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Titlebook: Switching and Traffic Theory for Integrated Broadband Networks; Joseph Y. Hui Book 1990 Springer Science+Business Media New York 1990 Broa

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Queueing for Single-Stage Packet Networksm circuit switching, for which transmission resources are more rigidly scheduled. Packet switching facilitates flexible resource sharing with less scheduling complexity, at the expense of introducing random delay.
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Queueing for Multi-Stage Packet Networksests the simultaneous allocation of bandwidth on a set of links In contrast, packet switching does not require simultaneous allocation but allocation on a link-by-link basis. Local conflicts in resource allocation result in queueing. Based on results for single stage queueing developed in the previo
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Book 1990 the current voice network but which can carry video, voice, and data in massive qlJantities. How and when such networks will evolve, who will pay for them, and what new applications will use them is anyone‘s guess. There appears to be no doubt, however, that the trend in telecommunication networks
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Integrated Broadband Services and Networks — An Introductionng communication networks and providing new communication services. In this chapter, we first review some key technologies which will drive the advancement of communication networking. We also examine how the proliferation of new communication services requires an integrated approach to communication networking.
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Applying Sorting for Self-Routing and Non-Blocking Switchesty services. To alleviate the processing bottleneck of bandwidth allocation, we introduced distributed algorithms using self-routing addresses and queueing at switch nodes for dealing with local congestion.
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Terminal and Aggregate Trafficrent advantage for broadband networks is explained using the law of large numbers, which implies that the statistical fluctuations of the aggregate traffic decrease as the number of superposed processes increases. Methods of estimating the tail distribution of the aggregate traffic are also given.
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