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首页> 外文期刊>Oceanic Engineering, IEEE Journal of >OFDM Transmission Without Guard Interval in Fast-Varying Underwater Acoustic Channels
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OFDM Transmission Without Guard Interval in Fast-Varying Underwater Acoustic Channels

机译:快速变化的水下声信道中没有保护间隔的OFDM传输

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摘要

In this paper, we consider orthogonal frequency-division multiplexing (OFDM) transmission in fast-varying underwater acoustic channels. We demonstrate on experimental data that reliable communications can be achieved without any guard interval (such as cyclic prefix or zero padding) and with a superimposed pilot. Such OFDM transmission possesses a high spectral efficiency, but incurs severe intersymbol and intercarrier interference, and interference from the superimposed pilot. We propose a receiver that can efficiently deal with the interference and has a relatively low complexity as most of its operations are based on fast Fourier transform and local spline interpolation. The receiver is verified in an experiment with a transducer towed by a surface vessel moving at a high speed; a complicated trajectory of the transducer resulted in a severe Doppler distortion of the signal received on a single hydrophone. The performance of the proposed receiver is investigated for different parameter settings and compared with an ideal receiver with perfect channel knowledge, operating in interference-free scenarios, and mimicking the signal-to-noise ratio (SNR) of the experiment. The proposed receiver has provided error-free detection of encoded data at data rates of 0.5 b/s/Hz at a distance of 40 km and 0.33 b/s/Hz at a distance of 80 km, approaching the performance of the ideal receiver with a less than 3-dB loss in SNR.
机译:在本文中,我们考虑在快速变化的水下声信道中进行正交频分复用(OFDM)传输。我们在实验数据上证明,无需任何保护间隔(例如循环前缀或零填充)并且使用叠加的导频就可以实现可靠的通信。这样的OFDM传输具有高频谱效率,但是会引起严重的符号间和载波间干扰以及来自叠加导频的干扰。我们提出一种可以有效处理干扰并且具有相对较低复杂度的接收机,因为其大部分操作基于快速傅里叶变换和局部样条插值。接收器在实验中通过水面船高速移动拖曳的换能器进行了验证;换能器的复杂轨迹导致单个水听器接收到的信号发生严重的多普勒失真。拟议的接收机的性能针对不同的参数设置进行了研究,并与具有完善的信道知识的理想接收机进行了比较,可以在无干扰的情况下工作,并且可以模拟实验的信噪比(SNR)。拟议中的接收器在40 km距离处以0.5 b / s / Hz的数据速率在80 km处以0.33 b / s / Hz的数据速率提供了无误码编码数据检测,接近了理想的接收器性能, SNR损失小于3 dB。

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