Permutation Capability of Optical Multistage Interconnection Networks
نویسندگان
چکیده
In this paper, we study optical multistage interconnection networks (MINs). Advances in electro-optic technologies have made optical communication a promising networking choice to meet the increasing demands for high channel bandwidth and low communication latency of high-performance computing/communication applications. Although optical MINs hold great promise and have demonstrated advantages over their electronic counterpart, they also hold their own challenges. Due to the unique properties of optics, crosstalk in optical switches should be avoided to make them work properly. Most of the research work described in the literature are for electronic MINs, and hence, crosstalk is not considered. In this paper, we introduce a new concept, semipermutation, to analyze the permutation capability of optical MINs under the constraint of avoiding crosstalk, and apply it to two examples of optical MINs, banyan network and Benes network. For the blocking banyan network, we show that not all semi-permutationsare realizable in one pass, and give the number of realizable semi-permutations. For the rearrangeable Benes network, we show that any semi-permutation is realizable in one pass and any permutation is realizable in two passes under the constraint of avoiding crosstalk. A routing algorithmfor realizing a semi-permutation in a Benes network is also presented. With the speed and bandwidthprovided by current optical technology, an optical MIN clearly demonstrates a superior overall performance over its electronic MIN counterpart. Research supported by the U.S. Army Research Office under Grant No. DAAH04-96-1-0234 and by the National Science Foundation under Grant No. OSR-9350540 and MIP-9522532. Research supported by the National Science Foundation under Grant No. CCR-9211621 and CCR-9503882.
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Permutation Capability of Optical Multistage Interconnect Networks
In this paper, we study optical multistage interconnection networks (MINs). Advances in electro-optic technologies have made optical communication a promising networking choice to meet the increasing demands of high-performance computing communication applications for high channel bandwidth and low communication latency. Although optical MINs hold great promise and have demonstrated advantages ...
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