RecGPT-V3 Technical Report
Abstract
Large language models (LLMs) are transforming recommender systems from matching co-occurrence patterns in historical behavior toward reasoning about the intent that drives it. RecGPT-V1 pioneered this paradigm on Taobao by centering user understanding, and RecGPT-V2 scaled it via coordinated multi-agent reasoning; both are deployed in production with consistent gains in user experience and commercial outcomes. However, operating RecGPT at scale reveals three challenges: (1) stateless behavior modeling, where each request reprocesses full user history, wasting computation and discarding prior analysis; (2) a tag-to-item information bottleneck, where natural-language tags form a lossy channel between user understanding and item grounding; and (3) inefficient explicit reasoning, whose lengthy chain-of-thought incurs untenable latency and compute overhead. We present RecGPT-V3, a stateful, hybrid-modal recommender that reasons over natural language for open-world knowledge and Semantic IDs (SIDs) for concrete item grounding. A Memory Hub maintains structured, continually evolving user memory that distills long-horizon behavior into condensed units, cutting user-modeling computation by 55.8%. A Hybrid-modal Foundation Model allows the LLM jointly reason over text tags and SIDs, opening a high-bandwidth channel into the item space. Latent Intent Reasoning internalizes verbose rationales into compact learnable latent tokens that remain decodable into readable explanations, lowering output token cost by 200x. Deployed in Taobao's "Guess What You Like" feed, RecGPT-V3 achieves consistent gains in large-scale online A/B tests: IPV +1.28%, CTR +1.00%, TC +1.97%, GMV +3.97%, while cutting end-to-end serving resource consumption by 52.4%.
Cite
@article{arxiv.2607.15591,
title = {RecGPT-V3 Technical Report},
author = {Bowen Zheng and Chao Yi and Dian Chen and Gaoyang Guo and Han Zhu and Jiakai Tang and Jian Wu and Mao Zhang and Wen Chen and Yifan Lu and Yujie Luo and Yuning Jiang and Zhujin Gao and Bo Zheng and Dixuan Wang and Hao Fang and Jiancai Liu and Jing Yu and Ke Chen and Kewei Zhu and Mingke Xu and Wenjun Yang and Xunke Xi and Zile Zhou},
journal= {arXiv preprint arXiv:2607.15591},
year = {2026}
}
Comments
Technique Report