Title :
Link allocation in point-to-point multicomputer networks
Author :
Midkiff, Scott F.
Author_Institution :
Bradley Dept. of Electr. Eng., Virginia Polytech. Inst. & State Univ., Blacksburg, VA, USA
Abstract :
The allocation of physical links to implement channels between nodes in multicomputer networks that use a point-to-point interconnection topology is examined. There are three basic link allocation options available in the design of the multicomputer: provide half-duplex channels using one link per channel, provide full-duplex channels using two links per channels, or augment the network using additional links as half-duplex channels. The author focuses on the impact of three allocation options on performance, especially the source-to-destination message-transfer delay. Existing performance models are generalized to model both full-duplex and half-duplex channels. The model is applied to the two-dimensional torus and binary hypercube networks. Full-duplex channels significantly reduce delay in the torus, but only marginally reduce delay in the hypercube. A modified hypercube uses additional half-duplex channels to substantially reduce delay
Keywords :
delays; multiprocessor interconnection networks; performance evaluation; binary hypercube networks; full-duplex channels; half-duplex channels; link allocation; performance models; point-to-point interconnection topology; point-to-point multicomputer networks; source-to-destination message-transfer delay; two-dimensional torus; Communication system control; Costs; Delay systems; Hypercubes; Intelligent networks; Network topology; Parallel processing; Routing; System performance; Telecommunication traffic;
Conference_Titel :
Computers and Communications, 1988. Conference Proceedings., Seventh Annual International Phoenix Conference on
Conference_Location :
Scottsdale, AZ
Print_ISBN :
0-8186-0830-7
DOI :
10.1109/PCCC.1988.10098