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Performance evaluation of an optical burst switched core node with generalized arrivals and partial wavelength conversion capability

机译:具有广义到达和部分波长转换能力的光突发交换核心节点的性能评估

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摘要

Many of the burst assembly algorithms employed in optical burst switching (OBS) networks preserve the IP traffic self-similarity property in the burst traffic. We introduce a mathematical model for performance evaluation of an OBS core node employing either no, a partial or a full wavelength conversion strategy. The model assumes long-range dependent (LRD) traffic arrivals to the OBS intermediate node whose inter-arrival times are accurately modeled by a Pareto distribution, whereas exponential holding times are assumed. In our proposed model, each output port in the node is modeled as a GI/M/w/w queue with partial server accessibility. An imbedded Markov chain approach is used to derive the limiting state probability distribution for the number of bursts currently served by an output port as seen by arriving bursts. Next, the average burst loss probability is evaluated from steady-state occupancy probabilities. In addition, the results of our mathematical model are validated via simulation. Furthermore, the results of the model are compared with those when assuming short-range dependent Poisson arrivals. Comparison shows that traditional Poisson traffic models yield over-optimistic performance measures compared to the LRD Pareto traffic models, especially for light traffic scenarios. Furthermore, we study the impact of varying different traffic parameters, such as the average arrival rate and the Hurst parameter, on the burst loss probability. Finally, the impact of varying the wavelength conversion capability on the burst loss probability is studied, where we compare two strategies for contention resolution: adding new channels (wavelengths) or adding wavelength converters, while taking the cost into consideration.
机译:光突发交换(OBS)网络中使用的许多突发组装算法都在突发流量中保留IP流量自相似性。我们介绍一种数学模型,用于通过不使用,部分或全部波长转换策略来评估OBS核心节点的性能。该模型假定远程依赖(LRD)流量到达OBS中间节点,该中间节点的到达时间通过Pareto分布精确建模,而假设是指数保持时间。在我们提出的模型中,节点中的每个输出端口都被建模为具有部分服务器可访问性的GI / M / w / w队列。嵌入式马尔可夫链方法用于得出输出端口当前服务的突发数的极限状态概率分布(如到达的突发)。接下来,根据稳态占用概率评估平均突发丢失概率。此外,我们的数学模型的结果通过仿真得到了验证。此外,将模型的结果与假设短距离相关的泊松到达时的结果进行比较。比较表明,与LRD Pareto交通模型相比,传统的Poisson交通模型产生了过于乐观的性能指标,尤其是在轻型交通场景中。此外,我们研究了不同的流量参数(例如平均到达率和Hurst参数)对突发丢失概率的影响。最后,研究了改变波长转换能力对突发损失概率的影响,在此我们比较了两种解决争用的策略:添加新通道(波长)或添加波长转换器,同时考虑了成本。

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