A 2D Non-Stationary Channel Model for Underwater Acoustic Communication Systems

Xiuming Zhu, Chengxiang Wang, Ruofei Ma
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引用次数: 6

Abstract

Underwater acoustic (UWA) communication plays a key role in the process of exploring and studying the ocean. In this paper, a modified non-stationary wideband channel model for UWA communication in shallow water scenarios is proposed. In this geometry-based stochastic model (GBSM), multiple motion effects, time-varying angles, distances, clusters’ locations with the channel geometry, and the ultra-wideband property are considered, which makes the proposed model more realistic and capable of supporting long time/distance simulations. Some key statistical properties are investigated, including temporal autocorrelation function (ACF), power delay profile (PDP), average delay, and root mean square (RMS) delay spread. The impacts of multiple motion factors on temporal ACFs are analyzed. Simulation results show that the proposed model can mimic the non-stationarity of UWA channels. Finally, the proposed model is validated with measurement data.
水声通信系统的二维非平稳信道模型
水声通信在探索和研究海洋的过程中起着至关重要的作用。本文提出了一种用于浅水场景下UWA通信的改进的非平稳宽带信道模型。在基于几何的随机模型(GBSM)中,考虑了多种运动效应、时变角度、距离、簇的位置随信道几何形状的变化以及超宽带特性,使得该模型更加真实,能够支持长时间/距离的仿真。研究了一些关键的统计特性,包括时间自相关函数(ACF)、功率延迟曲线(PDP)、平均延迟和均方根(RMS)延迟扩展。分析了多种运动因素对时间ACFs的影响。仿真结果表明,该模型可以模拟UWA信道的非平稳性。最后,用实测数据对模型进行了验证。
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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