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A generalized processor sharing approach to flow control in integrated services networks: the single-node case

机译:集成服务网络中用于流控制的通用处理器共享方法:单节点情况

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The problem of allocating network resources to the users of an integrated services network is investigated in the context of rate-based flow control. The network is assumed to be a virtual circuit, connection-based packet network. It is shown that the use of generalized processor sharing (GPS), when combined with leaky bucket admission control, allows the network to make a wide range of worst-case performance guarantees on throughput and delay. The scheme is flexible in that different users may be given widely different performance guarantees and is efficient in that each of the servers is work conserving. The authors present a practical packet-by-packet service discipline, PGPS that closely approximates GPS. This allows them to relate results for GPS to the packet-by-packet scheme in a precise manner. The performance of a single-server GPS system is analyzed exactly from the standpoint of worst-case packet delay and burstiness when the sources are constrained by leaky buckets. The worst-case session backlogs are also determined.
机译:在基于速率的流控制的背景下,研究了将网络资源分配给集成服务网络的用户的问题。假定该网络是虚拟电路,基于连接的分组网络。结果表明,将通用处理器共享(GPS)与漏斗接纳控制结合使用时,网络可以为吞吐量和延迟方面的各种最坏情况的性能保证。该方案是灵活的,因为可以为不同的用户提供广泛不同的性能保证,并且该方案是有效的,因为每个服务器都可以节省工作。作者提出了一种实用的逐包服务准则,即PGPS,它非常接近GPS。这使他们可以将GPS的结果以一种精确的方式与逐包方案相关联。当源受到泄漏桶的限制时,从最坏情况的数据包延迟和突发性的角度,精​​确分析了单服务器GPS系统的性能。还确定最坏情况的会话积压。

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