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Reliable OFDM Data Transmission with Pilot Tones and Error-Correction Coding in Shallow Underwater Acoustic Channel

机译:可靠的OFDM数据传输与导频音调和浅水频道误差校正编码

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The performance of Underwater Acoustic Communication (UAC) systems are strongly related to the specific propagation conditions of the underwater channel. Horizontal, shallow-water channels are characterised by extremely disadvantageous transmission properties, due to strong multipath propagation and refraction phenomena. The paper presents the results of communication tests performed during a shallow, inland-water experiment with the use of a laboratory model of a UAC system implementing the Orthogonal Frequency-Division Multiplexing (OFDM) technique. The physical layer of data transmission is partially configurable, enabling adaptation of the modulation and channel coding parameters to the specific propagation conditions. The communication tests were preceded by measurement of the UAC channel transmission properties. Based on the estimated transmission parameters, four configurations of OFDM modulation parameters were selected, and for each of them, communication tests were performed with the use of two Error-Correction Coding (ECC) techniques. In each case, the minimum coding rate was determined for which reliable data transmission with a Bit Error Rate (BER) of less than 10 ? 4 is possible.
机译:水下声学通信(UAC)系统的性能与水下信道的特定传播条件密切相关。由于强大的多径传播和折射现象,水平浅水通道的特征在于极其不利的传动特性。本文介绍了在浅内水实验期间进行的通信测试的结果,利用实现正交频分复用(OFDM)技术的UAC系统的实验室模型。数据传输的物理层是部分可配置的,使调制和信道编码参数的适应能够适应特定的传播条件。前面通过测量UAC信道传输属性之前的通信测试。基于估计的传输参数,选择了四个OFDM调制参数的配置,并且对于它们中的每一个,使用两个纠错编码(ECC)技术进行通信测试。在每种情况下,确定最小编码率,用于误差率(BER)小于10的可靠数据传输? 4是可能的。

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