光突发交换网络的性能演化

A. Das, P. Banerjee, A. Das
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引用次数: 9

摘要

光突发交换(OBS)结合了OCS和OPS的优点,是一种利用光通信潜在优势的新兴技术,它允许可变突发大小,受到了学术界和工业界的广泛关注。低延迟和减少进入节点电子域的突发重叠,从而减少突发损失,提高服务质量(QoS)。建立了考虑小流量和大流量条件下的时延与交通负荷关系的数学模型。在城域环网中,考虑到信道容量c、突发大小B和令牌往返时间r的变化,显示了最小延迟区域。在一般OBS节点中,需要使用电子缓冲器延迟入口节点中某些突发的传输。结果表明,在突发重叠情况下,在较低的业务负载下,数据产生的延迟更多,并且随着延迟突发时间的增加而增加,而在较高的业务负载下,所有延迟突发时间值的延迟几乎相同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evolution in optical burst switched networks
Optical burst switching (OBS) that combines the advantages of OCS and OPS is an emerging technology to exploit the potential benefits of optical communication, that allow variable burst sizes and has gained much attention from both academic and industry. Low delay and also to reduce burst overlap in the electronic domain of an ingress node and hence to reduce burst loss improves quality of service (QoS). A mathematical model for delay versus traffic loads considering both low and large traffic conditions is developed. In a metropolitan ring network the minimum delay zone is shown considering the variation of channel capacityC, burst size B, and token round trip time R. In a general OBS node it is required to delay some of the transmission of bursts in the ingress node with an electronic buffer. It is shown that in a burst overlapping condition, at lower traffic loads, data produces more delays and increases with the increase of delayed burst time, but at higher loads, the delays are almost same for all values of delayed burst time.
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