CVIVAug 1, 2023

Decomposition Ascribed Synergistic Learning for Unified Image Restoration

arXiv:2308.00759v23 citationsh-index: 33
Originality Highly original
AI Analysis

This addresses the need for efficient multi-degradation restoration in real-world applications, offering a novel unified approach compared to independent task learning.

The paper tackles the problem of restoring multiple image degradations within a single model by proposing Decomposition Ascribed Synergistic Learning (DASL), which uses singular value decomposition to unify degradations into singular vector and singular value groups, achieving effectiveness across five blended tasks.

Learning to restore multiple image degradations within a single model is quite beneficial for real-world applications. Nevertheless, existing works typically concentrate on regarding each degradation independently, while their relationship has been less exploited to ensure the synergistic learning. To this end, we revisit the diverse degradations through the lens of singular value decomposition, with the observation that the decomposed singular vectors and singular values naturally undertake the different types of degradation information, dividing various restoration tasks into two groups, \ie, singular vector dominated and singular value dominated. The above analysis renders a more unified perspective to ascribe the diverse degradations, compared to previous task-level independent learning. The dedicated optimization of degraded singular vectors and singular values inherently utilizes the potential relationship among diverse restoration tasks, attributing to the Decomposition Ascribed Synergistic Learning (DASL). Specifically, DASL comprises two effective operators, namely, Singular VEctor Operator (SVEO) and Singular VAlue Operator (SVAO), to favor the decomposed optimization, which can be lightly integrated into existing image restoration backbone. Moreover, the congruous decomposition loss has been devised for auxiliary. Extensive experiments on blended five image restoration tasks demonstrate the effectiveness of our method.

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