Papers by Xinyi Mou

8 papers
Unveiling the Truth and Facilitating Change: Towards Agent-based Large-scale Social Movement Simulation (2024.findings-acl)

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Challenge: Existing methods for simulating social movements encounter challenges in capturing behavior of participants.
Approach: They propose a hybrid framework for social media user simulation wherein users are categorized into two types: core and ordinary users.
Outcome: The proposed framework is able to simulate the behavior of social media users across real-world datasets and demonstrate its effectiveness and flexibility.
AgentSense: Benchmarking Social Intelligence of Language Agents through Interactive Scenarios (2025.naacl-long)

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Challenge: Large language models are increasingly employed to empower autonomous agents to simulate human behavior.
Approach: They propose to evaluate LLM-driven agents through multi-turn interactions using a bottom-up approach to create diverse social scenarios constructed from extensive scripts.
Outcome: The proposed model evaluates LLM-driven agents through multi-turn interactions emphasizing goal completion and implicit reasoning.
Align Voting Behavior with Public Statements for Legislator Representation Learning (2021.acl-long)

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Challenge: Existing studies rely on roll call data to estimate political preference of legislators.
Approach: They propose to integrate voting behavior and public statements on Twitter to jointly model legislators.
Outcome: The proposed model improves on the task of roll call vote prediction . it also shows that the model captures nuances in statements .
EcoLANG: Efficient and Effective Agent Communication Language Induction for Social Simulation (2025.findings-emnlp)

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Challenge: Large language models (LLMs) have demonstrated impressive ability to role-play humans and replicate complex social dynamics.
Approach: They propose an efficient agent communication language induction for social simulations that reduces token consumption by over 20%.
Outcome: The proposed model reduces token consumption by over 20% while preserving human language.
SoMeLVLM: A Large Vision Language Model for Social Media Processing (2024.findings-acl)

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Challenge: Genereal domain large models lack nuanced multimodal understanding of social media . general domain models focus more on text than other modalities, which is not consistent with real-world user habits.
Approach: They propose a Large Vision Language Model for Social Media Processing that combines five key capabilities to understand and generate real social media behavior.
Outcome: The proposed model achieves state-of-the-art performance in multiple social media tasks.
PASUM: A Pre-training Architecture for Social Media User Modeling Based on Text Graph (2024.lrec-main)

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Challenge: Existing studies have incorporated different digital traces to better learn the representations of social media users, limited by overloaded text information and hard-to-collect social network information.
Approach: They propose a Pre-training Architecture for Social Media User Modeling based on Text Graph and combine microblogs to represent social media users based upon the text graph model.
Outcome: The proposed framework can represent users based on text even without social network information on microblogs.
UPPAM: A Unified Pre-training Architecture for Political Actor Modeling based on Language (2023.acl-long)

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Challenge: Existing studies have incorporated contextual information to better learn the representation of political actors for specific tasks.
Approach: They propose to use statements to represent political actors and learn mapping from languages to representations using social networks and behaviors as self-constructed supervision.
Outcome: The proposed model can be generalized to political actors and solve downstream tasks.
A Two Stage Adaptation Framework for Frame Detection via Prompt Learning (2022.coling-1)

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Challenge: Existing frameworks focus on a single scenario or issue, ignoring the special characteristics of frame detection that new events emerge continuously and policy agenda changes dynamically.
Approach: They propose a framework to adapt to different contexts and frame typologies . they propose coding tasks that learn transferable encoders and verbalizers based on pivots and prompts - and generalization tasks that apply them to new issues and label sets.
Outcome: The proposed framework shows superiority in both full-resource and low-resourced conditions.

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