标题: 区域及都会网路中提供高服务品质的频宽配置机制
Bandwidth Allocation Mechanisms with QOS Guarantee in High Speed LANs/MANs
作者: 刘建志
Liu, Jen-Chi
杨启瑞
Maria C. Yuang
资讯科学与工程研究所
关键字: 频宽配置;服务品质;媒体存取控制;传输协定;高速网路;延迟时间;Bandwidth Allocation;Quality Of Service (QOS);Medium Access Control (MAC);Transport Protocol;High Speed Network (LAN);Delay
公开日期: 1996
摘要: 高速区域及都会型网路已广为布设以支援宽频多媒体的应用。这些应用需
要服务品质(QOS)上的保证,如时间延迟(delay)、jitter、及单位传输
量(throughput)等等。为了提供这些品质上的保证,高速网路势必具有频
宽配置机制。此论文即是在其中的媒体存取控制层(MAC)及传输层中提出
应如何建立频宽配置机制。首先,在MAC层中,我们提出一个新的控制协
定,名为—Prioritized Adaptive Cycle Cell Insertion (PACCI)。此
协定利用普通周期的频宽,来提供公平的存取机会给所有的节点(包括客
户端及伺服器)。再利用分配特殊的周期来提供额外的存取机会给负载重
的节点(如伺服器)。至于这两种周期分配的比例则是根据一个频宽配置机
制,为了提供不同的单位输出量给客户端及伺服器。经由模拟器的分析显
示出频宽配置机制的准确性以及PACCI的优越性。 其次在传输层,一种品
质保证的传输系统被提出,可用来支援三种应用的资料传输。此系统由一
个频宽配置机制及传输协定模组所组成。频宽配置机制会聪明的管理传输
层的频宽。至于,传输协定模组则会对延迟敏感的应用执行以速度为基础
的流量控制。而速度的多少则是由先前的频宽配置机制所决定。此外对于
资料遗失敏感的应用则是提供严格的错误侦测措失。最后依据模拟的结果
显示,此高服务品质的传输系统能对延迟敏感的应用提供保证的时间延迟
和jitter。但会使资料遗失敏感的应用造成些许的输出量降低的现像。此
外,与TCP相比的结果也显示出此传输系统能提供较小的最大系统延迟以
及jitter。
High speed LANs/MANs have been widely deployed to support
broadband multimedia applications requiring the guarantee of
Quality Of Servoce (QOS). For supporting QOS guarantee,
bandwidth allocation mechanisms have been employed. This thesis
aims at proposing bandwidth allocation mechanisms at both Medium
Access Control(MAC) and transport layers in high speed LANs/
MANs, respectively. First, at the MAC layer, a new protocol,
called Prioritized Adaptive Cycle Cell Insertion(PACCI), is
proposed. PACCI offers prioritized access to privileged nodes(e.
g., servers) and fair access to regular nodes (e.g., clients)
through restricited cycles and regular cycles, respectively. The
bandwidth allocation of the regular and restricted cycles is
then based on an analytic model for QOS guarantee in terms of
throughput. Simulation results are presented to demonstrate the
accuracy of the analysis and the superior performance of PACCI.
Second, at the transport layer, a QOS-guaranteed Transport
System (QTS) is proposed to support three classes of
applications. QTS, composed of a bandwidth allocator and a
transport protocol module. The bandwidth allocator intelligently
manages the allocationof transport-layer bandwidth. The
transport protocol module of QTS performsrate-based flow control
for delay-sensitive applications based on transfer rates
predetermined by the bandwidth allocator. In addition, the
module accomplishes error control only for loss-sensitive
applications. As a result, as will be shown, QTS offers
satisfactorybounded delays and jitters for loss-sensitive
applications, Finally, we demonstratethe superiority of QTS over
TCP via simulation results in terms of maximum and mean ystem
delays, and delay jitter.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT850392066
http://hdl.handle.net/11536/61819
显示于类别:Thesis