WO2024001178A1 - 通信网络设备部署方法、系统及存储介质 - Google Patents
通信网络设备部署方法、系统及存储介质 Download PDFInfo
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W16/00—Network planning, e.g. coverage or traffic planning tools; Network deployment, e.g. resource partitioning or cells structures
- H04W16/18—Network planning tools
Definitions
- the present disclosure relates to the technical field of communication network equipment deployment, and in particular, to a communication network equipment deployment method, system and storage medium.
- the slicing subnet involves the core network, wireless, and bearer.
- ToB Business to Business
- the equipment form has been changed from traditional branch equipment to integrated equipment on the same hardware device.
- Deploy three services i5GC (industry 5G Core) + RAN (Radio Access Network) + NE (Net Element)
- operation and maintenance systems i5GC (industry 5G Core) + RAN (Radio Access Network) + NE (Net Element)
- Embodiments of the present disclosure provide a communication network device deployment method, system and storage medium.
- embodiments of the present disclosure provide a communication network equipment deployment method.
- the method includes: obtaining industry customer needs; performing network planning according to the industry customer needs, and outputting production line pre-installation planning data and on-site network modification data ; Driving the production line to perform customized pre-installation and pre-adjusting of the integrated equipment based on the production line pre-installation planning data; and integrating the customized pre-installation and pre-adjusting at the deployment site based on the on-site network modification data.
- the equipment is modified and optimized to complete the deployment of communication network equipment.
- embodiments of the present disclosure also provide a communication network equipment deployment system.
- the system includes: a planning system that obtains industry customer needs, performs network planning according to the industry customer needs, and outputs production line pre-installation planning data and on-site Network modification data; production line pre-installation and pre-adjusting system, which drives the production line to perform customized pre-installation and pre-adjusting of integrated equipment according to the production line pre-installation planning data; on-site modification and optimization system, based on the on-site Network configuration data is deployed now
- the field will modify and optimize customized pre-installed and pre-adjusted integrated equipment to complete the deployment of communication network equipment.
- embodiments of the present disclosure also provide a storage medium.
- a computer program is stored in the storage medium.
- the computer program is executed by a processor, the above method is implemented.
- Figure 1 is a schematic flowchart of a communication network device deployment method according to an embodiment of the present disclosure
- Figure 2 is a structural block diagram of pre-assembly and modification of the integrated communication equipment according to the application embodiment of the present disclosure
- Figure 3 is a schematic diagram of an intent-driven network self-deployment process according to an application embodiment of the present disclosure
- Figure 4 is a schematic diagram of the intent escape model design according to an application embodiment of the present disclosure.
- Figure 5 is a schematic diagram of the design of the production line pre-installation system according to the application embodiment of the present disclosure
- Figure 6 is a schematic structural diagram of a communication network equipment deployment system according to an embodiment of the present disclosure.
- Figure 7 is an internal structure diagram of a computer device according to an embodiment of the present disclosure.
- An embodiment of the present disclosure provides a communication network device deployment method. As shown in Figure 1 , the method includes steps 101 to 104.
- Step 101 Obtain industry customer needs.
- Step 102 Carry out network planning according to industry customer needs, and output production line pre-installation planning data and on-site network modification data.
- Step 103 Drive the production line to perform customized pre-assembly and pre-adjustment of the integrated equipment based on the production line pre-assembly planning data.
- Step 104 Modify and optimize the customized pre-installed and pre-adjusted integrated equipment at the deployment site according to the on-site network modification data to complete the deployment of the communication network equipment.
- the integrated device in this embodiment is a hyper-converged integrated device of the core network, RAN, and NE.
- the method of this embodiment can be applied to the activation and deployment of communication network equipment for ToB industry customers.
- ToB industry customers refer to customers in ports, coal mines, steelmaking, rail transit, power grids, manufacturing and other industries.
- network planning is performed based on industry customer needs, and production line pre-installation planning data and on-site network modification data are output, including: network slicing business data, wireless network planning data, hardware planning data, and Transmit planning data; confirm network slicing business data, wireless network planning data and hardware planning data It is determined as production line pre-installation planning data; and the transmission planning data is determined as on-site network modification data.
- the industry customer requirements in this embodiment include scenario definition, service characteristics, delay reliability requirements of slicing services, etc.
- the scenarios include ports, coal mines, steelmaking, rail transit, power grids, manufacturing and other scenarios.
- the wireless service is first planned, in which the wireless service includes cell identifier, PCI (Physical Cell Identifier), TAC (Tracking Area Code), frequency point and other information.
- the ToB campus is a QCell site type, and the hardware planning is determined on the wireless side.
- hardware planning includes the model and quantity of baseband accelerator cards, PB (Power Builder)/RRU (Radio Remote Unit) specifications, model and quantity, and topology networking information.
- PB Power Builder
- RRU Radio Remote Unit
- the on-site transmission network conditions it is determined to modify the transmission data on site.
- the on-site modification transmission data includes VLAN, IP address and port information.
- the default transmission data of the production line is used during pre-installation. In this way, the network planning is completed according to the intention, and the pre-installation planning data and on-site modification data are output.
- the production line is driven by the production line pre-installation planning data to perform customized pre-installation of the integrated equipment, including: Network part, Hardware part, TCF (TECS Cloud Foundation) of the integrated equipment Automatic deployment of the cloud base; setting of deployment parameters through LLD (Low Level Design); automatic instantiation of CNF network elements; generating data files based on production line pre-installation planning data; and delivering data files to network elements to complete integration Customized pre-assembly of equipment.
- TCF TECS Cloud Foundation
- cloud base refers to a software cloud platform based on the installation and deployment of integrated communication equipment.
- CNF network elements refer to cloud network functions and are deployed and managed based on CoNAP.
- Network planning includes switches, several products, hardware servers, hard disk RAID (Redundant Arrays of Independent Disk), and network card/network port purposes.
- Business planning includes: obtaining pre-installation planning data, the AIC tool generating a complete data file based on the planning data, setting LLD deployment parameters, connecting the device update version and data, and completing device pre-installation.
- the cloud base is installed first to install the integrated device cloud base platform; then the driver is installed to install the third package driver that the integrated device software depends on; and then the CNF network element is installed and deployed based on the cloud base platform.
- Businesses include i5GC, RAN, and NE. Among them, i5GC uses preset default configuration scripts to generate data. RAN/NE is based on preinstalled planning data and adds conversion rules built into the preinstalled system to generate data files and CNF deployment parameters. Extract from the version package; finally, install the operation and maintenance system. ToB campus end-to-end operation and maintenance system, integrated equipment operation and maintenance system and network elements are deployed together. The deployment parameters are solidified through the pre-installed LLD parameters.
- the customized pre-installation process in this embodiment can be implemented through the AIC tool.
- the AIC tool is an automated deployment tool for communication networks. That is, the AIC tool is used to complete the automated deployment of the Network part, Hardware part, and TCF cloud base of the integrated equipment, and LLD parameter solidification is used to realize production line pre-installation and CNF (Cloud-native Network Functions) network elements (i5GC/RAN/NE) Automatic instantiation, planning data through the network, and generating data based on AIC’s built-in data production module Create a network element data file and deliver it to the network element to take effect to complete the customized pre-installation of the integrated device.
- CNF Cloud-native Network Functions
- the production line is driven to pre-adjust the integrated equipment according to the production line pre-installation planning data, including: simulating mobile phone information, simulating UE, using road test tools to perform hardware testing and business simulation testing on the integrated equipment, to Complete the pre-adjusting of the integrated equipment.
- the integrated equipment is tested through hardware testing and business simulation testing through drive test tools, so that the integrated equipment can make calls on the production line.
- This embodiment verifies services and upstream and downstream traffic. Based on the core network, the mobile phone information and UE are simulated, and pre-installed tools are used for full coverage testing. The RAN side is verified using drive test tools to complete the pre-adjusting of the integrated equipment.
- modifying the customized pre-installed and pre-adjusted integrated equipment at the deployment site according to the on-site network modification data includes: modifying the customized pre-installed and pre-adjusted integrated equipment according to the on-site network modification data. Deployment parameters for all-in-one devices.
- the deployment parameters of the customized pre-installed and pre-adjusted integrated equipment can be modified through the AIC tool. That is, the AIC tool is used to modify deployment parameters and a small number of business parameters.
- deployment parameters IP addresses and port information of various network planes
- service parameters are modified remotely through the AIC tool.
- the customized pre-installed and pre-adjusted integrated equipment is optimized at the deployment site based on on-site network modification data, including: conducting business verification for deployed network elements; viewing cell status and alarms; observing performance indicators; and modify the RAN/NE business parameters of customized pre-installed and pre-adjusted integrated equipment to perform parameter tuning.
- the RAN/NE service parameters can be optimized through the network management system to meet the slicing business needs and network performance index requirements of ToB industry customers, so that it can be used out of the box.
- parameter tuning can be performed remotely through the network management to ensure optimal slicing service performance indicators.
- parameter tuning can also be performed through the local operation and maintenance tool webLMT.
- webLMT is an integrated device near-end operation and maintenance tool.
- the method of this embodiment changes the activation and deployment method of the communication network from the traditional independent deployment and activation of each device to the pre-installed, modified, deployment and activation of integrated equipment; the data configuration method of the communication network is changed from the complex hardware configuration of the original ToC equipment. , transmission configuration and wireless configuration, changed to a minimalist configuration based on ToB equipment form and network slicing requirements, solving the problem of multiple and time-consuming steps in the traditional provisioning method, and at the same time opening up the network planning and pre-installation system, based on the customer demand intention of ToB industry Driver, realize network self-deployment, and make the hardware ready to use out of the box.
- the communication network equipment deployment method obtained by the embodiment of the present disclosure obtains industry customer needs; performs network planning according to industry customer needs, outputs production line pre-installation planning data and on-site network modification data; drives production line alignment based on production line pre-installation planning data
- the integrated equipment undergoes customized pre-installation and pre-adjusting; the customized pre-installed and pre-adjusted integrated equipment is modified and optimized at the deployment site based on on-site network modification data to complete the deployment of communication network equipment.
- Adopt this disclosed solution It can reduce the complexity and professionalism of on-site project opening during on-site installation and debugging of communication equipment systems. Complex on-site opening and deployment engineering operations can be carried out on the production line in advance. For opening and operation personnel, they only need to perform simple equipment installation and deployment on site. By changing the parameters, the device can be put into operation and network deployment can be completed quickly.
- This embodiment provides a method and system for out-of-the-box use of integrated equipment based on intent.
- integrated equipment in ToB parks can be used out-of-the-box to meet ToB needs.
- This embodiment is based on ToB industry customer demand modeling, hardware networking form determination and transmission IP address planning, clarifying the network planning of the ToB campus, and combining the work order system to transfer the network planning intention to the production line pre-installation system (AIC tool).
- the ToB park implements customized pre-installation and pre-adjusts the production line through road test tools. After pre-installation and pre-adjustment, the hardware is shipped to the site. The deployment parameters are modified on-site through the AIC tool. After establishing a link with the network management system, the RAN is targeted through the network management system.
- /NE business parameters are optimized to meet the slicing business needs and network performance index requirements of ToB industry customers, so that they can be used out of the box.
- Network planning information has been provided: ToB industry customer slicing requirements (slicing service type, delay reliability requirements); ToB campus hardware networking and transmission network planning; wireless cell frequency planning, and NE business planning.
- Figure 2 is a structural block diagram of pre-assembly and modification of the integrated communication equipment of this embodiment, including the following structure.
- Planning system Based on the business needs (network planning intent) of ToB industry customers, output hardware networking lists and engineering construction drawings, as well as production line pre-installation planning data and on-site network modification data to complete the end-to-end ToB park Network Planning.
- Work order system The work order system activated by ToB park equipment is responsible for the approval process of work orders and planning data transmission.
- Production line pre-installation system Use AIC tools to complete the automated deployment of the Network part, Hardware part, and TCF cloud base of the integrated equipment, and realize production line pre-installation through LLD parameter solidification.
- CNF network elements i5GC/RAN/NE
- the network element data file is generated based on the built-in data production module of the AIC, and is delivered to the network element to take effect.
- Production line pre-adjusting system Use road test tools to conduct hardware testing of integrated equipment and business simulation testing, which can make calls on the production line.
- On-site modification system The integrated equipment is shipped to the site. After installation and deployment on site, the deployment parameters and a small number of business parameters are modified through the AIC tool.
- On-site optimization system After the integrated equipment is installed and deployed on site, the parameters can be adjusted remotely through the network management to ensure The slicing service performance index is optimal. When no network management system is deployed, parameter tuning is performed through the local operation and maintenance tool webLMT.
- the work order system triggers the production line pre-installation and provides network planning: including switches, several products, hardware servers, hard disk RAID, network card/network port usage; business planning: obtain pre-installation planning data from step 1 , the AIC tool generates a complete data file based on planning data, and based on LLD deployment parameter settings, connects the device update version and data to complete device pre-installation.
- Production line pre-installation and modification need to be verified business and up and down traffic must be verified.
- the core network simulates mobile phone information and UE, and uses pre-installed tools for full coverage testing, and the RAN side uses drive test tools for verification.
- step 1 The hardware equipment is shipped to the site, and on-site modification data is obtained according to step 1, including deployment parameters (IP addresses and port information of various network planes), business parameters, and the deployment parameters are modified remotely through the AIC tool. business parameters.
- ToB network self-deployment is realized based on intent-driven implementation.
- This embodiment uses the intent escaping part in network planning and the intent-driven pre-installation and customization of ToB park production lines, and hardware delivery to meet the needs of customers in different industries.
- the core network business model is relatively simple.
- the business data is pre-installed with default configuration scripts.
- Wireless services need to be planned, including cell identification, PCI, TAC, frequency and other information.
- the ToB campus is a QCell site type.
- the wireless side needs to determine the hardware planning, including the baseband accelerator card model and quantity, PB/RRU specifications, model and quantity, and topology networking information.
- the on-site transmission network conditions determine the on-site modified transmission data, including VLAN (Virtual Local Area Network), IP address and port information.
- VLAN Virtual Local Area Network
- IP address IP address
- port information IP address
- Planning system performs network planning according to intention, and finally outputs pre-installation planning data and on-site modification data.
- the production line pre-assembly system of this embodiment is designed as follows.
- CNF network element installation services deployed based on the cloud base platform, including i5GC, RAN, and NE services.
- i5GC uses preset default configuration scripts to generate data
- RAN/NE is based on the planning system output
- the pre-installation planning data is added with the conversion rules built into the pre-installation system to generate a data file, and the CNF deployment parameters are extracted from the version package.
- This embodiment is a pre-installation and modification solution for integrated equipment, which solves the problem of multiple and time-consuming steps in the traditional provisioning method. At the same time, it connects the network planning and pre-installation systems, and is driven by the customer demand and intent of the ToB industry to realize self-deployment of the network. The hardware ships ready to use right out of the box.
- the scenario is defined as a coal mine.
- the slicing service characteristics are 20ms and 99.99% low latency and high reliability.
- Network planning is carried out, intent is escaped, wireless network, hardware networking and transmission networking are planned, and output Pre-installed planning data and on-site modification data.
- the work order system triggers the pre-installation of the production line and provides network planning: including switches, deploying the three product services of i5GC/RAN/NE, hardware server, hard disk RAID, and network card/network port usage; business planning: start from step 1 Obtain pre-installation planning data from the AIC tool. Based on the planning data, the AIC tool generates a complete data file. Based on the LLD deployment parameter settings, the device update version and data are connected to complete the device pre-installation.
- Production line pre-installation and modification need to be verified business and up and down traffic must be verified.
- the core network simulates mobile phone information and UE, and uses pre-installed tools for full coverage testing, and the RAN side uses drive test tools for verification.
- step 1 The hardware equipment is shipped to the site, and on-site modification data is obtained according to step 1, including deployment parameters (IP addresses and port information of various network planes), business parameters, and the deployment parameters are modified remotely through the AIC tool. business parameters.
- the disclosed embodiments solve the problems of on-site installation and debugging of related communication equipment systems, and the complexity and professionalism of on-site project opening.
- the complex on-site opening and deployment engineering operations are carried out on the production line in advance, and at the same time, network planning and equipment opening and deployment are connected. breakpoints to change the problem that requires manual circulation.
- For the integrated equipment in the ToB park it is possible to drive the pre-installation and pre-adjustment of the production line according to the network planning intention.
- For the opening and operation personnel they only need to perform simple equipment installation and parameters on site.
- the present disclosure reduces the complexity and professionalism of network deployment for device activation and realizes self-deployment without commissioning.
- the embodiment of the present disclosure also provides a communication network equipment deployment system.
- the communication network equipment deployment system 600 includes: a planning system 601, a production line pre-installation and pre-adjusting system 602 and field modification and optimization system 603.
- Planning system 601 obtains industry customer needs; performs network planning according to industry customer needs, and outputs production line pre-installation planning data and on-site network modification data.
- the production line pre-assembly and pre-adjusting system 602 drives the production line to perform customized pre-assembly and pre-adjustment of the integrated equipment based on the production line pre-assembly planning data.
- the on-site modification and optimization system 603 modifies and optimizes the customized pre-installed and pre-adjusted integrated equipment at the deployment site according to the on-site network modification data to complete the deployment of communication network equipment.
- the production line pre-assembly and pre-adjusting system includes a production line pre-assembly system and a production line pre-adjusting system.
- the production line pre-installation system automatically deploys the Network part, Hardware part, and TCF cloud base of the integrated equipment; sets deployment parameters through LLD; automatically instantiates CNF network elements; generates data files based on the production line pre-installation planning data; converts the data The file is sent to the network element to complete the customized pre-installation of the integrated device.
- the production line pre-installation system in this embodiment may include an AIC tool.
- the production line pre-adjusting system simulates mobile phone information and UE, and uses drive test tools to conduct hardware tests and business simulation tests on the integrated equipment to complete the pre-adjusting of the integrated equipment.
- the production line pre-adjusting system in this embodiment may include a drive test tool.
- field modification and optimization systems include field modification systems and field optimization systems.
- the on-site modification system modifies the deployment parameters of the customized pre-installed and pre-adjusted integrated equipment based on the on-site network modification data.
- the field modification system in this embodiment may include an AIC tool.
- the on-site optimization system performs business verification on the deployed network elements; checks cell status and alarms; observes performance indicators; modifies the RAN/NE business parameters of customized pre-installed and pre-adjusted integrated equipment and performs parameter tuning.
- the embodiment of the present disclosure also provides a computer program product.
- the computer program product includes computer instructions, and the computer instructions are stored in a computer-readable storage medium. Disposal of computer equipment
- the processor reads the computer instructions from the computer-readable storage medium, and the processor executes the computer instructions, so that the computer device performs the steps of the above method.
- the embodiment of the present disclosure also provides an electronic device (computer device).
- the computer device may be a terminal, and its internal structure diagram may be as shown in Figure 7.
- the computer equipment includes a processor A01, a network interface A02, a display screen A04, an input device A05 and a memory (not shown in the figure) connected through a system bus.
- the processor A01 of the computer device is used to provide computing and control capabilities.
- the memory of the computer device includes internal memory A03 and non-volatile storage medium A06.
- the non-volatile storage medium A06 stores an operating system B01 and a computer program B02.
- the internal memory A03 provides an environment for the execution of the operating system B01 and the computer program B02 in the non-volatile storage medium A06.
- the network interface A02 of the computer device is used to communicate with external terminals through a network connection.
- the computer program is executed by the processor A01, the method of any one of the above embodiments is implemented.
- the display screen A04 of the computer device may be a liquid crystal display or an electronic ink display.
- the input device A05 of the computer device may be a touch layer covered on the display screen, or may be a button, trackball or touch screen provided on the shell of the computer device.
- a control panel can also be an external keyboard, trackpad, or mouse.
- FIG. 7 is only a block diagram of a partial structure related to the disclosed solution, and does not constitute a limitation on the computer equipment to which the disclosed solution is applied.
- the computer device may include: The figures show more or fewer parts, or certain parts combined, or with different arrangements of parts.
- the device provided by the embodiments of the present disclosure includes a processor, a memory, and a program stored in the memory and executable on the processor.
- the processor executes the program, the method of any of the above embodiments is implemented.
- embodiments of the present disclosure may be provided as methods, systems, or computer program products. Accordingly, the present disclosure may take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment that combines software and hardware aspects. Furthermore, the present disclosure may take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage, CD-ROM, optical storage, etc.) having computer-usable program code embodied therein.
- computer-usable storage media including, but not limited to, disk storage, CD-ROM, optical storage, etc.
- These computer program instructions may also be stored in a computer-readable memory capable of directing a computer or other programmable data processing apparatus to operate in a particular manner, such that the instructions stored in the computer-readable memory produce instructions that include means
- the instruction device implements the functions specified in one process or multiple processes of the flowchart and/or one block or multiple blocks of the block diagram.
- These computer program instructions may also be loaded onto a computer or other programmable data processing device, causing a series of operating steps to be performed on the computer or other programmable device to produce computer-implemented processing, thereby executing on the computer or other programmable device.
- Instructions provide steps for implementing the functions specified in a process or processes of a flowchart diagram and/or a block or blocks of a block diagram.
- a computing device includes one or more processors (CPUs), input/output interfaces, network interfaces, and memory.
- processors CPUs
- input/output interfaces network interfaces
- memory volatile and non-volatile memory
- Memory may include non-volatile memory in computer-readable media, random access memory (RAM), and/or non-volatile memory in the form of read-only memory (ROM) or flash memory (flashRAM). Memory is an example of a computer-readable medium.
- RAM random access memory
- ROM read-only memory
- flashRAM flash memory
- Computer-readable media includes both persistent and non-volatile, removable and non-removable media that can be implemented by any method or technology for storage of information.
- Information may be computer-readable instructions, data structures, modules of programs, or other data.
- Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), and read-only memory.
- PRAM phase change memory
- SRAM static random access memory
- DRAM dynamic random access memory
- RAM random access memory
- read-only memory read-only memory
- ROM read-only memory
- EEPROM electrically erasable programmable read-only memory
- flash memory or other memory technology
- compact disc read-only memory CD-ROM
- DVD digital versatile disc
- Magnetic tape cassettes tape magnetic disk storage or other magnetic storage devices or any other non-transmission medium can be used to store information that can be accessed by a computing device.
- computer-readable media does not include transitory media, such as modulated data signals and carrier waves.
- the memory in the embodiment of the present disclosure may be a volatile memory or a non-volatile memory, or may include both volatile and non-volatile memories.
- the non-volatile memory can be a read-only memory (ROM, Read Only Memory), a programmable read-only memory (PROM, Programmable Read-Only Memory), an erasable programmable read-only memory (EPROM, Erasable Programmable Read-Only Memory).
- the magnetic surface memory can be a magnetic disk memory or a magnetic tape memory.
- the volatile memory may be random access memory (RAM), which is used as an external cache.
- RAM Random Access Memory
- SRAM Static Random Access Memory
- SSRAM Synchronous Static Random Access Memory
- DRAM Dynamic Random Access Memory
- SDRAM Synchronous Dynamic Random Access Memory
- DDRSDRAM Double Data Rate Synchronous Dynamic Random Access Memory
- ESDRAM Enhanced Synchronous Dynamic Random Access Memory
- SLDRAM Synchronous Connect to dynamic random access memory
- DRRAM Direct Rambus Random Access Memory
- Memories described in embodiments of the present disclosure are intended to include, but are not limited to, these and any other suitable types of memory.
- the communication network equipment deployment method, system and storage medium provided by the embodiments of the present disclosure obtain industry customer needs; perform network planning according to industry customer needs, and output production line pre-installation planning data and on-site network modification data; pre-install according to the production line Plan the data-driven production line to carry out customized pre-installation and pre-adjusting of integrated equipment; modify and optimize the customized pre-installed and pre-adjusted integrated equipment at the deployment site based on on-site network modification data to complete the communication network Deployment of equipment.
- Adopting this disclosed solution can reduce the complexity and professionalism of on-site project opening during on-site installation and debugging of communication equipment systems.
- Complex on-site opening and deployment engineering operations can be carried out on the production line in advance, and the opening and operation and maintenance personnel only need to perform simple on-site operations. By installing local equipment and changing parameters, the equipment can be put into operation and network deployment can be completed quickly.
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- Mobile Radio Communication Systems (AREA)
Abstract
本申请公开了一种通信网络设备部署方法、系统及存储介质。该方法包括:获取行业客户需求;根据所述行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据;根据所述产线预装规划数据驱动产线对一体化设备进行定制化预装和预调;以及根据所述现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行改配和优化,以完成通信网络设备的部署。
Description
相关申请的交叉引用
本公开要求享有2022年06月27日提交的名称为“通信网络设备部署方法、系统及存储介质”的中国专利申请CN202210746553.6的优先权,其全部内容通过引用并入本公开中。
本公开涉及通信网络设备部署技术领域,尤其涉及一种通信网络设备部署方法、系统及存储介质。
5G时代,移动通信将进一步发展并触及各种行业应用(港口、煤矿、炼钢、轨交、电网、制造等),业务需求多样性为运营商带来了巨大的挑战,网络切片技术应运而生。
通过网络切片,使得运营商能够在一个通用的物理平台之上构建多个专用的、虚拟化的、互相隔离的逻辑网络,来满足不同客户对网络能力的不同要求,实现按需的网络能力和灵活的运行与管理。切片子网涉及核心网、无线、承载,为了满足ToB(Business to Business)园区物理专网的通信设备快速开通,设备形态上从传统的分设备,改为一体化设备,在同一个硬件设备上部署三种业务(i5GC(industry 5G Core)+RAN(Radio Access Network)+NE(Net Element))以及运维系统。
但目前,一体化设备的开通部署方式尚存在开通速度慢、复杂性和专业性高的问题。
发明内容
本公开实施例提供一种通信网络设备部署方法、系统及存储介质。
第一方面,本公开实施例提供了一种通信网络设备部署方法,该方法包括:获取行业客户需求;根据所述行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据;根据所述产线预装规划数据驱动产线对一体化设备进行定制化预装和预调;以及根据所述现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行改配和优化,以完成通信网络设备的部署。
第二方面,本公开实施例还提供了一种通信网络设备部署系统,该系统包括:规划系统,获取行业客户需求,根据所述行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据;产线预装和预调系统,根据所述产线预装规划数据驱动产线对一体化设备进行定制化预装和预调;现场改配和优化系统,根据所述现场网络改配数据在部署现
场对定制化预装和预调后的一体化设备进行改配和优化,以完成通信网络设备的部署。
第三方面,本公开实施例还提供了一种存储介质,存储介质中存储有计算机程序,计算机程序被处理器执行时,实现上述方法。
图1为本公开实施例通信网络设备部署方法的流程示意图;
图2为本公开应用实施例一体化通信设备的预装改配结构框图;
图3为本公开应用实施例意图驱动网络自部署流程示意图;
图4为本公开应用实施例意图转义模型设计示意图;
图5为本公开应用实施例产线预装系统设计示意图;
图6为本公开实施例通信网络设备部署系统的结构示意图;以及
图7为本公开实施例计算机设备的内部结构图。
下面将结合附图及实施例对本公开作进一步详细的描述。
本公开实施例提供了一种通信网络设备部署方法,如图1所示,该方法包括步骤101至步骤104。
步骤101:获取行业客户需求。
步骤102:根据行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据。
步骤103:根据产线预装规划数据驱动产线对一体化设备进行定制化预装和预调。
步骤104:根据现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行改配和优化,以完成通信网络设备的部署。
本实施例中的一体化设备为核心网、RAN、NE超融合的一体化设备。
本实施例方法可应用于ToB行业客户的通信网络设备的开通部署。ToB行业客户指港口、煤矿、炼钢、轨交、电网、制造等行业客户。
通过在产线提前对通信设备进行预装版本和数据,避免现场耗时费力的工程开通,现场仅需修改部署参数或业务参数,即能完成通信网络设备的开通部署,过程快速,降低了设备开通网络部署的复杂性和专业性,实现了免调测自部署。
在一些实施例中,根据行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据,包括:根据行业客户需求,输出网络切片业务数据、无线网络规划数据、硬件规划数据和传输规划数据;将网络切片业务数据、无线网络规划数据和硬件规划数据确
定为产线预装规划数据;以及将传输规划数据确定为现场网络改配数据。
本实施例中的行业客户需求包括场景定义、业务特征,切片业务的时延可靠性要求等。其中,场景包括港口、煤矿、炼钢、轨交、电网、制造等场景。
业务数据在预装时预置默认配置脚本实现。本实施例先对无线业务进行规划,其中,无线业务包括小区标识、PCI(Physical Cell Identifier)、TAC(Tracking Area Code)、频点等信息。再根据无线业务规划,以及现场组网情况,ToB园区是QCell站型,在无线侧确定硬件规划。其中,硬件规划包括基带加速卡型号和数量、PB(Power Builder)/RRU(Radio Remote Unit)规格型号和数量,以及拓扑组网信息。然后根据现场传输网络情况,确定现场改配传输数据。其中,现场改配传输数据包括VLAN、IP地址和端口信息。这里,预装时采用产线默认的传输数据。如此,完成根据意图进行网络规划,输出预装规划数据和现场改配数据。
在一些实施例中,根据产线预装规划数据驱动产线对一体化设备进行定制化预装,包括:对一体化设备的Network(网络)部分、Hardware(硬件)部分、TCF(TECS CloudFoundation)云底座进行自动化部署;通过LLD(Low Level Design)部署参数设置;进行CNF网元自动实例化;根据产线预装规划数据生成数据文件;以及将数据文件下发到网元,以完成一体化设备的定制化预装。
这里,云底座指基于一体化通信设备安装部署的软件云平台。CNF网元指云网络功能,基于CoNAP部署和管理的网元。
在进行产线预装时,确定组网规划和业务规划。组网规划包括交换机,放几个产品,硬件服务器、硬盘RAID(Redundant Arrays of Independent Disk)、网卡/网口用途。业务规划包括:获取预装规划数据,AIC工具基于规划数据生成完整的数据文件,基于LLD部署参数设置,连接设备更新版本和数据,完成设备预装。
本实施例,先进行云底座安装,针对一体化设备云底座平台进行安装;再进行驱动安装,针对一体化设备软件依赖的第三包驱动安装;再进行CNF网元安装,基于云底座平台部署的业务,包括i5GC、RAN、NE三种业务,其中,i5GC采用预置默认配置脚本生成数据,RAN/NE基于预装规划数据,加预装系统内置的转换规则,生成数据文件,CNF部署参数从版本包提取;最后,进行运维系统安装,ToB园区端到端运维系统,一体化设备的运维系统和网元共部署,部署参数通过预装的LLD参数固化。
本实施例中的定制化预装过程可通过AIC工具实现。AIC工具为一种通信网络自动化部署工具。即通过AIC工具完成一体化设备的Network部分、Hardware部分、TCF云底座的自动化部署,通过LLD参数固化,实现产线预装,CNF(Cloud-native Network Functions)网元(i5GC/RAN/NE)自动实例化,通过网络规划数据,基于AIC内置的数据制作模块生
成网元数据文件,并下发到网元生效,以完成一体化设备的定制化预装。
在一些实施例中,根据产线预装规划数据驱动产线对一体化设备进行预调,包括:模拟手机信息、模拟UE,用路测工具对一体化设备进行硬件测试以及业务模拟测试,以完成一体化设备的预调。
即实际应用时,通过路测工具对一体化设备进行硬件测试,以及业务模拟测试,使得一体化设备在产线能够打通电话。
本实施例通过验证业务、上下流量。基于核心网模拟手机信息、模拟UE,用预装工具进行全包围测试,RAN侧用路测工具进行验证,以完成一体化设备的预调。
在一些实施例中,根据现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行改配,包括:根据现场网络改配数据修改定制化预装和预调后的一体化设备的部署参数。
本实施例可通过AIC工具修改定制化预装和预调后的一体化设备的部署参数。即通过AIC工具进行部署参数改配和少量业务参数改配。
实际应用时,根据现场改配数据,包括部署参数(各种网络平面的IP地址和端口信息)、业务参数,通过AIC工具近端改配部署参数和业务参数。
在一些实施例中,根据现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行优化,包括:针对部署的网元进行业务验证;查看小区状态和告警;观测性能指标;以及修改定制化预装和预调后的一体化设备的RAN/NE业务参数,进行参数调优。
这里,可通过跟网管建链后,通过网管系统针对RAN/NE业务参数进行优化,满足ToB行业客户的切片业务需求和网络性能指标要求,做到开箱即用。
一体化设备现场安装部署后,通过网管远程进行参数调优,保证切片业务性能指标最优,在没有部署网管系统时,还可通过近端运维工具webLMT进行参数调优。webLMT是一种一体化设备的近端运维工具。
本实施例方法将通信网络的开通部署方式从传统的各个设备独立部署开通,改为一体化设备的预装改配部署开通;将通信网络的数据配置方式从原有ToC设备形态复杂的硬件配置、传输配置和无线配置,改为针对ToB设备形态和网络切片需求的极简配置,解决了传统开通方式步骤多耗时长的问题,同时打通了网络规划与预装系统,基于ToB行业客户需求意图驱动,实现网络自部署,做到硬件发货开箱即用。
本公开实施例提供的通信网络设备部署方法,获取行业客户需求;根据行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据;根据产线预装规划数据驱动产线对一体化设备进行定制化预装和预调;根据现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行改配和优化,以完成通信网络设备的部署。采用本公开方案
可以降低通信设备系统现场安装调试时,现场工程开通的复杂性和专业性,将现场复杂的开通部署工程操作,提前到产线做,对于开通运维人员在现场只需要进行简单地设备安装和参数改配,就能将设备运行起来,快速完成网络部署。
下面结合应用实施例对本公开再作进一步详细的描述。
本实施例提供一种基于意图的一体化设备开箱即用的方法及系统,通过行业客户需求建模意图驱动产线预装技术实现针对ToB园区一体化设备做到开箱即用,满足ToB行业客户设备和切片开通需求。
本实施例根据ToB行业客户需求建模,硬件组网形态确定和传输IP地址规划,明确ToB园区的网络规划,结合工单系统将网络规划意图传递到产线预装系统(AIC工具),针对ToB园区实现定制化预装,通过路测工具进行产线的预调,通过预装预调之后,硬件发货现场,现场通过AIC工具修改部署参数,跟网管建链后,通过网管系统针对RAN/NE业务参数进行优化,满足ToB行业客户的切片业务需求和网络性能指标要求,做到开箱即用。
本实施例方法可应用的场景如下。
(1)网络规划信息已提供:ToB行业客户切片需求(切片业务类型、时延可靠性要求);ToB园区硬件组网和传输组网规划;无线小区频点规划、NE业务规划。
(2)ToB园区设备开通工单计划已审批。
(3)产线预装系统环境已准备,融合网管系统已安装部署。
基于上述应用场景,下面将详细介绍本实施例方法。
参见图2,图2为本实施例一体化通信设备的预装改配结构框图,包括如下结构。
(1)规划系统:根据ToB行业客户的业务需求(网络规划意图),输出硬件组网清单和工程施工图,以及产线预装规划数据和现场网络改配数据,完成ToB园区的端到端网络规划。
(2)工单系统:ToB园区设备开通的工单系统,负责工单的审批流程和规划数据传递。
(3)产线预装系统:通过AIC工具完成一体化设备的Network部分、Hardware部分、TCF云底座的自动化部署,通过LLD参数固化,实现产线预装,CNF网元(i5GC/RAN/NE)自动实例化,通过规划系统输出的网络规划数据,基于AIC内置的数据制作模块生成网元数据文件,并下发到网元生效。
(4)产线预调系统:通过路测工具对一体化设备进行硬件测试,以及业务模拟测试,能够在产线打通电话。
(5)现场改配系统:一体化设备发货到现场,在现场安装部署后,通过AIC工具进行部署参数改配,和少量业务参数改配。
(6)现场优化系统:一体化设备现场安装部署后,通过网管远程进行参数调优,保证
切片业务性能指标最优,在没有部署网管系统时,通过近端运维工具webLMT进行参数调优。
基于上述一体化通信设备的预装改配结构框图,参见图3,本实施例的意图驱动网络自部署流程如下。
(1)根据ToB行业客户需求,定义场景和切片业务特征,进行网络规划,意图转义,输出预装规划数据和现场改配数据。
(2)根据PO合同提交网络设备开通部署工单,工单系统审批。
(3)由工单系统触发产线预装,提供组网规划:包括交换机,放几个产品,硬件服务器、硬盘RAID、网卡/网口用途;业务规划:从步骤1中获取预装规划数据,AIC工具基于规划数据生成完整的数据文件,基于LLD部署参数设置,连接设备更新版本和数据,完成设备预装。
(4)产线预装和改配需要验证:要验证业务、上下流量。核心网模拟手机信息、模拟UE,用预装工具进行全包围测试,RAN侧用路测工具进行验证。
(5)硬件设备发货到现场,在现场根据步骤1获取现场改配数据,包括部署参数(各种网络平面的IP地址和端口信息)、业务参数,通过AIC工具近端改配部署参数和业务参数。
(6)现场针对部署的网元进行业务验证,查看小区状态和告警,观测性能指标,通过网管远程修改或者webLMT工具近端修改业务参数,进行参数调优。
通过上面的步骤,根据意图驱动实现ToB网络自部署。
本实施例通过网络规划中意图转义部分,以及基于意图驱动进行ToB园区产线预装定制化,硬件发货满足不同行业客户需求。
另外,参见图4,本实施例的意图转义的模型设计如下。
(1)获取ToB行业客户需求,即为网络规划的意图,包括场景定义,港口、煤矿、炼钢、轨交、电网、制造等场景;业务特征,切片业务的时延可靠性要求。
(2)核心网业务模型较简单,业务数据在预装时预置默认配置脚本实现,无线业务需要进行规划,包括小区标识、PCI、TAC、频点等信息。
(3)根据无线业务规划,以及现场组网情况,ToB园区是QCell站型,无线侧需要确定硬件规划,包括基带加速卡型号和数量、PB/RRU规格型号和数量,以及拓扑组网信息。
(4)根据现场传输网络情况,确定现场改配传输数据,包括VLAN(Virtual Local Area Network)、IP地址和端口信息,预装时采用产线默认的传输数据。
(5)规划系统,根据意图进行网络规划,最后输出预装规划数据和现场改配数据。
进一步地,参见图5,本实施例的产线预装系统设计如下。
(1)云底座安装,针对一体化设备云底座平台进行安装。
(2)驱动安装,针对一体化设备软件依赖的第三包驱动安装。
(3)CNF网元安装,基于云底座平台部署的业务,包括i5GC、RAN、NE三种业务,其中业务数据准备这块,i5GC采用预置默认配置脚本生成数据,RAN/NE基于规划系统输出的预装规划数据,加预装系统内置的转换规则,生成数据文件,CNF部署参数从版本包提取。
(4)运维系统安装,ToB园区端到端运维系统,一体化设备的运维系统和网元共部署,部署参数通过预装的LLD参数固化。
本实施例针对一体化设备的预装改配方案,解决了传统开通方式步骤多耗时长的问题,同时打通了网络规划与预装系统,基于ToB行业客户需求意图驱动,实现网络自部署,做到硬件发货开箱即用。
下面将结合上述内容,描述如何基于煤矿行业客户网络自部署需求,进行通信网络的开通部署。
(1)根据煤矿行业客户需求,场景定义为煤矿,切片业务特征为20ms99.99%低时延高可靠性,进行网络规划,意图转义,规划无线网络、硬件组网和传输组网,输出预装规划数据和现场改配数据。
(2)根据PO合同提交煤矿行业客户的网络设备开通部署工单,工单系统审批。
(3)由工单系统触发产线预装,提供组网规划:包括交换机,部署i5GC/RAN/NE三个产品业务,硬件服务器、硬盘RAID、网卡/网口用途;业务规划:从步骤1中获取预装规划数据,AIC工具基于规划数据生成完整的数据文件,基于LLD部署参数设置,连接设备更新版本和数据,完成设备预装。
(4)产线预装和改配需要验证:要验证业务、上下流量。核心网模拟手机信息、模拟UE,用预装工具进行全包围测试,RAN侧用路测工具进行验证。
(5)硬件设备发货到现场,在现场根据步骤1获取现场改配数据,包括部署参数(各种网络平面的IP地址和端口信息)、业务参数,通过AIC工具近端改配部署参数和业务参数。
(6)现场针对部署的网元进行业务验证,通过webLMT工具查看小区状态和告警,观测性能指标,进行参数调优。
本公开实施例解决了相关通信设备系统现场安装调试,现场工程开通的复杂性和专业性的问题,将现场复杂的开通部署工程操作,提前到产线做,同时打通了网络规划和设备开通部署的断点,改变需要人工流转的问题,对于ToB园区的一体化设备,做到根据网络规划意图驱动产线预装预调,对于开通运维人员在现场只需要进行简单地设备安装和参数
改配,就能将设备运行起来,快速完成网络部署,本公开降低了设备开通网络部署的复杂性和专业性,实现了免调测自部署。
为了实现本公开实施例的方法,本公开实施例还提供了一种通信网络设备部署系统,如图6所示,通信网络设备部署系统600包括:规划系统601、产线预装和预调系统602和现场改配和优化系统603。
规划系统601,获取行业客户需求;根据行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据。
产线预装和预调系统602,根据产线预装规划数据驱动产线对一体化设备进行定制化预装和预调。
现场改配和优化系统603,根据现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行改配和优化,以完成通信网络设备的部署。
在一些实施例中,产线预装和预调系统包括产线预装系统和产线预调系统。
产线预装系统对一体化设备的Network部分、Hardware部分、TCF云底座进行自动化部署;通过LLD部署参数设置;进行CNF网元自动实例化;根据产线预装规划数据生成数据文件;将数据文件下发到网元,以完成一体化设备的定制化预装。
这里,本实施例中的产线预装系统可包含AIC工具。
产线预调系统模拟手机信息、模拟UE,用路测工具对一体化设备进行硬件测试以及业务模拟测试,以完成一体化设备的预调。
这里,本实施例中的产线预调系统可包含路测工具。
在一些实施例中,现场改配和优化系统包括现场改配系统和现场优化系统。
现场改配系统根据现场网络改配数据修改定制化预装和预调后的一体化设备的部署参数。
这里,本实施例中的现场改配系统可包含AIC工具。
现场优化系统针对部署的网元进行业务验证;查看小区状态和告警;观测性能指标;修改定制化预装和预调后的一体化设备的RAN/NE业务参数,进行参数调优。
需要说明的是:上述实施例提供的上述系统在执行时,仅以上述各程序模块的划分进行举例说明,实际应用时,可以根据需要而将上述处理分配由不同的程序模块完成,即将终端的内部结构划分成不同的程序模块,以完成以上描述的全部或者部分处理。另外,上述实施例提供的上述系统与上述方法实施例属于同一构思,其实现过程详见方法实施例,这里不再赘述。
为了实现本公开实施例的方法,本公开实施例还提供了一种计算机程序产品,计算机程序产品包括计算机指令,计算机指令存储在计算机可读存储介质中。计算机设备的处理
器从计算机可读存储介质读取计算机指令,处理器执行计算机指令,使得计算机设备执行上述方法的步骤。
基于上述程序模块的硬件实现,且为了实现本公开实施例的方法,本公开实施例还提供了一种电子设备(计算机设备)。在一个实施例中,该计算机设备可以是终端,其内部结构图可以如图7所示。该计算机设备包括通过系统总线连接的处理器A01、网络接口A02、显示屏A04、输入装置A05和存储器(图中未示出)。其中,该计算机设备的处理器A01用于提供计算和控制能力。该计算机设备的存储器包括内存储器A03和非易失性存储介质A06。该非易失性存储介质A06存储有操作系统B01和计算机程序B02。该内存储器A03为非易失性存储介质A06中的操作系统B01和计算机程序B02的运行提供环境。该计算机设备的网络接口A02用于与外部的终端通过网络连接通信。该计算机程序被处理器A01执行时以实现上述任意一项实施例的方法。该计算机设备的显示屏A04可以是液晶显示屏或者电子墨水显示屏,该计算机设备的输入装置A05可以是显示屏上覆盖的触摸层,也可以是计算机设备外壳上设置的按键、轨迹球或触控板,还可以是外接的键盘、触控板或鼠标等。
本领域技术人员可以理解,图7中示出的结构,仅仅是与本公开方案相关的部分结构的框图,并不构成对本公开方案所应用于其上的计算机设备的限定,计算机设备可以包括比图中所示更多或更少的部件,或者组合某些部件,或者具有不同的部件布置。
本公开实施例提供的设备,设备包括处理器、存储器及存储在存储器上并可在处理器上运行的程序,处理器执行程序时实现上述任意一项实施例的方法。
本领域内的技术人员应明白,本公开的实施例可提供为方法、系统、或计算机程序产品。因此,本公开可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本公开可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。
本公开是参照根据本公开实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置
的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
在一个典型的配置中,计算设备包括一个或多个处理器(CPU)、输入/输出接口、网络接口和内存。
存储器可能包括计算机可读介质中的非永久性存储器,随机存取存储器(RAM)和/或非易失性内存等形式,如只读存储器(ROM)或闪存(flashRAM)。存储器是计算机可读介质的示例。
计算机可读介质包括永久性和非永久性、可移动和非可移动媒体可以由任何方法或技术来实现信息存储。信息可以是计算机可读指令、数据结构、程序的模块或其他数据。计算机的存储介质的例子包括,但不限于相变内存(PRAM)、静态随机存取存储器(SRAM)、动态随机存取存储器(DRAM)、其他类型的随机存取存储器(RAM)、只读存储器(ROM)、电可擦除可编程只读存储器(EEPROM)、快闪记忆体或其他内存技术、只读光盘只读存储器(CD-ROM)、数字多功能光盘(DVD)或其他光学存储、磁盒式磁带,磁带磁磁盘存储或其他磁性存储设备或任何其他非传输介质,可用于存储可以被计算设备访问的信息。按照本文中的界定,计算机可读介质不包括暂存电脑可读媒体(transitorymedia),如调制的数据信号和载波。
可以理解,本公开实施例的存储器可以是易失性存储器或者非易失性存储器,也可包括易失性和非易失性存储器两者。其中,非易失性存储器可以是只读存储器(ROM,Read Only Memory)、可编程只读存储器(PROM,Programmable Read-Only Memory)、可擦除可编程只读存储器(EPROM,Erasable Programmable Read-Only Memory)、电可擦除可编程只读存储器(EEPROM,Electrically Erasable Programmable Read-Only Memory)、磁性随机存取存储器(FRAM,ferromagnetic random access memory)、快闪存储器(Flash Memory)、磁表面存储器、光盘、或只读光盘(CD-ROM,Compact Disc Read-Only Memory);磁表面存储器可以是磁盘存储器或磁带存储器。易失性存储器可以是随机存取存储器(RAM,Random Access Memory),其用作外部高速缓存。通过示例性但不是限制性说明,许多形式的RAM可用,例如静态随机存取存储器(SRAM,Static Random Access Memory)、同步静态随机存取存储器(SSRAM,Synchronous Static Random Access Memory)、动态随机存取存储器(DRAM,Dynamic Random Access Memory)、同步动态随机存取存储器(SDRAM,
Synchronous Dynamic Random Access Memory)、双倍数据速率同步动态随机存取存储器(DDRSDRAM,Double Data Rate Synchronous Dynamic Random Access Memory)、增强型同步动态随机存取存储器(ESDRAM,Enhanced Synchronous Dynamic Random Access Memory)、同步连接动态随机存取存储器(SLDRAM,SyncLink Dynamic Random Access Memory)、直接内存总线随机存取存储器(DRRAM,Direct Rambus Random Access Memory)。本公开实施例描述的存储器旨在包括但不限于这些和任意其它适合类型的存储器。
本公开实施例提供的通信网络设备部署方法、系统及存储介质,通过获取行业客户需求;根据行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据;根据产线预装规划数据驱动产线对一体化设备进行定制化预装和预调;根据现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行改配和优化,以完成通信网络设备的部署。采用本公开方案可以降低通信设备系统现场安装调试时,现场工程开通的复杂性和专业性,将现场复杂的开通部署工程操作,提前到产线做,对于开通运维人员在现场只需要进行简单地设备安装和参数改配,就能将设备运行起来,快速完成网络部署。
还需要说明的是,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、商品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、商品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括要素的过程、方法、商品或者设备中还存在另外的相同要素。
以上仅为本公开的实施例而已,并不用于限制本公开。对于本领域技术人员来说,本公开可以有各种更改和变化。凡在本公开的精神和原理之内所作的任何修改、等同替换、改进等,均应包含在本公开的权利要求范围之内。
Claims (10)
- 一种通信网络设备部署方法,包括:获取行业客户需求;根据所述行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据;根据所述产线预装规划数据驱动产线对一体化设备进行定制化预装和预调;以及根据所述现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行改配和优化,以完成通信网络设备的部署。
- 根据权利要求1所述的方法,其中,所述根据所述行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据,包括:根据所述行业客户需求,输出网络切片业务数据、无线网络规划数据、硬件规划数据和传输规划数据;将所述网络切片业务数据、所述无线网络规划数据和所述硬件规划数据确定为所述产线预装规划数据;以及将所述传输规划数据确定为所述现场网络改配数据。
- 根据权利要求1所述的方法,其中,根据所述产线预装规划数据驱动产线对一体化设备进行定制化预装,包括:对所述一体化设备的网络部分、硬件部分、TCF云底座进行自动化部署;通过LLD部署参数设置;进行CNF网元自动实例化;根据所述产线预装规划数据生成数据文件;以及将所述数据文件下发到网元,以完成一体化设备的定制化预装。
- 根据权利要求1所述的方法,其中,根据所述产线预装规划数据驱动产线对一体化设备进行预调,包括:模拟手机信息、模拟UE,用路测工具对一体化设备进行硬件测试以及业务模拟测试,以完成所述一体化设备的预调。
- 根据权利要求1所述的方法,其中,根据所述现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行改配,包括:根据所述现场网络改配数据修改所述定制化预装和预调后的一体化设备的部署参数。
- 根据权利要求1所述的方法,其中,根据所述现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行优化,包括:针对部署的网元进行业务验证;查看小区状态和告警;观测性能指标;以及修改所述定制化预装和预调后的一体化设备的RAN/NE业务参数,进行参数调优。
- 一种通信网络设备部署系统,包括:规划系统,其获取行业客户需求;根据所述行业客户需求进行网络规划,输出产线预装规划数据和现场网络改配数据;产线预装和预调系统,其根据所述产线预装规划数据驱动产线对一体化设备进行定制化预装和预调;以及现场改配和优化系统,其根据所述现场网络改配数据在部署现场对定制化预装和预调后的一体化设备进行改配和优化,以完成通信网络设备的部署。
- 根据权利要求7所述的系统,其中,所述产线预装和预调系统包括产线预装系统和产线预调系统;所述产线预装系统,其对所述一体化设备的网络部分、硬件部分、TCF云底座进行自动化部署;通过LLD部署参数设置;进行CNF网元自动实例化;根据所述产线预装规划数据生成数据文件;将所述数据文件下发到网元,以完成一体化设备的定制化预装;所述产线预调系统,其模拟手机信息、模拟UE,用路测工具对一体化设备进行硬件测试以及业务模拟测试,以完成所述一体化设备的预调。
- 根据权利要求7所述的系统,其中,所述现场改配和优化系统包括现场改配系统和现场优化系统;所述现场改配系统,其根据所述现场网络改配数据修改所述定制化预装和预调后的一体化设备的部署参数;以及所述现场优化系统,其针对部署的网元进行业务验证;查看小区状态和告警;观测性能指标;修改所述定制化预装和预调后的一体化设备的RAN/NE业务参数,进行参数调优。
- 一种存储介质,所述存储介质中存储有计算机程序,其中,所述计算机程序被处理器执行时,实现权利要求1至6任一项所述方法。
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Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111065116A (zh) * | 2019-12-10 | 2020-04-24 | 中盈优创资讯科技有限公司 | 一种端到端切片自动化部署方法及系统 |
WO2020087948A1 (zh) * | 2018-10-31 | 2020-05-07 | 中兴通讯股份有限公司 | 网络切片模板生成方法、装置、设备及存储介质 |
CN113891335A (zh) * | 2021-10-12 | 2022-01-04 | 中国联合网络通信集团有限公司 | 一种网络部署方案的确定方法、装置、设备及存储介质 |
US20220191706A1 (en) * | 2020-12-10 | 2022-06-16 | Amazon Technologies, Inc. | Automated deployment of radio-based networks |
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Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2020087948A1 (zh) * | 2018-10-31 | 2020-05-07 | 中兴通讯股份有限公司 | 网络切片模板生成方法、装置、设备及存储介质 |
CN111065116A (zh) * | 2019-12-10 | 2020-04-24 | 中盈优创资讯科技有限公司 | 一种端到端切片自动化部署方法及系统 |
US20220191706A1 (en) * | 2020-12-10 | 2022-06-16 | Amazon Technologies, Inc. | Automated deployment of radio-based networks |
CN113891335A (zh) * | 2021-10-12 | 2022-01-04 | 中国联合网络通信集团有限公司 | 一种网络部署方案的确定方法、装置、设备及存储介质 |
Non-Patent Citations (2)
Title |
---|
HUANG, YAN: "Private Network as a Service, Constructing a New ToB Service State", ZTE TECHNOLOGIES, no. 4, 25 April 2022 (2022-04-25), China, pages 28 - 29, XP009552136 * |
ZHANG, MAOPENG ET AL.: "Exploration of Key Capabilities of ToB Operation and Maintenance", ZTE TECHNOLOGIES, no. 4, 25 April 2022 (2022-04-25), China, pages 26 - 27, XP009552135 * |
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