environment according to the parameter definition; Start the deployment and installation of the master node and slave nodes to implement the network deployment for the data center network.

5. A data center network deployment system, characterized in that: The system includes: A determination module, used to determine network service attributes of a data center network, and plan a network topology structure for the data center network based on the network service attributes; A configuration module, used to configure network infrastructure measures and network device parameters according to the network topology; The import module is used to obtain the node information of the server and the connected devices and import the node information into the deployment environment with the preset configuration; A deployment module is used to determine the key quality indicators of the data center network and to deploy the network in a preset deployment environment based on the key quality indicators; The determining module comprises: A first determination submodule is used to determine server source information and customer source information of the data center network, and determine the network service attributes of the data center network according to the server source information and the customer source information; A first configuration submodule, used to determine function groups according to network service attributes, and configure function modules according to the function groups; A second determination submodule is used to determine the number of functional modules and configure the number of communication chains according to the number of functional modules and set a chain number for each communication chain respectively; A planning submodule, for planning a network topology for a data center network based on servers and communication chains with set numbers; Determine the server source information and customer source information of the data center network, and determine the network service attributes of the data center network according to the server source information and the customer source information, including: Extract multiple service attributes based on service source information and customer source information; construct an attribute set according to a plurality of service attributes, construct an attribute information network according to the attribute set, and determine a mapping function based on the attribute information network; Determine a standard mapping vector relationship between service source information and customer source information according to a mapping function; Detecting the current mapping vector relationship between the service source information and the customer source information, confirming whether the current mapping vector relationship is the same as the standard mapping vector relationship, and if so, determining the service attribute of the data center network according to the attribute set; If not, determining the existence service attribute between the service source information and the customer source information according to the standard mapping vector relationship; Perform data tensor detection on existing service attributes based on service source information and customer source information to obtain detection results; Determine the correlation ratio of each existing service attribute based on the detection results, and determine the trusted service attribute based on the correlation data ratio; Determine the service attributes of the data center network based on the trusted service attributes.

6. The data center network deployment system according to claim 5, characterized in that: The configuration module includes: The third determination submodule is used to determine the device bandwidth requirement according to the network topology structure, determine the network hardware requirement parameters based on the device bandwidth requirement, and configure the network basic measures according to the network hardware requirement parameters; The first selection submodule is used to obtain the business process data transmission rules of the data center network, and select the network equipment and equipment protocol that meet the requirements according to the business process data transmission rules; The second configuration submodule is used to obtain the business flow requirements of the data center network and configure network device port parameters and network routing strategies according to the business flow requirements.

7. The data center network deployment system according to claim 5, characterized in that: The import module includes: The acquisition submodule is used to obtain the firmware version information of the server and the connected device, and obtain the node information of the server and the connected device according to the firmware version information; A generation submodule is used to generate a data script based on the node information of the server and the connected device; The second selection submodule is used to determine the network parameters of the data center network and select an adaptive preset deployment environment according to the network parameters; The import submodule is used to convert data scripts into parameter configuration files and import them into the preset deployment environment.

8. The data center network deployment system according to claim 7, characterized in that: Deployment modules, including: A fourth determination submodule is used to determine the network demand index according to the business information, and determine the corresponding mapping key quality index of the data center network according to the network demand index; An optimization submodule is used to test network equipment in the data center network based on the mapped key quality indicators and optimize the network equipment according to the test results; Specify submodules to specify master nodes and slave nodes through the deployment environment with preset configuration after optimization is completed; The setting submodule is used to read the parameter configuration file in the preset deployment environment, and call the automatic push executor to standardize the basic information of the master node server and slave node connection devices in the deployment environment according to the parameter definition; The deployment submodule is used to start the deployment and installation of the master node and the slave node to realize the network deployment for the data center network.

Citation Information

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