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Parallel implementation of back-propagation algorithm in networks of workstations

机译:工作站网络中反向传播算法的并行实现

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This work presents an efficient mapping scheme for the multilayer perceptron (MLP) network trained using back-propagation (BP) algorithm on network of workstations (NOWs). Hybrid partitioning (HP) scheme is used to partition the network and each partition is mapped on to processors in NOWs. We derive the processing time and memory space required to implement the parallel BP algorithm in NOWs. The performance parameters like speed-up and space reduction factor are evaluated for the HP scheme and it is compared with earlier work involving vertical partitioning (VP) scheme for mapping the MLP on NOWs. The performance of the HP scheme is evaluated by solving optical character recognition (OCR) problem in a network of ALPHA machines. The analytical and experimental performance shows that the proposed parallel algorithm has better speed-up, less communication time, and better space reduction factor than the earlier algorithm. This work also presents a simple and efficient static mapping scheme on heterogeneous system. Using divisible load scheduling theory, a closed-form expression for number of neurons assigned to each processor in the NOW is obtained. Analytical and experimental results for static mapping problem on NOWs are also presented.
机译:这项工作为工作站(NOW)的网络上使用反向传播(BP)算法训练的多层感知器(MLP)网络提供了一种有效的映射方案。混合分区(HP)方案用于对网络进行分区,并且每个分区都映射到NOW中的处理器上。我们得出了在NOW中实现并行BP算法所需的处理时间和存储空间。针对HP方案评估了诸如加速和空间缩减因子之类的性能参数,并将其与涉及垂直分区(VP)方案的早期工作进行了比较,该方案用于将MLP映射到NOW。通过解决ALPHA机器网络中的光学字符识别(OCR)问题,可以评估HP方案的性能。分析和实验性能表明,与早期算法相比,所提出的并行算法具有更快的速度,更少的通信时间和更小的空间缩减因子。这项工作还提出了一种简单有效的异构系统上的静态映射方案。使用可分负荷调度理论,可以获得NOW中分配给每个处理器的神经元数量的闭式表达式。还提供了NOW上静态映射问题的分析和实验结果。

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