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Efficient cooperative multicarrier underwater acoustic communication over the Persian Gulf channel

机译:波斯湾通道上的高效协作多载波水下声通信

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Real-time and reliable transmission with high data rate is one of the most crucial design issues in underwater acoustic (UWA) communications. This paper is part of an operational project in the Persian Gulf which is known as a shallow water channel worldwide. Building on the promising combination of cooperative and multicarrier techniques, we first address the design of an efficient UWA communication system over the Persian Gulf channel. We assume sparse and frequency-selective Rician fading, non-white correlated Gaussian ambient noise, and non-uniform Doppler distortion among subcarriers. Based on the extensive field measurements, we adopt a comprehensive channel model including modified sound speed profile, modified absorption coefficient, reflections from the surface and bottom of the sea, and modified ambient noise model. In our work, carrier frequency is efficiently determined based on the system and environmental parameters. In addition, a simple criterion for Doppler scale calculation is proposed. Moreover, based on the approximate auto-correlation function of the ambient noise, whitening filter is utilized at the receiver. In many applications of underwater acoustic sensors network (UW-ASN), nodes may not be big enough to have more than one antenna. Therefore, to achieve spatial diversity, cooperation between nodes can be a proper alternate method. In another part of this research, toward a proper approach that each node operates under full-duplex mode, we address a cooperative virtually-aided transmission scenario which is called cooperative multiple input single output. Simulation results demonstrate that our proposed models can significantly improve the bit error rate performance of UW-ASN in the Persian Gulf channel.
机译:高数据速率的实时,可靠传输是水下声学(UWA)通信中最关键的设计问题之一。本文是波斯湾一个运营项目的一部分,该海湾被誉为世界范围内的浅水航道。基于合作和多载波技术的有希望的结合,我们首先解决波斯湾通道上高效的UWA通信系统的设计问题。我们假设稀疏和频率选择性的Rician衰落,非白色相关的高斯环境噪声以及子载波之间的非均匀多普勒失真。在广泛的现场测量的基础上,我们采用了综合的通道模型,包括改进的声速曲线,改进的吸收系数,海面和海底反射以及改进的环境噪声模型。在我们的工作中,可以根据系统和环境参数有效地确定载波频率。此外,提出了一种简单的多普勒尺度计算标准。而且,基于环境噪声的近似自相关函数,在接收器处使用白化滤波器。在水下声传感器网络(UW-ASN)的许多应用中,节点的大小可能不足以拥有多个天线。因此,为了实现空间分集,节点之间的协作可以是一种适当的替代方法。在本研究的另一部分中,朝着使每个节点在全双工模式下运行的正确方法,我们提出了一种协作式虚拟辅助传输方案,称为协作多输入单输出。仿真结果表明,我们提出的模型可以显着提高波斯湾海峡UW-ASN的误码率性能。

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