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OpenEP: Open-Ended Future Event Prediction

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arxiv 2408.06578 v2 pith:2MANYKU6 submitted 2024-08-13 cs.CL

OpenEP: Open-Ended Future Event Prediction

classification cs.CL
keywords eventfutureeventspredictionopen-endedoutcomesquestionsdiverse
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Future event prediction (FEP) is a long-standing and crucial task in the world, as understanding the evolution of events enables early risk identification, informed decision-making, and strategic planning. Existing work typically treats event prediction as classification tasks and confines the outcomes of future events to a fixed scope, such as yes/no questions, candidate set, and taxonomy, which is difficult to include all possible outcomes of future events. In this paper, we introduce OpenEP (an Open-Ended Future Event Prediction task), which generates flexible and diverse predictions aligned with real-world scenarios. This is mainly reflected in two aspects: firstly, the predictive questions are diverse, covering different stages of event development and perspectives; secondly, the outcomes are flexible, without constraints on scope or format. To facilitate the study of this task, we construct OpenEPBench, an open-ended future event prediction dataset. For question construction, we pose questions from seven perspectives, including location, time, event development, event outcome, event impact, event response, and other, to facilitate an in-depth analysis and understanding of the comprehensive evolution of events. For outcome construction, we collect free-form text containing the outcomes as ground truth to provide semantically complete and detail-enriched outcomes. Furthermore, we propose StkFEP, a stakeholder-enhanced future event prediction framework, that incorporates event characteristics for open-ended settings. Our method extracts stakeholders involved in events to extend questions to gather diverse information. We also collect historically events that are relevant and similar to the question to reveal potential evolutionary patterns. Experiment results indicate that accurately predicting future events in open-ended settings is challenging for existing LLMs.

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Cited by 4 Pith papers

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  2. From Single- to Cross-Document: Benchmarking Multi-Granularity Event Analysis of Large Language Models

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    MiGUE-Bench is a 3,290-instance benchmark spanning event detection, relation reasoning, structure induction, and future prediction, showing LLMs are weakest at causal graph construction and end-time ordering.

  3. Agentic Forecasting using Sequential Bayesian Updating of Linguistic Beliefs

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    BLF achieves state-of-the-art binary forecasting on ForecastBench by using linguistic belief states updated in tool-use loops, hierarchical multi-trial logit averaging, and hierarchical Platt scaling calibration.

  4. Scattered Hypothesis Generation for Open-Ended Event Forecasting

    cs.IR 2026-04 unverdicted novelty 6.0

    SCATTER uses RL with a hybrid reward combining validity, intra-group diversity, and inter-group diversity to produce inclusive hypothesis sets for event forecasting and outperforms baselines on OpenForecast and OpenEP.