網絡互聯與路由技術 版權信息
- ISBN:9787513056953
- 條形碼:9787513056953 ; 978-7-5130-5695-3
- 裝幀:一般膠版紙
- 冊數:暫無
- 重量:暫無
- 所屬分類:>
網絡互聯與路由技術 本書特色
本書以H3CMSR20系列,30-20、50-60路由器和S3600、S3610交換機等網絡設備為硬件實驗平臺,以H3CCOMWAREv3v5操作系統為軟件實驗環境,從行業的實際需求出發組織全部內容。本書介紹了常用網絡設備基礎知識,詳細討論了交換機和路由器的工作原理、登錄管理及基本配置,包括端口設置、鏈路聚合、STP實現、VLAN劃分、VLAN間路由等交換機技術,靜態路由、RIP、OSPF、BGP、路由重分布等路由技術,HDLC、PPP和FR等廣域網技術,還討論了NAT、ACL、網絡可靠性等網絡技術。
網絡互聯與路由技術 內容簡介
本書以H3CMSR20系列,30-20、50-60路由器和S3600、S3610交換機等網絡設備為硬件實驗平臺,以H3CCOMWAREv3v5操作系統為軟件實驗環境,從行業的實際需求出發組織全部內容。本書介紹了常用網絡設備基礎知識,詳細討論了交換機和路由器的工作原理、登錄管理及基本配置,包括端口設置、鏈路聚合、STP實現、VLAN劃分、VLAN間路由等交換機技術,靜態路由、RIP、OSPF、BGP、路由重分布等路由技術,HDLC、PPP和FR等廣域網技術,還討論了NAT、ACL、網絡可靠性等網絡技術。
網絡互聯與路由技術 目錄
目錄
第1 章 網絡互聯概述···················1
1.1 網絡互聯的概念·······················1
1.1.1 網絡互聯形式與層次············1
1.1.2 網絡互聯的目的與功能·········2
1.1.3 網絡互聯的優點··················2
1.1.4 基于IP 協議的互聯網數據交換過程···························2
1.2 網絡體系結構··························3
1.2.1 OSI 七層體系結構···············4
1.2.2 TCP/IP 四層體系結構···········5
1.3 練習題···································7
第2 章 網絡互聯設備···················8
2.1 傳輸介質及其連接器·················8
2.1.1 同軸電纜···························8
2.1.2 雙絞線······························9
2.1.3 光纖······························· 10
2.1.4 網卡······························· 11
2.2 中繼器與集線器····················· 13
2.2.1 中繼器···························· 13
2.2.2 集線器···························· 14
2.3 網橋與以太網交換機··············· 14
2.3.1 網橋······························· 15
2.3.2 以太網交換機概述············· 17
2.3.3 交換機的組成··················· 19
2.3.4 交換機的體系結構············· 22
2.3.5 交換機的性能指標············· 24
2.3.6 交換機的分類··················· 27
2.4 路由器································· 29
2.4.1 路由器概述······················ 29
2.4.2 路由器的組成··················· 31
2.4.3 路由器的體系結構············· 36
2.4.4 路由器的性能指標············· 37
2.4.5 路由器的分類··················· 38
2.5 網關及防火墻························ 40
2.5.1 網關······························· 40
2.5.2 防火墻···························· 41
2.6 練習題································· 45
第3 章 網絡設備管理基本操作···· 46
3.1 基于H3C 設備的Comware軟件平臺····························· 46
3.2 H3C 網絡設備管理相關術語······ 47
3.2.1 用戶界面························· 47
3.2.2 視圖······························· 48
3.2.3 命令行接口······················ 49
3.2.4 命令級別和用戶級別·········· 51
3.2.5 保存當前配置··················· 52
3.3 網絡設備登錄與認證··············· 52
3.3.1 通過Console 接口登錄設備······························· 53
3.3.2 Console 口登錄的用戶接口認證方式··················· 56
3.3.3 通過Telnet 登錄網絡設備···· 57
3.3.4 通過瀏覽器或網管軟件登錄······························· 58
3.3.5 通過Console 口用Modem撥號進行遠程登錄············· 60
3.4 網絡設備文件管理·················· 62
3.4.1 文件名參數輸入規則·········· 62
3.4.2 文件類型························· 62
3.4.3 網絡設備啟動引導調用文件過程························· 63
3.4.4 文件與目錄操作················ 64
3.5 網絡設備系統程序升級············ 65
3.5.1 基于XModem 協議的BootROM菜單操作升級過程············· 65
3.5.2 基于FTP 協議的命令行操作升級過程··················· 66
3.6 練習題································· 67
第4 章 以太網交換技術·············· 69
4.1 以太網技術··························· 69
4.1.1 以太網技術標準················ 69
4.1.1 以太網技術標準················ 69
4.1.2 以太網數據鏈路層的數據封裝······························· 72
4.2 以太網交換機數據轉發機制······ 73
4.2.1 交換機端口傳輸模式·········· 73
4.2.2 交換機數據轉發方式·········· 74
4.2.3 交換機數據轉發與
轉發表的維護··················· 74
4.3 交換機的應用技術·················· 76
4.3.1 級聯與堆疊······················ 76
4.3.2 端口與地址綁定················ 78
4.3.3 端口鏡像························· 79
4.4 交換機的端口及地址表管理配置··································· 79
4.4.1 H3C 交換機命名規則········· 79
4.4.2 H3C 交換機接口編號規則··· 80
4.4.3 以太網端口的全雙式/
半雙工設置······················ 81
4.4.4 以太網端口的速率設置······· 81
4.4.5 以太網端口的網線類型設置····························· 82
4.4.6 以太網端口廣播風暴制比設置······························· 82
4.4.7 開啟以太網流量控制特性···· 83
4.4.8 關閉以太網端口················ 83
4.4.9 MAC 地址表管理配置········ 83
4.5 交換機鏈路聚合技術··············· 84
4.5.1 鏈路聚合概述··················· 84
4.5.2 鏈路聚合分類··················· 84
4.5.3 靜態聚合示例··················· 85
4.6 生成樹································· 87
4.6.1 STP 協議························· 87
4.6.2 STP 的改進······················ 96
4.6.3 STP 配置························· 98
4.7 虛擬局域網技術····················· 99
4.7.1 VLAN 概述······················ 99
4.7.2 IEEE 802.1Q 標準············ 102
4.7.3 基于端口的VLAN 實現···· 104
4.7.4 基于協議的VLAN 實現···· 109
4.8 練習題································111
第5 章 IP 路由技術·················· 114
5.1 路由及路由表······················ 114
5.1.1 路由基礎······················· 114
5.1.2 路由的生成與維護方法····· 116
5.2 路由算法與協議··················· 117
5.2.1 路由算法······················· 117
5.2.2 路由協議······················· 120
5.2.3 路由匹配······················· 122
5.3 RIP 協議····························· 125
5.3.1 RIP 協議簡介················· 125
5.3.2 RIP 協議對路由表維護····· 127
.......
展開全部
網絡互聯與路由技術 作者簡介
昝風彪,碩士,教授,1993年畢業于華東師范大學,現任青海民族大學實驗室與設備管理中心主任,長期擔任"網絡互聯與路由技術""計算機通信網""TCPIP協議及其應用"等課程教學。承擔教育部"十一五"全國教育考試規劃項目1項,承擔或參與多項省級、校級項目,發表科研教學論文15篇,積累了豐富的科研經驗,并以此推動高水平的教學活動,參編教材2部。
葉濤,碩士,副教授,1996年畢業于西安理工大學,青海民族大學計算機學院教師,長期擔任"網絡互聯與路由技術""網絡系統集成""接入網技術"等課程教學。2009年在青海省中青年教師比賽中獲省級優秀獎。
劉昕,碩士,講師,青海民族大學計算機學院教師,主要擔任的教學課程有"網絡互聯與路由技術""網絡工程項目綜合實踐",2013年在青海省中青年教師比賽中獲省級優秀獎。