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使用子阵列处理改善被动时间反转水下声学通信

Improving Passive Time Reversal Underwater Acoustic Communications Using Subarray Processing.

作者信息

He Chengbing, Jing Lianyou, Xi Rui, Li Qinyuan, Zhang Qunfei

机构信息

School of Marine Science and Technology, Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

Sensors (Basel). 2017 Apr 24;17(4):937. doi: 10.3390/s17040937.

Abstract

Multichannel receivers are usually employed in high-rate underwater acoustic communication to achieve spatial diversity. In the context of multichannel underwater acoustic communications, passive time reversal (TR) combined with a single-channel adaptive decision feedback equalizer (TR-DFE) is a low-complexity solution to achieve both spatial and temporal focusing. In this paper, we present a novel receiver structure to combine passive time reversal with a low-order multichannel adaptive decision feedback equalizer (TR-MC-DFE) to improve the performance of the conventional TR-DFE. First, the proposed method divides the whole received array into several subarrays. Second, we conduct passive time reversal processing in each subarray. Third, the multiple subarray outputs are equalized with a low-order multichannel DFE. We also investigated different channel estimation methods, including least squares (LS), orthogonal matching pursuit (OMP), and improved proportionate normalized least mean squares (IPNLMS). The bit error rate (BER) and output signal-to-noise ratio (SNR) performances of the receiver algorithms are evaluated using simulation and real data collected in a lake experiment. The source-receiver range is 7.4 km, and the data rate with quadrature phase shift keying (QPSK) signal is 8 kbits/s. The uncoded BER of the single input multiple output (SIMO) systems varies between 1 × 10 - 1 and 2 × 10 - 2 for the conventional TR-DFE, and between 1 × 10 - 2 and 1 × 10 - 3 for the proposed TR-MC-DFE when eight hydrophones are utilized. Compared to conventional TR-DFE, the average output SNR of the experimental data is enhanced by 3 dB.

摘要

多通道接收器通常用于高速率水下声学通信,以实现空间分集。在多通道水下声学通信的背景下,被动时间反转(TR)与单通道自适应判决反馈均衡器(TR-DFE)相结合是一种实现空间和时间聚焦的低复杂度解决方案。在本文中,我们提出了一种新颖的接收器结构,将被动时间反转与低阶多通道自适应判决反馈均衡器(TR-MC-DFE)相结合,以提高传统TR-DFE的性能。首先,所提出的方法将整个接收阵列划分为几个子阵列。其次,我们在每个子阵列中进行被动时间反转处理。第三,用低阶多通道DFE对多个子阵列输出进行均衡。我们还研究了不同的信道估计方法,包括最小二乘法(LS)、正交匹配追踪(OMP)和改进的比例归一化最小均方算法(IPNLMS)。使用在湖泊实验中收集的模拟数据和实际数据评估了接收器算法的误码率(BER)和输出信噪比(SNR)性能。源-接收器距离为7.4千米,正交相移键控(QPSK)信号的数据速率为8千比特/秒。当使用八个水听器时,单输入多输出(SIMO)系统的未编码BER对于传统TR-DFE在1×10-1和2×10-2之间变化,对于所提出的TR-MC-DFE在1×10-2和1×10-3之间变化。与传统TR-DFE相比,实验数据的平均输出SNR提高了3分贝。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49dd/5426933/07ae53f145d0/sensors-17-00937-g001.jpg

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