Enhancing Implicit Neural Representations via Symmetric Power Transformation

Fuente: arXiv
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Main Authors: Zhang, Weixiang, Xie, Shuzhao, Ren, Chengwei, Ge, Shijia, Wang, Mingzi, Wang, Zhi
Format: Preprint
Published: 2024
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author Zhang, Weixiang
Xie, Shuzhao
Ren, Chengwei
Ge, Shijia
Wang, Mingzi
Wang, Zhi
author_facet Zhang, Weixiang
Xie, Shuzhao
Ren, Chengwei
Ge, Shijia
Wang, Mingzi
Wang, Zhi
contents We propose symmetric power transformation to enhance the capacity of Implicit Neural Representation~(INR) from the perspective of data transformation. Unlike prior work utilizing random permutation or index rearrangement, our method features a reversible operation that does not require additional storage consumption. Specifically, we first investigate the characteristics of data that can benefit the training of INR, proposing the Range-Defined Symmetric Hypothesis, which posits that specific range and symmetry can improve the expressive ability of INR. Based on this hypothesis, we propose a nonlinear symmetric power transformation to achieve both range-defined and symmetric properties simultaneously. We use the power coefficient to redistribute data to approximate symmetry within the target range. To improve the robustness of the transformation, we further design deviation-aware calibration and adaptive soft boundary to address issues of extreme deviation boosting and continuity breaking. Extensive experiments are conducted to verify the performance of the proposed method, demonstrating that our transformation can reliably improve INR compared with other data transformations. We also conduct 1D audio, 2D image and 3D video fitting tasks to demonstrate the effectiveness and applicability of our method.
format Preprint
id arxiv_https___arxiv_org_abs_2412_09213
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Enhancing Implicit Neural Representations via Symmetric Power Transformation
Zhang, Weixiang
Xie, Shuzhao
Ren, Chengwei
Ge, Shijia
Wang, Mingzi
Wang, Zhi
Computer Vision and Pattern Recognition
We propose symmetric power transformation to enhance the capacity of Implicit Neural Representation~(INR) from the perspective of data transformation. Unlike prior work utilizing random permutation or index rearrangement, our method features a reversible operation that does not require additional storage consumption. Specifically, we first investigate the characteristics of data that can benefit the training of INR, proposing the Range-Defined Symmetric Hypothesis, which posits that specific range and symmetry can improve the expressive ability of INR. Based on this hypothesis, we propose a nonlinear symmetric power transformation to achieve both range-defined and symmetric properties simultaneously. We use the power coefficient to redistribute data to approximate symmetry within the target range. To improve the robustness of the transformation, we further design deviation-aware calibration and adaptive soft boundary to address issues of extreme deviation boosting and continuity breaking. Extensive experiments are conducted to verify the performance of the proposed method, demonstrating that our transformation can reliably improve INR compared with other data transformations. We also conduct 1D audio, 2D image and 3D video fitting tasks to demonstrate the effectiveness and applicability of our method.
title Enhancing Implicit Neural Representations via Symmetric Power Transformation
topic Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2412.09213