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New method fuses 2D/1D signals for robust underwater acoustic modulation recognition

Researchers have developed a novel method for recognizing underwater acoustic modulations, particularly addressing challenges posed by distribution shifts. Their approach, SCP-TriCA, fuses heterogeneous 2D and 1D signal representations, including time-frequency maps, cyclostationary maps, and statistical descriptors. This fusion is achieved through bidirectional cross-attention for 2D modalities and a sample-adaptive selective gate for incorporating 1D statistical information. The method was evaluated on UAMR-ShiftBench, a new benchmark designed to systematically test performance under various shift types, including real-world sea trials. AI

IMPACT This research could improve the reliability of underwater communication systems by enhancing signal recognition capabilities under challenging environmental conditions.

RANK_REASON The item is an academic paper detailing a new method and benchmark for a specific technical problem. [lever_c_demoted from research: ic=1 ai=1.0]

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New method fuses 2D/1D signals for robust underwater acoustic modulation recognition

COVERAGE [1]

  1. arXiv cs.AI TIER_1 English(EN) · Ronglai Qian, Liang An, Xiaoyan Wang, Qing Fan, Ziwei Huang, Yang Ye ·

    Heterogeneous 2D/1D Signal Representation Fusion for Underwater Acoustic Modulation Recognition Under Distribution Shift

    arXiv:2606.23702v1 Announce Type: cross Abstract: Modulation recognition systems rely on heterogeneous signal representations. 2D signal-image modalities such as time-frequency and cyclostationary maps capture structural patterns, while 1D statistical descriptors such as higher-o…