Characterization of delay and Doppler spreads of underwater particle velocity channels using zero crossing rates

Huaihai Guo, A. Abdi, A. Song, M. Badiey
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引用次数: 3

Abstract

Communication in acoustic particle velocity channel using vector sensors is recently proposed for the underwater medium. Due to the presence of multiple propagation paths, a mobile receiver collects the transmitted signal with different delays and Doppler shifts. This introduces certain delay and Doppler spreads in particle velocity communication channels. In this paper, these channel spreads are characterized using the zero crossing rates of channel responses in frequency and time domain. Useful expressions for delay and Doppler spreads are derived in terms of the key channel parameters, mean angle of arrivals and angle spreads. Closed-form expressions for the temporal correlations of underwater acoustic particle velocity channels are presented as well. These results are needed for design and performance predication of communication systems in time-varying and frequency-selective underwater particle velocity channels.
利用零交叉率表征水下粒子速度通道的延迟和多普勒扩频
最近提出了一种基于矢量传感器的水下介质声粒子速度信道通信方法。由于存在多个传播路径,移动接收机以不同的延迟和多普勒频移收集发射信号。这在粒子速度通信信道中引入了一定的延迟和多普勒扩频。在本文中,利用信道响应在频域和时域上的零交叉率来表征这些信道扩展。根据关键信道参数、平均到达角和角扩展,导出了延迟和多普勒扩展的有用表达式。给出了水声粒子速度通道时间相关性的封闭表达式。这些结果对于时变和频率选择性水下粒子速度信道通信系统的设计和性能预测是有必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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