DocumentCode
1042844
Title
Opportunistic Optical Hyperchannel and Its Distributed QoS Assuring Access Control
Author
Chen, Jing ; Wang, Jianping ; Yu, Hui ; Zheng, Si-Qing
Author_Institution
Telecommun. Eng. Program, Univ. of Texas at Dallas, Richardson, TX, USA
Volume
20
Issue
11
fYear
2009
Firstpage
1626
Lastpage
1640
Abstract
Light-trail is proposed as a candidate to carry IP traffic over wavelength-division multiplexing optical networks given its capability of enabling high-speed provisioning and accommodating multigranularity traffic. In a light-trail, the optical shutters at the start node and the end node are configured to be in OFF state and the optical shutters at the intermediate nodes are configured to be in ON state. Thus, an optical bus is formed, allowing traffic multiplexing without the state change of any optical shutter. This, however, limits the system throughput and also makes it impossible to implement a fully distributed medium access control (MAC) protocol to assure quality of service (QoS) in a light-trail. With the recent development on ultrafast optical shutter, we propose an improved light-trail architecture, called opportunistic hyperchannel in this paper. In an opportunistic hyperchannel, an intermediate node can dynamically control its optical shutter which makes it possible to design a fully distributed QoS assuring MAC protocol. We then present a QoS assuring distributed dynamic scheduling protocol, namely, minimum source round robin (minSrcRR) protocol, for opportunistic hyperchannels. Theoretical analysis on the effectiveness of the proposed QoS assuring protocol and the worst-case delay bound are also derived in this paper. The simulation results quantitatively demonstrate the advantage of opportunistic hyperchannels and the effectiveness of minSrcRR protocol.
Keywords
IP networks; access protocols; optical fibre networks; quality of service; queueing theory; scheduling; telecommunication channels; telecommunication traffic; wavelength division multiplexing; IP traffic; MAC; OFF state; ON state; QoS; WDM; distributed QoS-assuring medium access control protocol; distributed dynamic scheduling protocol; high-speed provisioning; light trail architecture; minSrcRR protocol; minimum source round robin protocol; opportunistic optical hyperchannel; optical bus; output queueing; quality of service; system throughput; ultrafast optical shutter; wavelength-division multiplexing optical network; worst-case delay bound; Light-trail; MAC; QoS; SMART network; WDM; algorithm; hyperchannel.; multiaccess; optical network; output queuing; packet scheduling; protocol;
fLanguage
English
Journal_Title
Parallel and Distributed Systems, IEEE Transactions on
Publisher
ieee
ISSN
1045-9219
Type
jour
DOI
10.1109/TPDS.2008.259
Filename
4721433
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