Title :
Fault-tolerance schemes for WDM-based multiprocessor networks
Author :
Lalwaney, Poornima ; Koren, Israel
Author_Institution :
Dept. of Electr. & Comput. Eng., Massachusetts Univ., Amherst, MA, USA
Abstract :
Due to the difference in implementing network topologies in the optical and electronic domain, schemes to tolerate link failures in electronic implementations may not be the most efficient ones for optical implementations of multiprocessor networks. Rerouting messages along alternate paths in the network topology is commonly used in electronically implemented networks to tolerate link failures. We propose two schemes that use the properties of wavelength division multiplexing to tolerate link failures in optically interconnected multiprocessor networks. These are referred to as wavelength reassignment and time division multiplexing. We show that optically implemented networks have better fault tolerance properties than electronic ones
Keywords :
fault tolerant computing; multiprocessor interconnection networks; optical interconnections; time division multiplexing; wavelength division multiplexing; WDM based multiprocessor networks; WDM-based multiprocessor networks; electronic implementations; electronically implemented networks; fault tolerance properties; fault tolerance schemes; fault-tolerance schemes; link failure; multiprocessor networks; network topology; optical implementations; optically implemented networks; optically interconnected multiprocessor networks; time division multiplexing; wavelength division multiplexing; wavelength reassignment; Bandwidth; Fault tolerance; Network topology; Optical fiber LAN; Optical fiber devices; Optical fiber networks; Optical interconnections; Optical receivers; Optical transmitters; Wavelength division multiplexing;
Conference_Titel :
Massively Parallel Processing Using Optical Interconnections, 1995., Proceedings of the Second International Conference on
Conference_Location :
San Antonio, TX
Print_ISBN :
0-8186-7101-7
DOI :
10.1109/MPPOI.1995.528632