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LDMIC: Learning-based Distributed Multi-view Image Coding

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arxiv 2301.09799 v3 pith:HYXSNVHI submitted 2023-01-24 eess.IV cs.AIcs.CVcs.LGcs.MM

classification eess.IVcs.AIcs.CVcs.LGcs.MM
keywords ldmiccodingdistributedencodingimagejointlearning-basedmethods
verification ladder T0 review T1 audit T2 compute T3 formal
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Multi-view image compression plays a critical role in 3D-related applications. Existing methods adopt a predictive coding architecture, which requires joint encoding to compress the corresponding disparity as well as residual information. This demands collaboration among cameras and enforces the epipolar geometric constraint between different views, which makes it challenging to deploy these methods in distributed camera systems with randomly overlapping fields of view. Meanwhile, distributed source coding theory indicates that efficient data compression of correlated sources can be achieved by independent encoding and joint decoding, which motivates us to design a learning-based distributed multi-view image coding (LDMIC) framework. With independent encoders, LDMIC introduces a simple yet effective joint context transfer module based on the cross-attention mechanism at the decoder to effectively capture the global inter-view correlations, which is insensitive to the geometric relationships between images. Experimental results show that LDMIC significantly outperforms both traditional and learning-based MIC methods while enjoying fast encoding speed. Code will be released at https://github.com/Xinjie-Q/LDMIC.

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  1. Distributed Image Semantic Communication via Nonlinear Transform Coding

    cs.IT 2025-06 conditional novelty 6.0 of 10

    D-NTSC and D-NTSCC, built on nonlinear transform coding with joint entropy modeling and spatial alignment, outperform existing distributed image transmission baselines on KITTI and Cityscapes.

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