Yong Jiang
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2026
Towards General Agentic Intelligence via Environment Scaling
Runnan Fang | Shihao Cai | Baixuan Li | Jialong Wu | Guangyu Li | Wenbiao Yin | Xinyu Wang | Xiaobin Wang | Liangcai Su | Zhen Zhang | Shibin Wu | Zhengwei Tao | Yong Jiang | Pengjun Xie | Ningyu Zhang | Fei Huang | Wentao Zhang | Jingren Zhou
Findings of the Association for Computational Linguistics: ACL 2026
Runnan Fang | Shihao Cai | Baixuan Li | Jialong Wu | Guangyu Li | Wenbiao Yin | Xinyu Wang | Xiaobin Wang | Liangcai Su | Zhen Zhang | Shibin Wu | Zhengwei Tao | Yong Jiang | Pengjun Xie | Ningyu Zhang | Fei Huang | Wentao Zhang | Jingren Zhou
Findings of the Association for Computational Linguistics: ACL 2026
Advanced agentic intelligence is a prerequisite for deploying Large Language Models in practical, real-world applications. Diverse real-world APIs demand precise, robust function-calling intelligence, which needs agents to develop these capabilities through interaction in varied environments. The breadth of function-calling competence is closely tied to the diversity of environments in which agents are trained. In this work, we scale up environments as a step towards advancing general agentic intelligence. This gives rise to two central challenges: (i) how to scale environments in a principled manner, and (ii) how to effectively train agentic capabilities from experiences derived through interactions with these environments. To address these, we design a scalable framework that automatically constructs heterogeneous environments that are fully simulated, broadening the space of function-calling scenarios. We further adapt a two-phase agent fine-tuning strategy: first endowing agents with fundamental agentic capabilities, then specializing them for domain-specific contexts. Extensive experiments on agentic benchmarks, -bench, -Bench, and ACEBench, demonstrate that our trained model, AgentScaler, significantly enhances the models’ function-calling capability.
BrowseConf: Confidence-Guided Test-Time Scaling for Web Agents
Litu Ou | Kuan Li | Huifeng Yin | Liwen Zhang | Zhongwang Zhang | Xixi Wu | Rui Ye | Zile Qiao | Yong Jiang | Pengjun Xie | Fei Huang | Jingren Zhou
Findings of the Association for Computational Linguistics: ACL 2026
Litu Ou | Kuan Li | Huifeng Yin | Liwen Zhang | Zhongwang Zhang | Xixi Wu | Rui Ye | Zile Qiao | Yong Jiang | Pengjun Xie | Fei Huang | Jingren Zhou
Findings of the Association for Computational Linguistics: ACL 2026
Confidence in LLMs is a useful indicator of model uncertainty and answer reliability. Existing work mainly focused on single-turn scenarios, while research on confidence in complex multi-turn interactions is limited. In this paper, we investigate whether LLM-based search agents have the ability to communicate their own confidence through verbalized confidence scores after long sequences of actions, a significantly more challenging task compared to outputting confidence in a single interaction. Experimenting on open-source agentic models, we first find that models exhibit much higher task accuracy at high confidence while having near-zero accuracy when confidence is low. Based on this observation, we propose Test-Time Scaling (TTS) methods that use confidence scores to determine answer quality, encourage the model to try again until reaching a satisfactory confidence level. Results show that our proposed methods significantly reduce token consumption while demonstrating competitive performance compared to baseline fixed budget TTS methods.
WebAnchor: Anchoring Agent Planning to Stabilize Long-Horizon Web Reasoning
Xinmiao Yu | Liwen Zhang | Xiaocheng Feng | Pengjun Xie | Jingren Zhou | Bing Qin | Yong Jiang
Findings of the Association for Computational Linguistics: ACL 2026
Xinmiao Yu | Liwen Zhang | Xiaocheng Feng | Pengjun Xie | Jingren Zhou | Bing Qin | Yong Jiang
Findings of the Association for Computational Linguistics: ACL 2026
Large Language Model(LLM)-based agents have shown strong capabilities in web information seeking, with reinforcement learning (RL) becoming a key optimization paradigm. However, planning remains a bottleneck, as existing methods struggle with long-horizon strategies. Our analysis reveals a critical phenomenon—plan anchor—where the first reasoning step disproportionately impacts downstream behavior in long-horizon web reasoning tasks. Current RL algorithms, fail to account for this by uniformly distributing rewards across the trajectory.To address this, we propose Anchor-GRPO, a two-stage RL framework that decouples planning and execution. In Stage 1, the agent optimizes its first-step planning using fine-grained rubrics derived from self-play experiences and human calibration. In Stage 2, execution is aligned with the initial plan through sparse rewards, ensuring stable and efficient tool usage. We evaluate Anchor-GRPO on four benchmarks: BrowseComp, BrowseComp-Zh, GAIA, and XBench-DeepSearch. Across models from 3B to 30B, Anchor-GRPO outperforms baseline GRPO and First-step GRPO, improving task success and tool efficiency. Notably, WebAnchor-30B achieves 46.0% pass@1 on BrowseComp and 76.4% on GAIA. Anchor-GRPO also demonstrates strong scalability, getting higher accuracy as model size and context length increase.
Benchmarking Temporal Reasoning and Alignment Across Chinese Dynasties
Zhenglin Wang | Jialong Wu | Pengfei Li | Yong Jiang | Deyu Zhou
Proceedings of the 19th Conference of the European Chapter of the Association for Computational Linguistics (Volume 2: Short Papers)
Zhenglin Wang | Jialong Wu | Pengfei Li | Yong Jiang | Deyu Zhou
Proceedings of the 19th Conference of the European Chapter of the Association for Computational Linguistics (Volume 2: Short Papers)
Temporal reasoning is fundamental to human cognition and is crucial for various real-world applications. While recent advances in Large Language Models have demonstrated promising capabilities in temporal reasoning, existing benchmarks primarily rely on rule-based construction, lack contextual depth, and involve a limited range of temporal entities. To address these limitations, we introduce Chinese Time Reasoning (CTM), a benchmark designed to evaluate LLMs on temporal reasoning within the extensive scope of Chinese dynastic chronology. CTM emphasizes cross-entity relationships, pairwise temporal alignment, and contextualized and culturally-grounded reasoning, providing a comprehensive evaluation. Extensive experimental results reveal the challenges posed by CTM and highlight potential avenues for improvement.
Nested Browser-Use Learning for Agentic Information Seeking
Baixuan Li | Jialong Wu | Wenbiao Yin | Kuan Li | Zhongwang Zhang | Huifeng Yin | Zhengwei Tao | Liwen Zhang | Pengjun Xie | Jingren Zhou | Yong Jiang | Wentao Zhang | Zhiqiang Gao
Proceedings of the 64th Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers)
Baixuan Li | Jialong Wu | Wenbiao Yin | Kuan Li | Zhongwang Zhang | Huifeng Yin | Zhengwei Tao | Liwen Zhang | Pengjun Xie | Jingren Zhou | Yong Jiang | Wentao Zhang | Zhiqiang Gao
Proceedings of the 64th Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers)
Information-seeking (IS) agents have achieved strong performance across a range of wide and deep search tasks, yet their tool use remains largely restricted to API-level snippet retrieval and URL-based page fetching, limiting access to the richer information available through real browsing. While full browser interaction could unlock deeper capabilities, its fine-grained control and verbose page content returns introduce substantial complexity for ReAct-style function-calling agents. To bridge this gap, we propose Nested Browser-Use Learning (NestBrowse), which introduces a minimal and complete browser-action framework that decouples interaction control from page exploration through a nested structure. This design simplifies agentic reasoning while enabling effective deep-web information acquisition. Empirical results on challenging deep IS benchmarks demonstrate that NestBrowse offers clear benefits in practice. Further in-depth analyses underscore its efficiency.
2025
Unfolding the Headline: Iterative Self-Questioning for News Retrieval and Timeline Summarization
Weiqi Wu | Shen Huang | Yong Jiang | Pengjun Xie | Fei Huang | Hai Zhao
Findings of the Association for Computational Linguistics: NAACL 2025
Weiqi Wu | Shen Huang | Yong Jiang | Pengjun Xie | Fei Huang | Hai Zhao
Findings of the Association for Computational Linguistics: NAACL 2025
In the fast-changing realm of information, the capacity to construct coherent timelines from extensive event-related content has become increasingly significant and challenging. The complexity arises in aggregating related documents to build a meaningful event graph around a central topic. This paper proposes CHRONOS - Causal Headline Retrieval for Open-domain News Timeline SummarizatiOn via Iterative Self-Questioning, which offers a fresh perspective on the integration of Large Language Models (LLMs) to tackle the task of Timeline Summarization (TLS). By iteratively reflecting on how events are linked and posing new questions regarding a specific news topic to gather information online or from an offline knowledge base, LLMs produce and refresh chronological summaries based on documents retrieved in each round. Furthermore, we curate Open-TLS, a novel dataset of timelines on recent news topics authored by professional journalists to evaluate open-domain TLS where information overload makes it impossible to find comprehensive relevant documents from the web. Our experiments indicate that CHRONOS is not only adept at open-domain timeline summarization but also rivals the performance of existing state-of-the-art systems designed for closed-domain applications, where a related news corpus is provided for summarization.
Supportiveness-based Knowledge Rewriting for Retrieval-augmented Language Modeling
Zile Qiao | Wei Ye | Yong Jiang | Tong Mo | Pengjun Xie | Weiping Li | Fei Huang | Shikun Zhang
Findings of the Association for Computational Linguistics: NAACL 2025
Zile Qiao | Wei Ye | Yong Jiang | Tong Mo | Pengjun Xie | Weiping Li | Fei Huang | Shikun Zhang
Findings of the Association for Computational Linguistics: NAACL 2025
Retrieval-augmented language models (RALMs) have recently shown great potential in mitigating the limitations of implicit knowledge in LLMs, such as untimely updating of the latest expertise and unreliable retention of long-tail knowledge. However, since the external knowledge base, as well as the retriever, can not guarantee reliability, potentially leading to the knowledge retrieved not being helpful or even misleading for LLM generation. In this paper, we introduce Supportiveness-based Knowledge Rewriting (SKR), a robust and pluggable knowledge rewriter inherently optimized for LLM generation. Specifically, we introduce the novel concept of “supportiveness”—which represents how effectively a knowledge piece facilitates downstream tasks. Based on supportiveness, we first design a training data curation strategy for our rewriter model, effectively identifying and filtering out poor or irrelevant rewrites to improve data efficacy. We then introduce the direct preference optimization (DPO) algorithm to align the generated rewrites to optimal supportiveness, guiding the rewriter model to summarize augmented content that better improves the final response. Comprehensive evaluations across six popular knowledge-intensive tasks and four LLMs have demonstrated the effectiveness and superiority of SKR. With only 7B parameters, SKR has shown better knowledge rewriting capability over GPT-4.
KBM: Delineating Knowledge Boundary for Adaptive Retrieval in Large Language Models
Zhen Zhang | Xinyu Wang | Yong Jiang | Zile Qiao | Zhuo Chen | Guangyu Li | Feiteng Mu | Mengting Hu | Pengjun Xie | Fei Huang
Findings of the Association for Computational Linguistics: EMNLP 2025
Zhen Zhang | Xinyu Wang | Yong Jiang | Zile Qiao | Zhuo Chen | Guangyu Li | Feiteng Mu | Mengting Hu | Pengjun Xie | Fei Huang
Findings of the Association for Computational Linguistics: EMNLP 2025
Large Language Models (LLMs) often struggle with dynamically changing knowledge and handling unknown static information. Retrieval-Augmented Generation (RAG) is employed to tackle these challenges and has a significant impact on improving LLM performance. In fact, we find that not all questions need to trigger RAG. By retrieving parts of knowledge unknown to the LLM and allowing the LLM to answer the rest, we can effectively reduce both time and computational costs. In our work, we propose a Knowledge Boundary Model (KBM) to express the known/unknown of a given question, and to determine whether a RAG needs to be triggered. Experiments conducted on 11 English and Chinese datasets illustrate that the KBM effectively delineates the knowledge boundary, significantly decreasing the proportion of retrievals required for optimal end-to-end performance. Furthermore, we evaluate the effectiveness of KBM in three complex scenarios: dynamic knowledge, long-tail static knowledge, and multi-hop problems, as well as its functionality as an external LLM plug-in.
EvolveSearch: An Iterative Self-Evolving Search Agent
Ding-Chu Zhang | Yida Zhao | Jialong Wu | Liwen Zhang | Baixuan Li | Wenbiao Yin | Yong Jiang | Yu-Feng Li | Kewei Tu | Pengjun Xie | Fei Huang
Proceedings of the 2025 Conference on Empirical Methods in Natural Language Processing
Ding-Chu Zhang | Yida Zhao | Jialong Wu | Liwen Zhang | Baixuan Li | Wenbiao Yin | Yong Jiang | Yu-Feng Li | Kewei Tu | Pengjun Xie | Fei Huang
Proceedings of the 2025 Conference on Empirical Methods in Natural Language Processing
The rapid advancement of large language models (LLMs) has transformed the landscape of agentic information seeking capabilities through the integration of tools such as search engines and web browsers. However, current mainstream approaches for enabling LLM web search proficiency face significant challenges: supervised fine-tuning struggles with data production in open-search domains, while RL converges quickly, limiting their data utilization efficiency. To address these issues, we propose EvolveSearch, a novel iterative self-evolution framework that combines SFT and RL to enhance agentic web search capabilities without any external human-annotated reasoning data. Extensive experiments on seven multi-hop question-answering (MHQA) benchmarks demonstrate that EvolveSearch consistently improves performance across iterations, ultimately achieving an average improvement of 4.7% over the current state-of-the-art across seven benchmarks, opening the door to self-evolution agentic capabilities in open web search domains.
OmniThink: Expanding Knowledge Boundaries in Machine Writing through Thinking
Zekun Xi | Wenbiao Yin | Jizhan Fang | Jialong Wu | Runnan Fang | Yong Jiang | Pengjun Xie | Fei Huang | Huajun Chen | Ningyu Zhang
Proceedings of the 2025 Conference on Empirical Methods in Natural Language Processing
Zekun Xi | Wenbiao Yin | Jizhan Fang | Jialong Wu | Runnan Fang | Yong Jiang | Pengjun Xie | Fei Huang | Huajun Chen | Ningyu Zhang
Proceedings of the 2025 Conference on Empirical Methods in Natural Language Processing
Machine writing with large language models often relies on retrieval-augmented generation. However, these approaches remain confined within the boundaries of the model’s predefined scope, limiting the generation of content with rich information. Specifically, vanilla-retrieved information tends to lack depth, novelty, and suffers from redundancy, which negatively impacts the quality of generated articles, leading to shallow, unoriginal, and repetitive outputs. To address these issues, we propose OmniThink, a slow-thinking machine writing framework that emulates the human-like process of iterative expansion and reflection. The core idea behind OmniThink is to simulate the cognitive behavior of learners as they slowly deepen their knowledge of the topics. Experimental results demonstrate that OmniThink improves the knowledge density of generated articles without compromising metrics such as coherence and depth. Human evaluations and expert feedback further highlight the potential of OmniThink to address real-world challenges in the generation of long-form articles.
DecoupleSearch: Decouple Planning and Search via Hierarchical Reward Modeling
Hao Sun | Zile Qiao | Bo Wang | Guoxin Chen | Yingyan Hou | Yong Jiang | Pengjun Xie | Fei Huang | Yan Zhang
Proceedings of the 2025 Conference on Empirical Methods in Natural Language Processing
Hao Sun | Zile Qiao | Bo Wang | Guoxin Chen | Yingyan Hou | Yong Jiang | Pengjun Xie | Fei Huang | Yan Zhang
Proceedings of the 2025 Conference on Empirical Methods in Natural Language Processing
Retrieval-Augmented Generation (RAG) systems have emerged as a pivotal methodology for enhancing Large Language Models (LLMs) through the dynamic integration of external knowledge. To further improve RAG’s flexibility, Agentic RAG introduces autonomous agents into the workflow. However, Agentic RAG faces several challenges:(1) the success of each step depends on both high-quality planning and accurate search,(2) the lack of supervision for intermediate reasoning steps, and(3) the exponentially large candidate space for planning and searching.To address these challenges, we propose DecoupleSearch, a novel framework that decouples planning and search processes using dual value models, enabling independent optimization of plan reasoning and search grounding. Our approach constructs a reasoning tree, where each node represents planning and search steps. We leverage Monte Carlo Tree Search to assess the quality of each step. During inference, Hierarchical Beam Search iteratively refines planning and search candidates with dual value models. Extensive experiments across policy models of varying parameter sizes, demonstrate the effectiveness of our method.
Detecting Knowledge Boundary of Vision Large Language Models by Sampling-Based Inference
Zhuo Chen | Xinyu Wang | Yong Jiang | Zhen Zhang | Xinyu Geng | Pengjun Xie | Fei Huang | Kewei Tu
Proceedings of the 2025 Conference on Empirical Methods in Natural Language Processing
Zhuo Chen | Xinyu Wang | Yong Jiang | Zhen Zhang | Xinyu Geng | Pengjun Xie | Fei Huang | Kewei Tu
Proceedings of the 2025 Conference on Empirical Methods in Natural Language Processing
Despite the advancements made in Vision Large Language Models (VLLMs), like text Large Language Models (LLMs), they have limitations in addressing questions that require real-time information or are knowledge-intensive. Indiscriminately adopting Retrieval Augmented Generation (RAG) techniques is an effective yet expensive way to enable models to answer queries beyond their knowledge scopes. To mitigate the dependence on retrieval and simultaneously maintain, or even improve, the performance benefits provided by retrieval, we propose a method to detect the knowledge boundary of VLLMs, allowing for more efficient use of techniques like RAG. Specifically, we propose a method with two variants that fine-tune a VLLM on an automatically constructed dataset for boundary identification. Experimental results on various types of Visual Question Answering datasets show that our method successfully depicts a VLLM’s knowledge boundary, based on which we are able to reduce indiscriminate retrieval while maintaining or improving the performance. In addition, we show that the knowledge boundary identified by our method for one VLLM can be used as a surrogate boundary for other VLLMs. Code will be released at https://github.com/Chord-Chen-30/VLLM-KnowledgeBoundary
ProductAgent: Benchmarking Conversational Product Search Agent with Asking Clarification Questions
Jingheng Ye | Yong Jiang | Xiaobin Wang | Yinghui Li | Yangning Li | Pengjun Xie | Fei Huang
Proceedings of the 2025 Conference on Empirical Methods in Natural Language Processing: Industry Track
Jingheng Ye | Yong Jiang | Xiaobin Wang | Yinghui Li | Yangning Li | Pengjun Xie | Fei Huang
Proceedings of the 2025 Conference on Empirical Methods in Natural Language Processing: Industry Track
Online shoppers often initiate their journey with only a vague idea of what they need, forcing them to iterate over search results until they eventually discover a suitable product. We formulate this scenario as product demand clarification: starting from an ambiguous query, an agent must iteratively ask clarifying questions, progressively refine the user’s intent, and retrieve increasingly relevant items. To tackle this challenge, we present ProductAgent, a fully autonomous conversational information-seeking agent that couples large language models with a set of domain-specific tools. ProductAgent maintains a structured memory of the dialogue, summarizes candidate products into concise feature statistics, generates strategic clarification questions, and performs retrieval over hybrid (symbolic + dense) indices in a closed decision loop. To measure real–world effectiveness, we further introduce PROCLARE, a PROduct CLArifying REtrieval benchmark that pairs ProductAgent with an LLM-driven user simulator, thereby enabling large-scale and reproducible evaluation without human annotation. On 2,000 automatically generated sessions, retrieval metrics improve monotonically with the number of turns, validating that ProductAgent captures and refines user intent through dialogue.
SynWorld: Virtual Scenario Synthesis for Agentic Action Knowledge Refinement
Runnan Fang | Xiaobin Wang | Yuan Liang | Shuofei Qiao | Jialong Wu | Zekun Xi | Ningyu Zhang | Yong Jiang | Pengjun Xie | Fei Huang | Huajun Chen
Proceedings of the 63rd Annual Meeting of the Association for Computational Linguistics (Volume 2: Short Papers)
Runnan Fang | Xiaobin Wang | Yuan Liang | Shuofei Qiao | Jialong Wu | Zekun Xi | Ningyu Zhang | Yong Jiang | Pengjun Xie | Fei Huang | Huajun Chen
Proceedings of the 63rd Annual Meeting of the Association for Computational Linguistics (Volume 2: Short Papers)
In the interaction between agents and their environments, agents expand their capabilities by planning and executing actions. However, LLM-based agents face substantial challenges when deployed in novel environments or required to navigate unconventional action spaces. To empower agents to autonomously explore environments, optimize workflows, and enhance their understanding of actions, we propose SynWorld, a framework that allows agents to synthesize possible scenarios with multi-step action invocation within the action space and perform Monte Carlo Tree Search (MCTS) exploration to effectively refine their action knowledge in the current environment. Our experiments demonstrate that SynWorld is an effective and general approach to learning action knowledge in new environments.
Agentic Knowledgeable Self-awareness
Shuofei Qiao | Zhisong Qiu | Baochang Ren | Xiaobin Wang | Xiangyuan Ru | Ningyu Zhang | Xiang Chen | Yong Jiang | Pengjun Xie | Fei Huang | Huajun Chen
Proceedings of the 63rd Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers)
Shuofei Qiao | Zhisong Qiu | Baochang Ren | Xiaobin Wang | Xiangyuan Ru | Ningyu Zhang | Xiang Chen | Yong Jiang | Pengjun Xie | Fei Huang | Huajun Chen
Proceedings of the 63rd Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers)
Large Language Models (LLMs) have achieved considerable performance across various agentic planning tasks. However, traditional approaches adopt a “flood irrigation” methodology that indiscriminately injects gold trajectories, external feedback, and domain knowledge into agent models. This practice overlooks the fundamental human cognitive principle of self-awareness - the ability to dynamically assess situational demands and strategically employ resources during decision-making. We propose Agentic Knowledgeable Self-awareness to address this gap, a novel paradigm enabling LLM-based agents to autonomously regulate knowledge utilization. Specifically, we propose KnowSelf, a data-centric approach that applies agents with knowledgeable self-awareness like humans. Concretely, we devise a heuristic situation judgement criterion to mark special tokens on the agent’s self-explored trajectories for collecting training data. Through a two-stage training process, the agent model can switch between different situations by generating specific special tokens, achieving optimal planning effects with minimal costs. Our experiments demonstrate that can outperform various strong baselines on different tasks and models with minimal use of external knowledge.
WebWalker: Benchmarking LLMs in Web Traversal
Jialong Wu | Wenbiao Yin | Yong Jiang | Zhenglin Wang | Zekun Xi | Runnan Fang | Linhai Zhang | Yulan He | Deyu Zhou | Pengjun Xie | Fei Huang
Proceedings of the 63rd Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers)
Jialong Wu | Wenbiao Yin | Yong Jiang | Zhenglin Wang | Zekun Xi | Runnan Fang | Linhai Zhang | Yulan He | Deyu Zhou | Pengjun Xie | Fei Huang
Proceedings of the 63rd Annual Meeting of the Association for Computational Linguistics (Volume 1: Long Papers)
Retrieval-augmented generation (RAG) demonstrates remarkable performance across tasks in open-domain question-answering. However, traditional search engines may retrieve shallow content, limiting the ability of LLMs to handle complex, multi-layered information. To address this, we introduce WebWalkerQA, a benchmark designed to assess the ability of LLMs to perform web traversal. It evaluates the capacity of LLMs to traverse a website’s subpages to extract high-quality data systematically. We propose WebWalker, which is a multi-agent framework that mimics human-like web navigation through an explore-critic paradigm. Extensive experimental results show that WebWalkerQA is challenging and demonstrates the effectiveness of RAG combined with WebWalker, through this horizontal and vertical integration in real-world scenarios.
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Co-authors
- Pengjun Xie 15
- Fei Huang 13
- Jialong Wu 7
- Wenbiao Yin 5
- Runnan Fang 4
- Zile Qiao 4
- Xiaobin Wang 4
- Liwen Zhang 4
- Ningyu Zhang 4
- Jingren Zhou 4
- Huajun Chen 3
- Baixuan Li 3
- Xinyu Wang 3
- Zekun Xi 3
- Zhen Zhang 3
- Zhuo Chen 2
- Guangyu Li 2
- Kuan Li 2
- Shuofei Qiao 2
- Zhengwei Tao 2
- Kewei Tu 2
- Zhenglin Wang 2
- Huifeng Yin 2
- Wentao Zhang 2
- Zhongwang Zhang 2
- Deyu Zhou 2
- Shihao Cai 1
- Guoxin Chen 1
- Xiang Chen 1
- Jizhan Fang 1
- Xiaocheng Feng (冯骁骋) 1
- Zhiqiang Gao 1
- Xinyu Geng 1
- Yulan He 1
- Yingyan Hou 1
- Mengting Hu 1
- Shen Huang 1
- Pengfei Li 1
- Weiping Li 1
- Yangning Li 1
- Yinghui Li 1
- Yu-Feng Li 1
- Yuan Liang 1
- Tong Mo 1
- Feiteng Mu 1
- Litu Ou 1
- Bing Qin (秦兵) 1
- Zhisong Qiu 1
- Baochang Ren 1
- Xiangyuan Ru 1
- Liangcai Su 1
- Hao Sun 1
- Bo Wang 1
- Shibin Wu 1
- Weiqi Wu 1
- Xixi Wu 1
- Jingheng Ye 1
- Rui Ye 1
- Wei Ye 1
- Xinmiao Yu 1
- Ding-Chu Zhang 1
- Linhai Zhang 1
- Shikun Zhang 1
- Yan Zhang 1
- Hai Zhao 1
- Yida Zhao 1