Performance Analysis of Smart Optical Burst Switching Networks for Different Signaling Protocols

M. Klymash, M. Kaidan, S. Dumych
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引用次数: 1

Abstract

A future optical transport network needs an extremely high capacity to satisfy the rapid increase in traffic. Many technologies have been developed to increase throughput and energy efficiency and simplify the deployment of optical transport networks. Internet Protocol traffic transmission precedes optical transport networks in requiring new approaches for network nodes. Although optical fiber has a tremendous capacity, switching nodes limit the performance of optical networks. An optical burst switched network concept has been introduced as a promising solution to overcome this problem. Optical burst switched technology effectively utilizes the advantages of both circuit switching and packet switching networks, and also eliminates their drawbacks. Two important issues in achieving the best performance in optical burst switched networks are scheduling bursts and signaling protocols. In this paper, we provide a comprehensive analysis of optical burst switched signaling protocols. We study three protocols for signaling in optical burst switched networks that are used for various traffic types. The Tell-and-Wait and Just Enough Time protocols are used in extreme cases of loss-sensitive and delay-sensitive traffic, respectively. The third signaling protocol, called Intermediate Note Initiation, is a promising solution with an ability to adjust parameters depending upon traffic requirements. We analyze the blocking probability of core nodes with respect to the number of buffers and wavelengths for each signaling protocol. The simulation results show that when the number of optical buffers are five or higher, blocking probability tends to be zero, regardless of the number of wavelengths. Therefore, this tends to decrease loss due to a burst, and improves the overall performance of optical burst switched networks. The burst outstripping problem in optical fiber has been solved by determining a proper buffering policy for each burst, after considering the burst priorities and time delays between consistent bursts.
不同信令协议下智能光突发交换网络的性能分析
未来的光传输网络需要极高的容量来满足快速增长的业务量。已经开发了许多技术来提高吞吐量和能源效率,并简化光传输网络的部署。Internet协议流量传输比光传输网络对网络节点的要求更高。虽然光纤具有巨大的容量,但交换节点限制了光网络的性能。提出了光突发交换网络的概念,作为克服这一问题的一个有希望的解决方案。光突发交换技术有效地利用了电路交换和分组交换网络的优点,同时也消除了它们的缺点。在光突发交换网络中实现最佳性能的两个重要问题是突发调度和信令协议。本文对光突发交换信令协议进行了全面的分析。我们研究了用于不同业务类型的光突发交换网络中的三种信令协议。Tell-and-Wait和Just Enough Time协议分别用于对丢失敏感和对延迟敏感的流量的极端情况。第三种信令协议称为中间笔记起始(Intermediate Note Initiation),它是一种很有前途的解决方案,能够根据流量需求调整参数。我们根据每个信令协议的缓冲区数量和波长分析了核心节点的阻塞概率。仿真结果表明,当光缓冲器个数大于等于5个时,无论波长多少,阻塞概率都趋于零。因此,这有利于减少由于突发造成的损耗,并提高光突发交换网络的整体性能。通过考虑突发的优先级和连续突发之间的时延,为每个突发确定合适的缓冲策略,解决了光纤突发超越问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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