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Harnessing Earnings Reports for Stock Predictions: A QLoRA-Enhanced LLM Approach

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arxiv 2408.06634 v2 pith:2VOXYTMQ submitted 2024-08-13 q-fin.CP cs.AIcs.CLcs.LGq-fin.ST

classification q-fin.CPcs.AIcs.CLcs.LGq-fin.ST
keywords earningsmodelsfinancialmarketpredictionsreportsapproachdata
verification ladder T0 review T1 audit T2 compute T3 formal
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Accurate stock market predictions following earnings reports are crucial for investors. Traditional methods, particularly classical machine learning models, struggle with these predictions because they cannot effectively process and interpret extensive textual data contained in earnings reports and often overlook nuances that influence market movements. This paper introduces an advanced approach by employing Large Language Models (LLMs) instruction fine-tuned with a novel combination of instruction-based techniques and quantized low-rank adaptation (QLoRA) compression. Our methodology integrates 'base factors', such as financial metric growth and earnings transcripts, with 'external factors', including recent market indices performances and analyst grades, to create a rich, supervised dataset. This comprehensive dataset enables our models to achieve superior predictive performance in terms of accuracy, weighted F1, and Matthews correlation coefficient (MCC), especially evident in the comparison with benchmarks such as GPT-4. We specifically highlight the efficacy of the llama-3-8b-Instruct-4bit model, which showcases significant improvements over baseline models. The paper also discusses the potential of expanding the output capabilities to include a 'Hold' option and extending the prediction horizon, aiming to accommodate various investment styles and time frames. This study not only demonstrates the power of integrating cutting-edge AI with fine-tuned financial data but also paves the way for future research in enhancing AI-driven financial analysis tools.

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Cited by 2 Pith papers

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  1. Mixed-Precision Graph Neural Quantization for Low Bit Large Language Models

    cs.CL 2025-01 conditional novelty 6.0 of 10

    A graph neural network trained on Hessian-derived graphs of LLM weights adaptively assigns per-column quantization bit-widths, improving low-bit perplexity over GPTQ on LLaMA models.

  2. FinSphere, a Real-Time Stock Analysis Agent Powered by Instruction-Tuned LLMs and Domain Tools

    cs.AI 2025-01 reject novelty 5.0 of 10

    FinSphere, an instruction-tuned Qwen2-72B agent with real-time quantitative tools, scores 70.88/100 on the authors' human rubric, ahead of FinMem (67.55) and GPT-4o (66.61) on 100 queries.

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