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Traffic and performance evaluation for optical networks. An Investigation into Modelling and Characterisation of Traffic Flows and Performance Analysis and Engineering for Optical Network Architectures.

机译:光网络的流量和性能评估。对光网络体系结构的流量建模和表征以及性能分析和工程的研究。

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摘要

The convergence of multiservice heterogeneous networks and ever increasing Internet applications, like peer to peer networking and the increased number of users and services, demand a more efficient bandwidth allocation in optical networks. In this context, new architectures and protocols are needed in conjuction with cost effective quantitative methodologies in order to provide an insight into the performance aspects of the next and future generation Internets.udThis thesis reports an investigation, based on efficient simulation methodologies, in order to assess existing high performance algorithms and to propose new ones. The analysis of the traffic characteristics of an OC-192 link (9953.28 Mbps) is initially conducted, a requirement due to the discovery of self-similar long-range dependent properties in network traffic, and the suitability of the GE distribution for modelling interarrival times of bursty traffic in short time scales is presented. Consequently, using a heuristic approach, the self-similar properties of the GE/G/¿ are being presented, providing a method to generate self-similar traffic that takes into consideration burstiness in small time scales. A description of the state of the art in optical networking providing a deeper insight into the current technologies, protocols and architectures in the field, which creates the motivation for more research into the promising switching technique of ¿Optical Burst Switching¿ (OBS). An investigation into the performance impact of various burst assembly strategies on an OBS edge node¿s mean buffer length is conducted. Realistic traffic characteristics are considered based on the analysis of the OC-192 backbone traffic traces. In addition the effect of burstiness in the small time scales on mean assembly time and burst size distribution is investigated. A new Dynamic OBS Offset Allocation Protocol is devised and favourable comparisons are carried out between the proposed OBS protocol and the Just Enough Time (JET) protocol, in terms of mean queue length, blocking and throughput. Finally the research focuses on simulation methodologies employed throughout the thesis using the Graphics Processing Unit (GPU) on a commercial NVidia GeForce 8800 GTX, which was initially designed for gaming computers. Parallel generators of Optical Bursts are implemented and simulated in ¿Compute Unified Device Architecture¿ (CUDA) and compared with simulations run on general-purpose CPU proving the GPU to be a cost-effective platform which can significantly speed-up calculations in order to make simulations of more complex and demanding networks easier to develop.
机译:多服务异构网络的融合以及不断增长的Internet应用程序(如对等网络和不断增长的用户和服务数量)要求在光网络中更有效地分配带宽。在这种情况下,需要新的体系结构和协议以及具有成本效益的定量方法,以便深入了解下一代和下一代Internet的性能。 ud本论文基于有效的仿真方法,进行了一项研究,目的是为了进行深入研究。评估现有的高性能算法并提出新的算法。最初进行了OC-192链路(9953.28 Mbps)流量特征的分析,这是由于发现网络流量中自相似的远程相关属性以及GE分布对到达间隔时间建模的适用性而提出的要求给出了在短时间内的突发流量。因此,使用启发式方法,提出了GE / G /?的自相似属性,提供了一种生成自相似流量的方法,该方法考虑了小规模的突发性。对光网络的最新技术的描述提供了对本领域当前技术,协议和体系结构的更深入了解,这为对“光突发交换”(OBS)的有前途的交换技术进行更多研究提供了动力。对OBS边缘节点的平均缓冲区长度的各种突发组装策略的性能影响进行了调查。根据对OC-192骨干网流量跟踪的分析,考虑实际的流量特性。此外,还研究了小时间尺度上的突发性对平均装配时间和突发大小分布的影响。设计了一种新的动态OBS偏移分配协议,并在平均队列长度,阻塞和吞吐量方面对建议的OBS协议和Just Justough Time(JET)协议进行了有利的比较。最后,研究重点在于整个论文中采用的仿真方法,这些方法是在商用NVidia GeForce 8800 GTX上使用图形处理单元(GPU)进行的,该图形处理单元最初是为游戏计算机设计的。光突发的并行生成器在“计算机统一设备体系结构”(CUDA)中实现和仿真,并与在通用CPU上运行的仿真进行比较,证明GPU是一种经济高效的平台,可以显着加快计算速度,从而使更复杂,要求更高的网络的仿真更易于开发。

著录项

  • 作者

    Mouchos Charalampos;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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