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High Spectral-Efficiency Noncoherent Underwater Acoustic Communication for Seafloor Observation Network

机译:用于海底观测网络的高频谱效率非相干水下声通信

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Noncoherent underwater acoustic communication is robust to channel conditions, but has low spectral efficiency. In order to improve its spectral efficiency, we propose to adopt a combination of an irregular recursive convolutional code (IrCC) with the on-off keying (OOK) modulation. The IrCC is optimized under a flat Rayleigh fading channel model, assuming the receiver has no knowledge about the channel state information. An iterative threshold estimation (ITE) algorithm is designed to improve the iterative decoding performance. For a fixed spectral efficiency of 0.5 bit/s/Hz, simulations show reliable communication is achieved at a signal-to-noise ratio (SNR) of 11 dB, and the gap to the channel capacity is about 4.4 dB. The proposed scheme is also verified by experimental data collected in a seafloor observation network where over the frequency band of 6-10 kHz, a data rate of 1400 bps is achieved at a communication distance of 2500 m.
机译:非相干水下声通信对信道条件具有鲁棒性,但频谱效率低。为了提高其频谱效率,我们建议采用不规则递归卷积码(IrCC)与开关键控(OOK)调制的组合。假设接收器不了解信道状态信息,则在平坦瑞利衰落信道模型下对IrCC进行了优化。设计了迭代阈值估计(ITE)算法,以提高迭代解码性能。对于固定的0.5 bit / s / Hz频谱效率,仿真显示,在11 dB的信噪比(SNR)下可以实现可靠的通信,并且与信道容量的差距约为4.4 dB。在海底观测网络中收集的实验数据也验证了所提出的方案,该网络在6-10 kHz的频带上,在2500 m的通信距离上实现了1400 bps的数据速率。

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