标题: 802.11无线网路架构下之二维网路拓朴知觉的频道扫描机制设计与实作
Design and Implementation of a Two Dimension Topology-Aware Scan Mechanism for 802.11 Wireless Networks
作者: 吴柏承
Wu, Po-Cheng
曾建超
Tseng, Chien-Chao
资讯学院资讯学程
关键字: 802.11;无线网路;二维;拓朴知觉;频道扫描;换手;Two Dimension;Topology-Aware;Scan Mechanism;802.11;Wireless
公开日期: 2010
摘要: 近年来IEEE 802.11无线区域网路与可携式产品非常迅速的发展与普及,现今市面上的可携式设备如笔记型电脑、电子书、PDA以及智慧型手机等,皆多内建802.11无线网路的传输介面。使用这些具有移动特性的行动设备于802.11无线区域网路漫游时,经常会遇到无线基地台间换手(Handoff)的状况。如何迅速地在基地台间执行换手动作,让行动装置使用者透过802.11无线网路使用网路服务时,不会感受到网路中断或是服务延迟的情况,对于行动装置的使用者是相当重要的需求。
于802.11网路架构中,行动装置在基地台之间漫游的换手过程,可以分为基地台的搜寻(discovery)与基地台的连结(commit)两个部份。据相关研究显示,基地台搜寻的部份占据了整个换手过程的大部分时间,所以如果能够大幅度的减少搜寻阶段所花费的时间,就能够大大降低基地台换手过程时间过长所造成的封包遗失和延迟等现象,达成快速换手的目标。目前已有许多的研究致力于降低基地台搜寻过程的时间,以缩短换手的延迟时间。其中的部分研究使用了Neighbor Graph (NG)的概念,透过纪录相邻基地台的数目与使用频道,行动装置在基地台搜寻阶段就可以只针对邻近的基地台频道进行扫瞄即可,避免扫瞄全部频道产生过长的延迟时间或在一个无基地台的频道等待Channel Waiting Time到达所造成时间浪费。
使用NG概念设计的机制需要额外付出维护NG资讯的成本,而且NG的建立是藉由行动装置在漫游的历程中动态纪录并更新基地台的相邻关系来产生。在一个区域性的无线网路环境布建上,此种动态建立NG资讯的方式其实是不必要的额外负担,因为区域的基地台部署其实是一种不会频繁改变的静态资讯,而且NG资讯只是纪录了基地台之间的相邻关系,并没办法提供出真实环境下基地台间地理位置的相对关系,故行动装置在基地台搜寻阶段仍然会有扫瞄不必要频道的时间延迟。因上述NG概念的方法还是存在着许多有待改善的部份,因此本论文基于IEEE 802.11无线区域网路环境提出一种具备“二维网路拓朴知觉的频道扫瞄机制”,其系行动装置可利用区域中基地台部署位置的网路拓朴资讯,辅以量测基地台的讯号衰减或增强的变化,研判行动装置的移动方向,预先找出合适的换手候选基地台,避免扫瞄全部拓朴邻近基地台,并且透过实作来验证此机制不但可以在二维平面WLAN的布建环境下应用以减少频道扫描的数目,也能进一步使用“Candidate AP Aware”方式有效率地在换手前选择合适的备选基地台,进一步降低搜寻阶段所需时间,缩短换手的延迟时间。
本论文在Linux作业系统平台的Notebook上搭配使用Atheros晶片的无线网卡实作此机制。经由实际的测试与分析相关数据,结果显示此机制确实可以有效率地预先选择到合适的漫游候选基地台、减少搜寻扫描的次数、改善搜寻阶段的时间,减低漫游时换手延迟所造成影响达到快速换手的目的。
With the development and popularizing of 802.11 wireless technology and mobile devices in recent years, many portable devices such as notebooks、E-Book、PDA or smart phones on the market now, all many are equipped with IEEE 802.11 wireless LAN interface inside. While using a mobile device roams in IEEE 802.11 WLAN networks, it often has to perform handoff procedure from one WLAN access point to another. How to make users of portable devices do not experience the situation that the network service interrupt or service delay when they use the streaming audio/video or VOIP real-time services, it’s an important demand for the users of portable device.
The handoff procedure in 802.11 network consists of two phases: the one is searching AP (discovery phase) and the other is AP association (commit phase). According to the previous researches, discovery phase use the most of time in the handoff procedure. So if we can improve and reduce a lot of search time in discovery stage, the packets lose and delay issues will be resolved and reached the goal of making handoff faster. There are many various approaches at present that are devoted to reduce the time of the discovery phase. Some approaches among them have quoted Neighbor Graph concept. Adjacency relations among APs and what channel is used by each AP are passed by NG records, and then a portable device can only scan the particular channels and wait the adjacency AP’s responses only during the discovery phase, avoid the time waste of scan all channels and the channel waiting time in a channel that doesn’t have any adjacency APs.
Using the method of NG concept need to spend the extra cost to maintain NG information, and the NG information is built by updating the relationship between the adjacency APs dynamically. In a wireless local area network environment, it is unnecessary to spend the cost to build the NG information dynamically, because it is actually a kind of static information that do not changed frequently in the wireless local area network and NG information only record the adjacency relations between APs, it can not present the relative relation of geographical position between APs, so the mobile devices in the NG approach still have the time delay to scan the unnecessary channel and make less effective. Above-mentioned NG approach have a lot of part to be improved, therefore, in this thesis, we propose a “Two Dimension Topology-aware Scan Mechanism” , that approached an mobile device can use the topology information of APs and the RSSI signal change to find out the moving orientation and next suitable candidate AP, avoid to scan all topology neighbors, not only can reduce the numbers of channel scanning but also select a suitable candidate access points more efficiently and intelligently by “Candidate AP Aware method”, reduce handoff delay in the IEEE 802.11 WLAN plane environment. and shorten the handover delay in discovery phase.
This thesis uses the wireless network card with Atheros chipset on a Linux operating system notebook to implement this mechanism. The result of experimental data via real testing case shows this proposed mechanism can really choose suitable candidate AP efficiently, reduce the numbers of probes and improve the delay time of discovery phase, achieve the goal of fast handoff.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079567582
http://hdl.handle.net/11536/41556
显示于类别:Thesis