Absolute Exponential Companding to Reduced PAPR for FBMC/OQAM

Imad A. Shaheen, A. Zekry, F. Newagy, Reem Ibrahim
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引用次数: 8

Abstract

Filter Bank Multicarrier with Offset Quadrature Amplitude Modulation (FBMC/OQAM) may be one of the best waveform used in the next generation wireless communication system (5G system). Moreover, The FBMC/OQAM system supports high data rate, low impulse noise and high bandwidth efficiency. However, Similar to Orthogonal frequency-division multiplexing OFDM system, the FBMC/OQAM system are the type of multicarrier modulation system (MCM) which suffers from high peak to average power ratio (PAPR) problem cases reduced power efficiency. In this paper, We propose a nonlinear companding scheme called 'Absolute Exponential Companding' (AEXC) to reduced PAPR in FBMC/OQAM system. However, the FBMC/OQAM system is employed with prototype filter bank using square root raised cosine (SRRC) filter. The simulation results show that, The proposed schemes highly effectively reduces the PAPR in the system by compressing the peak signals and expanding the small signals.
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FBMC/OQAM的绝对指数扩展到减小PAPR
滤波器组多载波偏置正交调幅(FBMC/OQAM)可能是下一代无线通信系统(5G系统)中使用的最佳波形之一。此外,FBMC/OQAM系统支持高数据速率、低脉冲噪声和高带宽效率。然而,与正交频分复用OFDM系统类似,FBMC/OQAM系统是一种多载波调制系统(MCM),存在峰值平均功率比(PAPR)过高的问题,会降低功率效率。本文提出了一种非线性压缩方案“绝对指数压缩”(AEXC)来降低FBMC/OQAM系统的PAPR。然而,FBMC/OQAM系统使用的是使用平方根提升余弦(SRRC)滤波器的原型滤波器组。仿真结果表明,该方案通过压缩峰值信号和扩展小信号,有效地降低了系统的PAPR。
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