IGCC for PAPR Reduction in OFDM Systems Over the Nonlinearity of SSPA and Wireless Fading Channels

High peak-to-average power ratio (PAPR) in orthogonal frequency division multiplexing (OFDM) systems seriously impacts power efficiency in radio frequency section due to the nonlinearity of high-power amplifiers. In this article, an improved gamma correction companding (IGCC) is proposed for PAPR reduction and investigated under multipath fading channels. It is shown that the proposed IGCC provides a significant PAPR reduction while improving power spectral levels and error performances when compared with the previous gamma correction companding. IGCC outperforms existing companding methods when a nonlinear solid-state power amplifier (SSPA) is considered. Additionally, with the introduction of $$\alpha , \beta , \gamma $$α,β,γ, and $$\varDelta $$Δ parameters, the improved companding can offer more flexibility in the PAPR reduction and therefore achieves a better trade-off among the PAPR gain, bit error rate (BER), and power spectral density (PSD) performance. Moreover, IGCC improves the BER and PSD performances by minimizing the nonlinear companding distortion. Further, IGCC improves signal-to-noise ratio (SNR) degradation ($$\varDelta _{\mathrm{SNR}}$$ΔSNR) and total degradation performances by 12.2 and 12.8 dB, respectively, considering an SSPA with input power back-off of 3.0 dB. Computer simulation reveals that the performances of IGCC are independent of the modulation schemes and works with arbitrary number of subcarriers (N), while it does not increase computational complexity when compared with the existing companding schemes used for PAPR reduction in OFDM systems.

[1]  Elena Costa,et al.  M-QAM-OFDM system performance in the presence of a nonlinear amplifier and phase noise , 2002, IEEE Trans. Commun..

[2]  M. Mahmudul Hasan A New PAPR Reduction Scheme for OFDM Systems Based on Gamma Correction , 2014, Circuits Syst. Signal Process..

[3]  Tao Jiang,et al.  Exponential companding technique for PAPR reduction in OFDM systems , 2005, IEEE Trans. Broadcast..

[4]  Md. Mahmudul Hasan PAR Reduction in SU/MU-MIMO OFDM Systems Using OPF Precoding Over the Nonlinearity of SSPA , 2015, Wirel. Pers. Commun..

[5]  Md. Mahmudul Hasan,et al.  VLM Precoded SLM Technique for PAPR Reduction in OFDM Systems , 2013, Wirel. Pers. Commun..

[6]  Daniel M. Gordon,et al.  A Survey of Fast Exponentiation Methods , 1998, J. Algorithms.

[7]  Tao Jiang,et al.  An Overview: Peak-to-Average Power Ratio Reduction Techniques for OFDM Signals , 2008, IEEE Transactions on Broadcasting.

[8]  M. Mahmudul Hasan PAPR Reduction in OFDM Systems Based on Autoregressive Filtering , 2014, Circuits Syst. Signal Process..

[9]  Xianbin Wang,et al.  Reduction of peak-to-average power ratio of OFDM system using a companding technique , 1999, IEEE Trans. Broadcast..

[10]  Tao Jiang,et al.  Multicast Broadcast Services Support in OFDMA-Based WiMAX Systems [Advances in Mobile Multimedia] , 2007, IEEE Communications Magazine.

[11]  Md. Mahmudul Hasan A New PAPR Reduction Technique in OFDM Systems Using Linear Predictive Coding , 2014, Wirel. Pers. Commun..

[12]  Md. Mahmudul Hasan A novel CVM precoding scheme for PAPR reduction in OFDM transmissions , 2014, Wirel. Networks.

[13]  Khoirul Anwar,et al.  An effective iterative clipping for coded CI/OFDM systems over the nonlinearity of SSPA , 2008, 2008 IEEE 19th International Symposium on Personal, Indoor and Mobile Radio Communications.