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Transceiver Design for High-Data Rate TTirough-Metal Communication in Naval Applications

机译:海军应用中高数据速率TT全金属通信的收发器设计

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The deployment of wireless sensing and control networks is of interest to the U.S. Navy for the maintenance of vital automated ship operation. The challenge of such onboard wireless networks lies in the ship's hull, which obstructs electromagnetic wave propagation and limits connectivity. Mechanical penetration of the bulkhead for the purpose of running cabling compromises the structural integrity of ship compartments. Ultrasonic signaling has been proposed to connect isolated radio networks inside metal compartments to achieve reliable coverage without bulkhead penetration. However, the reverberant nature of the acoustic channel becomes a network throughput bottleneck and limits the performance of narrowband communication techniques. Orthogonal Frequency-Division Multiplexing (OFDM) has been shown to be a promising technique for mitigating the frequency selectivity of ultrasound channels without the need for complex equalizers. A high-data rate OFDM transceiver was developed to enhance through-hull communication by exploiting the slow-varying nature of the ultrasonic channel. Simulated and measured results of this transceiver have shown the potential to increase throughput while adhering to bit error constraints. This enhancement provides throughput and reliability to support high-rate network applications below decks on navy vessels while maintaining network connectivity.
机译:无线感测和控制网络的部署是美国海军感兴趣的,用于维持至关重要的自动舰船操作。这种船载无线网络的挑战在于船体,它阻碍了电磁波的传播并限制了连接性。为了进行布线而对舱壁进行机械渗透会损害船舱的结构完整性。已经提出了超声信令来连接金属隔室内的隔离的无线电网络,以实现可靠的覆盖而不会穿入舱壁。但是,声学通道的混响性质成为网络吞吐量的瓶颈,并限制了窄带通信技术的性能。正交频分复用(OFDM)已被证明是一种无需复杂均衡器即可减轻超声通道频率选择性的有前途的技术。开发了一种高数据速率OFDM收发器,以通过利用超声通道的慢速变化特性来增强全船体通信。该收发器的仿真和测量结果表明,在遵守误码约束的同时,可以提高吞吐量。此增强功能提供吞吐量和可靠性,以支持海军舰船甲板以下的高速率网络应用,同时保持网络连接性。

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