Sound Field Estimation Using Deep Kernel Learning Regularized by the Wave Equation
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arXiv
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| Hauptverfasser: | , , |
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| Format: | Preprint |
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2024
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| _version_ | 1866909243330789376 |
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| author | Sundström, David Koyama, Shoichi Jakobsson, Andreas |
| author_facet | Sundström, David Koyama, Shoichi Jakobsson, Andreas |
| contents | In this work, we introduce a spatio-temporal kernel for Gaussian process (GP) regression-based sound field estimation. Notably, GPs have the attractive property that the sound field is a linear function of the measurements, allowing the field to be estimated efficiently from distributed microphone measurements. However, to ensure analytical tractability, most existing kernels for sound field estimation have been formulated in the frequency domain, formed independently for each frequency. To address the analytical intractability of spatio-temporal kernels, we here propose to instead learn the kernel directly from data by the means of deep kernel learning. Furthermore, to improve the generalization of the deep kernel, we propose a method for regularizing the learning process using the wave equation. The representational advantages of the deep kernel and the improved generalization obtained by using the wave equation regularization are illustrated using numerical simulations. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2407_04417 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Sound Field Estimation Using Deep Kernel Learning Regularized by the Wave Equation Sundström, David Koyama, Shoichi Jakobsson, Andreas Audio and Speech Processing In this work, we introduce a spatio-temporal kernel for Gaussian process (GP) regression-based sound field estimation. Notably, GPs have the attractive property that the sound field is a linear function of the measurements, allowing the field to be estimated efficiently from distributed microphone measurements. However, to ensure analytical tractability, most existing kernels for sound field estimation have been formulated in the frequency domain, formed independently for each frequency. To address the analytical intractability of spatio-temporal kernels, we here propose to instead learn the kernel directly from data by the means of deep kernel learning. Furthermore, to improve the generalization of the deep kernel, we propose a method for regularizing the learning process using the wave equation. The representational advantages of the deep kernel and the improved generalization obtained by using the wave equation regularization are illustrated using numerical simulations. |
| title | Sound Field Estimation Using Deep Kernel Learning Regularized by the Wave Equation |
| topic | Audio and Speech Processing |
| url | https://arxiv.org/abs/2407.04417 |