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Reliable Water-Air Direct Wireless Communication: Kalman Filter-Assisted Deep Reinforcement Learning Approach.

, , , , , and . LCN, page 233-238. IEEE, (2022)

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A Load-Based Hybrid MAC Protocol for Underwater Wireless Sensor Networks., , , , , and . IEEE Access, (2019)Quasi-Affine Transformation Evolutionary Algorithm With Communication Schemes for Application of RSSI in Wireless Sensor Networks., , , , and . IEEE Access, (2020)UAV-Assisted Maritime Data Collection via Optical Communications using Deep Reinforcement Learning., , , , , and . BIGCOM, page 164-171. IEEE, (2023)SID: Ship Intrusion Detection with Wireless Sensor Networks., , , , , and . ICDCS, page 879-888. IEEE Computer Society, (2011)LDSN: Localization scheme for double-head maritime Sensor Networks., , , and . ICPADS, page 233-240. IEEE Computer Society, (2014)UAV-based Reliable Optical Wireless Communication via Cooperative Multi-agent Reinforcement Learning Approach., , , , , and . ICPADS, page 856-863. IEEE, (2023)Multimodal Acoustic-RF Adaptive Routing Protocols for Underwater Wireless Sensor Networks., , , , , and . IEEE Access, (2019)Underwater Real-Time Video Transmission via Wireless Optical Channels With Swarms of AUVs., , , , , and . IEEE Trans. Veh. Technol., 72 (11): 14688-14703 (November 2023)Simulation and Experimentation Platforms for Underwater Acoustic Sensor Networks: Advancements and Challenges., , , , , and . ACM Comput. Surv., 50 (2): 28:1-28:44 (2017)UAV-based Mobile Acoustic Sink for Dynamic Communication Coverage via Multi-Agent Reinforcement Learning Approach., , , , and . ACM TUR-C, page 102-103. ACM, (2023)