Title :
Algorithms for Intermediate Waveband Switching in Optical WDM Mesh Networks
Author :
Todimala, Ajay ; Ramamurthy, Byrav
Author_Institution :
Univ. of Maryland, College Park
Abstract :
Waveband switching is a technique that allows multiple wavelengths to be switched together as a single unit. Waveband switching technique has been proven to reduce the switch sizes considerably in large networks. Aggregation of wavelengths into wavebands and dis-aggregation of wavebands back to wavelengths can be done at end-nodes or intermediate-nodes. Most of the research on waveband switching has considered source-to-end switching. In intermediate waveband switching, aggregation and/or dis-aggregation can be done at an intermediate node. In the context of intermediate waveband switching, the problem of grooming wavelengths such that the number of ports saved is maximized is non-trivial. Recent research which considered intermediate waveband switching focused on routing and wavelength assignment problem such that the port saving is maximized. In this work we focus on the problem of intermediate waveband switching considering static traffic and assuming that routing and wavelength assignment is known. We define two intermediate waveband grooming polices, intermediate-to-destination waveband switching (ITD-WBS) and both-end-to-intermediate waveband switching (BETI-WBS), depending on where along the path aggregation/disaggregation of wavebands is done. We present greedy algorithms to compute wavebands for the two intermediate waveband grooming polices and analyze their computational complexities.
Keywords :
optical fibre networks; optical switches; telecommunication network routing; telecommunication traffic; wavelength assignment; wavelength division multiplexing; WDM networks; aggregation; both-end-to-intermediate waveband switching; computational complexities; disaggregation; greedy algorithms; intermediate waveband grooming; intermediate waveband switching; intermediate-to-destination waveband switching; multiple wavelength switching; optical mesh networks; port saving; routing; source-to-end switching; static traffic; waveband switching; wavelength assignment; Algorithm design and analysis; Greedy algorithms; Mesh networks; Optical fiber networks; Optical network units; Optical switches; WDM networks; Wavelength assignment; Wavelength division multiplexing; Wavelength routing;
Conference_Titel :
High-Speed Networks Workshop, 2007
Conference_Location :
Anchorage, AK
Print_ISBN :
1-4244-1580-2
Electronic_ISBN :
1-4244-1580-2
DOI :
10.1109/HSNW.2007.4290539