Impact of Fuzzy Offset Time on Delay and Burst Loss Ratio for Optical Burst Switching Networks

Laila A. Wahab Abdullah Naji, Dr. Ibrahim Khider Eltahir, Hadeil Haydar Ahmed Elsheikh
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Abstract

Optical burst switching (OBS) is an optical switching technology; it uses an optical fiber's high bandwidth potential to transfer huge amounts of data in the form of huge packets, which are more commonly referred to as bursts. High burst loss brought on by numerous burst contentions is a significant problem in OBS. An intelligent fuzzy offset time algorithm (FOT) algorithm is suggested to overcome this problem. This study proposed Intelligent Fuzzy Offset Time (FOT) algorithms that adjust offset time (OT) in accordance with network and traffic conditions. The fuzzy input for FOT is made up of three parameters: burst size, distance, and time that burst spent in queuing. The suggested algorithm is assessed versus the Intelligent OT algorithms using the Five defuzzification techniques (Centroid (CM00), Bisector (BM04), largest of maximum (LM02), smallest of maximum (SM03), and mean of maximum (MM01) when Maximum (M) accumulation technique is used, when using Algebraic Sum (S) aggregation methods (Centroid (CS00), Bisector (BS04), largest of maximum (LS02), smallest of maximum (SS03), and mean of maximum (MS01). Simulation results have shown that FOT LM02, FOT LS02, FOT SM03 and FOT LS02 have effects on reducing BLR (burst loss ratio) and E2E (End-2-End) delayed respectively when compared to other defuzzification techniques algorithms. FOT LM02 and FOT SM03 can be used to intelligently adjust the offset parameter using the incoming traffic load and the three parameters.
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模糊偏移时间对光突发交换网络时延和突发损失率的影响
光突发交换(OBS)是一种光交换技术;它利用光纤的高带宽潜力,以巨大数据包的形式传输大量数据,这通常被称为突发。大量的突发竞争带来的高突发损失是OBS中的一个重要问题。针对这一问题,提出了一种智能模糊偏移时间算法(FOT)。本研究提出了智能模糊偏移时间(FOT)算法,根据网络和交通状况调整偏移时间(OT)。ft的模糊输入由三个参数组成:突发大小、距离和突发在排队中花费的时间。当使用最大值(M)积累技术时,使用五种去模糊化技术(质心(CM00),平分线(BM04),最大值的最大值(LM02),最大值的最小值(SM03)和最大值的平均值(MM01),当使用代数求和(S)聚合方法(质心(CS00),平分线(BS04),最大值的最大值(LS02),最大值的最小值(SS03)和最大值的平均值(MS01)时,对建议的算法进行了评估。仿真结果表明,与其他去模糊化算法相比,FOT LM02、FOT LS02、FOT SM03和FOT LS02分别具有降低突发损失率(BLR)和端到端延迟(E2E)的效果。FOT LM02和FOT SM03可以根据传入流量负载和这三个参数智能调整偏移量参数。
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