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Performance of Traffic Engineering Methods in Response to Rapid Changes of Network State

机译:交通工程方法响应网络状态快速变化的性能

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A highly desirable feature of control plane technology is support for traffic engineering (TE), where traffic demands are efficiently assigned to network resources. This paper compares two major TE methods, crankback and QoS routing and their relative performance during rapid changes in network-state. The methods were evaluated in a distributed testbed using signalling (RSVP-TE with and without crank-back) and routing (OSPF and OSPF-TE) protocols. Our results show that the crankback method provides better call-blocking performance, close to the theoretical limit, than the QoS routing method regardless of the update frequency of the link state protocol. As such crankback is more capable of responding to sudden large network changes, including responding to high provisioning rates that occur in normal operation or as a result of restoration activity. The results obtained here are applicable to various connection-oriented technologies such as ATM, MPLS, SDH/SONET and Optical Networking and can also be implemented on different signalling and routing protocols.
机译:控制平面技术的一个非常理想的特征是对交通工程(TE)的支持,其中业务需求有效地分配给网络资源。本文比较了两种主要的TE方法,曲轴和QoS路由及其在网络状态的快速变化期间的相对性能。使用信令(RSVP-TE,带曲柄)和路由(OSPF和OSPF-TE)协议​​的信号(RSVP-TE)评估该方法。我们的结果表明,Crankback方法提供更好的呼叫阻止性能,靠近理论极限,而不是QoS路由方法,而不管链路状态协议的更新频率如何。由于这种Crankback更能响应突然大网络变化,包括响应正常操作中发生的高配置率或由于恢复活动而发生的高配置率。这里获得的结果适用于各种面向连接的技术,例如ATM,MPLS,SDH / SONET和光网络,也可以在不同的信令和路由协议上实现。

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