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2014 IEEE Symposium on Intelligent Embedded Systems (IES)最新文献

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High precision FPGA implementation of neural network activation functions 高精度的FPGA实现神经网络激活函数
Pub Date : 2014-12-01 DOI: 10.1109/INTELES.2014.7008986
Francisco Ortega-Zamorano, J. M. Jerez, Gustavo Juárez, Jorge O. Perez, L. Franco
The efficient implementation of artificial neural networks in FPGA boards requires tackling several issues that strongly affect the final result. One of these issues is the computation of the neuron's activation function. In this work, a detailed analysis of the FPGA implementations of the Sigmoid and Exponential functions is carried out, in a approach combining a lookup table with a linear interpolation procedure. Further, to optimize board resources utilization, a time division multiplexing of the multiplier attached to the neurons was used. The results are evaluated in terms of the absolute and relative errors obtained and also through measuring a quality factor and the resource utilization, showing a clear improvement in relationship to previously published works.
人工神经网络在FPGA板上的有效实现需要解决几个强烈影响最终结果的问题。其中一个问题是神经元激活函数的计算。在这项工作中,对Sigmoid和指数函数的FPGA实现进行了详细的分析,采用了将查找表与线性插值程序相结合的方法。此外,为了优化电路板资源利用率,使用了附加在神经元上的乘法器的时分复用。根据获得的绝对误差和相对误差,以及通过测量质量因子和资源利用率来评估结果,显示出与先前发表的作品相比有明显改善。
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引用次数: 25
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2014 IEEE Symposium on Intelligent Embedded Systems (IES)
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