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Digital predistortion linearization of a GaN HEMT push-pull power amplifier for cable applications with high fractional bandwidth

Abstract: This paper presents two linearization strategies for a custom-designed wideband push-pull (PP) power amplifier (PA) for wired communication applications such as, for example, cable TV. Two digital predistortion (DPD) behavioral models are proposed to meet the in-band and out-of-band linearity requirements when efficiently amplifying wideband DOCSIS signals with high fractional bandwidth (FBW). A radiofrequency (RF) DPD linearizer based on a band-pass generalized memory polynomial (BP-GMP) behavioral model and a baseband (BB) I-Q DPD linearizer based on a harmonic distortion GMP (HD-GMP) behavioral model are proposed. Both DPD models take into account the harmonic distortion typical of high FBW amplification. Experimental results will show high efficient and linear amplification of a 4×192 MHz composite DOCSIS signal by properly combining a crest factor reduction (CFR) technique and the proposed DPD strategies.

Other publications of the same journal or congress with authors from the University of Cantabria

 Authorship: Gilabert P.L., Perez-Cisneros J.R., Ren Z., Montoro G., Lavin M.D.L.N.R., Garcia J.A.,

 Fuente: IEEE Transactions on Broadcasting, 2023, 69(2), 516-527

Publisher: Institute of Electrical and Electronics Engineers Inc.

 Publication date: 01/06/2023

No. of pages: 12

Publication type: Article

 DOI: 10.1109/TBC.2023.3246816

ISSN: 0018-9316,1557-9611

 Spanish project: PID2020- 113832RB-C21

Publication Url: https://doi.org/10.1109/TBC.2023.3246816

Authorship

PERE LLUIS GILABERT PINAL

JOSE RAMON PEREZ CISNEROS

REN, ZHIXIONG

GABRIEL MONTORO LOPEZ

MARIA DE LAS NIEVES RUIZ LAVIN