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Underwater Acoustic Communication by a Single-Vector Sensor: Performance Comparison Using Three Different Algorithms

机译:单矢量传感器的水下声通信:使用三种不同算法的性能比较

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In November, 2014, the underwater acoustic (UWA) communication experiment by a single-vector sensor was conducted in shallow water environment. In this paper, three different algorithms are used to process the experimental data and their performance are compared in terms of equalized output signal to noise ratio (OSNR) and bit error rate (BER). The three algorithms are P-DFE, B-DFE, and T-DFE, respectively. P-DFE uses only the pressure channel of the vector sensor to realize the decision feedback equalizer (DFE). B-DFE linearly combines the pressure channel and velocity channel first and then uses DFE to equalize the combined signal. T-DFE adopts time reversal to combine all the channels of the vector sensor and then is followed by a single-channel DFE to remove residual intersymbol interference (ISI). According to the data processing results, both B-DFE and T-DFE can achieve better performance compared with P-DFE. This paper also finds that the performance of B-DFE depends on the beam pattern of the combined signal while the performance of T-DFE depends on the q function of the combined signal. Which algorithm should be used to process real data, B-DFE or T-DFE, depends on the degree of coherence between different channels of the vector sensor.
机译:2014年11月,在浅水环境中通过单矢量传感器进行了水下声(UWA)通信实验。在本文中,使用了三种不同的算法来处理实验数据,并根据均衡的输出信噪比(OSNR)和误码率(BER)比较了它们的性能。这三种算法分别是P-DFE,B-DFE和T-DFE。 P-DFE仅使用矢量传感器的压力通道来实现决策反馈均衡器(DFE)。 B-DFE首先线性组合压力通道和速度通道,然后使用DFE均衡组合后的信号。 T-DFE采用时间倒转来组合矢量传感器的所有通道,然后是单通道DFE,以消除残留的符号间干扰(ISI)。根据数据处理结果,与P-DFE相比,B-DFE和T-DFE均可实现更好的性能。本文还发现,B-DFE的性能取决于组合信号的波束方向图,而T-DFE的性能取决于组合信号的q函数。 B-DFE或T-DFE应该使用哪种算法来处理实际数据,取决于矢量传感器不同通道之间的相干程度。

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