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Optimal queueing policies for fast packet switching of mixed traffic

机译:混合流量快速分组交换的最佳排队策略

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The power of ATM (asynchronous transfer mode) is its ability to provide bandwidth on demand, different sources can have different bandwidth requirements. Sources also differ in performance requirements, some ask for minimal delay variations, whereas others must have extremely low cell loss probabilities. It is shown how these complementary performance requirements can be explained with an LDOLL (low delay or low loss) queue, where sources get either service priority or storage priority. The space of possible LDOLL queuing policies is very large, even after a justified reduction, the size is still O(2/sup Q2/), Q being the maximum number of ATM cells in the LDOLL queue. Using Markov decision theory and concepts of linear programming, only Q so-called efficient solutions are achieved. These are the LDOLL threshold policies, which are conceptually appealing, robust in performance, and practical from the implementation viewpoint.
机译:ATM(异步传输模式)的功能是按需提供带宽的能力,不同的来源可能具有不同的带宽要求。信号源在性能要求上也有所不同,有些要求最小的延迟变化,而另一些必须具有极低的信元丢失概率。它显示了如何使用LDOLL(低延迟或低丢失)队列解释这些互补的性能要求,其中源获得服务优先级或存储优先级。可能的LDOLL排队策略的空间非常大,即使经过合理减少后,其大小仍为O(2 / sup Q2 /),Q是LDOLL队列中ATM信元的最大数量。使用马尔可夫决策理论和线性规划的概念,仅获得Q个所谓的有效解。这些是LDOLL阈值策略,从实现的角度来看,它们在概念上很有吸引力,性能稳定且实用。

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