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Covering Underwater Shadow Zones using Acoustic Reconfigurable Intelligent Surfaces

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arxiv 2501.02256 v1 pith:ZHMGM7CK submitted 2025-01-04 cs.NI

classification cs.NI
keywords shadowunderwaterzonesacousticcoveragedeploymentcannotcommunication
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To better explore the oceans, seamless communication coverage of the vast 3D underwater space is desired. Unlike terrestrial networks using radio signals, underwater acoustic communications face a unique challenge: nodes in underwater shadow zones cannot connect to the network, even within the line of sight. These shadow zones can extend for tens of kilometers, causing communication nodes to disconnect. Existing efforts focus on passive avoidance of shadow zones, but this strategy cannot ensure seamless coverage in dynamic ocean environments. This paper addresses the shadow zone problem by utilizing acoustic Reconfigurable Intelligent Surfaces (RIS) to actively control the underwater channel. Shadow zones are analytically modeled, and optimal RIS deployment strategies are developed for both deep-sea and shallow-sea environments. The acoustic RIS is redesigned considering practical engineering limitations and validated through pool tests. Bellhop-based simulations show that without RIS deployment, coverage is limited to less than 20%, regardless of source strength. However, with optimal RIS deployment, energy coverage can reach almost 100%.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Dynamical ON-OFF Control with Trajectory Prediction for Multi-RIS Wireless Networks

    cs.NI 2025-05 reject novelty 4.0 of 10

    A trajectory-prediction-based RIS on/off control scheme is proposed to mitigate interference, with simulations claiming SINR gains over always-on and spectrum-learning baselines.

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