学生公寓综合布线系统设计方案论文1

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综合布线课程实验二设计任务书班级:网络工程111班人员:完成日期:2013年12月19日计算机学院网络工程教研室宣城职业技术学院毕业设计(论文)1目录一、综合布线系统概述····························································错误!未定义书签。(一)综合布线系统的基本含义··········································错误!未定义书签。(二)概况·····································································错误!未定义书签。(三)设计原则与目标······················································错误!未定义书签。(四)布线系统设计、原则、验收遵循的规范和标准··············错误!未定义书签。(五)用户需求·······························································错误!未定义书签。二、综合布线系统结构设计················································································5(一)综合布线系统结构设计·······································································5(二)综合布线子系统设计··········································································5三、网络系统设备需求······················································································8(一)系统性能指标···················································································8(二)插座底盒及模块的连接标准·································································9(三)六类信息模块·························································错误!未定义书签。(四)面板·····································································错误!未定义书签。(五)六类线··································································错误!未定义书签。(六)理线器··································································错误!未定义书签。(七)网络设备(110配线架)·········································错误!未定义书签。四、施工方案建议····························································································9(一)综合布线验收标准·············································································9(二)综合布线验收内容·············································································9(三)随工验收(设备安装检验)·······························································10(四)竣工技术文件按下列要求进行编制······················································12(五)验收人员组织··················································································12(六)验收结果························································································12【附录】········································································································13【结束语】·····································································································14【参考文献】··································································································14宣城职业技术学院毕业设计(论文)2学生公寓综合布线系统【分组情况】组长郭浩负责具体分工和写设计报告组员石磊陈忠良负责测量和水晶头的制作组员刘桂山彭根负责按线槽组员陈健负责最后的检测一、设计概述1.1工程概况1、工程名称:山东建筑大学学生宿舍xx楼综合布线工程2、地理位置:山东建筑大学新校区学生宿舍区3、建筑物数量:1栋4、工程简介:随着校园信息设备增加,校园网综合布线变得越来越重要。学生宿舍楼连入校园网络,不仅可以有利于同学通过网络方便快捷的了解各种海量信息、拓展学生的思维、提高处理各种问题的能力,比如上网查询学习资料、参加网上的一些活动、快速进入选课系统进行选课等,同时还能加强学校对学生的管理,节约了成本,提高了效率。该宿舍楼位于新校宿舍区,楼高五层,每层有25个分隔间,除去卫生间和洗漱间共有20间宿舍,共计100个房间。本项目实施布线,使其可以实现数据、语音、视频的接入。1.2综合布线系统设计、施工、验收遵循的国际、国内的规范和标准1、GB50174-2008《电子信息系统机房设计规范》2、GB50311-2007《综合布线工程设计规范》3、《智能建筑设计标准》GB/T50314-2000宣城职业技术学院毕业设计(论文)34、ISO/IECIS11801(国际布线标准,第二版)1.3系统建设的范围学生宿舍楼校园网综合布线系统为数据传输提供实用的、灵活的、可扩展的、可靠的模块化介质通路,由于大楼规模不大,在选择好设备间的位置后,从设备间到各信息点的距离都在非屏蔽双绞线的100M有效传输距离内,为方便管理,综合布线系统采用不设楼层配线间,直接从设备间到信息点的布线方式,水平布线子系统和垂直布线子系统合为一条链路,楼层配线间与设备间合为一体。然后再通过校园网接口将整栋楼连接入网。整体设计与施工包括:1、工作区子系统;2、水平/垂直子系统;3、设备间/管理子系统宿舍楼第三层的平面结构图,如图1-1所示图1-1宿舍楼其他楼层的平面结构图,如图1-2所示宣城职业技术学院毕业设计(论文)4图1-2二、需求分析宿舍楼是学生生活和休息的地方,所以要建立一个开放的、灵活的和易扩展的线路基础,可以提供数据通信,方面同学们的学习,使同学之间可以实现各资源之间的共享。2.1总体需求满足宿舍学生对信息传输的要求;楼间主干线缆冗余备份,满足将来扩展的需要;满足连入因特网和中国教育网的需求;兼容不同厂家、不同品牌的网络设备。2.2功能需求高速率数据传送;视频信号传送;支持多媒体应用;资源的共享。宣城职业技术学院毕业设计(论文)52.3信息点需求共有数据和语音点200个(200个数据信息点,200个语音信息点),100个视频点。其中每间宿舍2个数据点、2个语音点、1个视频点。宿舍楼信息点分布如表2-1所示:表2-1信息点分布表一、综合布线系统结构设计(一)综合布线系统结构设计根据用户需求和学生宿舍7号楼规模的实际情况。满足各信息点到设备间的距离在非屏蔽双绞线的90m有效传输距离内。方便管理,减少宿舍房间的占用,综合布线系统不专设楼层配线间,采用BD/FD合二为一的方式,即楼层配线间和设备间合二为一,水平布线和垂直布线合为一条链路(各宿舍楼线缆先引入竖井后引入设备间)。因此,宿舍楼综合布线系统合并成以下3个子系统:工作区子系统、水平/垂直子系统、设备间/管理子系统。(二)综合布线子系统设计1.水平子系统由于本工程的对象是新建建筑物,没有任何管线,因此综合布线系统还包括管线系统的设计与施工。设备间放置在1号楼的115房间。2.垂直主干管线垂直主干管线采用镀锌架(槽式)沿设备间外墙(内走廊)向上和向下敷设,向上用200×100×1.5桥架直达6层,布放5、6、层的线缆。向下用200×100×1.5桥架到达1层,布放1、2、3层的线缆。楼层信息点数量信息插座视频插座语音点数据点视频点一层4040204020二层4040204020三层4040204020四层4040204020五层4040204020总计200200100200100宣城职业技术学院毕业设计(论文)63.水平主干管线(1)水平主干采用立柱吊装镀锌桥架方式,根据线缆的多少分别采用50×50的镀锌桥架,在每个房间外用DN20㎜波纹管将电缆引入房间。(2)房间内墙面PVC线槽电缆引入房间后用40x25㎜PVC线槽将电缆铺设至房间两边,再沿墙面而下敷设至墙面信息插座,由于房间内已铺设纵横交错的强电线路,PVC线槽交叉通过强电线路时用防蜡管穿过。(3)已吊装电力线缆管线,安装的桥架与该电力线缆管线相隔的距离必须符合GB/T50311-2000。水平布线系统均采用星状拓扑结构,它以设备间115房间为主节点,形成向工作区辐射的星状线路状态。从115房间到达楼内任一信息点的距离都不超过90M,采用6类非屏蔽双绞线,与其相应的跳线、信息插座模块和配线架等接插件也采用6类产品,满足当前传输1000Mbps的需要,以及以后升级需要。4.工作区子系统每间宿舍为一个工作区,每间宿舍住8位学生,宿舍都是按上面床位下面写字桌安排,分两边每边四人布局。在写字桌桌面下方30㎝高的地方都已安装一个电源插座,因此信息插座安装与电源插座等高、相距20㎝的地方,全部是明装。(如图2.1)宣城职业技术学院毕业设计(论文)7图2.1工作区设计图5.设备间设备间子系统是在每栋建筑内的适当位置专设的安装设备和建筑物间光纤接入的房间,它还是网络管理和值班人员的工作场所。设备间温度、湿度、尘埃、照明、电磁场干扰、内部装修、噪声、火灾报警及灭火设施等环境条件,接地性能必须符合GB/T50312-2007《建筑与建筑群综合布线系统工程验收规范》。一方面由于从设备间到楼内各信息点的距离不超过90M,另一方面为了管理方便和节省配线间对空间的占用,将设备设置在该学生宿舍的中心位置115房间,所有的配线管理全部在设备间。根据配线架、光纤终端盒和网络设备的数量情况,设备间配置3台标准32U机柜,继续将200×100的槽式桥架敷设在地板下,将线缆通过地板从机柜底部敷设进机柜。宣城职业技术学院毕业设计(论文)8图2.2设备间设计图二、网络系统设备需求(一)系统性能指标六类布线系统满足千兆网络的传输,参考各种最新的国际标准,确定其主要指标如下:1.水平配线电缆为六类4对非屏蔽双绞电缆;2.信息插座、配线模块、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