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Experimental Demonstration of Long-Range Underwater Acoustic Communication Using a Vertical Sensor Array

机译:使用垂直传感器阵列进行远程水下声通信的实验演示

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This paper proposes a composite channel virtual time reversal mirror (CCVTRM) for vertical sensor array (VSA) processing and applies it to long-range underwater acoustic (UWA) communication in shallow water. Because of weak signal-to-noise ratio (SNR), it is unable to accurately estimate the channel impulse response of each sensor of the VSA, thus the traditional passive time reversal mirror (PTRM) cannot perform well in long-range UWA communication in shallow water. However, CCVTRM only needs to estimate the composite channel of the VSA to accomplish time reversal mirror (TRM), which can effectively mitigate the inter-symbol interference (ISI) and reduce the bit error rate (BER). In addition, the calculation of CCVTRM is simpler than traditional PTRM. An UWA communication experiment using a VSA of 12 sensors was conducted in the South China Sea. The experiment achieves a very low BER communication at communication rate of 66.7 bit/s over an 80 km range. The results of the sea trial demonstrate that CCVTRM is feasible and can be applied to long-range UWA communication in shallow water.
机译:本文提出了一种用于垂直传感器阵列(VSA)处理的复合通道虚拟时间倒车镜(CCVTRM),并将其应用于浅水的远距离水下声学(UWA)通信。由于信噪比(SNR)较弱,因此无法准确估计VSA的每个传感器的信道脉冲响应,因此传统的被动时间倒车镜(PTRM)在远程UWA通信中无法很好地发挥作用。浅水。但是,CCVTRM仅需要估计VSA的复合信道即可完成时间反转镜像(TRM),从而可以有效地减轻符号间干扰(ISI)并降低误码率(BER)。另外,CCVTRM的计算比传统的PTRM更简单。在南中国海进行了使用12个传感器的VSA的UWA通信实验。该实验在80 km的范围内以66.7 bit / s的通信速率实现了非常低的BER通信。海上试验的结果表明,CCVTRM是可行的,并且可以应用于浅水中的远程UWA通信。

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