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Suitability of KANs for Computer Vision: A preliminary investigation

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arxiv 2406.09087 v2 pith:PLTUQVAC submitted 2024-06-13 cs.CV cs.AI

classification cs.CVcs.AI
keywords kansnetworksarchitecturescomplexcomputerconventionaledgesfunctions
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Kolmogorov-Arnold Networks (KANs) introduce a paradigm of neural modeling that implements learnable functions on the edges of the networks, diverging from the traditional node-centric activations in neural networks. This work assesses the applicability and efficacy of KANs in visual modeling, focusing on fundamental recognition and segmentation tasks. We mainly analyze the performance and efficiency of different network architectures built using KAN concepts along with conventional building blocks of convolutional and linear layers, enabling a comparative analysis with the conventional models. Our findings are aimed at contributing to understanding the potential of KANs in computer vision, highlighting both their strengths and areas for further research. Our evaluation point toward the fact that while KAN-based architectures perform in line with the original claims, it may often be important to employ more complex functions on the network edges to retain the performance advantage of KANs on more complex visual data.

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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. "KAN you hear me?" Exploring Kolmogorov-Arnold Networks for Spoken Language Understanding

    cs.CL 2025-05 conditional novelty 5.0 of 10

    Placing a KAN layer between two linear layers improves spoken language understanding accuracy over linear-only baselines on several speech-intent datasets.

  2. Pushing the Performance of Synthetic Speech Detection with Kolmogorov-Arnold Networks and Self-Supervised Learning Models

    cs.SD 2025-06 conditional novelty 4.0 of 10

    Swapping the MLP projector for a GR-KAN layer in XLSR-Conformer reduces equal error rates on ASVspoof 2021 LA and DF, reaching 0.70% EER on the variable-length LA set.

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