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Domain Generalization with Relaxed Instance Frequency-wise Normalization for Multi-device Acoustic Scene Classification

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arxiv 2206.12513 v1 pith:FLQUNQNQ submitted 2022-06-24 cs.SD cs.LGeess.AS

classification cs.SDcs.LGeess.AS
keywords domainnormalizationacousticaudioclassificationinformationinstancescene
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While using two-dimensional convolutional neural networks (2D-CNNs) in image processing, it is possible to manipulate domain information using channel statistics, and instance normalization has been a promising way to get domain-invariant features. However, unlike image processing, we analyze that domain-relevant information in an audio feature is dominant in frequency statistics rather than channel statistics. Motivated by our analysis, we introduce Relaxed Instance Frequency-wise Normalization (RFN): a plug-and-play, explicit normalization module along the frequency axis which can eliminate instance-specific domain discrepancy in an audio feature while relaxing undesirable loss of useful discriminative information. Empirically, simply adding RFN to networks shows clear margins compared to previous domain generalization approaches on acoustic scene classification and yields improved robustness for multiple audio devices. Especially, the proposed RFN won the DCASE2021 challenge TASK1A, low-complexity acoustic scene classification with multiple devices, with a clear margin, and RFN is an extended work of our technical report.

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Cited by 1 Pith paper

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  1. Adaptive Knowledge Distillation using a Device-Aware Teacher for Low-Complexity Acoustic Scene Classification

    cs.SD 2025-09 conditional novelty 4.0 of 10

    A low-complexity scene classifier trained by two-teacher knowledge distillation and device-specific fine-tuning reaches 57.93% accuracy on the DCASE 2025 development set.

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