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A comparative study of differential and noncoherent direct sequence spread spectrum over underwater acoustic channels with multiuser interference

机译:多用户干扰对水下声道差分和非组织直接序列扩频扩频的比较研究

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Spread spectrum communication provides a robust solution for underwater acoustic communication over noisy or otherwise unfavorable channels while allowing multiple users to occupy the same bandwidth at the same time. In this study we compare two variants, differential and noncoherent, of direct sequence code division multiple access (DS-CDMA) side-by-side on their performance over a range of channel conditions. Analysis of experimental data collected from the UNET06 experiment in St. Margarets Bay, Nova Scotia, Canada, reveals a tradeoff in performance between these two methods when the interference level and data rates change. Through further simulations we develop a good picture of the range of channel conditions for which one method will outperform the other. These results depend largely on the channel coherence value and the interference level: specifically, the differential scheme is better suited to coherent channels with low interference levels while the noncoherent scheme achieves better performance in high-interference scenarios and as the channel coherence decreases. Further, we observe that the noncoherent scheme is more robust relative to the differential alternative when the rate increases from 1 bit to 2 bits per symbol transmission.
机译:扩频通信提供用于在嘈杂或其他不利的信道上的水下声学通信的强大解决方案,同时允许多个用户同时占用相同的带宽。在这项研究中,我们将两种变体,差分和无组织的直接序列码分分开(DS-CDMA)并排进行,并在一系列信道条件下并排进行性能。在加拿大圣玛格丽特湾的UNET06实验中收集的实验数据分析,在加拿大新斯科舍省,在干扰水平和数据速率变化时,这两种方法之间的性能揭示了折衷。通过进一步的仿真,我们开发了一种良好的频道条件范围的图片,其中一种方法将越优于另一种方法。这些结果在很大程度上取决于信道相干值和干扰水平:具体地,差分方案更适合于干扰水平的相干通道,而非合成方案在高干扰场景中实现更好的性能,并且随着信道相干性降低。此外,我们观察到,当速率从每符号传输的1位增加到2位时,相对于差动替代,非组织方案更加稳健。

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