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In-Band Full-Duplex Communications for Underwater Acoustic Networks

机译:水下声网的带内全双工通信

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摘要

Driven by the increasing demand on marine exploration, UWANs are confronted with the rigorous challenge of improving network throughput. To deal with this challenge, this article proposes to apply the IBFD technique to UWANs. The IBFD technique can potentially double link capacity by simultaneously transmitting and receiving on the same frequency band, which has been recently demonstrated to be feasible for wireless communications. In this article, novel MAC protocols are specifically proposed for the acoustic IBFD network to overcome the inherent issues in underwater acoustic communications, such as long packet delay, large node collision probability, and high power consumption. Numerical results verify that our proposals can effectively mitigate these effects and improve the overall performance of the UWANs.
机译:在对海洋勘探的需求不断增长的推动下,UWAN面临着提高网络吞吐量的严峻挑战。为了应对这一挑战,本文建议将IBFD技术应用于UWAN。 IBFD技术通过在同一频带上同时进行发送和接收,可以潜在地使链路容量增加一倍,这已被​​证明对无线通信是可行的。在本文中,专门针对声学IBFD网络提出了新颖的MAC协议,以克服水下声学通信中的固有问题,例如长数据包延迟,大节点冲突概率和高功耗。数值结果验证了我们的建议可以有效减轻这些影响并提高UWAN的整体性能。

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