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Pruning via Merging: Compressing LLMs via Manifold Alignment Based Layer Merging

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arxiv 2406.16330 v2 pith:UP7OHPXH submitted 2024-06-24 cs.CL cs.AI

Pruning via Merging: Compressing LLMs via Manifold Alignment Based Layer Merging

classification cs.CL cs.AI
keywords compressionllmsmodelmergingperformancepruningachievesalignment
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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While large language models (LLMs) excel in many domains, their complexity and scale challenge deployment in resource-limited environments. Current compression techniques, such as parameter pruning, often fail to effectively utilize the knowledge from pruned parameters. To address these challenges, we propose Manifold-Based Knowledge Alignment and Layer Merging Compression (MKA), a novel approach that uses manifold learning and the Normalized Pairwise Information Bottleneck (NPIB) measure to merge similar layers, reducing model size while preserving essential performance. We evaluate MKA on multiple benchmark datasets and various LLMs. Our findings show that MKA not only preserves model performance but also achieves substantial compression ratios, outperforming traditional pruning methods. Moreover, when coupled with quantization, MKA delivers even greater compression. Specifically, on the MMLU dataset using the Llama3-8B model, MKA achieves a compression ratio of 43.75% with a minimal performance decrease of only 2.82\%. The proposed MKA method offers a resource-efficient and performance-preserving model compression technique for LLMs.

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Forward citations

Cited by 2 Pith papers

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

  1. Understanding Performance Collapse in Layer-Pruned Large Language Models via Decision Representation Transitions

    cs.CL 2026-05 unverdicted novelty 7.0

    Performance collapse in layer-pruned LLMs stems from disrupting the Silent Phase of decision-making, which blocks the transition to correct predictions, while the later Decisive Phase is robust to pruning.

  2. Why and When Visual Token Pruning Fails? A Study on Relevant Visual Information Shift in MLLMs Decoding

    cs.CV 2026-04 unverdicted novelty 7.0

    Visual token pruning in MLLMs fails on complex reasoning due to Relevant Visual Information Shift during decoding, but the DSTP framework fixes it training-free across models.