无线水下通信系统的高效编解码方案

N. Nasri, L. Andrieux, A. Kachouri, M. Samet
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引用次数: 13

摘要

本文提出了一种新型的高效信道编码,用于声信号的传输,以期改善水下无线通信。然而,水会阻碍通信能力,减缓信号的传播,并产生背景噪音和回声。因此,下面给出用于实现控制信道的系统和方法,例如在水下通信系统中。本文所述的信道结构方面用于实现控制信道,可以提高错误检测能力,降低解码复杂度,提高传输效率。在某些方面,使用CRC编码可以提高传输效率。圆形网格检查和维特比解码也可以用来提高效率和保持错误检测能力。符号错误率(SER)可以在本文描述的实施例中比具有CRC的咬尾卷积编码的实施例中降低。此外,里德-所罗门编码器提供的误差检测可以很好地补偿水下噪声。此外,编码器数据包大小可以固定,以便于解码和降低接收器的复杂性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient encoding and decoding schemes for wireless underwater communication systems
This work focuses on presenting a novel high efficiency channel encoding for transmitting acoustical signals in the hope of improving wireless underwater communication. Yet, water puts a damper on communication capacity, slowing down the signal propagation and creating background noise and echoes. For thus systems and methods for implementing a control channel, e.g., in underwater communication system, are presented below. Aspects of the channel structures used to implement the control channel described herein, can improve error detection capabilities, reduce decoding complexity, and increase transmission efficiency. In certain aspects, transmission efficiency can be increased through using CRC encoding. A circular trellis check and Viterbi decoding can also be used to increase efficiency and maintain error detection capabilities. Symbol Error Rate (SER) can be reduced in embodiments described herein over that of tail-biting convolutional coding with a CRC. Furthermore, error detection offered by Reed Solomon encoder can well compensate underwater noise. Additionally, the encoder packet size can be fixed in order to facilitate decoding and reducing receiver complexity.
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