Hybrid Temporal-8-Bit Spike Coding for Spiking Neural Network Surrogate Training

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Hauptverfasser: Nhan, Luu Trong, Duong, Luu Trung, Nam, Pham Ngoc, Thang, Truong Cong
Format: Preprint
Veröffentlicht: 2025
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author Nhan, Luu Trong
Duong, Luu Trung
Nam, Pham Ngoc
Thang, Truong Cong
author_facet Nhan, Luu Trong
Duong, Luu Trung
Nam, Pham Ngoc
Thang, Truong Cong
contents Spiking neural networks (SNNs) have emerged as a promising direction in both computational neuroscience and artificial intelligence, offering advantages such as strong biological plausibility and low energy consumption on neuromorphic hardware. Despite these benefits, SNNs still face challenges in achieving state-of-the-art performance on vision tasks. Recent work has shown that hybrid rate-temporal coding strategies (particularly those incorporating bit-plane representations of images into traditional rate coding schemes) can significantly improve performance when trained with surrogate backpropagation. Motivated by these findings, this study proposes a hybrid temporal-bit spike coding method that integrates bit-plane decompositions with temporal coding principles. Through extensive experiments across multiple computer vision benchmarks, we demonstrate that blending bit-plane information with temporal coding yields competitive, and in some cases improved, performance compared to established spike-coding techniques. To the best of our knowledge, this is the first work to introduce a hybrid temporal-bit coding scheme specifically designed for surrogate gradient training of SNNs.
format Preprint
id arxiv_https___arxiv_org_abs_2512_03879
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hybrid Temporal-8-Bit Spike Coding for Spiking Neural Network Surrogate Training
Nhan, Luu Trong
Duong, Luu Trung
Nam, Pham Ngoc
Thang, Truong Cong
Neural and Evolutionary Computing
Spiking neural networks (SNNs) have emerged as a promising direction in both computational neuroscience and artificial intelligence, offering advantages such as strong biological plausibility and low energy consumption on neuromorphic hardware. Despite these benefits, SNNs still face challenges in achieving state-of-the-art performance on vision tasks. Recent work has shown that hybrid rate-temporal coding strategies (particularly those incorporating bit-plane representations of images into traditional rate coding schemes) can significantly improve performance when trained with surrogate backpropagation. Motivated by these findings, this study proposes a hybrid temporal-bit spike coding method that integrates bit-plane decompositions with temporal coding principles. Through extensive experiments across multiple computer vision benchmarks, we demonstrate that blending bit-plane information with temporal coding yields competitive, and in some cases improved, performance compared to established spike-coding techniques. To the best of our knowledge, this is the first work to introduce a hybrid temporal-bit coding scheme specifically designed for surrogate gradient training of SNNs.
title Hybrid Temporal-8-Bit Spike Coding for Spiking Neural Network Surrogate Training
topic Neural and Evolutionary Computing
url https://arxiv.org/abs/2512.03879