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Using multilevel complementary sets of sequences for acoustic signals emission in underwater links

机译:使用多级互补序列集在水下链路中发出声信号

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Complementary Set of Sequences (CSS) are being widely used in communications due to the ideal correlation properties and the availability of efficient correlators that significantly reduce the number of computations in the detection process. In this paper, the performance of the acoustic signals encoded by multilevel CSS in an underwater horizontal link is analysed. For that, a channel propagation model based on ray tracing is used, where parameters for the San Jorge Gulf Argentina are included. The main goal of this is to analyse the transmission scheme based on acoustic encoded signals, in order to be used in a communication system, between a buoy in a surface and a group of sensors on the seabed, that form a sensor network for coastal monitoring. Other application of this scheme can be a positioning system, where a set of sensors of the network are deployed on the seabed in order to compute its position. The obtained results show a suitable robustness of the used encoding scheme based on Multilevel Complementary Sets of Sequences in a point-to-point link in shallow water, where it is possible to detect encoded signals even under hard conditions of attenuation and SNR.
机译:互补序列集(CSS)由于理想的相关属性和有效的相关器的可用性而在通信中被广泛使用,这些相关器可显着减少检测过程中的计算数量。本文分析了水下水平链路中多层CSS编码的声信号的性能。为此,使用了基于射线跟踪的信道传播模型,其中包括圣豪尔赫湾阿根廷的参数。其主要目的是分析基于声编码信号的传输方案,以便在通信系统中使用,该通信方案用于水面中的浮标与海床上的一组传感器之间,这些传感器形成用于沿海监测的传感器网络。该方案的其他应用可以是定位系统,其中在海底部署一组网络传感器以计算其位置。获得的结果表明,在浅水中的点对点链路中,基于多级互补序列集使用的编码方案具有适当的鲁棒性,即使在艰难的衰减和SNR条件下,也可以检测编码信号。

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