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October 19, 20250 citationsOpen Access

Does Knowledge Distillation Matter for Large Language Model based Bundle Generation?

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KFKaidong FengSingapore University of Technology and DesignZSZhu SunSingapore University of Technology and DesignJYJie YangHebei Agricultural University

Key Points

  • Knowledge distillation significantly enhances efficiency while maintaining performance in LLM-based bundle generation.
  • Experiments reveal that knowledge format and quantity are pivotal in influencing performance outcomes and computational demands.
  • The proposed framework combines methods like in-context learning with knowledge distillation to cater to domain-specific adaptations.
  • Findings support the notion that distinct techniques for leveraging distilled knowledge lead to substantial improvements in efficiency.

Abstract

LLMs are increasingly explored for bundle generation, thanks to their reasoning capabilities and knowledge. However, deploying large-scale LLMs introduces significant efficiency challenges, primarily high computational costs during fine-tuning and inference due to their massive parameterization. Knowledge distillation (KD) offers a promising solution, transferring expertise from large teacher models to compact student models. This study systematically investigates knowledge distillation approaches for bundle generation, aiming to minimize computational demands while preserving performance. We explore three critical research questions: (1) how does the format of KD impact bundle generation performance? (2) to what extent does the quantity of distilled knowledge influence performance? and (3) how do different ways of utilizing the distilled knowledge affect performance? We propose a comprehensive KD framework that (i) progressively extracts knowledge (patterns, rules, deep thoughts); (ii) captures varying quantities of distilled knowledge through different strategies; and (iii) exploits complementary LLM adaptation techniques (in-context learning, supervised fine-tuning, combination) to leverage distilled knowledge in small student models for domain-specific adaptation and enhanced efficiency. Extensive experiments provide valuable insights into how knowledge format, quantity, and utilization methodologies collectively shape LLM-based bundle generation performance, exhibiting KD's significant potential for more efficient yet effective LLM-based bundle generation.

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Cite This Study

Feng et al. (2025) studied this question.

synapsesocial.com/papers/68f43f92854d1061a58acb20https://doi.org/10.48550/arxiv.2504.17220
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