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Learning to Control Misinformation: a Closed-loop Approach for Misinformation Mitigation over Social Networks

Social and Information Networks 2025-11-18 v1 Systems and Control Systems and Control

Abstract

Modern social networks rely on recommender systems that inadvertently amplify misinformation by prioritizing engagement over content veracity. We present a control framework that mitigates misinformation spread while maintaining user engagement by penalizing content characteristics commonly exploited by false information, specifically, extreme negative sentiment and novelty. We extend the closed-loop Friedkin-Johnsen model to incorporate the mitigation of misinformation together with the maximization of user engagement. Both model-free and model-based control strategies demonstrate up to 76% reduction in misinformation propagation across diverse network configurations, validated through simulations using the LIAR2 dataset with sentiment features extracted via large language models. Analysis of engagement-misinformation trade-offs reveals that in networks with radical users, median engagement improves even as misinformation decreases, suggesting content moderation enhances discourse quality for non-extremist users. The framework provides practical guidance for platform operators in balancing misinformation suppression with engagement objectives.

Keywords

Cite

@article{arxiv.2511.12393,
  title  = {Learning to Control Misinformation: a Closed-loop Approach for Misinformation Mitigation over Social Networks},
  author = {Nicolo' Pagan and Andreas Philippou and Giulia De Pasquale},
  journal= {arXiv preprint arXiv:2511.12393},
  year   = {2025}
}
R2 v1 2026-07-01T07:39:24.090Z