论文标题
水下声学多路复用,五角星交流
Underwater Acoustic Multiplexing Communication by Pentamode Metasurface
论文作者
论文摘要
作为水中的主要信息载体,声波广泛用于水下检测,通信和成像。尽管在过去的几十年中,水下声学通信得到了极大的改善,但它仍然遭受了缓慢的传输速度和低信息能力。最近开发的声学轨道角动量(OAM)多路复用通信有望具有高效率,大容量和快速传输速度,以进行声学通信。但是,目前关于OAM多路复用通信的作品主要出现在机载声学中。在水下通信中,将声学OAM的应用仍有待进一步探讨和研究。在本文中,匹配的五角星消退元图的阻抗旨在实现水下声学通信中的多路复用和反复交流。元图的阻抗匹配确保了传输信息的高传输。通过实现实时图片传递,可以在数值上证明将两个不同的绿色绿oa梁编码为两个不同的绿色绿色光束。模拟显示了系统在水下声学多路复用通信方面的有效性。这项工作为OAM多路复用的实验演示和实际应用用于水下声音通信铺平了道路
As the dominant information carrier in water, acoustic wave is widely used for underwater detection, communication and imaging. Even though underwater acoustic communication has been greatly improved in the past decades, it still suffers from the slow transmission speed and low information capacity. The recently developed acoustic orbital angular momentum (OAM) multiplexing communication promises a high efficiency, large capacity and fast transmission speed for acoustic communication. However, the current works on OAM multiplexing communication mainly appears in airborne acoustics. The application of acoustic OAM for underwater communication remains to be further explored and studied. In this paper, an impedance matching pentamode demultiplexing metasurface is designed to realize multiplexing and demultiplexing in underwater acoustic communication. The impedance matching of the metasurface ensures high transmission of the transmitted information. The information encoded into two different OAM beams as two independent channels is numerically demonstrated by realizing real-time picture transfer. The simulation shows the effectiveness of the system for underwater acoustic multiplexing communication. This work paves the way for experimental demonstration and practical application of OAM multiplexing for underwater acoustic communication