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Experimental Assessment of Different Receiver Structures for Underwater Acoustic Communications over Multipath Channels

机译:在多径信道上进行水下声通信的不同接收器结构的实验评估

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摘要

Underwater communication channels are often complicated, and in particular multipath propagation may cause intersymbol interference (ISI). This paper addresses how to remove ISI, and evaluates the performance of three different receiver structures and their implementations. Using real data collected in a high-frequency (10–14 kHz) field experiment, the receiver structures are evaluated by off-line data processing. The three structures are multichannel decision feedback equalizer (DFE), passive time reversal receiver (passive-phase conjugation (PPC) with a single channel DFE), and the joint PPC with multichannel DFE. In sparse channels, dominant arrivals represent the channel information, and the matching pursuit (MP) algorithm which exploits the channel sparseness has been investigated for PPC processing. In the assessment, it is found that: (1) it is advantageous to obtain spatial gain using the adaptive multichannel combining scheme; and (2) the MP algorithm improves the performance of communications using PPC processing.
机译:水下通信信道通常很复杂,尤其是多径传播可能会导致符号间干扰(ISI)。本文介绍了如何删除ISI,并评估了三种不同接收器结构及其实现的性能。使用在高频(10–14 kHz)现场实验中收集的真实数据,通过离线数据处理评估接收器的结构。这三种结构是多通道决策反馈均衡器(DFE),无源时间反转接收器(具有单通道DFE的无源相位共轭(PPC))和具有多通道DFE的联合PPC。在稀疏信道中,主要到达信号代表信道信息,并且已经研究了利用信道稀疏性的匹配追踪(MP)算法进行PPC处理。在评估中发现:(1)使用自适应多通道组合方案获得空间增益是有利的; (2)MP算法提高了使用PPC处理的通信性能。

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