标题: 全光都会网状/环状骨干及其互联之光纤及无线撷取网路整合技术---子计画五:在高速移动性下多模无线存取网路架构中之品质服务技术研究设计
Study and Design of QoS Techniques over Multimode Wireless Access Networks with High Mobility
作者: 陈耀宗
CHEN YAW-CHUNG
国立交通大学资讯工程学系(所)
关键字: WiFi 多媒体;服务品质保证;WiMAX;多模无线存取;多重输入输出;点对点连接性;服务等级协议;软性转移;服务品质路由;WiFi multimedia;Quality-of-Service (QoS);WiMAX;multimode wireless access;MultipleInput Multiple Output;end-to-end connectivity;Service Level Agreements (SLAs);softhandoff;QoS routing.
公开日期: 2007
摘要: 随着无线网路技术的快速发展,各种无线撷取服务也随之成长,例如 WiFi multimedia 以及网路
游戏等。虽然在现今的无线网路环境之下已经可以成功的支援这些服务,但是当使用者在此无线
网路中移动时,其效能却不尽理想。造成这个结果最主要的原因是由于WiFi 无线网路本身的涵
盖范围不够广,对于漫游时的各种需求(特别是在服务品质方面)也没有一个有效率的机制来管理。
WiMAX 为一种支援固定及行动存取的宽频无线技术,其所涵盖的范围可多达数公里远。WiMAX
目前制订了两种版本:IEEE 802.16-2004 以及IEEE 802.16e,前者适用于固定点存取,后者则支
援了移动性的存取。至于异质网路间之Handover,正在制订中之IEEE 802.21 标准将会有规范。
由于无线网路无法像行动电话网路般有较广的覆盖范围,故当使用者在移动时想维持连接性
相对的来说就较为困难,更别提要达到QoS 的功能了。在这个计画中,我们试图研究发展一个
在MIMO(Multiple-Input Multiple-Output) 多模式无线存取无线技术下可支援QoS 以及行动性的
方法,并可以透过WiMAX来达成。藉由MIMO,在IEEE 802.16e 下的行动使用者能用soft handover
来在cell 之间传输,甚至在异质的网路间互传,例如从WiFi 到WiMAX。故在handover 期间可
维持点对点的连通性以及Service Level Agreements (SLAs)。我们将扩展当前在WLAN 行动性的
研究到多模存取网路,并且研究跨网路间的soft handoff,这些可能包含了QoS routing,buffering
以及traffic 分类控制等。并于第二、三年使用市场上所提供的组件来实现系统模组。
Study and Design of QoS Techniques over Multimode Wireless Access Networks with High Mobility
The fast technology advance in wireless networks leads to the quick growth in wireless application
services, such as WiFi multimedia and Internet games. Although nowadays these kinds of services can
be deployed successfully in wireless LAN environment, however, these services still could not be
support satisfactorily if the wireless client is in motion. This is due to the deficiency in coverage of
wireless LAN as well as the lack of an effective mechanism which can fulfill the complex requirements
for roaming, especially regarding the Quality of Services (QoS). WiMAX is a broadband wireless
technology that supports fixed, nomadic, portable and mobile access, with none-line-of-sight coverage
radius of several miles. Two versions of WiMAX have been defined: IEEE 802.16-2004 and IEEE
802.16e, the former is optimized for fixed and nomadic access, while the latter will support portability
and mobility. Regarding the handover across heterogeneous networks, the IEEE 802.21 standard is
undergoing and it will define the specification.
Since the cell of wireless LAN is too small to achieve as wide coverage as cellular mobile does, it is
difficult to maintain connectivity once a mobile client is moving, not mention the QoS. In this proposal,
we will investigate the support of QoS and mobility based on a multimode wireless access infrastructure
(WiMax/WiFi/Cellular), with MIMO (Multiple-Input Multiple-Output) radio techniques, which is very
likely to be used in WiMax. With MIMO, mobile client based on the IEEE 802.16e could perform soft
handoff, which is a make-before-break mechanism, to transit from a cell to another one, or even from
one type of network such as WiFi to another one such as WiMax, therefore the end-to-end connectivity
as well as the service quality, such as Service Level Agreements (SLAs) could be maintained during
handoffs. We will extend our current study of mobility based on WLANs to multimode access networks,
and investigate the cross-network soft handoff, which may include QoS routing, buffering, and traffic
classification and control. We will also prototype the system module at the second and third years based
on the components available on the market.
官方说明文件#: NSC95-2221-E009-055-MY3
URI: http://hdl.handle.net/11536/88683
https://www.grb.gov.tw/search/planDetail?id=1644651&docId=281276
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