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Algorithmic mapping of feedforward neural networks onto multiple bus systems

机译:前馈神经网络到多总线系统的算法映射

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This paper addresses the problem of mapping a feedforward ANN onto a multiple bus system, MBS, with p processors and b buses so as to minimize the total execution time. We present an algorithm which assigns the nodes of a given computational layer (c-layer) to processors such that the computation lower bound [N/sup l//p]t/sub p//sup l/ and the communication lower bound [N/sup l//b]t/sub c/ are achieved simultaneously, where N/sup l/ is the number of nodes in the mapped c-layer l and t/sub p//sup l/ and t/sub c/ are the computation and communication times, respectively, associated with a node in the layer. When computation and communication are not overlapped, we show that the optimal number of processors needed is either 1 or p, depending on the ratio t/sub p//sup l//t/sub c/. When computation and communication are overlapped, we show that the optimal number of processors needed is either 1 or ([t/sub p//sup l//t/sub c/])b. We show that there is a unique arrangement of interfaces such that the total number of interfaces is minimum and the optimal time is reached. Finally, we compare the relative merits of the MBS simulating ANNs over the recently introduced checkerboarding scheme.
机译:本文解决了将前馈ANN映射到具有p个处理器和b个总线的多总线系统MBS上的问题,以最大程度地减少总执行时间。我们提出了一种算法,该算法将给定计算层(c层)的节点分配给处理器,以使计算下限[N / sup l // p] t / sub p // sup l /和通信下限[同时获得N / sup l // b] t / sub c /,其中N / sup l /是映射的c层l和t / sub p // sup l /和t / sub c中的节点数分别是与该层中的节点关联的计算和通信时间。当计算和通信不重叠时,我们表明所需的最佳处理器数量是1或p,具体取决于比率t / sub p // sup l // t / sub c /。当计算和通信重叠时,我们表明所需的最佳处理器数量是1或([t / sub p // sup l // t / sub c /])b。我们显示出接口的独特排列,这样接口的总数最少,并且可以达到最佳时间。最后,我们比较了MBS模拟ANN与最近推出的棋盘格计划的相对优势。

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