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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Doppler Scaling Factor Estimation and Receiver Design for Underwater Acoustic Communication
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Doppler Scaling Factor Estimation and Receiver Design for Underwater Acoustic Communication

机译:水下声学通信的多普勒缩放因子估计和接收设计

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摘要

Due to very low propagation speed of acoustic waves, underwater communication via acoustic waves observe a significant Doppler scaling in the received signal. In addition, due to severe frequency selective fading in underwater acoustic channel, the distinct multi-paths may induce different Doppler scaling factor. In this paper, we investigate a transmission strategy in which we append preamble and post-amble in the data frame to estimate the Doppler scaling factor. The frequency selective fading coefficients and additive noise in the system model are statistically characterized by Nakagami and Generalized Gaussian distribution, respectively. Further, the transmit data is assumed to be orthogonal frequency division multiplexing (OFDM) modulated to mitigate the frequency selective nature of underlying channel. In our analysis, we consider two scenarios: (1) multi-paths have common Doppler scaling factor and (2) multi-paths have different Doppler scaling factor. For both the scenarios, we propose receiver algorithms to detect OFDM symbols corrupted by multi-path propagation. We also discuss the improvement in bit error rate performance by exploiting maximal ratio combining scheme. Finally, we validate our approach in the proposed techniques by showing improvement in bit error rate performance via simulation under various signal to noise ratio and fading conditions.
机译:由于声波的远低传播速度,通过声波的水下通信观察所接收信号中的显着多普勒缩放。另外,由于在水下声道中的严重频率选择性衰落,不同的多路径可以诱导不同的多普勒缩放因子。在本文中,我们调查了一种传输策略,其中我们附加序列和在数据帧中发布的发布,以估计多普勒缩放因子。系统模型中的频率选择性衰落系数和附加噪声分别具有Nakagami和广义高斯分布的统计表征。此外,假设发送数据是正交频分复用(OFDM)调制以减轻底层信道的频率选择性性质。在我们的分析中,我们考虑两种情况:(1)多路径具有普通多普勒缩放因子,(2)多路径具有不同的多普勒缩放因子。对于这两个方案,我们提出了通过多路径传播损坏的OFDM符号来提出接收器算法。我们还通过利用最大比率组合方案讨论误码率性能的提高。最后,我们通过在各种信号下通过模拟来验证误码率性能和衰减条件来验证我们在所提出的技术中验证我们的方法。

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