DocumentCode :
1534297
Title :
Optical interconnection subsystem used in the RWC-1 massively parallel computer
Author :
Nishimura, Shinji ; Inoue, Hiroaki ; Matsuoka, Hiroshi ; Yokota, Takashi
Author_Institution :
Real World Comput. Partnership, Hitachi Ltd., Tokyo, Japan
Volume :
5
Issue :
2
fYear :
1999
Firstpage :
360
Lastpage :
367
Abstract :
Optical interconnection between the nodes of the RWC-1 massively parallel computer has been implemented. A one-node testbed system and an eight-node parallel processing system have been produced to demonstrate large-throughput small-skew low-latency and highly reliable optical internode connection. Each node was interconnected through dc-coupled 24-bit synchronized parallel optical interconnection at 100 MHz using 50-m-long single-mode ribboned fibers. The skew in a 24-bit data signal was suppressed to within 650 to -380 ps, and the OE/EO conversion delay time was 15.2 ns. We ran a parallel-processing program on the eight-node system as an evaluation, and the 50-m-long optically interconnected system performed as well as a 10-m-long electrically interconnected system. This clearly shows that optical interconnection will overcome the communication bottleneck in multinode computer systems
Keywords :
optical computing; optical interconnections; parallel architectures; reliability; 10 m; 15.2 ns; 24-bit data signal; 50 m; 650 to 380 ps; OE/EO conversion delay time; RWC-1 massively parallel computer; communication bottleneck; dc-coupled 24-bit synchronized parallel optical interconnection; eight-node parallel processing system; eight-node system; electrically interconnected system; highly reliable optical internode connection; large-throughput small-skew low-latency; multinode computer systems; one-node testbed system; optical interconnection subsystem; optically interconnected system; single-mode ribboned fibers; Concurrent computing; Delay effects; Interconnected systems; Optical computing; Optical fiber testing; Optical interconnections; Parallel processing; Performance evaluation; Radio access networks; System testing;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/2944.778322
Filename :
778322
Link To Document :
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