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VLLMs Provide Better Context for Emotion Understanding Through Common Sense Reasoning

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arxiv 2404.07078 v2 pith:BGOSPCMA submitted 2024-04-10 cs.CV cs.HC

classification cs.CVcs.HC
keywords visualcontextdescriptionsemotioninformationvllmsapparentapproach
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Recognising emotions in context involves identifying an individual's apparent emotions while considering contextual cues from the surrounding scene. Previous approaches to this task have typically designed explicit scene-encoding architectures or incorporated external scene-related information, such as captions. However, these methods often utilise limited contextual information or rely on intricate training pipelines to decouple noise from relevant information. In this work, we leverage the capabilities of Vision-and-Large-Language Models (VLLMs) to enhance in-context emotion classification in a more straightforward manner. Our proposed method follows a simple yet effective two-stage approach. First, we prompt VLLMs to generate natural language descriptions of the subject's apparent emotion in relation to the visual context. Second, the descriptions, along with the visual input, are used to train a transformer-based architecture that fuses text and visual features before the final classification task. This method not only simplifies the training process but also significantly improves performance. Experimental results demonstrate that the textual descriptions effectively guide the model to constrain the noisy visual input, allowing our fused architecture to outperform individual modalities. Our approach achieves state-of-the-art performance across three datasets, BoLD, EMOTIC, and CAER-S, without bells and whistles. The code will be made publicly available on github: https://github.com/NickyFot/EmoCommonSense.git

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Cited by 2 Pith papers

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

  1. Evaluating Vision-Language Models for Emotion Recognition

    cs.CV 2025-02 conditional novelty 6.0 of 10

    Vision-language models are weak and prompt-sensitive at evoked emotion recognition, and many fine-grained errors are best explained by noisy dataset labels.

  2. Beyond Vision: How Large Language Models Interpret Facial Expressions from Valence-Arousal Values

    cs.CV 2025-02 conditional novelty 5.0 of 10

    LLMs given only valence and arousal values classify facial expressions poorly but can generate free-text emotion descriptions that align with human annotations under Word2Vec and BERT similarity, though not under a ge...

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