EDBT 2026 Demo / reviewers in the wild / expert
Jiani Huang 0001
dblp:233/8129-1
· DBLP profile ↗
5ranked-venue papers
2as first author
5since 2021 · last 2026
0000-0001-7016-982XORCID · verified
Domains — the database's venue-derived domains; a paper can count in several
Databases, data management, data science and information retrieval · 4 · 1 first-author · 4 since 2021Artificial intelligence and machine learning · 3 · 2 first-author · 3 since 2021Applied, interdisciplinary, general and emerging computing · 1 · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | ReRec: Reasoning-Augmented LLM-based Recommendation Assistant via Reinforcement Fine-tuningabstractWith the rise of LLMs, there is an increasing need for intelligent recommendation assistants that can handle complex queries and provide personalized, reasoning-driven recommendations.LLM-based recommenders show potential but face challenges in multi-step reasoning, underscoring the need for reasoningaugmented systems.To address this gap, we propose ReRec, a novel reinforcement finetuning (RFT) framework designed to improve LLM reasoning in complex recommendation tasks.Our framework introduces three key components: ( 1) Dual-Graph Enhanced Reward Shaping, integrating recommendation metrics like NDCG@K with Query Alignment and Preference Alignment Scores to provide fine-grained reward signals for LLM optimization; (2) Reasoning-aware Advantage Estimation, which decomposes LLM outputs into reasoning segments and penalizes incorrect steps to enhance reasoning of recommendation; and (3) Online Curriculum Scheduler, dynamically assess query difficulty and organize training curriculum to ensure stable learning during RFT.Experiments demonstrate that ReRec outperforms state-of-the-art baselines and preserves core abilities like instruction-following and general knowledge.Our codes are available at https://github.com/jiani-huang/ReRec. Jiani Huang 0001, Shijie Wang 0002, Liang-Bo Ning 0001, Wenqi Fan, Qing Li 0001 |
ACL (1) | 1 |
| 2026 | Towards Next-Generation Recommender Systems: A Benchmark for Personalized Recommendation Assistant with LLMsabstractRecommender systems (RecSys) are widely used across various modern digital platforms and have garnered significant attention. Traditional recommender systems usually focus only on fixed and simple recommendation scenarios, making it difficult to generalize to new and unseen recommendation tasks in an interactive paradigm. Recently, the advancement of large language models (LLMs) has revolutionized the foundational architecture of RecSys, driving their evolution into more intelligent and interactive personalized recommendation assistants. However, most existing studies rely on fixed task-specific prompt templates to generate recommendations and evaluate the performance of personalized assistants, which limits the comprehensive assessments of their capabilities. This is because commonly used datasets lack high-quality textual user queries that reflect real-world recommendation scenarios, making them unsuitable for evaluating LLM-based personalized recommendation assistants. To address this gap, we introduce RecBench+, a new dataset benchmark designed to assess LLMs' ability to handle intricate user recommendation needs in the era of LLMs. RecBench+ encompasses a diverse set of queries that span both hard conditions and soft preferences, with varying difficulty levels. We evaluated commonly used LLMs on RecBench+ and uncovered below findings: 1) LLMs demonstrate preliminary abilities to act as recommendation assistants, 2) LLMs are better at handling queries with explicitly stated conditions, while facing challenges with queries that require reasoning or contain misleading information. Our dataset has been released at https://github.com/jiani-huang/RecBenchPlus. Jiani Huang 0001, Shijie Wang 0002, Liang-Bo Ning 0001, Wenqi Fan, Shuaiqiang Wang, Dawei Yin 0001, Qing Li 0001 |
WSDM | 1 |
| 2025 | Space-aware Socioeconomic Indicator Inference with Heterogeneous GraphsabstractRegional socioeconomic indicators are critical across various domains, yet their acquisition can be costly. Inferring global socioeconomic indicators from a limited number of regional samples is essential for enhancing management and sustainability in urban areas and human settlements. Current inference methods typically rely on spatial interpolation based on the assumption of spatial continuity, which does not adequately address the complex variations present within regional spaces. In this paper, we present GeoHG, the first space-aware socioeconomic indicator inference method that utilizes a heterogeneous graph-based structure to represent geospace for non-continuous inference. Extensive experiments demonstrate the effectiveness of GeoHG in comparison to existing methods, achieving an R2 score exceeding 0.8 under extreme data scarcity with a masked ratio of 95%. The code and data are available at https://github.com/CityMind-Lab/GeoHG. Xingchen Zou, Jiani Huang 0001, Xixuan Hao, Yuhao Yang 0002, Haomin Wen, Chao Huang 0001, Chao Chen 0004, Yuxuan Liang 0002 |
SIGSPATIAL/GIS | 2 |
| 2025 | Graph Machine Learning in the Era of Large Language Models (LLMs)abstractGraphs play an important role in representing complex relationships in various domains like social networks, knowledge graphs, and molecular discovery. With the advent of deep learning, Graph Neural Networks (GNNs) have emerged as a cornerstone in Graph Machine Learning (Graph ML), facilitating the representation and processing of graphs. Recently, LLMs have demonstrated unprecedented capabilities in language tasks and are widely adopted in a variety of applications, such as computer vision and recommender systems. This remarkable success has also attracted interest in applying LLMs to the graph domain. Increasing efforts have been made to explore the potential of LLMs in advancing Graph ML’s generalization, transferability, and few-shot learning ability. Meanwhile, graphs, especially knowledge graphs, are rich in reliable factual knowledge, which can be utilized to enhance the reasoning capabilities of LLMs and potentially alleviate their limitations, such as hallucinations and the lack of explainability. Given the rapid progress of this research direction, a systematic review summarizing the latest advancements for Graph ML in the era of LLMs is necessary to provide an in-depth understanding to researchers and practitioners. Therefore, in this survey, we first review the recent developments in Graph ML. We then explore how LLMs can be utilized to enhance the quality of graph features, alleviate the reliance on labeled data, and address challenges such as graph Heterophily and Out-of-Distribution (OOD) generalization. Afterward, we delve into how graphs can enhance LLMs, highlighting their abilities to enhance LLM pre-training and inference. Furthermore, we investigate various applications and discuss the potential future directions in this promising field. Shijie Wang 0002, Jiani Huang 0001, Yu Song 0007, Wenzhuo Tang, Haitao Mao, Wenqi Fan, Hui Liu 0031, Dawei Yin 0001, Qing Li 0001 |
ACM Trans. Intell. Syst. Technol. | 2 |
| 2023 | An effective method for figures and tables detection in academic literature
Fengchang Yu, Jiani Huang 0001, Zhuoran Luo, Li Zhang 0093, Wei Lu 0019 |
Inf. Process. Manag. | 2 |