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An Improved Bilinear Fractional Order DPD for F-OFDM Systems
Liao Xiao 1,Luo Zhinian 2 *
1.College of Computer Science and Engineering, Hunan University, ChangSha 410082;College of Computer Science and Engineering, Hunan University, ChangSha 410082
2.
*Correspondence author
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Funding: none
Opened online:14 May 2021
Accepted by: none
Citation: Liao Xiao,Luo Zhinian.An Improved Bilinear Fractional Order DPD for F-OFDM Systems[OL]. [14 May 2021] http://en.paper.edu.cn/en_releasepaper/content/4754939
 
 
In F-OFDM systems, the signal which is amplified by nonlinear power amplifier (PA) will produce serious distortion. The digital predistortion (DPD) technique is the most common method in PA linearization due to its high flexibility and good linearization performance. In this paper, an improved bilinear fractional order memory polynomial (IBFMP) DPD structure for Filtered Orthogonal Frequency Division Multiplexing (F-OFDM) systems is proposed. First, bilinear memory polynomials (BMP) are combined with fractional memory polynomials (FMP) without the cross term. Replaced the long-term memory effect with the short-term memory effect in this paper. Finally, Added the PAPR reduction technology into F-OFDM system while adopting DPD. The results show that the new structure can improve the linearity of PA, hence, the combined structure can improve the efficiency of PA and the performance of the system.
Keywords:Communication and Information System; Digital Predistortion; F-OFDM; Memory Polynomial; PAPR
 
 
 

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