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Sweep-spread carrier for underwater communication over acoustic channels with strong multipath propagation

机译:扫频载波,用于在声学通道上进行水下通信,具有强大的多径传播能力

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摘要

Multipath propagation causes the transmitted signal to take numerous, time-varying different-length paths to the receiver. Exploitation of conventional frequency-constant carrier signals for communication over underwater acoustic channels typically shows that intricate mutual time variations of multipath arrivals create an extremely hard problem for equalizers to compensate for nonstable intersymbol interactions. Communication over such channels can be, however, substantially improved by using a new method based on the implementation of a sweep-spread carrier (S2C). Such a carrier consists of a succession of sweeps, which cause permanent rapid fluctuation f signal frequency. Apart from some additional useful effects such as providing multiuser access and reducing influence of narrow-band noise, the method provides significant processing improvement enabling clear separation of multipath arrivals by converting their time delays into their frequency reallocations-the sweeps, the better the multipath resolution that can be achieved. When converting the signal into constant intermediate frequencies, the best suitable multipath arrival can be separated not as traditionally in time domains, applying complex equalizers, but in frequency domains by means of usual band-pass filters. High transmission stability of this approach was confirmed in both computer simulations as well as in validation experiments carried out since summer 1999.
机译:多径传播导致发送的信号经过许多时变的不同长度的路径到达接收器。利用传统的频率常数载波信号进行水下声信道通信通常表明,多径到达的复杂的相互时间变化为均衡器补偿不稳定的符号间相互作用带来了极其困难的问题。但是,通过使用基于扫频扩展载波(S2C)实现的新方法,可以大大改善此类信道上的通信。这样的载波由一系列扫描组成,这些扫描引起信号频率的永久快速波动。除了提供诸如多用户访问和减少窄带噪声影响之类的一些其他有用效果外,该方法还提供了显着的处理改进,可通过将多路径到达的时间延迟转换为频率重新分配来实现多路径到达的清晰分离,即扫描,多路径分辨率越好可以实现的。当将信号转换为恒定的中频时,可以通过使用常规的带通滤波器,在时域中应用复数均衡器,从而不像传统上那样分离最合适的多径到达。自1999年夏季以来,无论是在计算机模拟还是在验证实验中,都证实了这种方法的高传输稳定性。

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