A stochastic underwater acoustic channel model

发射机 瑞利衰落 加性高斯白噪声 衰退 参数统计 频道(广播) 计算机科学 误码率 非线性系统 声学 电子工程 信号(编程语言) 振幅 噪音(视频) 电信 物理 工程类 数学 统计 光学 人工智能 图像(数学) 程序设计语言 量子力学
作者
R. Galvin,R.E.W. Coats
标识
DOI:10.1109/oceans.1996.572599
摘要

Realises a flexible microprocessor channel simulator utilising measured characteristics as the basis for the model. Experimentation carried out in the coastal area of Cap Ferrat in the south of France, described in Galvin et al. (1996), indicated the necessity for a channel simulator which could reproduce the multifaceted phenomena experienced by the received signal but under controlled laboratory conditions. A communication system can thereby be tested before undertaking yet more costly field experiments. The differentially phase shift keyed (DPSK) system under investigation employs parametric transduction with primary frequencies equal to 50 and 55 kHz to develop a modulated carrier at the difference frequency. The transmitter was deployed in deep water, and propagation was in free field conditions. The received signal suffered from severe fading (rapid fluctuations in both amplitude and phase) and high levels of noise. It is the characteristics of these fluctuations which are of most interest and are used as the basis for the simulation. These fluctuations are modelled by the generation of specific stochastic processes using a combination of linear and nonlinear transformations on a Gaussian variable. The ensuing performance, characterised by the bit error rate for various symbol rates, can then be calculated. The validity of this approach is confirmed by comparing the predicted performance under such conditions with established theory for phase modulated signals operating in a Rayleigh fading channel.
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