Enhancing the Odd Peaks Detection in OFDM Systems Using Wavelet Transforms

A. Damati, O. Daoud, Q. Hamarsheh
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引用次数: 1

Abstract

This work aims to study the effect of unwanted peaks and enhance the performance of wireless systems on the basis of tackling such peaks. A new proposition has been made based on wavelet transform method and its entropy. Signals with large peak-to-average power ratio (PAPR) will be examined such as the ones that are considered as the major Orthogonal Frequency Division Multiplexing (OFDM) systems drawbacks. Furthermore, aspatial diversity Multiple-Input Multiple- Out-put (MIMO) technology is used to overcome the complexity addition that could arise in our proposition. To draw the best performance of this work, a MATLAB simulation has been used; it is divided into three main stages, namely, MIMO-OFDM symbols’ reconstruction based on wavelet transform, a predetermined thresholding formula, and finally, moving filter. This algorithm is called Peaks’ detection based Entropy Wavelet Transform; PD-EWT. Based on the simulation, and under some constrains such as the bandwidth occupancy and the complexity structure of the transceivers, a peak detection ratio has been achieved and reaches around 0.85. Comparing with our previously published works, the PD-EWT enhances detection ratio for 0.25 more peaks.
利用小波变换增强OFDM系统的奇峰检测
本工作旨在研究无用峰值的影响,并在解决这些峰值的基础上提高无线系统的性能。基于小波变换方法及其熵,提出了一个新的命题。具有较大峰均功率比(PAPR)的信号将被检查,例如那些被认为是正交频分复用(OFDM)系统的主要缺点。此外,空间分集多输入多输出(MIMO)技术用于克服在我们的提议中可能出现的复杂性增加。为了绘制出本工作的最佳性能,采用了MATLAB仿真;该算法分为三个主要阶段,即基于小波变换的MIMO-OFDM符号重构,预先确定阈值公式,最后进行移动滤波。该算法称为基于峰值检测的熵小波变换;PD-EWT。通过仿真,在带宽占用和收发器结构复杂等约束条件下,实现了峰值检测比,达到了0.85左右。与我们之前发表的作品相比,PD-EWT提高了0.25个以上峰的检测率。
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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