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Study of probe signal bandwidth influence on estimation of coherence bandwidth for underwater acoustic communication channel

机译:对水下声学通信信道相干带宽估计的探头信号带宽影响研究

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A signal transmitted in a shallow Underwater Acoustic Communication (UAC) channel suffers from time dispersion due to the multipath propagation and the refraction phenomena. This causes intersymbol interference of the received signal and frequency-selective fading observed in its spectrum. Coherence bandwidth is one of the key transmission parameters used for designing the physical layer of a data transmission system to minimise the influence of time dispersion on the received signal. It can be calculated on the basis of the channel impulse response, measured with the use of the correlation method and frequency modulated signals or pseudorandom binary sequences. Such signals have a narrow, impulse-like autocorrelation function if considered in baseband. However, in the case of bandpass measurements, the influence of the probe signal on the estimate of the impulse response, and thus on the estimate of transmission parameters, is no longer negligible. The paper presents the results of an experimental study on probe signal bandwidth influence on estimation of coherence bandwidth. Simulations were carried out using UAC channel impulse responses measured in an inland reservoir. (C) 2021 The Author(s). Published by Elsevier Ltd.
机译:由于多径传播和折射现象,在浅水下声学通信(UAC)信道中传输的信号遭受了时间色散。这导致在其频谱中观察到的接收信号和频率选择性衰落的Intersymbol干扰。相干带宽是用于设计数据传输系统的物理层的关键传输参数之一,以最小化时间色散对接收信号的影响。它可以基于使用相关方法和频率调制信号或伪随机二进制序列测量的信道脉冲响应来计算。如果在基带中考虑,这种信号具有窄的脉冲自相关函数。然而,在带通测量的情况下,探头信号对脉冲响应的估计的影响,因此在传输参数的估计上不再可忽略不计。本文介绍了对探针信号带宽对相干带宽估计的实验研究的结果。使用在内陆水库中测量的UAC通道脉冲响应进行模拟。 (c)2021提交人。 elsevier有限公司出版

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