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ABC-KD: Attention-Based-Compression Knowledge Distillation for Deep Learning-Based Noise Suppression

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arxiv 2305.16665 v1 pith:CSUUMVDQ submitted 2023-05-26 eess.AS cs.SD

classification eess.AScs.SD
keywords modelschallengesdeepmainstreamnoisesuppressionattention-based-compressionaudios
verification ladder T0 review T1 audit T2 compute T3 formal
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Noise suppression (NS) models have been widely applied to enhance speech quality. Recently, Deep Learning-Based NS, which we denote as Deep Noise Suppression (DNS), became the mainstream NS method due to its excelling performance over traditional ones. However, DNS models face 2 major challenges for supporting the real-world applications. First, high-performing DNS models are usually large in size, causing deployment difficulties. Second, DNS models require extensive training data, including noisy audios as inputs and clean audios as labels. It is often difficult to obtain clean labels for training DNS models. We propose the use of knowledge distillation (KD) to resolve both challenges. Our study serves 2 main purposes. To begin with, we are among the first to comprehensively investigate mainstream KD techniques on DNS models to resolve the two challenges. Furthermore, we propose a novel Attention-Based-Compression KD method that outperforms all investigated mainstream KD frameworks on DNS task.

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Cited by 1 Pith paper

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  1. Dynamic Frequency-Adaptive Knowledge Distillation for Speech Enhancement

    cs.SD 2025-02 conditional novelty 5.0 of 10

    A dynamic frequency-adaptive knowledge distillation method, using the steepest point in the running maximum of the teacher spectrum as a crossover, improves speech enhancement student models by small PESQ margins over...

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