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Balancing Efficiency and Effectiveness: An LLM-Infused Approach for Optimized CTR Prediction

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arxiv 2412.06860 v2 pith:53QGWBH5 submitted 2024-12-09 cs.LG cs.AI

classification cs.LGcs.AI
keywords semanticinformationdeepeffectivenessapproachmodelmodelsprediction
verification ladder T0 review T1 audit T2 compute T3 formal
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Click-Through Rate (CTR) prediction is essential in online advertising, where semantic information plays a pivotal role in shaping user decisions and enhancing CTR effectiveness. Capturing and modeling deep semantic information, such as a user's preference for "H\"aagen-Dazs' HEAVEN strawberry light ice cream" due to its health-conscious and premium attributes, is challenging. Traditional semantic modeling often overlooks these intricate details at the user and item levels. To bridge this gap, we introduce a novel approach that models deep semantic information end-to-end, leveraging the comprehensive world knowledge capabilities of Large Language Models (LLMs). Our proposed LLM-infused CTR prediction framework(Multi-level Deep Semantic Information Infused CTR model via Distillation, MSD) is designed to uncover deep semantic insights by utilizing LLMs to extract and distill critical information into a smaller, more efficient model, enabling seamless end-to-end training and inference. Importantly, our framework is carefully designed to balance efficiency and effectiveness, ensuring that the model not only achieves high performance but also operates with optimal resource utilization. Online A/B tests conducted on the Meituan sponsored-search system demonstrate that our method significantly outperforms baseline models in terms of Cost Per Mile (CPM) and CTR, validating its effectiveness, scalability, and balanced approach in real-world applications.

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Cited by 1 Pith paper

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  1. GORACS: Group-level Optimal Transport-guided Coreset Selection for LLM-based Recommender Systems

    cs.IR 2025-06 conditional novelty 6.0 of 10

    GORACS selects small groups of fine-tuning examples via an optimal-transport and gradient-norm proxy objective, outperforming prior coreset methods for LLM-based recommendation.

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