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A Typology for Exploring the Mitigation of Shortcut Behavior

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arxiv 2203.03668 v6 pith:WRHYHCK6 submitted 2022-03-04 cs.LG cs.AIcs.HC

classification cs.LGcs.AIcs.HC
keywords methodsbenchmarkstypologyexistingfutureincreasinglyindividualknowledge
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As machine learning models become increasingly larger, trained weakly supervised on large, possibly uncurated data sets, it becomes increasingly important to establish mechanisms for inspecting, interacting, and revising models to mitigate learning shortcuts and guarantee their learned knowledge is aligned with human knowledge. The recently proposed XIL framework was developed for this purpose, and several such methods have been introduced, each with individual motivations and methodological details. In this work, we provide a unification of various XIL methods into a single typology by establishing a common set of basic modules. In doing so, we pave the way for a principled comparison of existing, but, importantly, also future XIL approaches. In addition, we discuss existing and introduce novel measures and benchmarks for evaluating the overall abilities of a XIL method. Given this extensive toolbox, including our typology, measures, and benchmarks, we finally compare several recent XIL methods methodologically and quantitatively. In our evaluations, all methods prove to revise a model successfully. However, we found remarkable differences in individual benchmark tasks, revealing valuable application-relevant aspects for integrating these benchmarks in developing future methods.

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    A two-stage optimization pipeline that alternates label loss with a KL divergence between feature maps of masked and unmasked inputs improves accuracy and robustness in small-data classification.

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