Forward Convolutive Prediction for Frame Online Monaural Speech Dereverberation Based on Kronecker Product Decomposition

Fuente: arXiv
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Autori principali: Zhu, Yujie, Jin, Jilu, Luo, Xueqin, Yang, Wenxing, Wang, Zhong-Qiu, Huang, Gongping, Chen, Jingdong, Benesty, Jacob
Natura: Preprint
Pubblicazione: 2025
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author Zhu, Yujie
Jin, Jilu
Luo, Xueqin
Yang, Wenxing
Wang, Zhong-Qiu
Huang, Gongping
Chen, Jingdong
Benesty, Jacob
author_facet Zhu, Yujie
Jin, Jilu
Luo, Xueqin
Yang, Wenxing
Wang, Zhong-Qiu
Huang, Gongping
Chen, Jingdong
Benesty, Jacob
contents Dereverberation has long been a crucial research topic in speech processing, aiming to alleviate the adverse effects of reverberation in voice communication and speech interaction systems. Among existing approaches, forward convolutional prediction (FCP) has recently attracted attention. It typically employs a deep neural network to predict the direct-path signal and subsequently estimates a linear prediction filter to suppress residual reverberation. However, a major drawback of this approach is that the required linear prediction filter is often excessively long, leading to considerable computational complexity. To address this, our work proposes a novel FCP method based on Kronecker product (KP) decomposition, in which the long prediction filter is modeled as the KP of two much shorter filters. This decomposition significantly reduces the computational cost. An adaptive algorithm is then provided to iteratively update these shorter filters online. Experimental results show that, compared to conventional methods, our approach achieves competitive dereverberation performance while substantially reducing computational cost.
format Preprint
id arxiv_https___arxiv_org_abs_2510_24471
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Forward Convolutive Prediction for Frame Online Monaural Speech Dereverberation Based on Kronecker Product Decomposition
Zhu, Yujie
Jin, Jilu
Luo, Xueqin
Yang, Wenxing
Wang, Zhong-Qiu
Huang, Gongping
Chen, Jingdong
Benesty, Jacob
Audio and Speech Processing
Dereverberation has long been a crucial research topic in speech processing, aiming to alleviate the adverse effects of reverberation in voice communication and speech interaction systems. Among existing approaches, forward convolutional prediction (FCP) has recently attracted attention. It typically employs a deep neural network to predict the direct-path signal and subsequently estimates a linear prediction filter to suppress residual reverberation. However, a major drawback of this approach is that the required linear prediction filter is often excessively long, leading to considerable computational complexity. To address this, our work proposes a novel FCP method based on Kronecker product (KP) decomposition, in which the long prediction filter is modeled as the KP of two much shorter filters. This decomposition significantly reduces the computational cost. An adaptive algorithm is then provided to iteratively update these shorter filters online. Experimental results show that, compared to conventional methods, our approach achieves competitive dereverberation performance while substantially reducing computational cost.
title Forward Convolutive Prediction for Frame Online Monaural Speech Dereverberation Based on Kronecker Product Decomposition
topic Audio and Speech Processing
url https://arxiv.org/abs/2510.24471