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通过分区间移位实现高效ANN-SNN转换
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作者 黄志鹏 《福建电脑》 2024年第12期8-13,共6页
SNN因其在神经形态芯片中的高能效优势而受到广泛关注。ANN-SNN转换是实现深度SNN的主流方法之一,但在极低延迟下,死神经元脉冲误差导致目标SNN与源ANN之间存在性能差距。为解决死神经元脉冲误差,实现高性能低延迟SNN,本文提出了一种分... SNN因其在神经形态芯片中的高能效优势而受到广泛关注。ANN-SNN转换是实现深度SNN的主流方法之一,但在极低延迟下,死神经元脉冲误差导致目标SNN与源ANN之间存在性能差距。为解决死神经元脉冲误差,实现高性能低延迟SNN,本文提出了一种分区间移位激活函数,用于替代传统的ReLU激活函数。实验结果表明,在CIFAR-10数据集上,本文方法得到的SNN仅需4个时间步即可达到94.78%的Top-1准确率。 展开更多
关键词 脉冲神经网络 ANN-SNN转换 分区间移位 ReLU激活函数
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Adaptive Spatial-division Split-step Fourier Migration Method
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作者 赵景霞 张叔伦 +1 位作者 王昌龙 倪逸 《Applied Geophysics》 SCIE CSCD 2005年第2期75-79,i0001,共6页
This paper presents a new depth migration method, adaptive spatial-division split-step Fourier (ASDSSF) migration. In this method we introduce the idea of a stratified phase shift migration into the split-step Fouri... This paper presents a new depth migration method, adaptive spatial-division split-step Fourier (ASDSSF) migration. In this method we introduce the idea of a stratified phase shift migration into the split-step Fourier (SSF) migration to make an accurate and efficient wave field image when sharp discontinuities appear in the velocity field. In principle, the ASDSSF migration is a multi-reference slowness (reciprocal of velocity) (MRS) migration. Compared to previous MRS migration methods, this method uses fewer reference slowness values without accuracy loss. The reference slowness is determined in this paper according to an error-control parameter of the perturbation term in the SSF operator and the variation of the complet velocity field. The velocity corresponded to reference slowness can define a spatial division. Each division can also be divided into several discontinuous spatial subdivisions to effectively reduce the number of reference slowness values needed. The choice of reference slowness, including the number of reference slowness values needed and how to construct the spatial divisions, is adaptive and reasonable at each extrapolation step (depth step). A simple and economical smoothing filter in the wave number-frequency domain is designed to avoid artifacts in the wave field extrapolation due to the presence of sharp discontinuities in the velocity field. For comparable conditions the present approach to migration is expected to be computationally more efficient and accurate than other MRS migration methods. The performance of the method is demonstrated on a simple 2D prestack model and the prestack SEG/EAEG salt dataset. 展开更多
关键词 MIGRATION spatial-division multi reference slowness ADAPTIVE and sharp discontinuity
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