当前位置: 首页 > news >正文

[HCIA]组网配置详解

要求:

1、全网使用192.168.1.0/24进行IP地址分配

2、R7作为DHCP服务器为PC分配IP地址

3、路由上均具备2个环回地址

4、R6与R7之间正常走1000M,备份走100M

5、全网尽量负载均衝,减少路由表数量,并避免环路产生

6、全网可达,可ping通

AR3配置:

system-view sysname AR3 interface GigabitEthernet0/0/0 ip address 192.168.1.13 255.255.255.252 quit interface GigabitEthernet0/0/1 ip address 192.168.1.25 255.255.255.252 quit interface LoopBack0 ip address 192.168.1.1 255.255.255.255 quit interface LoopBack1 ip address 192.168.1.2 255.255.255.255 quit ip route-static 192.168.1.3 255.255.255.255 192.168.1.14 preference 60 ip route-static 192.168.1.4 255.255.255.255 192.168.1.14 preference 60 ip route-static 192.168.1.7 255.255.255.255 192.168.1.14 preference 60 ip route-static 192.168.1.8 255.255.255.255 192.168.1.14 preference 60 ip route-static 192.168.1.9 255.255.255.255 192.168.1.14 preference 60 ip route-static 192.168.1.10 255.255.255.255 192.168.1.14 preference 60 ip route-static 192.168.1.64 255.255.255.192 192.168.1.14 preference 60

AR4配置:

system-view sysname AR4 interface GigabitEthernet0/0/0 ip address 192.168.1.14 255.255.255.252 quit interface GigabitEthernet0/0/1 ip address 192.168.1.17 255.255.255.252 quit interface LoopBack0 ip address 192.168.1.3 255.255.255.255 quit interface LoopBack1 ip address 192.168.1.4 255.255.255.255 quit ip route-static 192.168.1.1 255.255.255.255 192.168.1.13 preference 60 ip route-static 192.168.1.2 255.255.255.255 192.168.1.13 preference 60 ip route-static 192.168.1.5 255.255.255.255 192.168.1.18 preference 60 ip route-static 192.168.1.6 255.255.255.255 192.168.1.18 preference 60 ip route-static 192.168.1.7 255.255.255.255 192.168.1.18 preference 60 ip route-static 192.168.1.8 255.255.255.255 192.168.1.18 preference 60 ip route-static 192.168.1.9 255.255.255.255 192.168.1.18 preference 60 ip route-static 192.168.1.10 255.255.255.255 192.168.1.18 preference 60 ip route-static 192.168.1.64 255.255.255.192 192.168.1.18 preference 60

AR5配置:

system-view sysname AR5 interface GigabitEthernet0/0/0 ip address 192.168.1.26 255.255.255.252 quit interface GigabitEthernet0/0/1 ip address 192.168.1.22 255.255.255.252 quit interface LoopBack0 ip address 192.168.1.5 255.255.255.255 quit interface LoopBack1 ip address 192.168.1.6 255.255.255.255 quit ip route-static 192.168.1.1 255.255.255.255 192.168.1.25 preference 60 ip route-static 192.168.1.2 255.255.255.255 192.168.1.25 preference 60 ip route-static 192.168.1.3 255.255.255.255 192.168.1.21 preference 60 ip route-static 192.168.1.4 255.255.255.255 192.168.1.21 preference 60 ip route-static 192.168.1.7 255.255.255.255 192.168.1.21 preference 60 ip route-static 192.168.1.8 255.255.255.255 192.168.1.21 preference 60 ip route-static 192.168.1.9 255.255.255.255 192.168.1.21 preference 60 ip route-static 192.168.1.10 255.255.255.255 192.168.1.21 preference 60 ip route-static 192.168.1.64 255.255.255.192 192.168.1.21 preference 60

AR6配置:

system-view sysname AR6 interface GigabitEthernet0/0/0 ip address 192.168.1.18 255.255.255.252 quit interface GigabitEthernet0/0/1 ip address 192.168.1.21 255.255.255.252 quit interface GigabitEthernet4/0/0 # 1000M ip address 192.168.1.29 255.255.255.252 quit interface GigabitEthernet0/0/2 # 100M ip address 192.168.1.33 255.255.255.252 quit interface LoopBack0 ip address 192.168.1.7 255.255.255.255 quit interface LoopBack1 ip address 192.168.1.8 255.255.255.255 quit ip route-static 192.168.1.9 255.255.255.255 192.168.1.30 preference 60 ip route-static 192.168.1.10 255.255.255.255 192.168.1.30 preference 60 ip route-static 192.168.1.64 255.255.255.192 192.168.1.30 preference 60 ip route-static 192.168.1.9 255.255.255.255 192.168.1.34 preference 100 ip route-static 192.168.1.10 255.255.255.255 192.168.1.34 preference 100 ip route-static 192.168.1.64 255.255.255.192 192.168.1.34 preference 100 ip route-static 192.168.1.1 255.255.255.255 192.168.1.17 preference 60 ip route-static 192.168.1.2 255.255.255.255 192.168.1.17 preference 60 ip route-static 192.168.1.3 255.255.255.255 192.168.1.17 preference 60 ip route-static 192.168.1.4 255.255.255.255 192.168.1.17 preference 60 ip route-static 192.168.1.5 255.255.255.255 192.168.1.22 preference 60 ip route-static 192.168.1.6 255.255.255.255 192.168.1.22 preference 60

AR7配置:

system-view sysname AR7 interface GigabitEthernet0/0/1 # 1000M ip address 192.168.1.30 255.255.255.252 quit interface GigabitEthernet0/0/0 # 100M ip address 192.168.1.34 255.255.255.252 quit interface GigabitEthernet0/0/2 ip address 192.168.1.37 255.255.255.252 quit interface LoopBack0 ip address 192.168.1.9 255.255.255.255 quit interface LoopBack1 ip address 192.168.1.10 255.255.255.255 quit dhcp enable ip pool NBPOOL gateway-list 192.168.1.65 network 192.168.1.64 mask 255.255.255.192 dns-list 8.8.8.8 quit interface GigabitEthernet0/0/2 dhcp select global quit ip route-static 192.168.1.1 255.255.255.255 192.168.1.29 preference 60 ip route-static 192.168.1.2 255.255.255.255 192.168.1.29 preference 60 ip route-static 192.168.1.3 255.255.255.255 192.168.1.29 preference 60 ip route-static 192.168.1.4 255.255.255.255 192.168.1.29 preference 60 ip route-static 192.168.1.5 255.255.255.255 192.168.1.29 preference 60 ip route-static 192.168.1.6 255.168.255.255 192.168.1.29 preference 60 ip route-static 192.168.1.7 255.255.255.255 192.168.1.29 preference 60 ip route-static 192.168.1.8 255.255.255.255 192.168.1.29 preference 60 ip route-static 192.168.1.1 255.255.255.255 192.168.1.33 preference 100 ip route-static 192.168.1.2 255.255.255.255 192.168.1.33 preference 100 ip route-static 192.168.1.3 255.255.255.255 192.168.1.33 preference 100 ip route-static 192.168.1.4 255.255.255.255 192.168.1.33 preference 100 ip route-static 192.168.1.5 255.255.255.255 192.168.1.33 preference 100 ip route-static 192.168.1.6 255.255.255.255 192.168.1.33 preference 100 ip route-static 192.168.1.7 255.255.255.255 192.168.1.33 preference 100 ip route-static 192.168.1.8 255.255.255.255 192.168.1.33 preference 100

PC1、PC2勾选DHCP配置IP地址

http://www.jsqmd.com/news/632009/

相关文章:

  • 完整网站下载器:Web内容一站式备份终极指南
  • FireRed-OCR Studio惊艳效果:建筑施工图图例文字+尺寸标注+材料表三重精准提取
  • SuperPoint揭秘:自监督学习如何革新特征点检测与描述
  • XLR8Core:Arduino生态下的FPGA协处理寄存器接口框架
  • Arduino工业泵Modbus驱动库:语义化控制与高可靠通信
  • Harness Engineering:智能体任务依赖管理优化
  • 2026年Q2不锈钢烟囱塔行业标杆名录与采购参考:碳钢烟囱塔、角钢监控塔、道路监控塔、钢管监控塔、镀锌烟囱塔架选择指南 - 优质品牌商家
  • Vivus.js 与现代前端框架集成:React、Vue、Angular 终极实践指南
  • IEEE Transactions on Vehicular Technology (TVT) 投稿须知
  • OPCServer DA版本:二次开发源代码及测试软件
  • 3D场景分割新突破:手把手教你用SAM3D实现点云自动标注(附避坑指南)
  • SpringBoot_v2企业级应用快速开发终极指南:从零到精通的完整解决方案
  • 3.2 原生方案
  • StructBERT中文相似度模型部署案例:百度千帆大模型平台私有化部署实录
  • 告别命令行恐惧:在恒源云GPU服务器上部署Linux桌面环境全攻略
  • 企业级区块链实战指南:从零构建可信分布式应用
  • Heltec ESP32 OLED显示库深度解析与工程实践
  • 打造个性化设计系统:基于 awesome-design-systems 的定制化指南
  • Malimite插件开发教程:扩展自定义反编译功能的完整指南
  • STM32F042轻量级内建调试工具DEBUG_F042F6P6
  • 那些你不知道自己需要监控的 Linux 暗坑疤
  • 痞子衡嵌入式:turbo-spiboot - 一种基于MCUBoot协议的二级SPI加载APP提速方案犹
  • MOREbot轻量级嵌入式机器人运动控制库
  • Matlab实战:3种雷达成像算法对比(RD/CS/RMA)附完整代码
  • Edge浏览器搞定Kaggle注册验证码报错:Captcha must be filled out的3步终极方案
  • Sixfab NB-IoT Shield 底层驱动与AT指令深度解析
  • 一天一个Python库:oauthlib - 轻松构建OAuth客户端和服务器凉
  • Contribute-To-This-Project项目深度解析:为什么这是最适合新手的开源入门项目
  • 扩散模型对抗样本经典baselines窒
  • 关于CUDA+QtCreator+OpenCV环境配置的一些注意事项