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OFDM over Underwater Acoustic Channel with Large and Small Scale Fading

机译:具有大小衰减的水下声信道上的OFDM

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About 70% of earth surface is covered with sea water, an area that is few explored in communication. Investigating submarine communications can be strategic and a competitive advantage to countries with long coast. This work aims at evaluating through software prototypes the performance of a communication over underwater acoustic channel (UAC) subject to large and small scale fading. The submarine channel modeling follows Bellhop algorithm along with small scale fading. OFDM over submarine channel is compared to frequency selective time-varying classical wireless channel in order to investigate the effects concerning temporal and frequency scattering. Thus, the analysis is based on OFDM system, in which, besides data rate increase by subcarrier multiplexing, it can mitigate the traditional wireless multipath fading. After presenting the submarine channel models and the related works to this paper proposal, we provides the evidences of the difference between the models presented and the similarities of BER performance for the channels analyzed.
机译:大约70%的地表覆盖着海水,这一地区很少进行通讯探索。对于海底航行国家而言,调查海底通信可能具有战略意义和竞争优势。这项工作旨在通过软件原型评估在经历大大小小的衰落的情况下在水下声信道(UAC)上进行通信的性能。水下通道建模遵循Bellhop算法以及小规模衰落。将海底信道上的OFDM与频率选择性时变经典无线信道进行比较,以研究与时间和频率散射有关的影响。因此,该分析基于OFDM系统,其中,除了通过子载波复用来提高数据速率之外,它还可以减轻传统的无线多径衰落。在介绍了本文建议的海底通道模型和相关工作之后,我们提供了所提供的模型之间的差异以及所分析通道的BER性能相似性的证据。

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