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Packet multiplexers with adversarial regulated traffic

机译:具有对抗性流量的分组多路复用器

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摘要

We consider a finite-buffer packet multiplexer to which traffic arrives from several independent sources. The traffic from each of the sources is regulated, i.e., the amount of traffic that can enter the multiplexer is constrained by known regulator constraints. The regulator constraints depend on, the source and are more general than those resulting from cascaded leaky buckets. We assume that the traffic is adversarial to the extent permitted by the regulators. For lossless multiplexing, we show that if the original multiplexer is lossless it is possible to allocate bandwidth and buffer to the sources so that the resulting segregated systems are lossless. For lossy multiplexing, we use our results for lossless multiplexing to estimate the loss probability of the multiplexer. Our estimate involves transforming the original system into two independent resource systems, and using adversarial sources for the two independent resources to obtain a bound on the loss probabilities for the transformed system. We show that the adversarial sources are not extremal on-off sources, even when the regulator consists of a peak rate controller in series with a leaky bucket. We explicitly characterize the form of the adversarial source for the transformed problem. We also provide numerical results for the case of the simple regulator.
机译:我们考虑一个流量来自几个独立来源的有限缓冲区数据包多路复用器。来自每个源的业务量受到调节,即,可以进入多路复用器的业务量受到已知的调节器约束。调节器约束取决于源,并且比级联泄漏桶引起的约束更普遍。我们假设流量在监管机构允许的范围内是对抗性的。对于无损多路复用,我们表明,如果原始的多路复用器无损,则可以为源分配带宽和缓冲区,从而使最终的隔离系统无损。对于有损多路复用,我们使用无损多路复用的结果来估计多路复用器的丢失概率。我们的估计包括将原始系统转换为两个独立的资源系统,并对两个独立的资源使用对抗性资源,以获取转换后系统损失概率的界限。我们显示,即使调节器由与漏斗串联的峰值速率控制器组成,对抗源也不是极端的开关源。我们明确描述了转化问题的对抗源形式。我们还提供了简单调节器情况下的数值结果。

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