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SpikeGPT: Generative Pre-trained Language Model with Spiking Neural Networks

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arxiv 2302.13939 v5 pith:WCKJZ6VB submitted 2023-02-27 cs.CL cs.LGcs.NE

classification cs.CLcs.LGcs.NE
keywords modellanguagespikegptsnnscomputationalevent-drivenmodelsspiking
verification ladder T0 review T1 audit T2 compute T3 formal
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As the size of large language models continue to scale, so does the computational resources required to run it. Spiking Neural Networks (SNNs) have emerged as an energy-efficient approach to deep learning that leverage sparse and event-driven activations to reduce the computational overhead associated with model inference. While they have become competitive with non-spiking models on many computer vision tasks, SNNs have also proven to be more challenging to train. As a result, their performance lags behind modern deep learning, and we are yet to see the effectiveness of SNNs in language generation. In this paper, inspired by the Receptance Weighted Key Value (RWKV) language model, we successfully implement `SpikeGPT', a generative language model with binary, event-driven spiking activation units. We train the proposed model on two model variants: 45M and 216M parameters. To the best of our knowledge, SpikeGPT is the largest backpropagation-trained SNN model to date, rendering it suitable for both the generation and comprehension of natural language. We achieve this by modifying the transformer block to replace multi-head self attention to reduce quadratic computational complexity O(N^2) to linear complexity O(N) with increasing sequence length. Input tokens are instead streamed in sequentially to our attention mechanism (as with typical SNNs). Our preliminary experiments show that SpikeGPT remains competitive with non-spiking models on tested benchmarks, while maintaining 20x fewer operations when processed on neuromorphic hardware that can leverage sparse, event-driven activations. Our code implementation is available at https://github.com/ridgerchu/SpikeGPT.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The Sparsity Ceiling: Where Spiking Networks Can and Cannot Trade Activity for Energy

    cs.NE 2026-07 conditional novelty 6.0 of 10

    The sparsity dividend of spiking networks is task-dependent: perception and attention can run at 2–5% firing without quality loss, while recurrent sequence models are pinned near 50% firing.

  2. Neuromorphic Principles for Efficient Large Language Models on Intel Loihi 2

    cs.NE 2025-02 reject novelty 6.0 of 10

    A 370M MatMul-free LLM is mapped onto Intel Loihi 2 and reported to achieve up to 3x higher generation throughput with about 2x less energy than transformer LLMs on an edge GPU, based on preliminary measurements that ...

  3. HiBerNAC: Hierarchical Brain-emulated Robotic Neural Agent Collective for Disentangling Complex Manipulation

    cs.RO 2025-06 reject novelty 4.0 of 10

    HiBerNAC, a multi-agent 'brain-inspired' planner layered on a reactive VLA, is claimed to cut long-horizon task time by 23% and reach 12-31% success where VLA baselines fail, but the supporting data are inconsistent.

  4. Word2Spike: Poisson Rate Coding for Associative Memories and Neuromorphic Algorithms

    cs.NE 2025-09 reject novelty 2.0 of 10

    Word2Spike proposes a ternary quantization plus Poisson rate coding scheme for word embeddings, reporting 100% reconstruction on 10k words.

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