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Efficient Parallel Algorithm for Mapping LaGrange's Interpolation on OTIS and BSN Hyper Hexa-Cell

机译:在OTIS和BSN超六边形单元上映射LaGrange插值的高效并行算法

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The asymmetrical Optical Transpose Interconnection Systems (OTIS) and the symmetrical Bi Swapped Network (BSN) are two important family of optoelectronic interconnection networks. This paper deals with the efficient mapping of LaGrange's Interpolation on the variation of OTIS named OTIS Hyper Hexa Cell (OTIS HHC) and the recently reported variation of Bi Swapped Network named Bi Swapped Network Hyper Hexa Cell (BSN HHC). On dh dimensional OTIS Hyper Hexa Cell, 3 dh plus 5 electronic and 2 optical moves is required, whereas dh dimensional Bi Swapped Network Hyper Hexa Cell demands 6 dh plus 8 electronic and 4 optical moves. In later section of the paper, we measure performance of both networks by comparing and analyzing electronic and optical moves.
机译:非对称光学换位互连系统(OTIS)和对称双交换网络(BSN)是光电互连网络的两个重要家族。本文研究了LaGrange插值在OTIS变种OTIS超六边形细胞(OTIS HHC)和最近报道的Bi Swapped Network变种Bi Swapped Network Hyper Hexa Cell(BSN HHC)上的有效映射。在d h 三维OTIS超六边形细胞,3 d h 加上5次电子移动和2次光学移动,而d h 维双交换网络超六边形单元需求6 d h 加上8个电子和4个光学动作。在本文的后面部分,我们通过比较和分析电子和光学移动来测量两个网络的性能。

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