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A Piecewise Linear Companding Transform for PAPR Reduction of OFDM Signals With Companding Distortion Mitigation

机译:分段线性压扩变换,用于通过抑制压扩失真来降低OFDM信号的PAPR

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摘要

Companding is a well-known technique for the peak-to-average power ratio (PAPR) reduction of orthogonal frequency division multiplexing (OFDM) signals. However, as companding transform is an extra operation after the modulation of OFDM signals, companding schemes reduce PAPR at the expense of increasing the bit error rate (BER). In this paper, a new piecewise linear companding scheme is proposed aiming at mitigating companding distortion. In the design of the companding transform, we study the theoretical characterization of companding distortion. It demonstrates that companding larger signals with smaller amplitude increments are more favorable in reducing companding distortion. Based on the analysis results, a new piecewise linear companding transform is proposed by clipping the signals with amplitudes over a given companded peak amplitude for peak power reduction, and linearly transforming the signals with amplitudes close to the given companded peak amplitude for power compensation. With the careful design of the companded peak amplitude and the linear transform scale, the proposed transform can achieve enhanced BER and power spectral density performance, while reducing PAPR effectively.
机译:压扩是一种众所周知的用于降低正交频分复用(OFDM)信号的峰均功率比(PAPR)的技术。然而,由于压扩变换是在OFDM信号调制之后的额外操作,因此压扩方案以增加误码率(BER)为代价降低了PAPR。本文提出了一种新的分段线性压扩方案,旨在减轻压扩失真。在压扩变换的设计中,我们研究了压扩失真的理论特征。它表明以较小的幅度增量压缩较大的信号在减小压缩失真方面更有利。根据分析结果,提出了一种新的分段线性压扩变换,其方法是将幅度超过给定压扩峰值幅度的信号削波以降低峰值功率,并线性变换幅度接近给定扩压峰值幅度的信号以进行功率补偿。通过精心设计压缩后的峰幅度和线性变换尺度,该变换可以实现增强的BER和功率谱密度性能,同时有效降低PAPR。

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