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Reliable and energy-efficient cooperative OFDM communications over underwater acoustic channels.

机译:水下声信道上可靠且节能的协作OFDM通信。

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摘要

Underwater acoustic sensor networks (UWASN) have been attracting growing research interests in recent decades due to various promising applications. Underwater acoustic communications (UAC), which adopts acoustic waves as the information carrier, is one of the key communication techniques to realize UWASN. However, UAC is very challenging due to low carrier frequency, distance-dependent bandwidth, large delay spread, long and variable propagation delay, and doubly-selective fading.;In this research, we will consider cooperative communications to improve the reliability and energy efficiency of dual-hop UAC. OFDM is adopted as the physical-layer transmission technique. First, we will examine power allocation issues. Two transmission scenarios are considered, namely short-range transmission and medium-long range transmission. For the former scenario, an adaptive system is developed based on instantaneous channel state information (CSI); for the latter scenario, an selective relaying protocol is designed based on statistical CSI. Secondly, we will focus on the decomposed fountain codes design to enable reliable communications with higher energy efficiency. Finally, to improve the packet transmission reliability, data repetition within one or two consecutive OFDM symbols is implemented according to the mirror-mapping rules. Theoretical analyses and simulation results demonstrate that the reliability and energy efficiency of dual-hop UAC can be substantially improved using the aforementioned techniques.
机译:由于各种有前途的应用,近几十年来水下声传感器网络(UWASN)吸引了越来越多的研究兴趣。以声波为信息载体的水下声通信(UAC)是实现UWASN的关键通信技术之一。然而,由于载波频率低,与距离有关的带宽,较大的时延扩展,较长的可变传播时延以及双选衰落,UAC极具挑战性;在本研究中,我们将考虑协作通信以提高可靠性和能效双跳UAC。 OFDM被用作物理层传输技术。首先,我们将研究功率分配问题。考虑两种传输方案,即短距离传输和中远距离传输。对于前一种情况,基于瞬时信道状态信息(CSI)开发了一种自适应系统。对于后一种情况,基于统计CSI设计了选择性中继协议。其次,我们将专注于分解后的喷泉代码设计,以实现可靠的通信并提高能效。最后,为了提高分组传输的可靠性,根据镜像映射规则在一个或两个连续的OFDM符号内实现数据重复。理论分析和仿真结果表明,使用上述技术可以大大提高双跳UAC的可靠性和能效。

著录项

  • 作者

    Cheng, Xilin.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Electrical engineering.;Acoustics.;Communication.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 149 p.
  • 总页数 149
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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