An integrated dynamic resource allocation scheme for ATM networks

R. Bolla, F. Danovaro, F. Davoli, M. Marchese
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引用次数: 36

Abstract

Dynamic bandwidth allocation among traffic classes with different performance requirements sharing an asynchronous transfer mode (ATM) link is considered as an integrated control problem with a multilevel structure. At the lower level, call admission control rules are applied that maintain a certain grade of service, in terms of cell loss probability and cell delay, given the buffer space and bandwidth assigned to each class; unlike those used in previous works, these rules are derived on the basis of homogeneous (based on similar quantities) measures of the performance requirements. At the higher level, bandwidth shares are periodically recomputed online by an allocation controller, whose goals reflect overall cell loss and refused traffic, as well as overall average delay. These goals are expressed by an optimization problem that is solved by numerical techniques. The whole control system should provide a dynamic feedback controller, capable of reacting in real time to changes in the traffic patterns. Simulation results are presented and are discussed in regard to the efficiency of the admission controllers, the performance of the overall scheme, and the capability of reacting to sudden changes in the load of some traffic class.<>
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一种ATM网络综合动态资源分配方案
在共享异步传输模式(ATM)链路的不同性能要求的流量类之间进行动态带宽分配,是一个具有多层结构的综合控制问题。在较低的层次上,在给定分配给每个类别的缓冲空间和带宽的情况下,应用从小区丢失概率和小区延迟方面保持一定服务等级的呼叫接纳控制规则;与以前的作品中使用的规则不同,这些规则是基于性能需求的同质(基于相似数量)度量而导出的。在更高的级别上,带宽共享由分配控制器周期性地在线重新计算,其目标反映了总体单元损失和拒绝的流量,以及总体平均延迟。这些目标是通过一个优化问题来表达的,这个优化问题是通过数值技术来解决的。整个控制系统应该提供一个动态反馈控制器,能够对交通模式的变化做出实时反应。给出了仿真结果,并讨论了接纳控制器的效率、整体方案的性能以及对某些流量类负载突然变化的反应能力
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