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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Analysis and design of a highly reliable transport architecture for ISDN frame-relay networks
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Analysis and design of a highly reliable transport architecture for ISDN frame-relay networks

机译:ISDN帧中继网络的高度可靠的传输体系结构的分析和设计

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The authors explore control strategies in the design of a high-performance transport architecture for integrated services digital network (ISDN) frame-relay networks. For real-time congestion control, buffer management, priority queueing, adaptive windowing, and selective frame, discard policies are described that can effectively maximize network efficiency while preventing unfair usage of shared network resources. Virtual-circuit routing strategies are proposed that ensure an efficient distribution of traffic loads across the network despite variations in traffic patterns and topology changes. It is shown that source routing provides significant performance benefits over link-by-link routing, particularly in large networks that are not so densely connected. Routing table update and call acceptance mechanisms are described that provide for efficient bandwidth management in the network. Fault-tolerant strategies are described that include fast failure detection and local reroute. These strategies are capable of restoring affected virtual circuits in less than 10 s, which is adequate for session maintenance under most application scenarios.
机译:作者探索了用于集成服务数字网络(ISDN)帧中继网络的高性能传输体系结构设计中的控制策略。对于实时拥塞控制,缓冲区管理,优先级排队,自适应窗口和选择性帧,本文描述了丢弃策略,该策略可以有效地最大化网络效率,同时防止共享网络资源的不公平使用。提出了虚拟电路路由策略,即使流量模式和拓扑变化有所变化,也可确保在网络上有效分配流量负载。结果表明,源路由提供了比逐链接路由更高的性能优势,尤其是在连接不太紧密的大型网络中。描述了路由表更新和呼叫接受机制,它们提供了网络中有效的带宽管理。描述了容错策略,包括快速故障检测和本地重路由。这些策略能够在不到10 s的时间内恢复受影响的虚拟电路,这足以满足大多数应用场景下的会话维护要求。

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