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Novel Nonlinear Companding Transform for Reduced Peak-to-Average Power Ratio in OFDM

机译:降低OFDM峰均功率比的新型非线性压扩变换

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Orthogonal Frequency Division Multiplexing (OFDM) is an excellent solution to overcome multipath effects and inter-symbol interference in high-speed mobile communication systems. However, OFDM inherently has a high Peak-to-Average Power Ratio (PAPR) that adversely affects the system. In this study, we propose a nonlinear companding transform scheme function, in order to reduce the high PAPR in OFDM signals. With the proposed scheme, the average power of the OFDM signal can be maintained nearly unchanged over the companding process by properly chosen values of the parameters of the companding function. One salient feature of the proposed scheme over error function based companding schemes is that the signal compression and expansion levels of the companding function can be adjusted independently, and thus it is easier to maintain the average power. With the aid of simulations, we prove that the proposed scheme has an outstanding PAPR reduction capability and it works well with nonlinear transmitter amplifiers as well. Moreover, we show that the BER performance of the proposed companding transform is superior to the one obtained from the error function companding.
机译:正交频分复用(OFDM)是一种出色的解决方案,可以克服高速移动通信系统中的多径效应和符号间干扰。但是,OFDM本质上具有较高的峰均功率比(PAPR),会对系统产生不利影响。在这项研究中,我们提出了一种非线性压扩变换方案函数,以减少OFDM信号中的高PAPR。利用所提出的方案,通过适当地选择压扩函数的参数值,可以在压扩过程中将OFDM信号的平均功率保持几乎不变。与基于误差函数的压扩方案相比,所提出的方案的一个显着特征是,可以独立地调整压扩函数的信号压缩和扩展水平,因此更容易保持平均功率。借助仿真,我们证明了该方案具有出色的PAPR降低能力,并且与非线性发射机放大器也能很好地工作。此外,我们表明,提出的压扩变换的BER性能优于从误差函数压扩获得的BER性能。

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