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Experimental demonstration of phase-coherent underwater acoustic communications using a compact array

机译:使用紧凑阵列的相干水下声通信的实验演示

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摘要

High-rate phase coherent acoustic communication systems generally require large arrays to obtain spatial diversity. Large arrays may not be suitable for small underwater platforms such as underwater unmanned vehicles (UUVs). In this paper, acoustic communication utilizing a compact array with closely spaced elements was demonstrated using the data collected during the August 2010 lake experiment. In addition, a bidirectional multichannel decision feedback equalizer (DFE) was developed to enhance the performance of communication systems. The recorded data from three communication ranges of 25 m, 920 m, and 1 300 m were processed to verify the system performance. The results showed an improvement in output symbol signal-to-noise ratio (OSNR) of approximately 3.4 dB, and 4.9 dB for bidirectional two-channel DFE and four-channel DFE over a single-channel DFE, respectively.
机译:高速相位相干声通信系统通常需要大阵列以获得空间分集。大阵列可能不适用于小型水下平台,例如水下无人飞行器(UUV)。在本文中,利用在2010年8月的湖泊实验中收集到的数据,展示了利用紧密排列的紧凑阵列实现的声学通信。另外,开发了双向多通道判决反馈均衡器(DFE)以增强通信系统的性能。处理来自25 m,920 m和1300 m三个通信范围的记录数据,以验证系统性能。结果表明,相对于单通道DFE,双向两通道DFE和四通道DFE的输出符号信噪比(OSNR)分别提高了约3.4 dB和4.9 dB。

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