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A Method for Evaluating the Interpretability of Machine Learning Models in Predicting Bond Default Risk Based on LIME and SHAP

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arxiv 2502.19615 v1 pith:SSI23AUG submitted 2025-02-26 q-fin.GN cs.LG

classification q-fin.GNcs.LG
keywords modelsinterpretabilitydefaultlimemethodpredictionshapalgorithms
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Interpretability analysis methods for artificial intelligence models, such as LIME and SHAP, are widely used, though they primarily serve as post-model for analyzing model outputs. While it is commonly believed that the transparency and interpretability of AI models diminish as their complexity increases, currently there is no standardized method for assessing the inherent interpretability of the models themselves. This paper uses bond market default prediction as a case study, applying commonly used machine learning algorithms within AI models. First, the classification performance of these algorithms in default prediction is evaluated. Then, leveraging LIME and SHAP to assess the contribution of sample features to prediction outcomes, the paper proposes a novel method for evaluating the interpretability of the models themselves. The results of this analysis are consistent with the intuitive understanding and logical expectations regarding the interpretability of these models.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Why Bonds Fail Differently? Explainable Multimodal Learning for Multi-Class Default Prediction

    q-fin.RM 2025-09 reject novelty 5.0 of 10

    A multimodal deep learning model using financial time series and bond prospectus text predicts three-way bond outcomes (performing, extended, defaulted) and claims better recall and F1 than standard baselines.

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