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Performance of OFDM-based massive MIMO OTFS systems for underwater acoustic communication

机译:用于水下声通信的基于OFDM的大规模MIMO OTFS系统的性能

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摘要

In this study, multi-user (MU) underwater acoustic communication is investigated using massive multiple-input multiple-output (MIMO) orthogonal frequency division multiplexing (OFDM)-based orthogonal time frequency space modulation (OTFS) systems. The performance of a 4-user scenario is evaluated over a simulated 1 km vertically-configured time-varying underwater acoustic channel (UAC) in terms of bit error rate and maximum achievable bit rate. Considering 64-QAM and frequency-domain pilot-based channel estimation, it is shown that the underwater vehicles employing the OFDM-based OTFS modulation outperform those using the conventional OFDM modulation in a dynamic UAC. The application of massive MIMO allows the four underwater vehicles to use the same time and frequency resources to transmit their information reliably to a surface station. Furthermore, it is shown that each underwater vehicle in the MU-massive MIMO transmission scenario can achieve an effective bit rate as high as 198.7 kbps over the 1 km UAC using four transmitting transducers.
机译:在这项研究中,使用基于大规模多输入多输出(MIMO)正交频分复用(OFDM)的正交时频空间调制(OTFS)系统研究了多用户(MU)水声通信。根据误码率和最大可达到的比特率,在模拟的1 km垂直配置的时变水下声信道(UAC)上评估了4用户方案的性能。考虑到64-QAM和基于频域导频的信道估计,表明在动态UAC中采用基于OFDM的OTFS调制的水下航行器要优于使用常规OFDM调制的水下航行器。大规模MIMO的应用允许四艘水下航行器使用相同的时间和频率资源将其信息可靠地传输到地面站。此外,还显示出,在使用MU进行大规模MIMO传输的情况下,每个水下航行器都可以使用四个发射换能器在1 km UAC上实现高达198.7 kbps的有效比特率。

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