DocumentCode
1106761
Title
LIGHTNING network and systems architecture
Author
Dowd, Patrick ; Perreault, James ; Chu, John ; Hoffmeister, Davidc ; Minnich, Ron ; Burns, Dan ; Hady, Frank ; Chen, Y.J. ; Dagenais, M. ; Stone, D.
Author_Institution
Dept. of Electr. & Comput. Eng., State Univ. of New York, Buffalo, NY, USA
Volume
14
Issue
6
fYear
1996
fDate
6/1/1996 12:00:00 AM
Firstpage
1371
Lastpage
1387
Abstract
This paper describes a hierarchical WDM-based optical network testbed project that is being constructed to interconnect a large number of high performance computers to create a distributed shared memory environment. The objective of the architecture is to achieve scalability yet avoid the requirement of multiple wavelength tunable devices per node. It is a singlehop all-optical network; a packet remains in the optical form from source to destination. It features wavelength channel reuse at each level, allowing scalability to very large system sizes. It partitions the traffic between different levels of the hierarchy without electronic intervention in a combination of wavelength-division and space-division multiplexing. A significant advantage of this approach is its ability to vary dynamically the bandwidth provided to different levels of the hierarchy. Each node monitors the traffic intensities on each channel and can detect any temporal or spatial shift in traffic balance. LIGHTNING can dynamically reconfigure to balance the traffic at each level by reassigning wavelengths associated with each level in the hierarchy to a higher or lower level depending on need. Bandwidth reallocation is completely decentralized, achieving highly fault tolerant system behavior. This paper describes the system architecture, and the network and memory interface that have been developed in this project
Keywords
optical fibre networks; performance evaluation; telecommunication traffic; wavelength division multiplexing; LIGHTNING network architecture; LIGHTNING systems architecture; distributed shared memory environment; hierarchical WDM-based optical network testbed project; high performance computers; highly fault tolerant system behavior; memory interface; scalability; singlehop all-optical network; space-division multiplexing; traffic intensities; wavelength channel reuse; wavelength-division multiplexing; Bandwidth; Computer architecture; Computer networks; Distributed computing; High performance computing; Lightning; Optical fiber networks; Scalability; Telecommunication traffic; Testing;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/50.511668
Filename
511668
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