Scalable network emulation on analog neuromorphic hardware.

IF 3.2 3区 医学 Q2 NEUROSCIENCES Frontiers in Neuroscience Pub Date : 2025-02-05 eCollection Date: 2024-01-01 DOI:10.3389/fnins.2024.1523331
Elias Arnold, Philipp Spilger, Jan V Straub, Eric Müller, Dominik Dold, Gabriele Meoni, Johannes Schemmel
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Abstract

We present a novel software feature for the BrainScaleS-2 accelerated neuromorphic platform that facilitates the partitioned emulation of large-scale spiking neural networks. This approach is well suited for deep spiking neural networks and allows for sequential model emulation on undersized neuromorphic resources if the largest recurrent subnetwork and the required neuron fan-in fit on the substrate. We demonstrate the training of two deep spiking neural network models-using the MNIST and EuroSAT datasets-that exceed the physical size constraints of a single-chip BrainScaleS-2 system. The ability to emulate and train networks larger than the substrate provides a pathway for accurate performance evaluation in planned or scaled systems, ultimately advancing the development and understanding of large-scale models and neuromorphic computing architectures.

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基于模拟神经形态硬件的可扩展网络仿真。
我们为BrainScaleS-2加速神经形态平台提出了一种新的软件功能,该功能促进了大规模尖峰神经网络的分区仿真。这种方法非常适合于深度尖峰神经网络,并且如果最大的循环子网络和所需的神经元扇入适合于基底,则允许在较小的神经形态资源上进行顺序模型仿真。我们演示了两个深度尖峰神经网络模型的训练-使用MNIST和EuroSAT数据集-超过了单芯片brainscale -2系统的物理尺寸限制。模拟和训练比基板更大的网络的能力为在计划或缩放系统中进行准确的性能评估提供了途径,最终推动了大规模模型和神经形态计算架构的发展和理解。
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来源期刊
Frontiers in Neuroscience
Frontiers in Neuroscience NEUROSCIENCES-
CiteScore
6.20
自引率
4.70%
发文量
2070
审稿时长
14 weeks
期刊介绍: Neural Technology is devoted to the convergence between neurobiology and quantum-, nano- and micro-sciences. In our vision, this interdisciplinary approach should go beyond the technological development of sophisticated methods and should contribute in generating a genuine change in our discipline.
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