DocumentCode :
56842
Title :
Load-Balanced Fixed Routing for Wavelength Routed Optical Networks
Author :
Yongcheng Li ; Limei Peng ; Gangxiang Shen
Author_Institution :
Sch. of Electron. & Inf. Eng., Soochow Univ., Suzhou, China
Volume :
17
Issue :
6
fYear :
2013
fDate :
Jun-13
Firstpage :
1256
Lastpage :
1259
Abstract :
Due to simplicity in lightpath service provisioning, fixed shortest path routing is considered as one of major provisioning strategies in the wavelength routed optical networks. Nonetheless, the employment of fixed shortest routes can cause unbalanced network traffic load distribution and consequentially lead to network congestion. In this paper, we propose a novel Load-Balanced Fixed Routing (LBFR) scheme that can avoid network congestion and retain the operational simplicity of fixed routing. A pre-training process based on a forecasted traffic load matrix is employed to find a (or few) fixed route(s) between each pair of nodes for lightpath service provisioning. For a wavelength path (WP) network subject to the constraint of wavelength continuity, we also develop an analytical model that can effectively estimate lightpath blocking performance under multiple fixed routes between each pair of nodes. Results show that the proposed LBFR can perform much better than traditional fixed shortest path routing in lightpath blocking, and performance improvement becomes more significant with an increasing network nodal degree.
Keywords :
optical fibre networks; resource allocation; telecommunication network routing; telecommunication services; telecommunication traffic; LBFR; WP; lightpath blocking performance estimation; lightpath service provisioning; load-balanced fixed routing scheme; network congestion; network nodal degree; pre-training process; shortest path routing; traffic load matrix forecasting; unbalanced network traffic load distribution; wavelength continuity constraint; wavelength path network; wavelength routed optical network; Analytical models; Load modeling; Prediction algorithms; Routing; Training; Wavelength assignment; Wavelength routed optical networks; fixed routing; load-balanced fixed routing; wavelength assignment;
fLanguage :
English
Journal_Title :
Communications Letters, IEEE
Publisher :
ieee
ISSN :
1089-7798
Type :
jour
DOI :
10.1109/LCOMM.2013.043013.122411
Filename :
6515217
Link To Document :
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