The clipping and nonlinear distortion compensation for underwater acoustic OFDM system

Huang Mei, Haixin Sun, Qi Jie, Xiaoyan Kuai, Gu Ye
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引用次数: 2

Abstract

Orthogonal frequency division multiplexing (OFDM) is a promising alternative modulation for underwater acoustic communication due to its ability in mitigating multipath effects. However, the high peak-to-average ratio (PAPR) constraints the power value level especially for long distance transmission. The problem of non-linear distortion generated by using one or more non-linear devices cannot be ignored when the OFDM signal is used to transmit. A novel clipping system model is proposed to simulate the effect of the non-linear distortion, which exploits the clipping operation to reduce the Peak-to-Average-Power-Ratio (PAPR). A new method based on compressed sensing (CS) is used to estimate the clipping values and compensate the effect of the non-linear distortion. It is shown that the clipping and compensation scheme can simulate the nonlinear distortion and significantly alleviate the distortion using CS compensation. The simulation and experiment results will verify the feasibility and advantages of the method.
水声OFDM系统的裁剪与非线性失真补偿
正交频分复用(OFDM)是水声通信中一种很有前途的替代调制方式。然而,高峰值平均比(PAPR)限制了功率值水平,特别是对于长距离传输。在使用OFDM信号进行传输时,由于使用一个或多个非线性器件而产生的非线性失真问题是不容忽视的。提出了一种新的裁剪系统模型来模拟非线性失真的影响,该模型利用裁剪操作来降低峰值平均功率比(PAPR)。采用一种基于压缩感知(CS)的新方法来估计裁剪值并补偿非线性失真的影响。结果表明,该裁剪补偿方案可以模拟非线性畸变,并能有效地缓解CS补偿的畸变。仿真和实验结果将验证该方法的可行性和优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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