Accurate and Efficient Event-Based Semantic Segmentation Using Adaptive Spiking Encoder–Decoder Network

  • Rui Zhang
  • , Luziwei Leng
  • , Kaiwei Che
  • , Hu Zhang
  • , Jie Cheng
  • , Qinghai Guo
  • , Jianxing Liao
  • , Ran Cheng

Research output: Journal article publicationJournal articleAcademic researchpeer-review

Abstract

Spiking neural networks (SNNs), known for their low-power, event-driven computation, and intrinsic temporal dynamics, are emerging as promising solutions for processing dynamic, asynchronous signals from event-based sensors. Despite their potential, SNNs face challenges in training and architectural design, resulting in limited performance in challenging event-based dense prediction tasks compared with artificial neural networks (ANNs). In this work, we develop an efficient spiking encoder-decoder network (SpikingEDN) for large-scale event-based semantic segmentation (EbSS) tasks. To enhance the learning efficiency from dynamic event streams, we harness the adaptive threshold which improves network accuracy, sparsity, and robustness in streaming inference. Moreover, we develop a dual-path spiking spatially adaptive modulation (SSAM) module, which is specifically tailored to enhance the representation of sparse events and multimodal inputs, thereby considerably improving network performance. Our SpikingEDN attains a mean intersection over union (MIoU) of 72.57% on the DDD17 dataset and 58.32% on the larger DSEC-Semantic dataset, showing competitive results to the state-of-the-art ANNs while requiring substantially fewer computational resources. Our results shed light on the untapped potential of SNNs in event-based vision applications.

Original languageEnglish
Pages (from-to)9326-9340
Number of pages15
JournalIEEE Transactions on Neural Networks and Learning Systems
Volume36
Issue number5
DOIs
Publication statusPublished - Aug 2024
Externally publishedYes

Keywords

  • Event-based vision
  • semantic segmentation
  • spiking neural network (SNN)

ASJC Scopus subject areas

  • Software
  • Computer Science Applications
  • Computer Networks and Communications
  • Artificial Intelligence

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