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A New Analytical Model for Computing Blocking Probability in Optical Burst Switching Networks

机译:用于计算光突发交换网络阻塞概率的新分析模型

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This paper presents a new analytical model for calculating the blocking probability in Just-Enough-Time (JET)-based optical burst switching networks. Relationship to the problem of calculating the reservation probability in advance reservation systems is also discussed. The proposed analytical model takes into consideration the effects of the burst offset time and the burst length on the blocking probability. We use a (M+1)-state non-homogenous Markov chain to describe the state of an output link carrying M wavelength channels. In addition, we model each wavelength channel by a 2-state Markov chain. The offset time is drawn from a specified distribution so that wavelength reservation requests, made before a given time, build up to be a workload whose mean value declines with the reservation starting time. Furthermore, we express the blocking probability in terms of first passage time distributions to account for the burst length. To verify its accuracy, the model results are compared with the results of a sophisticated discrete-event simulation model. The model results were found to be in satisfactory agreement with simulation results
机译:本文提出了一种新的分析模型,用于计算基于刚好足够时间(JET)的光突发交换网络中的阻塞概率。还讨论了与提前预订系统中计算预订概率的问题的关系。所提出的分析模型考虑了突发偏移时间和突发长度对阻塞概率的影响。我们使用(M + 1)状态的非均匀马尔可夫链来描述带有M个波长通道的输出链路的状态。此外,我们通过2状态马尔可夫链对每个波长通道进行建模。偏移时间是从指定的分布中得出的,因此在给定时间之前发出的波长保留请求将累积为工作量,其平均值随保留开始时间而下降。此外,我们用首次通过时间分布来表示阻塞概率,以说明突发长度。为了验证其准确性,将模型结果与复杂的离散事件模拟模型的结果进行比较。发现模型结果与仿真结果令人满意

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