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Wavefront segmentation in phase-conjugate arrays for spatially modulated acoustic communication

机译:相位共轭阵列的波前分割用于空间调制的声学通信

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Research on underwater acoustic communication has shown that throughput and reliability can be improved if the spatial dimension is exploited to create multiple parallel channels in the ocean. This work proposes a technique for creating such channels that builds on the concept of a time-reversal mirror, a retroreflective array that focuses signals at a given point in the ocean by emitting acoustic rays along the directions of impinging energy. The approach used for creating these channels is based on space-time segmentation of received wavefronts, so that distinct transmitted messages can be associated with them. Unlike other parallelization techniques, individual channels exhibit low intersymbol interference, and all channels arrive synchronously at the focus. Due to these properties, input-output channel behavior can be approximately modeled as Rayleigh flat fading, thus providing a framework for applying several results that have been developed for wireless radio channels with low delay dispersion. Simulation results illustrate the performance of this technique and the impact of segmentation and beamforming accuracy.
机译:水下声学通信的研究表明,如果利用空间尺寸以在海洋中创建多个并行频道,则可以提高吞吐量和可靠性。该工作提出了一种用于创建在时间反转镜的概念上构建的这种通道的技术,一种逆向反射阵列,其通过沿着撞击能量的方向发射声学光线来聚焦在海洋中的给定点的信号。用于创建这些信道的方法是基于所接收的波前的时空分割,从而可以与它们相关联。与其他并行化技术不同,各个频道表现出低的符号间干扰,并且所有通道都同步到焦点。由于这些特性,输入输出通道行为可以近似为瑞利平衰落,从而提供了一种用于应用已经开发的用于具有低延迟色散的无线无线电信道的若干结果的框架。仿真结果说明了这种技术的性能和分割和波束形成精度的影响。

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