S$^2$GR: Stepwise Semantic-Guided Reasoning in Latent Space for Generative Recommendation
Abstract
Generative Recommendation (GR) has emerged as a transformative paradigm with its end-to-end generation advantages. However, existing GR methods primarily focus on direct Semantic ID (SID) generation from interaction sequences, failing to activate deeper reasoning capabilities analogous to those in large language models and thus limiting performance potential. We identify two critical limitations in current reasoning-enhanced GR approaches: (1) Strict sequential separation between reasoning and generation steps creates imbalanced computational focus across hierarchical SID codes, degrading quality for SID codes; (2) Generated reasoning vectors lack interpretable semantics, while reasoning paths suffer from unverifiable supervision. In this paper, we propose stepwise semantic-guided reasoning in latent space (SGR), a novel reasoning enhanced GR framework. First, we establish a robust semantic foundation via codebook optimization, integrating item co-occurrence relationship to capture behavioral patterns, and load balancing and uniformity objectives that maximize codebook utilization while reinforcing coarse-to-fine semantic hierarchies. Our core innovation introduces the stepwise reasoning mechanism inserting thinking tokens before each SID generation step, where each token explicitly represents coarse-grained semantics supervised via contrastive learning against ground-truth codebook cluster distributions ensuring physically grounded reasoning paths and balanced computational focus across all SID codes. Extensive experiments demonstrate the superiority of SGR, and online A/B test confirms efficacy on large-scale industrial short video platform.
Cite
@article{arxiv.2601.18664,
title = {S$^2$GR: Stepwise Semantic-Guided Reasoning in Latent Space for Generative Recommendation},
author = {Zihao Guo and Jian Wang and Ruxin Zhou and Youhua Liu and Jiawei Guo and Jun Zhao and Xiaoxiao Xu and Yongqi Liu and Kaiqiao Zhan},
journal= {arXiv preprint arXiv:2601.18664},
year = {2026}
}
Comments
Accepted by KDD 2026