Spiking Transformer: Introducing Accurate Addition-Only Spiking Self-Attention for Transformer
Yufei Guo, Xiaode Liu, Yuanpei Chen, Weihang Peng, Yuhan Zhang, Zhe Ma
摘要
Transformers have demonstrated outstanding performance across a wide range of tasks, owing to their selfattention mechanism, but they are highly energy-consuming. Spiking Neural Networks have emerged as a promising energy-efficient alternative to traditional Artificial Neural Networks, leveraging event-driven computation and binary spikes for information transfer. The combination of Transformers' capabilities with the energy efficiency of SNNs offers a compelling opportunity. This paper addresses the challenge of adapting the self-attention mechanism of Transformers to the spiking paradigm by introducing a novel approach: Accurate Addition-Only Spiking Self-Attention (A 2 OS 2 A). Unlike existing methods that rely solely on binary spiking neurons for all components of the self-attention mechanism, our approach integrates binary, ReLU, and ternary spiking neurons. This hybrid strategy significantly improves accuracy while preserving non-multiplicative computations. Moreover, our method eliminates the need for softmax and scaling operations. Extensive experiments show that the A 2 OS 2 A-based Spiking Transformer outperforms existing SNN-based Transformers on several datasets, even achieving an accuracy of 78.66% on ImageNet-1K. Our work represents a significant advancement in SNN-based Transformer models, offering a more accurate and efficient solution for real-world applications.
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引用它的顶会 Paper7
- MI-TRQR: Mutual Information-Based Temporal Redundancy Quantification and Reduction for Energy-Efficient Spiking Neural NetworksDengfeng Xue, Wenjuan Li, Yifan Lu, Chunfeng Yuan 等NeurIPS 2025
- Robust Spiking Neural Networks by Temporal Mutual InformationMengting Xu, Shi Gu, Peng Lin, De Ma 等CVPR 2026
- ReverB-SNN: Reversing Bit of the Weight and Activation for Spiking Neural NetworksYufei Guo, Yuhan Zhang, Jie Zhou, Xiaode Liu 等ICML 2025
- Temporal Interaction in Spiking Transformers with Multi-Delay MixerKexin Shi, Hanwen Liu, Zeyang Song, Yang Liu 等CVPR 2026
- Kronecker Generative Networks: A General Neural Architecture for Parameter-Efficient Learning Across Classification TasksYang Yang, Zhengmin Kong, Yuan Liu, Tao Huang 等ICML 2026
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